Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Immune dysfunction”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 487 records · Page 27Linked to original sources

The potential for prostate cancer immunotherapy.

The components of an effective immune response have been elucidated in recent years. An understanding of the dysfunctional immune response in cancer in one or more of these components has lead to a variety of immunotherapeutic approaches. These therapeutic strategies are designed to stimulate dendritic cell (DC) proliferation, promote antigen uptake and processing, stimulate an effector cell response via direct antigen presentation or target tumor cells via antibody therapy. Many approaches in prostate cancer have demonstrated successful induction of the desired immune response. Limited clinical success has also been seen.

Antigens, CD↗

Nutritional strategies to counter stress to the immune system in athletes, with special reference to football.

Although epidemiological data indicate that athletes are at increased risk of upper respiratory tract infection during periods of heavy training and the 1 - 2 week period following endurance race events, there is very limited information on the responses to football training and match-play. For several hours after heavy exertion, components of both the innate (e.g. natural killer cell activity and neutrophil oxidative burst activity) and adaptive (e.g. T and B cell function) immune system exhibit suppressed function. Although such responses to football training and competition do not appear to be as pronounced, variations in immune cell numbers and function are reported in professional footballers over the course of a season. Attempts have been made through nutritional means (e.g. glutamine, vitamins C and E, and carbohydrate supplementation) to attenuate immune changes following intensive exercise and thus lower the risk of upper respiratory tract infection. Carbohydrate supplementation during heavy exercise has emerged as a partial countermeasure and attenuates increases in blood neutrophil counts, stress hormones, and inflammatory cytokines, but has little effect on decrements in salivary IgA output or natural killer cell function. Animal research indicates that other nutritional components such as beta-glucan, quercetin, and curcumin warrant human investigations to determine if they are effective countermeasures to exercise-induced immune dysfunction.

Humans↗

Golan memorial lecture. Nutritional regulation of immunity and infection: from epidemiology to phenomenology to clinical practice.

Malnutrition is the most common cause of acquired immune dysfunction worldwide. Nutritional deficiencies, excesses, and imbalances influence specific components of the immune system. The severity of immunological impairment depends upon the extent and nature of undernutrition, the presence of infection, and the age of onset of nutritional deprivation. Profound immunological changes occur in children with marasmus and kwashiorkor as well as in deficiencies of vitamins A, E, B6, folate, zinc, iron, copper, and selenium. On the other hand, obesity and excessive intake of several vitamins, minerals, cholesterol, and polyunsaturated fatty acids also impair immunocompetence. These epidemiological observations and immunological phenomena are of practical significance in clinical practice.

Humans↗

Unaltered TNF-alpha production by macrophages and monocytes in diet-induced obesity in the rat.

BACKGROUND: Recent findings have established an association between obesity and immune dysfunction. However, most of the studies investigating the effects of obesity on immune function have been carried out in genetically obese rodent models. Since human obesity is mostly due to intake of a high fat diet and decreased energy expenditure, we asked whether immunological defects also occur in diet-induced obesity. Specifically, we focused on the function of monocytes and macrophages, as these cells are thought to be involved in the low-grade inflammation present in obesity. METHODS: Male Sprague-Dawley rats were fed a high-fat or a standard chow diet for either 2 or 10 weeks. At the end of the intervention period animals were anaesthetised, blood collected for determination of plasma mediator concentrations and lipopolysaccharide (LPS) stimulated production of TNF-alpha by monocytes. LPS stimulated production of TNF-alpha in alveolar macrophages was also determined. RESULTS: High-fat feeding for either 2 or 10 weeks resulted in significant increases in fat mass and serum leptin. Although increased serum leptin has previously been linked to modulation of innate immunity, we found no significant difference in the LPS stimulated production of TNF-alpha by either blood monocytes or alveolar macrophages between the dietary groups. Furthermore, we failed to find a significant increase in circulating TNF-alpha concentrations in obese animals, as reported for genetically obese animals. CONCLUSION: Our data suggest that defects in innate immune function observed in genetically obese animals are not mimicked by dietary obesity, and may more likely reflect the gross abnormality in leptin function of these models. Further work is required delineate the effects of dietary obesity on inflammatory state and immune function.

Journal Article↗

Increased cytotoxicity against B-chronic lymphocytic leukemia by cellular manipulations: potentials for therapeutic use.

B-cell chronic lymphocytic leukemia (CLL) is characterized by profound immune dysfunction and a marked resistance to apoptosis. Understanding the cellular biology of immune effector cells from CLL patients as well as leukemic target cells is essential to developing immune mediated therapeutic strategies for CLL. In this study, an immortal CLL cell line called WSU-CLL has been used to study the characteristics of B-cell CLL as a tumor target for natural killer (NK), activated natural killer, and lymphokine activated killer (LAK) cells. The WSU-CLL cells were significantly less (p<0.001) susceptible to NK cell mediated cytotoxicity compared to K562, a standard tumor target cell line. In vitro activation of effector cells with either short term, low dose IL-2 or long term, high dose IL-2 significantly increased the susceptibility of CLL cells for cell mediated killing. The addition of CD1a+/CD3-/CD4+/CD80+/CD83+ dendritic cells derived from human umbilical cord blood increased the cytotoxicity of LAK cells against WSU-CLL. There is an increased expression of Bcl-2 and decreased expression of Fas on WSU-CLL cells as determined by RT-PCR techniques indicating possible roles for these genes in exerting resistance to immune cell mediated lysis. When Bcl-2 expression was downregulated in WSU-CLL cells using gene specific antisense oligonucleotides, the susceptibility of WSU-CLL cells to the cytotoxicity of chemotherapeutic agent Fludarabine was increased. Thus, our results suggest that in vitro activation with cytokines, addition of accessory cell populations such as dendritic cells and/or manipulation of key gene expression i.e. down regulation of Bcl-2 might be potential strategies to increase the antitumor cytotoxicity against CLL cells.

Antineoplastic Agents↗

Transmission and immunopathogenesis of FIV in cats as a model for HIV.

The feline immunodeficiency virus (FIV) model provides a system to study lentivirus transmission, virus kinetics, pathogenesis, host responses, and immune dysfunction in a natural, out-bred host, under controlled conditions with specific-pathogen-free animals. The diversity of primary FIV strains can be exploited to mirror the range of disease manifestations associated with HIV infection. FIV is infectious via intravenous, intraperitoneal, intradermal, or subcutaneous injection as well as by atraumatic instillation onto the oral, vaginal, or rectal mucosa. Together, these features allow investigators to model specific aspects of HIV infection in a highly relevant and relatively inexpensive animal model. Well-developed areas of the FIV model include: (1) transmission of cell-associated as well as cell-free virus; (2) mucosal infectivity and immunopathogenesis; (3) vertical transmission; (4) acquired immunodeficiency including defects of the innate immune system; (5) thymic dysfunction; (6) neurotropism and neuropathogenesis; (7) host-virus interactions and the role of specific gene products; (8) efficacy of antiviral therapy; and (9) efficacy and immune correlates of experimental vaccines. This review will encompass areas specific to transmission and immunopathogenesis.

Animals↗

Evidence of NK cell dysfunction in SIV-infected rhesus monkeys: impairment of cytokine secretion and NKG2C/C2 expression.

Defects in the adaptive immune response have been extensively characterized in human immunodeficiency virus type-1 (HIV-1)-infected individuals; however, much less is known about the function of natural killer (NK) cells during the course of HIV-1 infection. In the present study, we demonstrate that the NK cells from simian immunodeficiency virus (SIV)-infected rhesus monkeys are significantly impaired in their ability to secrete IFN-gamma, TNF-alpha, and IL-2, while NK cell function in SIV-infected long-term non-progressor monkeys is similar to that of normal monkeys. These findings suggest that abnormal NK cell activity may contribute to the global immune dysfunction observed in HIV-1-infected individuals. NK cell function is modulated by several families of cell surface receptors, including the CD94/NKG2 family. We evaluated the messenger RNA levels of these inhibitory and activating NKG2 molecules in SIV-infected rhesus monkeys. These experiments demonstrate that the activating molecules NKG2C and NKG2C2 are significantly down-regulated in peripheral blood mononuclear cells of SIV-infected rhesus monkeys, suggesting that the dysregulation of these molecules may contribute to the abnormal NK cell function observed in the setting of infection.

Animals↗

Migraine and function of the immune system: a meta-analysis of clinical literature published between 1966 and 1999.

Mechanisms underlying migraine precipitation are largely unknown. A role of the immune system in migraine precipitation is a matter of debate because of the association of atopic disorders and migraine. Recently, it was demonstrated that migraineurs benefit from eradication of a Helicobacter pylori infection, which substantiates a possible role for (sub-clinical) infections in precipitation of migraine. Since 1966, about 45 clinical investigations have reported on alterations of immune function in migraine patients, which we present in this review. Changes of serum levels of complement and immunoglobulins, histamine, cytokines and immune cells were found in some of these studies but in most cases not corroborated by others. Migraineurs suffering from comorbid atopic disorders show elevated plasma IgE levels but not patients without a type I hypersensitivity. Histamine plasma levels are chronically elevated in migraineurs, and interictally decreased lymphocyte phagocytotic function and increased plasma tumor necrosis factor alpha (TNFalpha) levels were found, and may be related to increased infection susceptibility. The cause of this increased susceptibility is unclear but most likely is a result of chronic stress, a well-known suppressor of the immune system. Stress relief enhances immune activity and triggers a burst of circulating vasoactive compounds that function as mediators of inflammation and potential precipitators of a migraine attack in vulnerable subjects. In conclusion, in the clinical literature of the past decades, there is no clear-cut evidence of an immune dysfunction in migraineurs, but we cannot totally exclude the possibility of an altered immune function in migraineurs. Discrepancies in the literature most likely are caused by the divergent patterns of sample collection relative to the time of the attack. We propose stringent definition of sample collection times for future studies of immune function in migraine patients.

Adult↗

Surgery induces human mononuclear cell arginase I expression.

BACKGROUND: Arginase is a metabolic enzyme for the amino acid arginine that participates in the immune response to trauma. We hypothesize that surgical trauma induces arginase expression and activity in the human immune system. METHODS: Peripheral mononuclear cell (MNC) arginase activity and expression and plasma nitric oxide metabolites and interleukin (IL)-10 were measured in patients undergoing elective general surgery. Twenty-two healthy volunteers served as a comparison population. RESULTS: MNC arginase activity increased within 6 hours of surgery (p < 0.05) and coincided with increased arginase I protein expression. Plasma nitric oxide metabolites decreased significantly postoperatively (p < 0.05). Patients lacking an elevation in IL-10 failed to demonstrate increased MNC arginase activity. CONCLUSION: Increased MNC arginase expression may contribute to postsurgical immune dysfunction by affecting arginine use and availability and nitric oxide metabolism in the immune system. Plasma IL-10 may play a role in regulating MNC arginase activity.

Adult↗

Effect of daily hemodialysis on monocytes apoptosis.

Uremia is associated with a state of immune dysfunction with increased susceptibility to infection and malignancy possibly related to dysregulation of immune system cell apoptosis. Peritoneal dialysis can restore plasma apoptosis activity on monocytes compared to intermittent hemodialysis. Whether the continuous modality or diverse clearance mechanisms involved are responsible is unknown. Apoptosis rates correlate with phagocytic function highlighting the benefit of efficient toxin clearance. The plasma of 16 patients on daily hemodialysis (D-HD) was incubated with U937 monocytes and compared to 18 hemodialysis (HD) patients, 5 chronic renal failure (CRF) subjects and 5 healthy volunteers (controls). Apoptosis was evaluated by immunofluorescence microscopy dyes (Hoechst 33342, propidium iodide) and annexin V cytoflowmetry at 96 h. Plasma-induced U937 apoptosis (mean values) was significantly enhanced in D-HD (18.8 +/- 4.1), HD (19.67 +/- 5.5) and CRF patients (20.8 +/- 4.7) compared to controls (9.6 +/- 3.6; p < 0.05 for CRF vs. controls, HD vs. controls and D-HD vs. controls). No significant differences were observed between D-HD, HD and CRF sera on apoptosis rate, caspase-3 activity and phagocytic capacity of U937 monocytes. This study demonstrates that the plasma of various HD schedules was unable to reduce monocyte apoptosis induced by uremia.

Adult↗

The immunopathogenesis of AIDS.

In summary, the understanding of the pathogenesis of immune dysfunction in HIV infection is incomplete. New mechanisms by which HIV disrupts the immune system through alterations in basic biochemical events in CD4 T cells are continually being discovered. In a positive light, because of the complexity involved in HIV-mediated induction of immune suppression, logic suggests there is potential for reversing some of these processes.

Acquired Immunodeficiency Syndrome↗

Pathophysiology and epidemiology of epidemic Kaposi's sarcoma.

The epidemic form of Kaposi's sarcoma (KS) that occurs in patients with the acquired immune deficiency syndrome (AIDS) produces lesions that, histopathologically, are indistinguishable from those of classical KS or of the endemic form of the disease seen in children and adults in certain areas of Africa. There are, however, important differences in the pathogenesis of the disease in the different groups affected by the neoplasm. Compared with classical KS in people of eastern European and Mediterranean descent, which commonly takes a protracted, indolent course, the epidemic Kaposi's sarcoma (EKS) is far more aggressive. However, the KS seen in adults in endemic areas of Africa may also become florid and rapidly progressive after years of quiescence. Some degree of immune dysfunction is thought to be a factor in all forms of KS, with immune depression being the hallmark of EKS and the setting in which it occurs. Cytomegalovirus (CMV) is thought to be at least a cofactor in the disease, but it has also been suggested that the etiologic agent of AIDS, human immunodeficiency virus (HIV), may also play a role in EKS.

Acquired Immunodeficiency Syndrome↗

Autoimmunity and B-cell dysfunction in chronic proliferative disorders of large granular lymphocytes/natural killer cells.

Clinical and laboratory findings of B-cell immune dysfunction were evaluated in ten patients with a large granular lymphocyte/natural killer cell proliferative disease (LGL/NK-PD). Increased immunoglobulin synthesis with autoantibody formation was documented: polyclonal hypergammaglobulinaemia (six patients), neutrophil autoantibody (one patient), antinuclear antibody (one patient), and rheumatoid factor (five patients). In addition, serum beta 2-microglobulin level was raised in seven patients, a benign monoclonal gammopathy was detected in one, and concurrent B-type hairy cell leukemia in another. Most patients experienced the complications of hemocytopenia, polyarthritis or rheumatoid arthritis, and immediate allergic reactions to drugs or environmental substances, rather than from symptoms of progressive LGL/NK-PD. A review of the literature confirms that an increased immunoglobulin production is common in LGL/NK-PD, and that patients are likely to develop multiple autoantibodies. The incapacity of proliferating, abnormal LGL/NK cells to suppress B-cell activation and immunoglobulin synthesis, documented by several in vitro studies, offers a pathogenetic explanation for these phenomena. This study shows that an anomalous B-cell function contributes greatly to the morbidity of disease in LGL/NK-PD, and points out the utility of investigating the LGL/NK cell system in patients with autoimmune pathologic characteristics of unclear origin.

Adult↗

Energetics of lymphocyte "burnout" in late sepsis: adjuvant treatment with ATP-MgCl2 improves energetics and decreases lethality.

Although it is known that decreased high-energy phosphates contribute to organ dysfunction following shock, it remains unknown whether changes in lymphocyte energetics contribute to the profound immune dysfunction that occurs in late septic shock. Moreover, while studies have shown that ATP-MgCl2 treatment after hemorrhagic shock improves tissue ATP levels and organ function, it remains unknown whether lymphocyte high-energy phosphates and immune functions are similarly affected by this agent after sepsis. To study this, sepsis was induced in C3H/HeN (endotoxin sensitive) mice by cecal ligation and puncture (CLP) and they were then treated intraperitoneally with ATP-MgCl2 or saline vehicle. Sham animals received laparotomy, but not CLP. Splenic lymphocytes were harvested 24 hr after treatment and ATP levels were determined by ultraresolution 31P NMR. Lymphocyte proliferative capacity was determined by [3H]-thymidine incorporation following mitogenic stimulation. Host survival was assessed following CLP with and without ATP-MgCl2 treatment. Prolonged sepsis caused a significant decrease (decreases 67 +/- 12% vs Sham) in lymphocyte ATP levels which were correlated with decreased lymphocyte proliferative capacity in response to mitogenic stimulation (64 +/- 17 x 10(3) vs. 232 +/- 43 x 10(3) counts per minute (cpm) in Sham; P < 0.05). Treatment with ATP-MgCl2 at the onset of sepsis significantly increased lymphocyte ATP levels (increases 32 +/- 15% vs CLP) and proliferative response to mitogenic stimuli (218 +/- 37 x 10(3) cpm, CLP/ATP-MgCl2; P < 0.05). Improved lymphocyte function in this group correlated with a significant increase in overall survival (20% CLP vs 70% CLP/ATP-MgCl2; P < 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Triphosphate↗

Gene therapy for infectious diseases: the AIDS model.

Genetic manipulation of somatic cells may be of therapeutic value in a variety of infectious diseases, particularly in human immunodeficiency virus (HIV) infection. Stable insertion of custom-designed 'resistance genes' into cells susceptible to HIV could reduce the viral burden in infected individuals and potentially retard the characteristic progressive immune dysfunction. Alternatively, ectopic expression of genes that encode viral antigens might induce potent antiviral immune responses and form the basis for novel prophylactic and therapeutic vaccines. While laboratory studies have proved that the approach works in principle, preclinical and clinical studies will be necessary to evaluate the therapeutic benefit of such gene-based therapies.

Acquired Immunodeficiency Syndrome↗

Current management of infectious complications in the injecting drug user.

The diagnosis and management of infectious complications associated with injection drug use (IDU) are among some of the more challenging aspects of working with substance abusing populations. As the population of injection drug users age, we expect the number and severity of these complications to increase. Commonly seen infections, such as bacterial endocarditis and bacterial infections of bones, joints, and soft tissue, are now frequently complicated by concurrent immunodeficiency. Parenterally and sexually transmitted viral hepatitis is responsible for significant IDU morbidity and mortality. The human leukemia/lymphoma virus types I and II are increasing in prevalence in the IDU with uncertain long-term clinical effects. Immune dysfunction has been described in the IDU for decades, but the impact of host immune compromise on the transmission and the course of HIV-1 has yet to be fully appreciated. The integration of the treatment of substance abuse and its concurrent psychiatric disorders with the management of infectious complications, including immunodeficiency, promises to improve patient compliance with possible savings of overall medical costs.

Humans↗

The influence of restricted calorie intake on peritoneal macrophage function.

Malnutrition leads to immune dysfunction with greatly increased morbidity. However, restrictive dietary regimens are also known to preserve immune function in autoimmune-susceptible mice. The macrophage (Mø) is central to both immune effector and autoregulatory functions and is critical to host-defense mechanisms. The aim of this study was to investigate the effect of calorie restriction on Mø functions in mice. Female, 6- to 8-wk-old, Swiss Webster mice were randomized to ad libitum feeding for 7 or 21 d (n = 10 mice/group), restricted feeding (13.5 to 14.0 g/cage/d; n = 10) for 7 d, or restricted feeding (16.5 to 17.0 g/cage/d; n = 10) for 21 d. These restrictions were equivalent to a decrease in calorie intake of 21.9% and 5.1%, respectively, over 7 and 21 d. All mice were allowed free access to water. On days 8 and 22, respectively, the mice were killed, and peritoneal Møs were isolated by lavage and adhered to 96-well polystyrene tissue-culture-treated plates. After stimulation with lipopolysaccharide, supernatant prostaglandin E2 and interleukin-6 levels were measured by enzyme-linked immunosorbent assay. Supernatant NO2- in response to stimulation with lipopolysaccharide and interferon-gamma was determined by the Greiss reaction. Prostaglandin E2 production was significantly elevated in peritoneal Møs from the calorie-restricted mice compared with the ad-libitum-fed mice after 7 d. After 21 d, production of both prostaglandin E2 and nitric oxide was significantly increased (P < 0.05) in peritoneal Møs from the restricted mice compared with the ad-libitum-fed mice. These results indicate that calorie restriction influences immune function by altering prostaglandin E2 and nitric oxide generation by Møs.

Animals↗