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Emergence of seasonal influenza viruses type A/H1N1 with oseltamivir resistance in some European Countries at the start of the 2007-8 influenza

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

how do you know ? They were uploaded 09.Jan.2008

A/Hawaii/21/2007 , submitted Jan.09,2008 (HA -Jan.06,2008)
A/Hawaii/28/2007 , submitted Jan.09,2008 (HA : Jan.06,2008)
A/Hawaii/28/2007 (same ?)
A/Massachusetts/05/2007 , only HA available, "Oseltamivir resistant" , HA submitted Aug.08,2008
A/Minnesota/23/2007 , submitted Jan.09,2008
A/Texas/31/2007 , submitted Oct.30,2007 (HA : Oct.30,2007)
A/Kansas/UR06-0104/2007 , submitted 18.Oct.2007 , collected 30.Jan.2007


BTW A/Texas/12/2007(H3N2) was also Oseltamivir resistant

hmm, Hawaii is 20° N, same as Hongkong,Taiwan,Okinawa
and has maybe not much seasonality.
As noted above, the Kansas sample was collected at the beginning of 2007, which was last season. Samples are number consecutively, and use a calendar year, so Massachusetts would also be last season. The others could have been the beginning of this season or end of last season, because CDC doesn't give the collection date.

However, as noted in the name, ALL of the above were collected in 2007, are related to Solomon Island (from 2006) and have NOTHING to do with Japan.
 
Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Martian posts moved here

Please try to keep extraneous remarks off the news threads. The Discussion Forum has several sub-forums, including a Comedy Room for stress relief and a Venting Room for complaining.


Thanks.


S.
 
Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

From Eurosurveillance Weekly:
--
(1a) [ESWI, ANTIVIRALS, SEASONAL INFLUENZA] Observed oseltamivir resistance in seasonal influenza viruses in Europe interpretation and potential implications (http://www.eurosurveillance.org/edition/v13n05/080131_1.asp)

A Nicoll and P Kramarz on behalf of the Influenza Project Team (influenza@ecdc.europa.eu)*, European Centre for Disease Prevention and Control, Stockholm, Sweden

*B Ciancio, P Kreidl, H Needham, A Nicoll, C Varela, A Würz, K Fernandez de la Hoz, F Plata, C Yilmaz



In this week’s issue of Eurosurveillance, Zambon and colleagues describe the first findings of the European Union-funded European Surveillance Network for Vigilance Against Viral Resistance (VIRGIL) of some seasonal influenza viral isolates resistant to the antiviral drug oseltamivir in Europe [1]. Since the winter of 2004-5, a sample of influenza viral isolates have been routinely monitored by VIRGIL for antiviral resistance in a number of EU member states and other European countries [2]. Testing of the isolates for the 2007-8 season began in late January, with the finding that in the specimens for the first 10 countries, four countries had a proportion of seasonal influenza A/H1N1 with a mutation that confers a high level of resistance to the drug oseltamivir. The proportion of A/H1N1 isolates that were resistant was especially high in Norway [1], both in genome sequencing and phenotypical testing.

An interim risk assessment was published by the European Centre for Disease Prevention and Control (ECDC) on 27 January based on these preliminary findings and the available science [3].

As of January 31, resistant isolates have been found in nine out of 18 of the European countries whose specimens were tested (Denmark, Finland, France, Germany, the Netherlands, Norway, Portugal, Sweden and the United Kingdom (UK) [1].

Although a high proportion of isolates have been found resistant (overall figure of approximately 14%), the sample size was relatively small, meaning this may not accurately reflect the proportion that are resistant among all infections.

Norway and VIRGIL alerted the World Health Organization (WHO) and all 27 EU and the other 2 EEA countries (Iceland and Liechtenstein) through the International Health Regulations and Early Warning Response System.

Further testing has begun in the laboratories of the Centre of Infections of the UK’s Health Protection Agency as well as the WHO Influenza Collaborating Centre in London, and through sequencing and phenotypic testing in national influenza centres.

The WHO has held international consultations, and testing in WHO Collaborating Centres has identified similar findings in some other parts of the world, although not all.

It is not yet clear from where these viruses emerged, or why.

However, as they are in Europe, we must address them.

The fact that the first findings came from Europe may simply be a reflection of the surveillance methods used here and the timeliness of the work.

They should not be taken to imply that they emerged in Europe.

The WHO is now coordinating further investigations at a global level, while the ECDC, working with the WHO European Region and the European Commission, is coordinating investigations in the EU and EEA/EFTA countries.

The oseltamivir resistance investigation is still in its early stages, with a small number of samples from several countries tested.

A more accurate picture will only emerge when many more specimens have been tested and more epidemiological information is available.

Influenza activity this season has only recently begun to significantly increase in Europe and A/H1N1 has been the predominant strain circulating so far [4].

From the samples examined to date, the proportions of the new virus A/H1N1 with the H274Y mutation appear to be low [1].

Oseltamivir is seemingly not frequently used in Europe, although better data needs to be acquired on this and the use of other antivirals.

There has been no evidence to date that any of the Norwegian patients were exposed to the drug before their infection.

Therefore, the resistance is unlikely to be related to antiviral medication use in individual patients in Europe.

For the same reason, these findings have fewer clinical implications for routine clinical treatment of mild influenza infections than if oseltamivir was used more widely.

The ECDC’s interim risk assessment also emphasised that the findings are not related to avian influenza (the similarly named A/H5N1), pandemics or pandemic preparedness.

However, they are a timely reminder of the ability of influenza viruses to develop antiviral resistance and the fact that it cannot be guaranteed that any novel influenza virus emerging will be sensitive to any particular antiviral medication [5,6,7,8].

Influenza seasons in which H1N1 viruses predominate are typically associated with less severe illness and lower overall mortality than seasons in which other influenza A viruses predominant.

There is currently no evidence that the mutated H1N1 strain is any more virulent than other strains of seasonal influenza (all the Norwegian patients had typical influenza illnesses), but any influenza A can nevertheless cause severe disease or be fatal for vulnerable people, including infants, the elderly and those with chronic debilitating disease.

The circulating A/H1N1 viruses, including the oseltamivir-resistant ones, are well matched with the current seasonal influenza vaccine, meaning that those who have been vaccinated are already at a lower risk of contracting the disease or developing severe complications than those who have not yet been immunised.

The tests conducted so far have also shown that the mutated viruses are fully susceptible to the other currently available antiviral drugs, zanamivir and the adamantanes (amantadine and rimantadine) [1].

However, it is agreed that there is currently insufficient evidence for authorities to consider changes to clinical guidelines.

Resistant viruses carrying the same mutation have been seen in previous seasons but, as with most resistant viruses, were few in number, ‘unfit’ and transmitted poorly.

Consequently, ‘fitter’ non-resistant viruses eventually predominated.

The cautious use of antiviral medication may have contributed to this.

These A/H1N1 isolates with the H274Y mutation are fitter.

They are in several countries and are transmitting in the community [1].

The specimens tested to date are from early in the season and it may be that as the season progresses ordinary A/H1N1s predominate.

Equally, the resistant viruses may come to predominate, as did the adamantane-resistant viruses in other H-types in some parts of the world, notably North America [5].

Careful virological and epidemiological surveillance should continue for the rest of this and other seasons.

The ECDC will revise its assessment as more information on this issue emerges and comments are received.

In collaboration with VIRGIL and the European Influenza Surveillance Scheme (EISS), the Centre will also regularly update the figures on resistance in Europe, initially on a weekly basis.

More information about seasonal influenza can be found on the websites of the ECDC (http://www.ecdc.europa.eu) and the WHO (http://www.who.int).

References

1-Lackenby A, Hungnes O, Dudman SG, Meijer A, Paget WJ, Hay AJ, Zambon MC. Emergence of resistance to oseltamivir among influenza A(H1N1) viruses in Europe. Euro Surveill 2008;13(5). Available from: LINK
2-Meijer A, Lackenby A, Hay A, Zambon M. Influenza antiviral susceptibility monitoring activities in relation to national antiviral stockpiles in Europe during the winter 2006/2007 season. Euro Surveill 2007;12(4)[Epub ahead of print]. Available from: LINK
3-Interim ECDC Risk Assessment. Emergence of seasonal influenza viruses type A/H1N1 with oseltamivir resistance in some European countries at the start of the 2007-8 influenza season. 27 January 2008. Available from: LINK
4-Arkema JMS, MeijerA, Paget WJ, van Casteren V, Hungnes O, Mazick A and van der Velden J. The influenza season has started in a number of European countries. Euro Surveill 2008;13(4). Available from: LINK
5-Deyde VM, Xu X, Bright RA, Shaw M, Smith CB, Zhang Y, Shu Y, Gubareva LV, Cox NJ, Klimov AI. Surveillance of resistance to adamantanes among influenza A(H3N2) and A(H1N1) viruses isolated worldwide. J Infect Dis. 2007 Jul 15;196(2):249-57. Epub 2007 Jun 7.
6-Bright RA, Shay DK, Shu B, Cox NJ, Klimov AI. Adamantane resistance among influenza A viruses isolated early during the 2005-2006 influenza season in the United States. JAMA. 2006 Feb 22;295(8):891-4. Epub 2006 Feb 2.
7-Bright RA, Medina MJ, Xu X, Perez-Oronoz G, Wallis TR, Davis XM, Povinelli L, Cox NJ, Klimov AI. Incidence of adamantane resistance among influenza A (H3N2) viruses isolated worldwide from 1994 to 2005: a cause for concern. Lancet. 2005 Oct 1;366(9492):1175-81. Epub 2005 Sep 22.
8-Fiore AE, Shay DK, Haber P, Iskander JK, Uyeki TM, Mootrey G, Bresee JS, Cox NJ. Prevention and control of influenza. Recommendations of the Advisory Committee on Immunization Practices (ACIP), 2007. Centers for Disease Control and Prevention (CDC). MMWR Recomm Rep. 2007 Jul 13;56(RR-6):1-54.
9-European Centre for Disease Prevention and Control. Seasonal influenza information. Available from: LINK

-
------

-
(1b) [ESWI, ANTIVIRALS, SEASONAL INFLUENZA] Emergence of resistance to oseltamivir among influenza A(H1N1) viruses in Europe (http://www.eurosurveillance.org/edition/v13n05/080131_2.asp)

A Lackenby1, O Hungnes2, SG Dudman2, A Meijer3,4, WJ Paget3, AJ Hay5, MC Zambon (Maria.Zambon@HPA.org.uk)1

1. Health Protection Agency, Centre for Infection, London, United Kingdom
2. Norwegian Institute of Public Health, Oslo, Norway
3. EISS Coordination Centre, Nivel Institute, Utrecht, the Netherlands
4. National Centre for Public Health and the Environment, Bilthoven, the Netherlands
5. WHO Collaborating Centre, MRC National Institute of Medical Research, London, United Kingdom

Surveillance of the antiviral susceptibility of influenza viruses circulating in Europe has been established since 2004 through the European Union-funded European Surveillance Network for Vigilance against Viral Resistance (VIRGIL), in collaboration with the European Influenza Surveillance Scheme (EISS), the World Health Organization (WHO) and national influenza centres. Results from analysis of early winter (November 2007 – January 2008) A(H1N1) virus isolates has revealed that a significant proportion, approximately 14% of these European strains (see Table), are resistant to oseltamivir (Tamiflu), the most widely used anti-influenza drug, but retain sensitivity to zanamivir (Relenza) and amantadine/rimantadine.

As of week 03/2008, 16 European countries have reported significant influenza activity (Austria, Belgium, Bulgaria, France, Hungary, Ireland, Italy, Lithuania, Luxembourg, Northern Ireland, Poland, Portugal, Romania, Slovenia, Spain and Switzerland).

Of the total virus detections since week 40/2007 (N=3447), 81% have been influenza A and 19% influenza B, and the predominant viruses circulating in most countries have been A(H1N1) similar to the A/Solomon Islands/3/2007 vaccine strain [1].

The presence of oseltamivir-resistant viruses circulating in the community in several European countries (Denmark, Finland, France, Germany , Netherlands, Norway, Portugal, Sweden and United Kingdom) is in marked contrast to the previous winter seasons of 2004/2005, 2005/2006, and 2006/2007, when oseltamivir resistance was detected in <1% of circulating strains from 24 countries.

A total of 437 influenza A(H1N1) viruses, isolated during November 2007 to January 2008, were tested using measurement of neuraminidase (NA) enzyme activity in the presence of oseltamivir to determine the drug-sensitivity (IC50) of the viral enzyme (2) in conjunction with sequence analysis of the viral neuraminidase gene.

To date, oseltamivir-resistant viruses have been detected in nine countries (Table 1); in particular, 26 of 37 (70%) in Norway, 15 of 87(17%) in France, 3 of 43 (7.0%) in Germany and 8 of 162(5%) in the United Kingdom carry the same mutation, causing the substitution of histidine by tyrosine at residue 274 (H274Y) of the neuraminidase, which is known to confer a high level resistance to oseltamivir.

Viruses bearing this mutation, when tested in enzyme assays, showed a reduction of approximately 400 fold in susceptibility to oseltamivir (IC50 values increased from approximately 1nM to more than 400nM).

All these viruses remain sensitive to the other anti-neuraminidase drug zanamivir and to the anti-M2 drugs amantadine and rimantadine.



The resistant (H274Y) viruses have been isolated from both adults and children, ranging from 1 month to 61 years in age, with the majority of viruses being isolated from adults.

So far, there is no information that any of these viruses, in any country, has been obtained from a person who has either been treated or been in close contact with another individual who has been treated with oseltamivir.

We therefore conclude that the identification of these oseltamivir-resistant viruses as a substantial proportion of circulating viruses, particularly in Norway, is the first clear evidence that influenza A(H1N1) virus with the H274Y mutation can readily transmit between individuals.

More extensive surveillance within Europe and in other parts of the world is required to establish the relative prevalence and geographical distribution of these resistant viruses, and to evaluate their potential impact on the effectiveness of drug use.

The spectrum of clinical illness associated with infection by oseltamivir-resistant viruses remains to be fully determined, although limited information from initial clinical cases does not suggest unusual disease syndromes.

Although the resistant viruses have been isolated from November through January, the ability of these viruses to persist throughout the influenza season, and from one season to the next, will require continuous world-wide surveillance by the WHO Global Influenza Surveillance Network.

Determining the origins and genesis of these drug-resistant strains, which appear to have emerged in regions of the world where there is little drug pressure, will be important in understanding the emergence and persistence of oseltamivir resistance in relation to the evolution of influenza viruses and drug use.

Acknowledgements:

We would like thank all members of EISS laboratories for contributing viruses and data, particularly VIRGIL colleagues Dr Bruno Lina (Lyon) and Dr Sylvie van der Werf (Paris). Funding support from EU FP6 Programme for VIRGIL Contract No 503359.

References

1-European Influenza Surveillance Scheme. Increased influenza activity in Europe. EISS Weekly Electronic Bulletin 2008; 25 January 2008: 250. Available from: http://www.eiss.org
2-Methodology used for testing in vitro susceptibility of influenza viruses to oseltamivir and zanamivir was described by the Neuraminidase Inhibitor Susceptibility Network (NISN) in Wetherall et al, J Clin Microl. 2003;41;742-50. Surveillance of the antiviral susceptibility of influenza viruses circulating in Europe is supported by the EU-funded VIRGIL programme (Contract No 503359), in collaboration with EISS and the WHO.

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Last edited:
Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

my summary:

** Data from Norway indicate that these viruses were transmitted in the country.

(what does that mean ? transmitted from outside into the country ?)

** The source of these viruses is not known at present. It seems unlikely to have anything to do with antiviral use in Europe, since those drugs are very rarely used here. Specifically the resistance is not explained in the Norwegian patients by the source patients having taken any antivirals.

** Norway is still seeing H274Y this month.

(why didn't they tell us earlier ?)

** 19/148 Europe Nov.,Dec.H1N1 have H274Y:
12/16 Norway,4/19 France,2/75 UK,1/10 Denmark,0/3 Austria,0/4 Germany,
0/4 Latvia,0/5 Slovakia,0/1 Slovenia,0/11 Spain.

**none of the 12 viruses from Norway were obtained from a person who has either been treated with oseltamivir, or knew they had been in close contact with another individual treated with oseltamivir. Also none of the 12 cases report recent travel and there are no obvious epidemiological links between them

** resistance to oseltamivir typically <0.5%.
community in Japan 2005-06 had 2.2 % of 178 H1N1
(2006-7), no resistant H1N1 variants detected in Japan or Europe, <1% in USA


**resistant strains were <1% in Europe in 2004/2005, 2005/2006, and 2006/2007
this season: total resistant: 59/437, 26/37 Norway,(38/58 Norway,updated),15/87 France,
3/43 Germany,8/162 UK,7/108 Rest
3% USA,7% USA other source ,5.5/109 USA(3rd source), 10% Canada,<3% Japan

(previous data could include all flu, even H3N2 and flu-B. Only one (2007) H274Y H1N1-virus
found at genbank )
 
Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Resistant Flu Virus Detected in Europe

http://www.redorbit.com/news/health/1236913/resistant_flu_virus_detected_in_europe/
http://www.redorbit.com/modules/img...s/upload/9bc910de40a83a3b9e840a8741316a2c.JPG

European health officials have detected flu viruses resistant to Tamiflu in over a dozen European countries. The resistant strains most likely emerged elsewhere, but were first identified in Europe.

Typically, only about 1 percent of H1N1 flu viruses are resistant, but this year the data shows that 13 percent of the viruses are resistant to Tamiflu.

Resistance varies from country to country, with Italy reporting no resistant strains, and Britain, France and Denmark all reporting low but significant percentages.

The highest levels are in Norway, where nearly 70 percent of tested strains have been resistant. Health authorities are currently working to find out how prevalent the resistant strain is worldwide.

Fred Hayden, a World Health Organization (WHO) flu expert, told Associated Press, ?It's an unexpected finding and a signal worth watching."

A single mutation is responsible for the strain?s resistance. The mutated virus can still be treated with other antivirals, and it does not cause a more serious case of flu than the non-resistant viruses. However, doctors worry that if the resistance becomes widespread, Tamiflu could become a useless tool against the flu.

"If I had only a single drug to choose for influenza, oseltamivir (Tamiflu) is the one I would go for," Dr
<SCRIPT language=JavaScript> GA_googleFillSlotWithSize("ca-pub-5440138744487553", "News_Main_300x250", 300, 250);</SCRIPT>

. Angus Nicoll, influenza coordinator for the European Centre for Disease Prevention and Control, told AP.

The WHO has stockpiled Tamiflu in various countries around the world for possible use in a flu pandemic.

However, some experts have warned against relying exclusively on Tamiflu. "This is a very good reminder that we don't know what the next pandemic strain will be sensitive to," Nicoll said. "Perhaps we should have more mixed antiviral stockpiles."

Authorities say the mutated H1N1 flu virus should not be confused with a mutation of the H5N1 bird flu virus.

"The chance of this happening in an H5N1 virus is not zero, but probably very rare," said Dr. Joseph Bresee, chief of epidemiology and prevention at the U.S. Centers for Disease Control and Prevention, in an AP report. Two Tamiflu-resistant H5N1 strains have been found in Asia during the past few years.

In the United States, nearly 3 percent of tested flu samples have been Tamiflu-resistant. "We don't know right now if this is a trend on the upswing or just a small blip," Bresee said. Usually, resistant strains arise in people who have been treated with Tamiflu, but that is not the case here.

In Norway, none of the viruses were from people who had been treated with Tamiflu. And in Japan, where Tamiflu use is the highest in the world, no resistant viruses have been reported this year.

Investigations are ongoing in other countries.

Scientists worldwide are working to sequence the mutated virus to determine its origin and learn how it developed. Until now, experts believed that if viruses developed resistance, they would be less transmissible. "That assumption appears to have been incorrect," Hayden told AP.

As Europe and North America begin their flu seasons, doctors and scientists will be monitoring any potential spread of the resistant strains.

For now, public health agencies say their recommendations on Tamiflu use remain unchanged.

?It's still too early to know for sure what this means," Nicoll said. "But watch this space."

---

On the Net:

World Health Organization

Tamiflu

U.S. Centers for Disease Control and Prevention
 
Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Drug-Resistant Flu Virus on the Rise

Thursday, Jan. 31, 2008 By LAURA BLUE
<!-- Begin Article Main --><!-- Begin Tout1 -->
flu_shot_0131.jpg

<!--sridhar@MT added the following code -->An elderly patient receives a flu shot, courtesy of the city of Chicago.
Tim Boyle / Getty

This winter's most common flu strain is showing resistance to the frontline anti-flu treatment, new data shows. More than 10% of virus samples taken in Western Europe this winter were resistant to oseltamivir, better known as Tamiflu, according to figures from the European Centre for Disease Prevention and Control (ECDC). Nearly 10% of the samples in Canada were resistant too, according to national authorities there, and the U.S. found nearly 7% resistance. The number of resistant strains are still small overall, but the superbugs aren't evenly distributed around the world: In Norway, a staggering 75% of the 16 samples taken this winter were drug-resistant — enough to pull up Western Europe's average by about 8 percentage points.
<!-- Begin Article Side Bar --><!--sridhar@MT added the following condition for 1qns on 13th Oct, 2007--><!--sridhar@MT code end --><!-- Begin Article Side Bar Copy --><!--sridhar@MT added the following condition for 10qns on 12th Oct, 2007-->
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<!-- End Article Side Bar -->All the samples are from a strain of flu virus known as H1N1, a subtype of the influenza A virus: the regular run-of-the-mill seasonal flu, not the dreaded H5N1 avian flu that's prompted countries around the world to stockpile tens of millions of doses of Tamiflu. So how worried should people be about the prospect of drug-resistant strains of influenza A? Only modestly, says World Health Organization spokeswoman Sari Setiogi in Geneva. "Influenza A has been circulating for many years. It's not likely to cause a pandemic," she says. The patients who gave samples for the European study all showed only mild symptoms. What's more, just because a flu bug has adapted to survive drug treatment, it doesn't mean the bug is necessarily more dangerous to humans. In fact, lab studies suggest that Tamiflu-resistant flu viruses may be less infectious.
In the end, the most troubling thing about the ECDC study was the 75% resistance rate found in Norway. Like doctors elsewhere in Western Europe — and in the U.S. and Canada — Norwegians don't routinely prescribe Tamiflu to their patients. (Tamiflu is not a flu vaccine, but a post-exposure treatment that helps prevent the virus from spreading within the body, and reduces symptoms.) They just tell them to get some rest and drink plenty of fluids. It's a bit of a mystery, then, why so many of Norway's samples are drug-resistant. In theory, viruses should develop resistance to drugs the same way bacteria do: through evolution. Since organisms with drug-resistant traits are better able to withstand contact with the drugs, they survive long enough to replicate and pass their traits to the next generation. With repeated exposure, a population will become increasingly resistant, with a larger and larger proportion of the organisms showing the protective attributes. Already, U.S. health authorities recommend against using two other flu antivirals, amantadine and rimantadine (sold as Symmetrel and Flumadine, respectively), due to concerns that influenza A has become resistant. But, so far, Tamiflu resistance doesn't seem to be following the logical path. In Japan, Tamiflu prescriptions are commonplace, but researchers there continue to report low levels of drug-resistance: less than 3% this season and last.
One thing is certain. The news won't help Roche Holding AG, the Swiss holding company for Tamiflu manufacturer Hoffman-La Roche. Tamiflu sales dropped off sharply in the second half of 2007, Roche announced this week. But the main reason wasn't drug-resistance; it was simply a saturated market. As countries meet their targets for an anti-flu-pandemic Tamiflu stockpile, global demand for the drug is tapering off. For now, at least, those national stockpiles still offer an advantage: To date, the H5N1 bird flu shows only limited resistance to the drug.

http://www.time.com/time/health/article/0,8599,1708867,00.html
 
Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Tamiflu-Resistant Flu Found in Nine European Nations (Update1)

By Jason Gale

Feb. 1 (Bloomberg) -- Influenza strains resistant to Roche Holding AG's Tamiflu were found in a samples from five more countries, indicating the mutant bug is more widespread than health officials reported earlier this week.

Tests on 437 virus specimens from patients with the H1N1 flu strain in 18 countries found 59 that harbored resistance to the pill, the European Centre for Disease Prevention and Control said in a statement yesterday. Resistant viruses were found in nine European countries, with Norway accounting for almost half.

Emerging resistance to Tamiflu, also known as oseltamivir, has led doctors to consider GlaxoSmithKline Plc's Relenza and other treatments for a disease the World Health Organization estimates causes 250,000 to 500,000 deaths globally each year. Experts are assessing the significance of the data and will release an interim assessment in the coming days, ECDC said.

``At this stage, it is impossible to say what the level of resistance is in influenza across Europe,'' the Stockholm-based health agency said. ``However from the limited data, the proportion of influenza viruses exhibiting resistance to oseltamivir must be significant, but not as high as in Norway.''

The H1N1 viruses identified in Europe that aren't susceptible to Tamiflu carry a so-called H274Y gene mutation that confers ``high-level resistance,'' Frederick Hayden, a researcher with the WHO's Global Influenza Program in Geneva, said in a Jan. 28 interview.

U.S. Strains

Of 109 H1N1 viral samples tested in the U.S. during the 2007-2008 flu season, 5.5 showed the same resistance-inducing mutation, according to the Centers for Disease Control and Prevention in Atlanta.

Recent tests on samples from Europe found viruses with the H274Y mutation in Germany, Netherlands, Portugal, Sweden and Finland, scientists from the U.K.'s Health Protection Agency said in a report published yesterday in Eurosurveillance, a newsletter on communicable diseases.

Earlier sampling found the mutant strain in France, the U.K., Denmark, France and Norway, the ECDC said in a Jan. 27 risk assessment report. Of 37 samples from Norway tested, 26 harbor resistance, the agency said yesterday.

``The oseltamivir resistance investigation is still in its early stages,'' researchers from the ECDC's Influenza Project Team wrote in a separate report in yesterday's Eurosurveillance. ``A more accurate picture will only emerge when many more specimens have been tested and more epidemiological information is available.''

Tests so far show that the mutated viruses are susceptible to Relenza and an older class of antiviral drugs known as adamantanes, the researchers said. There's insufficient evidence for authorities to consider changes to clinical guidelines, the researchers said.

No More Virulent


People who become ill with the Tamiflu-resistant H1N1 strain don't appear to become any more sick than people infected with ``normal'' seasonal flu, ECDC said.

Tamiflu, which generated 2.09 billion francs ($1.9 billion) in sales for Basel, Switzerland-based Roche in 2007, is the company's fifth-best-selling drug. Relenza, an inhaled medicine, had sales of 91 million pounds ($181 million) in 2006 for London-based Glaxo.

The medicines are being stockpiled by the Geneva-based WHO and governments around the world for use in the event of a pandemic, and to treat the H5N1 avian flu strain that's spread to more than 60 countries, infecting people in 14 of them.

The H5N1 bird flu strain could trigger a global outbreak if it adopts some of the characteristics of seasonal flu that enable it to be spread easily through coughing and sneezing.

To contact the reporter on this story: Jason Gale in Singapore at j.gale@bloomberg.net

Last Updated: February 1, 2008 00:53 EST



http://www.bloomberg.com/apps/news?pid=20601102&sid=augKlqXymSj8
 
Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

I assume that travelors are more likely to treat their flu with Tamiflu,
thus contributing to resistance-selection.

Can we test the blood for Tamiflu on airports ?
Or make Tamiflu reportable and do occasional tests with penalty on non-reporting.
Reported people with Tamiflu are being controlled for virus-shedding
with household-quarantine or such in case of resistant viruses.
 
Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

I assume that travelors are more likely to treat their flu with Tamiflu,
thus contributing to resistance-selection.

Can we test the blood for Tamiflu on airports ?
Or make Tamiflu reportable and do occasional tests with penalty on non-reporting.
Reported people with Tamiflu are being controlled for virus-shedding
with household-quarantine or such in case of resistant viruses.

Please.

It has been noted multiple times now that the patients with H274Y in H1N1 were NOT treated with Tamiflu.

If you have data to support Tamiflu treatment, post it.
 
Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

See post #43, 1b), paragraph 10.
 
Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

not the patients where the mutation was found,
but maybe those where that mutation first appeared
and who then did spread it to others.

Do we (or the experts) believe, that Tamiflu usage didn't contribute
to this ? That is not yet clear to me.

The airport question is also (hypothetically) interesting/important in a pandemic.


"Determining the origins and genesis of these drug-resistant strains, which appear to have emerged in regions of the world where there is little drug pressure, will be important in understanding the emergence and persistence of oseltamivir resistance in relation to the evolution of influenza viruses and drug use. "

so there could be a relation between drug use and emergence and resistence of H274Y,
they are not sure about it ?!
 
Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

we observe H1N1-evolution since 90 years and this is the first time
that we have a significant portion of H274Y.
Tamiflu had been in widespread use since only some years.
Coincidence ?

I think this is the first time with 2-3 consecutive H1N1-seasons (?)
(I will have to check..)
 
Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

how was it with Amantadine ?
I remember that widespread resistance had been commonly attributed to
drug usage. Although I couldn't quickly find this now in papers
or articles (?!)


OK, here some excerts of what I found about Amantane-resistance:
(note that resistance in H1N1 is not so high )



http://www.ncbi.nlm.nih.gov/pubmed/...ez.Pubmed.Pubmed_ResultsPanel.Pubmed_RVDocSum
Amantadine has been found to have an efficacy of 50 to 90% prevention of illness. However amantadine-resistant viruses have been recovered approximately 30% patients treated with amantadine, as early as 2-3 days into treatment.

http://www.ncbi.nlm.nih.gov/pubmed/...ez.Pubmed.Pubmed_ResultsPanel.Pubmed_RVDocSum
Clinical samples from 15 amantadine-treated children were collected serially-before, during, and/or after treatment-and were studied to determine the actual prevalence, timing, and clinical implications of M2 mutational events.
5 Amantadine-resistance mutations were found in 12 of 15 children,
and 9 patients had >1 (2-4) mutant virus.
6 patients with at least 4 serial samples.


A systematic review of 20 comparative randomised trials involving about 2500 healthy people showed that amantadine reduced the frequency of flu-like syndromes by about 7% in absolute terms (26.3% versus 33.1% with placebo). Zanamivir and oseltamivir have only been shown to reduce the frequency of serologically confirmed episodes of influenza (0.4% to 2.5%, compared to 4.4% to 14.9% with placebo).

http://content.nejm.org/cgi/content/abstract/307/10/580
450 volunteers participated in a placebo-controlled, double-blind, randomized trial of the prophylactic effects of rimantadine and amantadine during an outbreak of influenza A. The subjects received drugs orally at a dose of 100 mg twice a day for six weeks. Influenza-like illness occurred in 41 per cent of the subjects receiving placebo but in only 14 per cent of those receiving rimantadine and 9 per cent of these receiving amantadine (P less than 0.001 for either drug vs. placebo). Laboratory-documented influenza occurred in 21 per cent of placebo recipients, 3 per cent of rimantadine recipients, and 2 per cent of amantadine recipients (P less than 0.001). These findings represent efficacy rates of 85 per cent for rimantadine and 91 per cent for amantadine, as compared with placebo. More recipients of amantadine (13 per cent) than recipients of rimantadine (6 per cent; P less than 0.05) or placebo (4 per cent; P less than 0.01) withdrew from the study because of central-nervous-system side effects. On the basis of this study, rimantadine appears to be the drug of choice for the prophylaxis of influenza A.



A comprehensive analysis of influenza strains indicated that 96 percent
of the H3N2 strains as well as 15 percent of the H1N1 viruses currently
circulating worldwide are amantadine resistant.

http://jama.ama-assn.org/cgi/content/full/295/8/891
A total of 209 influenza A(H3N2) viruses isolated in 2006/6 from patients in 26 states were screened, of which 193 (92.3%) contained a change at amino acid 31 (serine to asparagine [S31N]) in the M2 gene known to be correlated with adamantane resistance. Two of 8 influenza A(H1N1) viruses contained the same mutation. Drug-resistant viruses were distributed across the United States.

increase in resistance from below 2% in 1995-2002 to 12.3% in 2004.15 In the United States, the frequency of resistance increased significantly from 1.9% in 2004 to 14.5% during the first 6 months of the 2004-2005 influenza season (October 2004 through March 2005).15 The rate of resistance in the United States for the entire 2004-2005 season was 11% (R.A.B., CDC, unpublished data, 2006).

Canada recently reported that among H3N2 isolates tested for the 2005-2006 influenza season, 43 of 47 (91%) contained this same mutation, showing that adamantane-resistant influenza viruses are circulating in other regions of North America.16 In addition, preliminary and limited data indicate that the rate of resistance for the 2004-2005 influenza season continued to increase over the previous report for some counties in Asia (China, 96%; Hong Kong, 72%; South Korea, 36%; Singapore, 42%) (R.A.B., CDC, unpublished data, 2006)
 
Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

From previous posts:
"... Dr. Frank Plummer, said, noting the resistance mutation spotted in the Winnipeg testing is the same one that has been reported over the past few days from Norway, several other European countries and the United States. <!-- CPPara3End-->
Eight of 81 H1N1 viruses tested carry the H274Y mutation - one each from British Columbia and Newfoundland and Labrador, and six from Ontario. Plummer said that total includes one virus (from British Columbia) recovered from a child who is believed to have been infected in Sudan.
His surprise is shared by experts with the World Health Organization's Global Influenza Program, which convened a teleconference of about 50 scientists from leading influenza laboratories around the world Tuesday to try to get a handle on how far this virus has spread, how common it is in places where it is being found and what is driving the spread. ..."

I shall suggest that any of FT's try to drag here some results of the (terminated) 50 world top scientists teleconference meeting about this matter.
 
Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

seems that peramivir won't work for H274Y either,
hattip to miso:

http://aac.asm.org/cgi/content/full/48/12/4542
The peramivir-selected variant had a H274Y mutation in the neuraminidase (NA) gene conferring resistance
to peramivir and oseltamivir but susceptibility to zanamivir.
 
Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

WHO reports Tamiflu-resistant flu in U.S., Canada

Fri 1 Feb 2008, 13:58 GMT
<INPUT id=CurrentSize type=hidden value=13 name=CurrentSize>
[-] Text [+]

(Adds details on Canada in first and fifth paragraphs)
By Stephanie Nebehay
GENEVA, Feb 1 (Reuters) - The main flu virus circulating in the United States and Canada has shown "elevated resistance" to the antiviral drug Tamiflu, in line with findings in parts of Europe, the World Health Organisation (WHO) said on Friday.
The United Nations agency said it was too early to know what potential there may be for increased Tamiflu resistance in H5N1 avian influenza. It did not change its recommendation that Tamiflu be used to treat human cases of bird flu.
A number of governments have been stockpiling Tamiflu, made by Switzerland's Roche Holding Ag and Gilead Sciences Inc of the United States, for use as a first line of defence in case bird flu sparks a human influenza pandemic.
The WHO said it was investigating the extent of resistance worldwide to Tamiflu, known generically as oseltamivir, in some seasonal H1N1 flu viruses that have a mutation making them "highly resistant."
The U.S. Centers for Disease Control and Prevention has reported a five percent prevalence of resistance to Tamiflu in samples of H1N1 virus tested to date. In Canada, 8 out of 81 samples showed resistance -- more than a 10 percent resistance rate, WHO spokeswoman Sari Setiogi said.
"These preliminary data indicate that oseltamivir resistance in H1N1 viruses is geographically variable but not limited to Europe," the WHO said in a statement.
A preliminary survey issued by the European Centre for Disease Control (ECDC) this week said that of 148 samples of influenza A virus isolated from 10 European countries during November and December, 19 showed signs of resistance to Tamiflu.
Of 16 samples from Norway, 12 tested positive for resistance against Tamiflu, according to the ECDC study.
The new "elevated resistance to oseltamivir" appears limited to seasonal H1N1 viruses, and does not involve H3N2 or influenza B viruses which are also circulating, the WHO said.
"This means that oseltamivir would most likely be ineffective for treating or preventing infections caused by these resistant H1N1 strains, although the drug will be effective against other influenza virus infections," it added.
The WHO said it was contacting national health authorities to determine the extent of resistance to the drug. Neither Japan -- where Tamiflu is widely prescribed for seasonal flu -- nor Hong Kong had seen increased resistance to date, it said.
Past studies had found Tamiflu resistance rates ranging from zero to 0.5 percent, according to the U.N. agency.
"The frequency of oseltamivir resistance in H1N1 viruses in the current influenza season is unexpected and the reason why a higher percentage of these viruses are resistant is currently unknown," the WHO said.
Tamiflu has been proposed for treating H5N1 bird flu in humans. Health experts fear that virus, which now mainly affects poultry, could mutate into a form that spreads easily among people and trigger a deadly pandemic. (Reporting by Stephanie Nebehay, editing by Keith Weir)

http://africa.reuters.com/commodities/news/usnL0133927.html
 
Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

how do you know ? They were uploaded 09.Jan.2008

A/Hawaii/21/2007 , submitted Jan.09,2008 (HA -Jan.06,2008)
A/Hawaii/28/2007 , submitted Jan.09,2008 (HA : Jan.06,2008)
A/Hawaii/28/2007 (same ?)
A/Massachusetts/05/2007 , only HA available, "Oseltamivir resistant" , HA submitted Aug.08,2008
A/Minnesota/23/2007 , submitted Jan.09,2008
A/Texas/31/2007 , submitted Oct.30,2007 (HA : Oct.30,2007)
A/Kansas/UR06-0104/2007 , submitted 18.Oct.2007 , collected 30.Jan.2007


BTW A/Texas/12/2007(H3N2) was also Oseltamivir resistant

hmm, Hawaii is 20? N, same as Hongkong,Taiwan,Okinawa
and has maybe not much seasonality.
A/Texas/12/2007(H3N2) is Adamantane resistant

ANTIGEN_CHARACTER: A/WISCONSIN/67/2005-LIKE
PASSAGE_DETAILS: X/C2
COMMENTS: Adamantane Resistant

http://flu.lanl.gov/search/view_record.html?accession=ISDN257663&database=fluA

It does not have H274Y.

Why do you think it is Oseltamivir resistant?
 
Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

seems that peramivir won't work for H274Y either,
hattip to miso:

http://aac.asm.org/cgi/content/full/48/12/4542
The peramivir-selected variant had a H274Y mutation in the neuraminidase (NA) gene conferring resistance
to peramivir and oseltamivir but susceptibility to zanamivir.



The article link you provide does not even mention peramivir or oseltamivir.

Your conclusion that peramivir and zanamivir won't work fo r H274Y is based on what?????
 
Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

Re: :::Emergence of seasonal influenza viruses type A/H1N1 with:::

A/Texas/12/2007(H3N2) is Adamantane resistant

ANTIGEN_CHARACTER: A/WISCONSIN/67/2005-LIKE
PASSAGE_DETAILS: X/C2
COMMENTS: Adamantane Resistant

http://flu.lanl.gov/search/view_record.html?accession=ISDN257663&database=fluA

It does not have H274Y.

Why do you think it is Oseltamivir resistant?

they say so here:
http://flu.lanl.gov/search/view_record.html?accession=ISDN256028&database=fluA
 
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