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 757 records · Page 42Linked to original sources

Nutritional skin care: health effects of micronutrients and fatty acids.

Human skin is continuously exposed to internal and external influences that may alter its condition and functioning. As a consequence, the skin may undergo alterations leading to photoaging, inflammation, immune dysfunction, imbalanced epidermal homeostasis, or other skin disorders. Modern nutritional science is developing new insights into the relation between food intake and health, and effects of food ingredients may prove to be biologically relevant for optimal skin condition. The objective of this review was to evaluate the present knowledge about the interrelation of nutrients and skin, particularly the photoprotective effects of nutrients, the influences of nutrients on cutaneous immune responses, and therapeutic actions of nutrients in skin disorders. The nutrients of focus were vitamins, carotenoids, and polyunsaturated fatty acids. Supplementation with these nutrients was shown to provide protection against ultraviolet light, although the sun-protection factor was relatively small compared with that of topical sunscreens. An increase in delayed-type hypersensitivity skin responses after supplementation with nutrients has proven beneficial, especially in elderly people, and may boost cell-mediated immunity. Dietary consumption of certain plants or fish oil is known to modulate the balance of lipid inflammatory mediators and, therefore, is valuable in the treatment of inflammatory skin disorders. It was concluded that nutritional factors exert promising actions on the skin, but information on the effects of low-to-moderate doses of nutrients consumed long term by healthy individuals is obviously lacking, as are data on direct effects on basal skin properties, including hydration, sebum production, and elasticity.

Animals↗

Chronic fatigue and depression in the ambulatory patient.

Fatigue, pain, and emotional upset remain the most common problems affecting humanity and for which we still know so very little. Chronic fatigue syndrome is most likely a number of as yet unproven various undifferentiated illnesses that are exceedingly difficult to distinguish from depression. There probably is a subset of patients with CFS who do have true immune dysfunction and persistent viral infection, and this particular group of patients should be further investigated. This group is the minority of patients who present with chronic fatigue. Although chronic fatigue syndrome may be the result of an organic illness in psychologically susceptible individuals, it remains most important to assess underlying psychologic factors that then need to be addressed. These factors may very likely have a profound effect on immune function, but more research is needed in this area. The diagnostic evaluation of patients with chronic fatigue syndrome should initially focus on causes for fatigue other than Epstein-Barr viral infection. Significant underlying medical conditions should be ruled out, and extensive inquiry into symptoms suggestive of depression and anxiety should be aggressively pursued. Treatment should include psychiatric support and counseling, good nutrition, adequate rest, and a gradual increase in activity. Anti-inflammatory agents and serotonin-replenishing antidepressants are helpful when muscle pain and tenderness are a major part of the patient's symptoms. Psychoactive drugs are useful when indicated. Low doses of antidepressants such as doxepin (10-25 mg at night) are generally well tolerated and have shown efficacy in numerous patients, although there are no reports of controlled trials.

Adult↗

Acrodermatitis enteropathica, zinc metabolism, copper status, and immune function.

OBJECTIVE: To study zinc metabolism, copper status, and immune function in a patient with acrodermatitis enteropathica. RESEARCH DESIGN: Case report. PATIENT: A 16-year-old boy with acrodermatitis enteropathica. INTERVENTION: Change of zinc supplementation dosage from 1000 to 525 mumol/d. MEASUREMENTS AND RESULTS: Zinc metabolism was studied with an oral dose of zinc chloride Zn 65 and whole-body counting at both zinc dosages. Zinc, copper status, and immune indexes were also measured at both dosages. The higher dosage of zinc supplementation was found to induce a state of low copper status and immune dysfunction. Lowering the dosage normalized these indexes. Zinc absorption in this patient was found to be within the reference range for healthy subjects. At the lower dosage, zinc retention and the rate of whole-body turnover also normalized. These results suggest that the primary lesion in acrodermatitis enteropathica is a cellular defect in zinc metabolism rather than an impairment of zinc absorption. CONCLUSION: Zinc and copper status and immune function should be monitored regularly in patients with acrodermatitis enteropathica to provide a proper dosage of zinc during different physiologic stages.

Acrodermatitis↗

Macaque monkey type D retrovirus replicates in vitro in a distinct subpopulation of B lymphocytes.

Type D retroviruses have recently been shown to induce a wasting syndrome with associated lymphadenopathy, thymic atrophy and transient decreased peripheral blood lymphocyte blastogenic responsiveness in juvenile macaque monkeys. The replication in vitro of D/New England virus was assessed in various lymphocyte subpopulations to determine the possible pathogenesis of the immune dysfunction induced by this virus. While D/New England did not replicate in cultured T lymphocytes or induce any demonstrable dysfunction of T cells in vitro, it did grow in the cells of the B lymphocyte lineage. D/New England growth occurred in vitro in African Burkitt's lymphoma and pre-B cell lines, but not in Epstein-Barr virus-transformed normal B lymphocytes. The infection of a restricted B lymphocyte population by this primate type D retrovirus may play a role in the aetiology of the immune abnormalities which it induces.

Animals↗

B cells in health and disease.

B cells play a key role in regulating the immune system by producing antibodies, acting as antigen-presenting cells, providing support to other mononuclear cells, and contributing directly to Inflammatory pathways. Accumulating evidence points to disruption of these tightly regulated processes in the pathogenesis of autoimmune disorders. Although the exact mechanisms involved remain to be elucidated, a fundamental feature of many autoimmune disorders is a loss of B-cell tolerance and the inappropriate production of autoantibodies. Dysfunctional immune responses resulting from genetic mutations that cause intrinsic B-cell abnormalities and induction of autoimmunity in the T-cell compartment by B cells that have broken tolerance may also contribute to these disorders. These findings provide the rationale for B-cell depletion as a potential therapeutic strategy in autoimmune disorders and other disease states characterized by inappropriate immune responses. Preliminary results with the CD20-targeted monoclonal antibody rituximab indicate that rituximab can improve symptoms in a number of autoimmune and neurologic disorders (including rheumatoid arthritis, systemic lupus erythematosus, and paraneoplastic neurologic syndromes). Additional studies are warranted to further characterize the role of B cells in autoimmune diseases and the therapeutic utility of B-cell depletion.

Autoimmune Diseases↗

[Cellular immune response in HIV(LAV/HTLV-III) infection].

Various tests to determine the cellular immune response in HIV infected persons are presented and their use in clinical practice is discussed. The T4 cell count using the full blood method is a precise test for evaluation of T4 cell elimination by HIV infection and the immune deficiency thus developing. The skin test to various recall antigens (multitest) is simple and helpful in confirming a suspected immune defect. It is, however, too insensitive to detect incipient T4 cell destruction without functional consequences. The lymphocyte count is diminished in final disease stages only and is not helpful in discriminating between early disease stages. Proliferative tests of isolated lymphocytes are of prognostic relevance if antigen is used as a stimulus, since diminution of antigen induced proliferation is a sensitive parameter of immune dysfunction. The value of mitogen induced proliferations lies in possible comparison of the effect of autologous or control serum on proliferative response, since immunosuppressive factors may be found in sera of HIV infected persons.

AIDS-Related Complex↗

Selective impairment of humoral immunity in feline leukemia virus-induced immunodeficiency.

We used a panel of in vitro assays to investigate the nature of immune dysfunction in cats infected with FeLV-FAIDS, a naturally occurring, molecularly cloned feline leukemia virus (FeLV) isolate which induces a fatal immunodeficiency syndrome in infected cats. During the asymptomatic period preceding immunodeficiency disease, we were unable to detect any deficits in concanavalin A-induced blastogenesis, xenogeneic mixed-lymphocyte reaction assays, stimulation of lymphocytes by soluble protein antigen, and cytotoxic T lymphocyte assays. However, during this period humoral immune responses in the FeLV-FAIDS-infected cats were dramatically impaired. As early as 9 weeks after virus inoculation, the ability to mount either an IgM or IgG response to soluble protein antigens was lost. Neither B cell function, as assessed by lipopolysaccharide-induced blastogenesis or circulating B cell numbers, as assessed by immunofluorescence, differed between infected and control cats. These results suggest that FeLV-FAIDS infection may impair a subpopulation of T helper cells, that provides help for the production of antibody. Consistent with earlier observations of cats naturally infected with FeLV, our results indicate that early impairment of humoral immunity is an important component of the immunodeficiency syndrome induced by FeLV in cats.

Animals↗

Nutrition, immune function, and inflammation: an overview.

The collective evidence suggests that nutritional insult to both cell-mediated and humoral immunity in the presence of protein-energy malnutrition contributes to abnormalities of inflammation. The primary goal of nutritional support in inflammatory disease is to provide adequate energy and protein to meet endogenous requirements for tissue repair, IL-1 production, and restored cellular function, thus preventing secondary infection. Substrate provision should aim at improving the acute phase of injury while avoiding immune dysfunction. This goal may be achieved by altering the eicosanoid pathway toward a more regulated inflammatory state. In the context of allograft response, macrophages are central to the initiation of allosensitization by virtue of their ability to present antigen to T-cells. Activated T-cells may further modulate macrophage function by the secretion of lymphokines. Manipulation of macrophage eicosanoid production by dietary omega-3 PUFA may reduce cellular immune response. (table; see text) Nutritional support should also focus on providing essential micronutrients, with their potentially immunomodulating role, as adjunctive therapy in order to protect the host from toxic effects of free-radicals and chemicals released during inflammatory events. (Feeding regimens currently under investigation and development are presented in Table 4.) By integrating dietary immunotherapy with the use of recombinant hormones, monoclonal antibodies, and various available monokines, an optimal outcome for each patient may be achieved. However, effective application of immunotherapy to nutritional supplementation will require accurate monitoring of immune function in individual patients in order to avoid inappropriate treatment.

Animals↗

Protective antigens and mechanisms of anti-Candida immunity.

Life threatening fungal diseases are now frequent in a substantial fraction of the immunocompromised host population. The toxicity and the relative scarcity of efficacious antifungal drugs highlight the need for developing alternative or integrative immunoprophylactic and therapeutic tools; among them the need to develop prophylactic or therapeutic vaccines against candidiasis, a widespread mucosal or deep-seated infection caused primarily by the fungus Candida albicans, are of clear priority. Vaccination is a highly beneficial medical practice, and probably the most cost-effective measure against disease onset and progression. It is based on the use of microbial antigens capable of conferring protection in a susceptible target host. To date, only a handful of Candida albicans antigens have been produced and very few of them have been thoroughly investigated for immunogenicity and protection in experimental models of candidiasis. Thus, approaches to the molecular, biochemical and functional characterization of novel C. albicans encoded molecules are most welcome to improve the perspective of developing in the near future an effective vaccine against C. albicans. Identification of anti-Candida vaccine candidates must take into account the diversity of Candida diseases, the various underlying mechanisms of protection as well as the major immune dysfunctions observed as predisposing factors for disease. Antigens to be considered possible vaccine candidates include members of the aspartyl proteinase (Sap2) family and the 65kDa mannoprotein (MP65) antigen. An additional molecule of C. albicans which has not yet been identified but deserves great consideration as a vaccine candidate is the yeast-killer toxin receptor (KTR). Initial experimental evidence strongly suggests that the above antigens are able to elicit protective immunity against mucosal and/or systemic candidiasis. A series of molecular, biochemical and immunological studies aimed at validating and strengthening this initial evidence are in progress, with the ultimate goal of producing recombinant or natural antigens that can be assessed for their ability to elicit a protective immunity in animal models and the mechanisms whereby protection is achieved, with emphasis on determination of immune correlates of protection.

Animals↗

Elejalde syndrome--a melanolysosomal neurocutaneous syndrome: clinical and morphological findings in 7 patients.

BACKGROUND: Silvery hair and severe dysfunction of the central nervous system (neuroectodermal melanolysosomal disease or Elejalde syndrome) characterize this rare autosomal recessive disease. Main clinical features include silver-leaden hair, bronze skin after sun exposure, and neurologic involvement (seizures, severe hypotonia, and mental retardation). Large granules of melanin unevenly distributed in the hair shaft are observed. Abnormal melanocytes and melanosomes and abnormal inclusion bodies in fibroblasts may be present. Differential diagnosis with Chédiak-Higashi syndrome and Griscelli syndrome must be done. OBSERVATIONS: We studied pediatric patients with silvery hair and profound neurologic dysfunction. Immune impairment was absent. Age of onset of neurologic signs ranged from 1 month to 11 years; the signs included severe muscular hypotonia, ocular alterations, and seizures. Mental retardation since the first months of life was noted in 4 cases. Psychomotor development was normal in 3 cases, but suddenly the patients presented with a regressive neurologic process. Four patients died between 6 months and 3 years after the onset of neurologic dysfunction. One patient showed characteristic ultrastructural findings of Elejalde syndrome. CONCLUSIONS: Elejalde syndrome is different from Chédiak-Higashi and Griscelli syndrome and is characterized by silvery hair and frequent occurrence of fatal neurologic alterations. Psychomotor impairment may have 2 forms of presentation: congenital or infantile. Although Elejalde syndrome and Griscelli syndrome are similar, the possibility that they are 2 different diseases, although probably allelic related, is suggested.

Central Nervous System Diseases↗

Severe atherosclerosis of the aorta and development of peripheral T-cell lymphoma in an adolescent with angiolymphoid hyperplasia with eosinophilia.

We report an adolescent girl with a history of angiolymphoid hyperplasia with eosinophilia (ALHE) diagnosed at the age of 10 years. The patient also suffered from chronic persistent multiresistant herpes simplex virus infection. Atherosclerotic occlusive disease of the abdominal aorta and its major branches was observed at the age of 17 years, necessitating vascular surgical intervention 1 year later because of disease progression. Histological examination of the aorta disclosed widespread atherosclerosis and high levels of gene expression of both T-helper cell type (Th) 1- and Th2-derived cytokines. This suggests that a highly stimulated systemic immune response including increased production of both Th1- and Th2-derived cytokines such as interferon-gamma and interleukin-4 may result in severe atherosclerotic lesions at a very young age. In addition, the patient developed a peripheral T-cell lymphoma at the age of 18 years. Neither systemic atherosclerosis nor T-cell lymphoma has been reported in association with ALHE. It is suggested that a highly stimulated dysfunctional immune response may play a key role in persistent inflammatory disease and premature development of atherosclerosis as well as malignant transformation of T cells.

Adolescent↗

Reduced IL-2 level concentration in patients with breast cancer as a possible risk factor for relapse.

Reduced interleukin 2 (IL-2) production has been described as one of the most frequent immune dysfunctions observed at relapse in patients with disseminated solid neoplasms. It was seen that patients treated for breast cancer (NED-no evidence of disease- at check-up) have a relapse percentage of 4.7% if the IL-2 plasmatic level is normal while the relapse percentage increased to 33.3% if it is low after a 10-12 month follow-up. This link between low IL-2 and the host immune response is a new prognostic indicator and one not strictly related to the tumour itself.

Adult↗

Aging, immune function, and exercise: hormonal regulation.

There is a known decline in immune function associated with aging which increases the risk for infectious diseases, tumorigenesis, and autoimmune disorders. As a result, older individuals demonstrating age-related immune dysfunction have significantly higher mortality rates. Alterations in neuroendocrine function play an important role in this immunosenescence as reductions in the ability to synthesize and release hormones and neurotransmitters, alterations in receptor number, density and affinity, diminished receptor responsiveness, and alterations in biochemical events distal to the hormone/receptor site are known to occur. It is becoming increasingly apparent that these age-associated neuroendocrine changes have a significant regulatory role in modulating immune function both at rest and in response to the stress of a single bout of exercise. In particular, this review will focus on age-related changes that are documented to occur in growth hormone, IGF-I, sympathetic nerve activity, catecholamine metabolism and responsiveness, and gonadal steroids. As a result of these neuroendocrine changes, older individuals are likely to respond differently to both acute and chronic exercise stimulation.

Aged↗

Snm1-deficient mice exhibit accelerated tumorigenesis and susceptibility to infection.

The eukaryotic SNM1 gene family has been implicated in a number of cellular pathways, including repair of DNA interstrand cross-links, involvement in VDJ recombination, repair of DNA double-strand breaks, and participation in cell cycle checkpoint pathways. In particular, mammalian SNM1 has been shown to be required in a mitotic checkpoint that causes arrest of cells in prophase prior to chromosome condensation in response to spindle poisons. Here, we report on the phenotype of a knockout of Snm1 in the mouse. Snm1-/- mice are viable and fertile but exhibit a complex phenotype. Both homozygous and heterozygous mice show a decline in survival compared to wild-type littermates. In homozygous mutant males, this reduction in survival is principally due to bacterial infections in the preputial and mandibular glands and to a lesser extent to tumorigenesis, while in homozygous and heterozygous females, it is due almost solely to tumorigenesis. The high incidence of bacterial infections in the homozygous mutant males suggests an immune dysfunction; however, examinations of T- and B-cell development and immunoglobulin class switching did not reveal a defect in these pathways. Crossing of Snm1 mutant mice with a Trp53 null mutant resulted in an increase in mortality and a restriction of the tumor type to lymphomas, particularly those of the thymus. Taken together, these findings demonstrate that Snm1 is a tumor suppressor in mice that in addition has a role in immunity.

Alleles↗

Cryptococcosis.

Cryptococcosis emphasizes the importance of the host-parasite interaction. C. neoformans has developed factors to invade the host but generally requires host immune dysfunction to establish infection. Cryptococcal infection has increased as our immunocompromised pool of patients enlarges. Although many questions regarding management of cryptococcosis remain, it is a well-studied infection with excellent guidelines for diagnosis, treatment, and prognosis.

Acquired Immunodeficiency Syndrome↗

Lymphangiogenesis-related gene signature-based risk model for prognostic assessment of cervical cancer: immune-metabolic characterization and molecular subtype analysis.

BACKGROUND: Lymphangiogenesis promotes tumor dissemination and may shape the immune contexture of cervical cancer, yet lymphangiogenesis-related prognostic stratification and its immunometabolic implications remain insufficiently defined in cervical squamous cell carcinoma and endocervical adenocarcinoma (CESC). METHODS: TCGA-CESC transcriptomes and clinical data were obtained from UCSC Xena and integrated with normal cervix tissues from the Genotype-Tissue Expression Project after batch correction. Prognostic LYMRGs were first identified from the differentially expressed set using univariable Cox proportional hazards analysis. Candidate genes were then reduced using an L1-regularized Cox model (Least Absolute Shrinkage and Selection Operator), and the remaining markers were entered into a multivariable Cox regression to obtain the final coefficients and compute an individualized risk score. The model's prognostic value was further assessed in an independent Gene Expression Omnibus dataset. In addition, expression patterns of the signature genes were leveraged for molecular subtyping of TCGA samples via non-negative matrix factorization (NMF). Immune infiltration and immunotherapy-associated characteristics were interrogated through a multi-algorithm strategy (single-sample gene set enrichment analysis, CIBERSORT, ESTIMATE, Tumor Immune Dysfunction and Exclusion (TIDE), and Immunophenoscore . Additional analyses included pathway enrichment (GSEA/GO/KEGG), drug sensitivity prediction (pRRophetic/CellMiner), and ceRNA network analysis. RESULTS: A six-gene LYMRG signature robustly stratified survival. High-risk patients had significantly worse overall survival in The Cancer Genome Atlas with AUCs of 0.819/0.801/0.801 at 1/3/5 years, and in GSE52903 (P = 0.001) with AUCs of 0.733/0.719/0.725. NMF identified two subtypes with distinct prognosis (P = 0.01) and divergent immune landscapes. Risk groups and subtypes exhibited consistent differences in immune infiltration, checkpoint expression, TIDE/IPS patterns, and pathway enrichment. Predicted chemosensitivity differed by risk group, and the ceRNA network suggested candidate upstream lncRNA regulators of the signature. CONCLUSION: A lymphangiogenesis-related six-gene model enables clinically meaningful prognostic stratification of CESC and links lymphangiogenesis programs to distinct tumor immune phenotypes and therapeutic vulnerabilities.

cancer↗

Recapitulation of normal and abnormal BioBreeding rat T cell development in adult thymus organ culture.

Congenitally lymphopenic diabetes-prone (DP) BioBreeding (BB) rats develop spontaneous T cell-dependent autoimmunity. Coisogenic diabetes-resistant (DR) BB rats are not lymphopenic and are free of spontaneous autoimmune disease, but become diabetic in response to depletion of RT6+ T cells. The basis for the predisposition to autoimmunity in BB rats is unknown. Abnormal T cell development in DP-BB rats can be detected intrathymically, and thymocytes from DR-BB rats adoptively transfer diabetes. The mechanisms underlying these T cell developmental abnormalities are not known. To study these processes, we established adult thymus organ cultures (ATOC). We report that cultured DR- and DP-BB rat thymi generate mature CD4 and CD8 single-positive cells with up-regulated TCRs. DR-BB rat cultures also generate T cells that express RT6. In contrast, DP-BB rat cultures generate fewer CD4+, CD8+, and RT6+ T cells. Analysis of the cells obtained from ATOC suggested that the failure of cultured DP-BB rat thymi to generate T cells with a mature phenotype is due in part to an increased rate of apoptosis. Consistent with this inference, we observed that addition of the general caspase inhibitor Z-VAD-FMK substantially increases the number of both mature and immature T cells produced by DP-BB rat ATOC. We conclude that cultured DR-BB and DP-BB rat thymi, respectively, recapitulate the normal and abnormal T cell developmental kinetics and phenotypes observed in these animals in vivo. Such cultures should facilitate identification of the underlying pathological processes that lead to immune dysfunction and autoimmunity in BB rats.

ADP Ribose Transferases↗

Neurological complications of Kaposi's sarcomat. An analysis of 5 cases and a review of the literature.

We analyzed the neurological complications in 25 patients with Kaposi's sarcoma, 5 encountered at Memorial Sloan-Kettering Cancer Center and 20 culled from the literature. Patients with all clinical forms of Kaposi's sarcoma [14 classical cases, 2 African cases, 5 cases associated with immunosuppressive therapy and 4 cases associated with acquired immunodeficiency syndrome (AIDS)] suffered neurological dysfunction which included neoplastic involvement of the nervous system (Kaposi's sarcoma or another primary), autoimmune disorders and opportunistic infections. Neoplastic involvement was recorded most frequently in patients with classical and African Kaposi's sarcoma and was favored in a setting of extensive tumor dissemination. Opportunistic infections (cryptococcal meningitis and cerebral toxoplasmosis) were observed in all forms of Kaposi's sarcoma but were most frequent in AIDS cases and correlated with the degree of immune dysfunction. Our data suggest that more diverse opportunistic central nervous system infections, neurological disorders of an autoimmune nature, and neoplastic involvement of the nervous system are to be anticipated in AIDS.

Adult↗