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Manikganj man dies from Nipah virus infection, first in Bangladesh this year

Shiloh

Editor, Senior Moderator
Source: https://bdnews24.com/health/i74x2o7yjs

Manikganj man dies from Nipah virus infection, first in Bangladesh this year
The death comes nearly one and a half months after the government issued a warning for the deadly virus this winter
Senior Correspondentbdnews24.com
Published : 28 Jan 2024, 08:29 AM
Updated : 28 Jan 2024, 08:29 AM

A Nipah virus patient from Manikganj has died in hospital care in Dhaka, the first fatality from the disease reported in Bangladesh this year.

The patient, Babul Hossain, was admitted to Manikganj Sadar Hospital on Jan 16 and then transferred to Popular Hospital in Dhaka when his condition deteriorated, Manikganj Civil Surgeon Dr Moazzem Ali Khan Chowdhury said on Sunday.

The private hospital sent his samples to the Institute of Epidemiology, Disease Control and Research and the test results turned positive on Jan 24.

Babul, a native of Sadar Upazila’s Putail village, died after he was transferred again to Infectious Diseases Hospital on Saturday, Dr Moazzem said.

Dr Mizanur Rahman, the superintendent of the Infectious Diseases Hospital, and Dr Tahmina Shirin, the director at the IEDCR, also confirmed Babul’s death from Nipah virus infection...


 
Bangladesh: Media Reports Of Two Nipah Deaths

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Nipah Epi Curve In Bangladesh (2001-2023)


#17,885

Last spring, after seeing a decline in Nipah cases for the previous 7 years (see IEDCR chart above), Bangladesh reported a significant uptick (14 cases, 10 deaths) in the disease. We also saw an outbreak in Kerala, India in September of last year (see Kerala: Media Reports 5th Confirmed Nipah Case - Awaiting Test Results On 11 Others).

Carried by fruit bats, Nipah outbreaks often occur in Bangladesh between December and May - which is date palm sap harvesting season - as infected bats like to roost at night at the top of date palm trees, and collection containers can become contaminated with bat saliva and feces.
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Date Palm Sap Collection – Credit FAO

There are other routes of infection, as we saw in Malaysia in 1998 when the virus spread first from bat to pigs - and then from pigs to humans - eventually infecting at least 265 people, killing 105 (see Lessons from the Nipah virus outbreak in Malaysia).

Human-to-human transmission has also been reported, as in India in 2018 (see Nipah Transmission In Kerala Outbreak) where we saw apparently robust household and nosocomial transmission of the virus in Southern India, eventually infecting 19 people.​

While the IEDCR hasn't updated its website/dashboard as of this writing, overnight there are numerous Bangladeshi media reports of two recent Nipah deaths. One such example comes from The Business Post, which describes 2 men (ages 38 and 27) who fell ill after consuming raw date juice, with both dying in a Dhaka hospital.
Nipah virus: 2 patients from Manikganj die in Dhaka

TBP Desk
29 Jan 2024 11:51:27 | Update: 29 Jan 2024 12:14:16

Two people from Manikganj, who were infected with Nipah virus after consuming raw date juice, died in Dhaka while undergoing treatment.

Given the limits of testing and surveillance, it is likely that some number of cases in Bangladesh, and in neighboring countries, go unidentified each year, as the geographic range of the fruit bat that carries the virus is quite large (see map below).





Outbreaks in humans since the virus was first identified in the late 1990s have tended to be sporadic, and small - with the Malaysian outbreak (1998-1999) being the largest. But in the 2013 paper The pandemic potential of Nipah virus, the author Stephen P. Luby wrote (bolding mine):

Characteristics of Nipah virus that increase its risk of becoming a global pandemic include:

  • humans are already susceptible; many strains are capable of limited person-to-person transmission;
  • as an RNA virus, it has an exceptionally high rate of mutation
  • and that if a human-adapted strain were to infect communities in South Asia, high population densities and global interconnectedness would rapidly spread the infection.
After the 2018 outbreak in Kerala, India, concerns over larger, urban outbreaks of the virus have increased (see Enhancing preparation for large Nipah outbreaks beyond Bangladesh: Preventing a tragedy like Ebola in West Africa by Halsie Donaldson, Daniel Lucey).

Whether Nipah has - or will ever accrue - the `right stuff' to pose a genuine pandemic threat is unknowable, but it 2019 it ranked #20 in the CDC's list of Zoonotic concerns, well ahead of MERS-CoV (#27) and Mpox (#29).​

Also in 2019 the WHO published their List Of Blueprint Priority Diseases, detailing 8 disease threats in need of urgent accelerated research and development. And Nipah, along with its Australian cousin Hendra, were among them.

Almost exactly a year ago, in EID Journal: Nipah Virus Exposure in Domestic and Peridomestic Animals Living in Human Outbreak Sites, Bangladesh, 2013–2015, we looked at a dispatch that described the detection of NiV antibodies in cattle, dogs, and cats in proximity to known outbreaks in humans

While Nipah remains more of a regional concern than a global threat, each new human infection and every spillover event provides the virus with another opportunity to better adapt to a new host.​

A reminder that while we continue to struggle with COVID, the next global health crisis may already be simmering in a bat, a rat, or a cat somewhere in the world, just waiting for the right conditions to allow it to start its world tour.

https://afludiary.blogspot.com/2024/01/bangladesh-media-reports-of-two-nipah.html
 
Nipah virus infection - Bangladesh

27 February 2024

Situation at a Glance

Outbreaks of Nipah virus (NiV) infection are seasonal in Bangladesh, with cases usually occurring annually between December and April corresponding with the harvesting and consumption of date palm sap. Since 1 January and as of 9 February 2024, two laboratory-confirmed cases of NiV have been reported from the Dhaka division of Bangladesh. Both cases have died. WHO assesses the overall risk at the national levels to be moderate due to the severity of the disease, the limitation of treatment, the shared natural habitat of bats and zoonotic transmission partners, and the fact that there are no licensed vaccines to prevent NiV infection.


Description of the Situation

On 30 January and 7 February 2024, the Bangladesh National Focal Point (NFP) for the International Health Regulations (IHR) notified the World Health Organization (WHO) of two epidemiologically unlinked cases of NiV infection.

First case confirmed on 21 January 2024

The first patient is a 38-year-old male from Manikganj district, Dhaka division. The patient developed a fever followed by respiratory distress, restlessness, and insomnia on 11 January 2024 and was admitted to a local hospital on 16 January. He was transferred to the intensive care unit of a hospital in Dhaka City on 18 January where he was intubated due to worsening of symptoms.

On 21 January, blood and throat samples were collected and the patient tested positive by reverse transcription polymerase chain reaction (RT-PCR) for NiV RNA from the throat sample and by enzyme-linked immunosorbent assay (ELISA) for anti-NiV Immunoglobulin M (IgM) from serum. On 27 January, the case was transferred to another hospital in Dhaka city, where he died on 28 January.

The case had a history of consuming raw date palm sap on 31 December 2023. As of 30 January 2024, a total of 91 contacts had been identified, including 11 family members, 20 from the community, and 60 healthcare personnel from different hospitals. However, none of the contacts tested positive for NiV by PCR or anti-NiV IgM by ELISA.

Second case confirmed on 31 January 2024

The second patient is a three-year-old female from Shariatpur district, Dhaka division. The patient visited a healthcare facility on 30 January 2024 with a two-day history of fever, altered consciousnesses, and seizures. The case was diagnosed with encephalitis and shock and was transferred to the isolation ward of another hospital in Dhaka city on the same day. Blood and throat samples were collected on 30 January and on 31 January, the case was laboratory-confirmed with NiV infection by RT-PCR for NiV RNA from the throat sample and by ELISA for anti-NiV IgM from serum and died on the same day.

The case had a history of regularly consuming fresh raw date palm sap. As of 7 February 2024, 67 contacts were identified, including three family members, 21 from the community and 46 healthcare personnel from different hospitals. All identified contacts tested negative for NiV by PCR or anti-NiV IgM by ELISA.

Since the report of the first case in 2001, human infections have been reported almost every year, with case fatality rate varying between 25% (in 2009) and 92% (in 2005) (Figure 1). Clusters of cases are mainly reported in the country’s central and northwest districts.

Figure 1. Number of reported Nipah virus cases and deaths by year, 1 January 2001 – 9 February 2024, Bangladesh.



Epidemiology


NiV infection is a bat-borne zoonotic disease transmitted to humans through infected animals (such as bats or pigs) or food contaminated with saliva, urine and excreta of infected animals. It can also be transmitted directly from person to person through close contact with an infected person (although less common). Fruit bats or flying foxes (Pteropus species) are the natural hosts for Nipah virus.

The incubation period is believed to range from 4 to 14 days. However, an incubation period of up to 45 days has been reported. Laboratory diagnosis of a patient with a clinical history of NiV infection can be made during the acute and convalescent phases of the disease by using a combination of tests. The main tests used are RT-PCR from bodily fluids and antibody detection via ELISA.

NiV infection in humans causes a range of clinical presentations including acute respiratory infection and fatal encephalitis. Further information about NiV infection can be found here.

The case-fatality rates in outbreaks across Bangladesh, India, Malaysia, and Singapore typically range from 40% to 100%, depending on local capabilities for early detection and clinical management. Although antivirals are in development, there are no licensed vaccines or therapeutics available for the prevention or treatment of NiV infection.

Public Health Response


The following public health response has been implemented by the government of Bangladesh and WHO:
  • Nationwide awareness and health education activities are ongoing through print and electronic media, including distribution of posters and leaflets in the endemic districts.
  • Risk communication activities engaging government officials, physicians, preachers, and farmers are ongoing. As of 31 January, these have been completed in Rajshahi, Jashore, Madaripur and Rajbari districts.
  • WHO is working with the counterparts to strengthen surveillance, infection, prevention and control (IPC), risk communication, prompt diagnosis and management of infected patients.
  • One Health Partners (Department of Livestock, Bangladesh Livestock Research Institute, Department of Forest, icddr,b) have been sensitized and engaged. Printed leaflets with health education messages have been produced.
WHO Risk Assessment


WHO assesses the overall risk at the national level to be moderate due to following reasons:
  • The case fatality rate from NiV infection is high. Initial signs and symptoms of Nipah virus infection are non-specific, and the diagnosis is often not suspected at the time of presentation. This can hinder accurate diagnosis and creates challenges in outbreak detection, effective and timely infection control measures, and outbreak response activities.
  • There are currently no specific drugs or vaccines available for NiV infection although WHO has identified Nipah as a priority disease for the WHO Research and Development Blueprint. Intensive supportive care is recommended to treat severe respiratory and neurologic complications.
  • There is continued consumption of raw date palm sap by the community despite ongoing efforts for risk communication and community engagement to address food safety and risks to health.
  • Despite these risk criteria, strong public health measures are in place to detect and control outbreaks including through the use of hospital-based systematic human NiV infection surveillance system which has been in place since 2006, and the utilization of the National Rapid Response Team (NRRT) at the central level and the Rapid Response Team (RRT) at the district level.
WHO assesses the risk at the regional level to be moderate. Although Bangladesh borders India and Myanmar, currently affected districts do not share an international land border. While there have not been any instances of cross-border transmission previously, this risk remains given the shared ecological corridor for the virus natural host (Pteropus bats) and occurrence among domestic animals and humans previously in both Bangladesh and India. India, however, has experience of controlling previous outbreaks of NiV infection.

WHO assesses the risk at the global level to be low, as there have been no previous confirmed cases outside Bangladesh, India, Malaysia, and Singapore.

WHO Advice


In the absence of a vaccine or licensed treatment available for Nipah virus disease, the key to reducing or preventing infection is by strengthening early detection surveillance and contact tracing, raising awareness of the risk factors and supporting people with measures they can take to reduce exposure to the NiV. Case management should focus on the delivery of timely supportive care and be supported by a good laboratory system. Intensive supportive care is recommended to treat severe respiratory and neurologic complications.

Public health educational messages should focus on:
  • Reducing the risk of bat-to-human transmission

    Efforts to prevent transmission should first focus on decreasing bat access to date palm sap and other fresh food products. Freshly collected date palm juice should be boiled, and fruits should be thoroughly washed and peeled before consumption. Fruits with signs of bat bites should be discarded. Areas where bats are known to roost should be avoided.
  • Reducing the risk of animal-to-human transmission
    Natural infection in animals has been described in farming pigs, horses, and domestic and feral cats. Gloves and other protective clothing should be worn while handling sick animals or their tissues, and during slaughtering and culling procedures. As much as possible, people should avoid being in contact with infected pigs. In endemic areas, when establishing new pig farms, considerations should be given to presence of fruit bats in the area and in general, pig feed and pig sheds should be protected against bats when feasible.
  • Reducing the risk of human-to-human transmission
    Close unprotected physical contact with NiV-infected people should be avoided. Regular hand washing should be carried out after caring for or visiting sick people.
  • Controlling infection in health care settings 

    Health care workers caring for patients with suspected or confirmed infection, or handling their specimens, should implement standard infection control precautions at all times. As human-to-human transmission has been reported, particularly in health-care settings, contact and droplet precautions should be used along with standard precautions. Airborne precautions may be required in certain circumstances.  Samples taken from people and animals with suspected NiV infection should be handled by trained staff working in suitably equipped laboratories. 
WHO does not recommend any travel and/or trade restrictions toward Bangladesh based on the currently available information.​

https://www.who.int/emergencies/disease-outbreak-news/item/2024-DON508
 
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