:tiphat: to GS for helping gather these studies
Stress and cancer:
The body responds to stress by releasing stress hormones, such as epinephrine (adrenaline) and cortisol (hydrocortisone). Stress hormones increase blood pressure, heart rate, and blood sugar levels. Small amounts of stress are believed to be beneficial, but chronic (persisting or progressing over a long period of time) high levels of stress are thought to be harmful.
More recent research with animal models suggests that the body?s neuroendocrine response (release of hormones into the blood in response to stimulation of the nervous system) can directly alter important processes in cells that help protect against the formation of cancer, such as DNA repair and the regulation of cell growth.
Scientists have suggested that the effects of stress on the immune system may in turn affect the growth of some tumors. However, recent research using animal models indicates that the body?s release of stress hormones can affect cancer cell functions directly.
http://www.cancer.gov/cancertopics/factsheet/Risk/stress
Experimental stress in inflammatory rheumatic diseases: a review of psychophysiological stress responses
Sabine JM de Brouwer,1 Floris W Kraaimaat,1 Fred CGJ Sweep,2 Marjonne CW Creemers,3 Timothy RDJ Radstake,3 Antoinette IM van Laarhoven,1 Piet LCM van Riel,3 and Andrea WM Evers1
In summary, this review shows that there is limited evidence that autonomic and neuroendocrine function is altered after physical or psychological stress in patients with inflammatory rheumatic diseases compared with healthy subjects. In contrast, there is evidence that immune function is altered by stress in a manner specific to different rheumatic diseases, and thus real-life stressors could contribute to the maintenance or exacerbation of rheumatic diseases.
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2911873/?tool=pmcentrez
Psychological Stress and the Human Immune System: A Meta-Analytic Study of 30 Years of Inquiry
Suzanne C. Segerstrom and Gregory E. Miller
Acute stressors (lasting minutes) were associated with potentially adaptive upregulation of some parameters of natural immunity and downregulation of some functions of specific immunity. Brief naturalistic stressors (such as exams) tended to suppress cellular immunity while preserving humoral immunity. Chronic stressors were associated with suppression of both cellular and humoral measures
In contrast, studies of vulnerable populations such as people with HIV have shown changes in immunity to predict disease progression (Bower et al., 1998).
For example, chronic stressors reliably diminish the immune system?s capacity to produce antibodies following routine influenza vaccinations (see Table 7). Yet as far as we are aware, none of these studies has tracked illness to explore whether stress-related disparities in vaccine response might be sufficient to heighten susceptibility to clinical infection with influenza.
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1361287/
Enhancing versus Suppressive Effects of Stress on Immune Function: Implications for Immunoprotection and Immunopathology
Firdaus S. Dhabhar
Stress has long been suspected to play a role in the etiology of many diseases, and numerous studies have shown that stress can be immunosuppressive and hence may be detrimental to health. Moreover, glucocorticoid stress hormones are widely regarded as being immunosuppressive, and are used clinically as anti-inflammatory agents.
However, studies have shown that the acute stress response may play a critical adaptive and protective role, with stress hormones and neurotransmitters preparing the immune system for potential challenges (e.g. wounding or infection) that are perceived by the brain (e.g. the detection of predator or attacker).

http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2790771/?tool=pmcentrez
The effect of stress on the defense systems
D Dragos and MD Tansescu
Acute stress increases resistance to infection. The alteration of this mechanism in chronically stressed people impairs the organism's ability to mount a strong immune response with a resultant increase in morbidity. Acute stress induces a probable sympatho?adrenergically mediated increase in chemotaxis and adhesion molecules expression, thus promoting immune cells migration to sites of infection and/or inflammation, while chronic stress impairs this mechanism. Protracted stressful conditions decrease NK cytotoxic capacity. There is a substance P, which under stressful circumstances mediates the increase in macrophage cytokine production. Acute stress increases T cell mobilization through a beta2?adrenergically mediated process, which is blunted during chronic stress. Psychological stress impairs the immune system's ability to produce antibodies in response to a vaccine, thereby making the organism more vulnerable to infections.
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3019042/?tool=pmcentrez
Modern approaches to understanding stress and disease susceptibility: A review with special emphasis on respiratory disease
Palok Aich, Andrew A Potter, and Philip J Griebel
(Discussion on Stress and disease, Stress and viral infection, Stress and immunity, Mechanism of stress-induced infection susceptibility, etc.)
There are reports which have shown direct connections between stress and immune system function. Similarly, other studies have shown that social stressors could also increase the risk for upper respiratory infection. A viral challenge study provides the strongest evidence for a link between stress and susceptibility to the common cold. Other studies have extended these results by considering a wider range of psychosocial factors.
Human subjects under high stress were shown to be more susceptible to infection with common cold viruses. Furthermore, a diversity of experimental animal models confirmed that laboratory stressors such as forced exercise, avoidance learning, restraint, isolation and cold exposure made animals more susceptible to primary infection with a variety of viruses and bacteria.
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2840576/?tool=pmcentrez
*********************************
Numerous other studies on this subject at PubMed
http://www.ncbi.nlm.nih.gov/pmc/?term=stress+and+the+immune+system
Stress and cancer:
The body responds to stress by releasing stress hormones, such as epinephrine (adrenaline) and cortisol (hydrocortisone). Stress hormones increase blood pressure, heart rate, and blood sugar levels. Small amounts of stress are believed to be beneficial, but chronic (persisting or progressing over a long period of time) high levels of stress are thought to be harmful.
More recent research with animal models suggests that the body?s neuroendocrine response (release of hormones into the blood in response to stimulation of the nervous system) can directly alter important processes in cells that help protect against the formation of cancer, such as DNA repair and the regulation of cell growth.
Scientists have suggested that the effects of stress on the immune system may in turn affect the growth of some tumors. However, recent research using animal models indicates that the body?s release of stress hormones can affect cancer cell functions directly.
http://www.cancer.gov/cancertopics/factsheet/Risk/stress
Experimental stress in inflammatory rheumatic diseases: a review of psychophysiological stress responses
Sabine JM de Brouwer,1 Floris W Kraaimaat,1 Fred CGJ Sweep,2 Marjonne CW Creemers,3 Timothy RDJ Radstake,3 Antoinette IM van Laarhoven,1 Piet LCM van Riel,3 and Andrea WM Evers1
In summary, this review shows that there is limited evidence that autonomic and neuroendocrine function is altered after physical or psychological stress in patients with inflammatory rheumatic diseases compared with healthy subjects. In contrast, there is evidence that immune function is altered by stress in a manner specific to different rheumatic diseases, and thus real-life stressors could contribute to the maintenance or exacerbation of rheumatic diseases.
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2911873/?tool=pmcentrez
Psychological Stress and the Human Immune System: A Meta-Analytic Study of 30 Years of Inquiry
Suzanne C. Segerstrom and Gregory E. Miller
Acute stressors (lasting minutes) were associated with potentially adaptive upregulation of some parameters of natural immunity and downregulation of some functions of specific immunity. Brief naturalistic stressors (such as exams) tended to suppress cellular immunity while preserving humoral immunity. Chronic stressors were associated with suppression of both cellular and humoral measures
In contrast, studies of vulnerable populations such as people with HIV have shown changes in immunity to predict disease progression (Bower et al., 1998).
For example, chronic stressors reliably diminish the immune system?s capacity to produce antibodies following routine influenza vaccinations (see Table 7). Yet as far as we are aware, none of these studies has tracked illness to explore whether stress-related disparities in vaccine response might be sufficient to heighten susceptibility to clinical infection with influenza.
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1361287/
Enhancing versus Suppressive Effects of Stress on Immune Function: Implications for Immunoprotection and Immunopathology
Firdaus S. Dhabhar
Stress has long been suspected to play a role in the etiology of many diseases, and numerous studies have shown that stress can be immunosuppressive and hence may be detrimental to health. Moreover, glucocorticoid stress hormones are widely regarded as being immunosuppressive, and are used clinically as anti-inflammatory agents.
However, studies have shown that the acute stress response may play a critical adaptive and protective role, with stress hormones and neurotransmitters preparing the immune system for potential challenges (e.g. wounding or infection) that are perceived by the brain (e.g. the detection of predator or attacker).
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2790771/?tool=pmcentrez
The effect of stress on the defense systems
D Dragos and MD Tansescu
Acute stress increases resistance to infection. The alteration of this mechanism in chronically stressed people impairs the organism's ability to mount a strong immune response with a resultant increase in morbidity. Acute stress induces a probable sympatho?adrenergically mediated increase in chemotaxis and adhesion molecules expression, thus promoting immune cells migration to sites of infection and/or inflammation, while chronic stress impairs this mechanism. Protracted stressful conditions decrease NK cytotoxic capacity. There is a substance P, which under stressful circumstances mediates the increase in macrophage cytokine production. Acute stress increases T cell mobilization through a beta2?adrenergically mediated process, which is blunted during chronic stress. Psychological stress impairs the immune system's ability to produce antibodies in response to a vaccine, thereby making the organism more vulnerable to infections.
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3019042/?tool=pmcentrez
Modern approaches to understanding stress and disease susceptibility: A review with special emphasis on respiratory disease
Palok Aich, Andrew A Potter, and Philip J Griebel
(Discussion on Stress and disease, Stress and viral infection, Stress and immunity, Mechanism of stress-induced infection susceptibility, etc.)
There are reports which have shown direct connections between stress and immune system function. Similarly, other studies have shown that social stressors could also increase the risk for upper respiratory infection. A viral challenge study provides the strongest evidence for a link between stress and susceptibility to the common cold. Other studies have extended these results by considering a wider range of psychosocial factors.
Human subjects under high stress were shown to be more susceptible to infection with common cold viruses. Furthermore, a diversity of experimental animal models confirmed that laboratory stressors such as forced exercise, avoidance learning, restraint, isolation and cold exposure made animals more susceptible to primary infection with a variety of viruses and bacteria.
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2840576/?tool=pmcentrez
*********************************
Numerous other studies on this subject at PubMed
http://www.ncbi.nlm.nih.gov/pmc/?term=stress+and+the+immune+system