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Alterations in the human immune response to the hepatitis B vaccine among the elderly.

The specific binding of hepatitis B (HBs) antigen by lymphocytes from old people immunized with hepatitis B vaccine was explored. For that purpose HBs antigen was combined with fluorescent microspheres, and labeled antigen was allowed to react with lymphocytes from HBs vaccine-responsive or unresponsive people. Lymphocytes from 10 responders and 14 nonresponders were tested for their antigen-binding ability. For controls, lymphocytes were incubated with microspheres bearing human albumin. Lymphocytes from 8 out of 10 responders were able to recognize HBs antigen; for the nonresponders the ratio was 9 out of 14. HBs-binding lymphocytes were B cells but not T lymphocytes. B and T cells from responders and nonresponders were combined and cultivated for 8 days in the presence of HBs antigen, and antibody-producing cells were counted. Neither B cells alone nor B cells plus T cells from nonresponders were able to produce antibody. On the other hand B cells from unresponsive old people produced antibodies when they were cultivated in the presence of HBs antigen and T cells from responsive old people. These data suggest that some elderly individuals who do not produce antibody after in vivo immunization by HBs vaccine do have antibody-producing cells. Instead of a gap in their immune repertoire, these people are suffering from immune dysfunction.

Aged↗

Nutrition and immunity in the elderly.

Immune function declines with age, leading to increased infection and cancer rates in aged individuals. In fact, recent progress in the study of immune ageing has introduced the idea that rather than a general decline in the functions of the immune system with age, immune ageing is mainly characterized by a progressive appearance of immune dysregulation throughout life. Changes appear earlier in life for cell-mediated immunity than for humoral immunity. Thus, age-related modifications in cell-mediated immunity, i.e. changes in naive : memory T-cells, mature : immature T-cells, T-helper 1 : T-helper 2 cells are more important in the elderly than changes in humoral immunity, i.e. CD5 : CD5+ cells or length of antibody responses. Such evolution of the immune system has been linked to declining thymus function and to accumulative antigenic influence over the lifespan. In contrast, innate immunity (macrophage functions) is preserved or even increased during the ageing process. This finding shows that the 'primitive' immune system is less affected by the ageing process than the sophisticated specific immune system. The present review focuses on innate and cell-mediated immune changes with ageing. It provides evidence that primary changes (intrinsic modifications in the immune system) and secondary changes (resulting from environmental influences during the lifespan) exert different influences on the immune system. Primary changes, occurring in healthy individuals, seem less important nowadays than they were considered to be previously. For example, interleukin 2 secretion in some very healthy aged individuals is comparable with that in younger adults. Primary immune changes may not explain the increased incidence and severity of infections observed in the elderly population. Secondary immunological changes are far more frequent and are certainly responsible for most of the immune modifications observed in the elderly population. Environmental factors leading to secondary immune dysfunctions include not only antigenic influence, which is a reflection of diseases experienced over the lifespan, but also many other factors such as drug intake, physical activity and diet; factors for which important changes occur in the elderly population. Nutritional factors play a major role in the immune responses of aged individuals and the present review shows that nutritional influences on immune responses are of great consequence in aged individuals, even in the very healthy elderly.

Adult↗

Humoral immune abnormalities in T-cell large granular lymphocyte leukemia.

The prevalence of humoral immune dysfunction has not been defined in a large series of patients with T-cell large granular lymphocyte leukemia (T-LGL) confirmed to be clonal by T-cell receptor analysis. Therefore we evaluated the presence of multiple autoantibodies in 27 patients with this disease. Humoral immune abnormalities included: rheumatoid factor (RF) (15/27 patients), antinuclear antibody (ANA) (13/27 patients), polyclonal hypergammaglobulinemia (15/24 patients), elevated serum immunoglobulins (17/26 patients), immune complex formation (18/25 patients), elevated beta-2 microglobulin (13/18 patients) and neutrophil-reactive IgG (18/20 patients). Disease manifestations in these patients were due to complications of cytopenia or autoimmune abnormalities. Infection was a common finding (21/27 patients) and likely reflected their neutropenia. Rheumatoid arthritis (11/27 patients), anemia (12/27 patients) and thrombocytopenia (10/27 patients) were less common but still frequently observed. This study demonstrates the presence of multiple autoantibodies in a large series of patients with documented clonal T-LGL proliferations.

Antibody Formation↗

Glomerular injury in end-stage liver disease--role of circulating IgG and IgM immune complexes.

The relationship of IgG- and IgM-bound circulating immune complexes and immune dysfunction to glomerular injury was evaluated in 15 children with end-stage liver disease (ESLD) awaiting liver transplantation. Compared with age-matched controls, children with ESLD had significantly (P < 0.01) increased serum IgG, IgA, and IgM levels, as well as IgG- and IgM-bound circulating immune complexes. Furthermore, they showed a significant (P < 0.05) depression of C3 and C4 levels compared with controls. Hematuria occurred in 66% of children with ESLD, and the urinary protein/creatinine ratio was also significantly (P < 0.01) increased compared with controls (4.65 +/- 2.56 vs. 0.16 +/- 0.04 mg/mg). Light microscopy of renal biopsy tissue obtained from 6 children with ESLD at the time of transplantation demonstrated mesangial proliferation and expansion with basement membrane splitting. This was associated with subendothelial deposits on electron-microscopic examination, compatible with a diagnosis of membranoproliferative glomerulonephritis. By immunofluorescence, deposition of IgG, IgA, and IgM occurred in various combinations with co-deposition of complement fragments. We conclude that membranoproliferative glomerulonephritis is a common finding in children with ESLD, probably due to entrapment of circulating IgG- and IgM-bound immune complexes.

Antigen-Antibody Complex↗

Leptin modulates the T-cell immune response and reverses starvation-induced immunosuppression.

Nutritional deprivation suppresses immune function. The cloning of the obese gene and identification of its protein product leptin has provided fundamental insight into the hypothalamic regulation of body weight. Circulating levels of this adipocyte-derived hormone are proportional to fat mass but maybe lowered rapidly by fasting or increased by inflammatory mediators. The impaired T-cell immunity of mice now known to be defective in leptin (ob/ob) or its receptor (db/db), has never been explained. Impaired cell-mediated immunity and reduced levels of leptin are both features of low body weight in humans. Indeed, malnutrition predisposes to death from infectious diseases. We report here that leptin has a specific effect on T-lymphocyte responses, differentially regulating the proliferation of naive and memory T cells. Leptin increased Th1 and suppressed Th2 cytokine production. Administration of leptin to mice reversed the immunosuppressive effects of acute starvation. Our findings suggest a new role for leptin in linking nutritional status to cognate cellular immune function, and provide a molecular mechanism to account for the immune dysfunction observed in starvation.

Adult↗

Clinical evaluation of patients with temporomandibular joint implants.

PURPOSE: An undetermined number of patients with temporomandibular joint (TMJ) symptoms have been treated with intra-articular disc implants composed of Teflon ethylene/propylene or Teflon polytetrafluoroethylene and aluminum oxide (Proplast-Teflon; Vitek, Houston, TX). These implants have shown the potential to fragment in situ resulting in nonbiodegradable particles that stimulate a giant cell reaction and lead to degeneration of local structures, pain, and limitation of mandibular opening. We examined the possible relationship between TMJ implants and persistent pain, responses to sensory stimuli, quality of life, and systemic immune dysfunction. PATIENTS AND METHODS: This case series (32 patients) were referred from university-based orofacial pain centers and private practices from across the United States. Laboratory and clinical assessments evaluated orofacial pain symptoms, neurologic function, clinical signs and symptoms of rheumatologic disease, physical function, systemic measures of immune function, and behavioral measures. RESULTS: We found that TMJ implant patients appeared to have altered sensitivity to sensory stimuli, a higher number of tender points with a diagnosis of fibromyalgia, increased self-report of chemical sensitivity, higher psychologic distress and significantly lower functional ability. Systemic illness or autoimmune disease was not evident in this series of TMJ implant patients. CONCLUSIONS: Significant problems were noted on clinical assessment of TMJ implant patients. This is a US government work. There are no restrictions on its use.

Adult↗

Major injury leads to predominance of the T helper-2 lymphocyte phenotype and diminished interleukin-12 production associated with decreased resistance to infection.

OBJECTIVE: Patients with serious traumatic injury and major burns and an animal model of burn injury were studied to determine the effect of injury on the production of cytokines typical of the T helper-2 lymphocyte phenotype as opposed to the T helper-1 phenotype and on the production of interleukin-12. SUMMARY BACKGROUND DATA: Perturbations of natural and adoptive immunity are related to the increased susceptibility to infection manifested by seriously injured and burn patients. Earlier work has shown that impaired adoptive immunity after injury is characterized by diminished production of interleukin-2 (IL-2), a product of Th lymphocytes. Exposure of naive Th cells to certain antigens and cytokines causes conversion to either the Th-1 or the Th-2 phenotype. Th-1 cells produce IL-2 and interferon-gamma (IFN-tau) and initiate cellular immunity. Th-2 cells secrete interleukin-4 (IL-4) and interleukin-10 (IL-10) and stimulate production of certain antibodies. Conversion to the Th-1 phenotype is facilitated by IL-12, and conversion to the Th-2 phenotype is promoted by IL-4. The authors believed that serious injury might cause conversion of Th cells to the Th-2 as opposed to the Th-1 phenotype rather than generalized Th suppression. METHODS: The authors studied circulating peripheral blood mononuclear cells (PBMC) from 16 major burn and 8 trauma patients on 32 occasions early after injury and from 13 age- and sex-matched healthy individuals for cytokine production after phytohemagglutinin stimulation. Also studied was a mouse model of 20% burn injury known to mimic the immune abnormalities seen in humans with burns. Splenocytes from burn mice, 10 to 12 per group, were studied after activation by concanavalin A or by the bacterial antigen Staphylococcus aureus Cowan strain I for cytokine production and cytokine messenger RNA expression as determined by reverse transcriptase polymerase chain reaction. Burn mice were compared with sham-burn controls and attention was focused on day 10 after burn injury, a time when IL-2 production and resistance to infection are highly suppressed. Finally, burn and sham-burn animals, 20 per group, were treated in vivo with IL-12 (25 ng daily for 5 days) and observed for mortality after septic challenge (cecal ligation and puncture [CLP]) performed on day 10 after injury. RESULTS: Peripheral blood mononuclear cells from burn and trauma patients produced less IFN-tau, the index cytokine of Th-1 cells, than PBMCs from healthy individuals 1 to 14 days after burn injury (SE = 77.6 +/- 16 pg/mL patients vs. 141.3 +/- 35 pg/mL controls, p < 0.05). However, production of IL-4, the index cytokine of Th-2 cells, by patient PBMCs was increased (51.0 +/- 13.0 pg/mL patients vs. 26.9 +/- 2.5 controls, p < 0.05). Splenocytes from mice 10 days after burn injury, when compared with sham-burn controls, showed diminished production of IL-2 (1.04 +/- 0.91 units/mL burns vs. 5.8 +/- 0.55 units/mL controls, p < 0.05) and IFN-tau (1.05 +/- 0.7 units/mL burns vs. 12.0 +/- 8.9 units/mL controls, p < 0.05). However, burn splenocytes produced more IL-4 (2492 +/- 157.0 pg/mL burns vs. 672.0 +/- 22.7 pg/mL controls, p < 0.01) and IL-10 (695.2 +/- 20.8 pg/mL burns vs. 567.0 +/- 16.7 pg/mL controls, p < 0.05). Splenocyte production of IL-12 was also reduced after burn (0.20 +/- 0.035 units/mL) as compared with sham burn (0.46 +/- 0.08 units/mL, p < 0.05). The reduction in IL-2, IFN-tau, and IL-12 production by burn splenocytes was reflected by a tenfold decrease in expression of their respective cytokine mRNAs. In vivo IL-12 treatment of burn animals decreased mortality from CLP on day 10 after injury from 85% to 15% (sham-burn mortality after CLP, 15%, p < 0.05) and increased splenocyte IFN-tau production to supranormal levels. CONCLUSIONS: Serious injury induced diminished production of IL-1 2 and a shift to the Th-2 phenotype with increased production of IL-4 and IL-10, cytokines known to inhibit Th-1 function. The ability of exogenous IL-12 to restore Th-1 cytokine production and resistance to infection suggests a therapeutic role for IL-12 in the immune dysfunction seen after major injury.

Adult↗

Factors influencing predisposition to sepsis in children with cancers and acquired immunodeficiencies unrelated to human immunodeficiency virus infection.

OBJECTIVES: The main objectives of this review are to provide insight into the various factors that affect the risk of sepsis in immunocompromised children and to discuss special issues that should be considered when such patients are enrolled in clinical trials. STRATEGY: A literature review was conducted, and authoritative references were consulted when appropriate. This was supported by discussion among experts at an international consensus conference on pediatric sepsis. OUTCOME: The review discusses general issues as they relate to the factors that are associated with a predisposition to sepsis in children with cancers and non-human immunodeficiency virus (HIV)-related acquired immunodeficiencies. The host defects that are associated with specific infections are discussed, and an overview of the indicators of immune dysfunction in the previously well child is presented. Selected examples of patients with non-HIV-related acquired immunodeficiencies, including those with cancer or who have undergone solid-organ or hematopoietic stem-cell transplants are discussed. Special challenges that may affect clinical trials include the altered immune response as this relates to the definition of infection and disease and the assessment of outcomes and the heterogeneity of study populations due to the variable manifestations of immune deficiency states. SUMMARY: Knowledge of the factors that are associated with sepsis in immunocompromised patients is important when such patients are to be entered into clinical trials on sepsis. These factors do not necessarily operate in isolation and may occur concurrently or sequentially. With these considerations in mind, clinical trials involving immunocompromised children can go forward and will very likely lead to significant advances in the care of this understudied population.

Antineoplastic Agents↗

Special feature for the Olympics: effects of exercise on the immune system: effects of exercise on the immune system in the elderly population.

Immunosenescence is characterized by impaired cellular immune function concomitant with increased inflammatory activity. Immune dysfunction is associated with increased mortality risk in elderly people. An important part of human ageing is characterized by a decline in the ability of individuals to adapt to environmental stress. Exercise has been suggested as a prototype for studying the effects of stress factors on the cellular immune system. Studies of interactions between an acute bout of exercise and immune function may be a useful and an ethically acceptable tool to investigate cell trafficking, immune mobilization/deficiency and the acute phase response during physical stress situations in relation to human ageing. Elderly humans have a preserved ability to recruit T lymphocytes and NK cells in response to an acute bout of exercise. Physical exercise training programs do not result in major restoration of the senescent immune system in humans. However, highly conditioned elderly humans seem to have a relatively better preserved immune system, although it is not possible to conclude if this is linked to training or other lifestyle-related factors.

Adolescent↗

Genetically engineered vaccines. Comparison of active versus passive immunotherapy against solid tumors.

Late tumor bearers (LTB), that is, mice that had tumors 3 weeks or longer, can have a selective immune dysfunction and fail to respond to target antigens expressed by the cancer cells. Such mice, however, do respond to nonmalignant cells engineered to express the rejection antigen, and they can be vaccinated with such cells to reject growing tumors. In this study, we compared the efficacy of passive immunization with that of active immunization using the engineered vaccine. An allogeneic MHC class I molecule was used as model tumor antigen. We found that active immunotherapy was only effective for small tumors in early stages of growth. In a later stage of tumor growth, active immunotherapy did not cure any mice, whereas passive immunotherapy was successful in all animals. Reasons for the failure of these LTB to respond to active vaccination with the engineered vaccine may be related to the decreased primary or secondary response we observed in these mice after active immunization. It is suggested that normal antigen-presenting cells expressing the tumor rejection antigen can elicit, in the presence of IL-2, antigen-specific T-cell responses by LTB, and that such T cells may be curative when used in adoptive therapy. We also suggest that the stage of tumor growth and the immune status of LTB more closely simulate the conditions observed in cancer patients.

Animals↗

Polybrominated biphenyls in model and environmentally contaminated human blood: protein binding and immunotoxicological studies.

A review and summary is given of analytical, biochemical, and immunological studies made following an immunodiagnostic investigation which revealed significant decreases in the numbers, and changes in the functional integrity, of both T-and B-lymphocytes in a group of Michigan dairy farmers exposed to polybrominated biphenyls (PBB) which had been inadvertently introduced into the food chain in 1973. A quantification technique based on selected ion monitoring of bromine anions, obtained in negative chemical ionization, permitted determination of 10-35 pg of individual PBB congener per mL serum, a 20-fold improvement over electron capture gas chromatography. An in vitro spiked system was established and shown to be a representative model of environmentally contaminated blood. Immunoprecipitation followed by mass spectrometric quantification determined that the distribution of PBB among plasma, erythrocytes, mononucleocytes and polymorphonucleocytes was 89:9:less than 1:less than 1. In plasma 80% of the PBB was bound to apolipoproteins B and A in a 3:1 ratio. No preferential absorption of PBB congeners was found in the blood compartments suggesting that changes in the relative abundances of PBB congeners observed in longitudinal studies on Michigan subjects reflect differences in excretion rates or metabolism. A repeat in 1981 of the immunodiagnostic tests conducted in 1976 revealed a virtually complete persistence of the immune dysfunctions in the Michigan farmers exposed to PBB a decade ago.

Agricultural Workers' Diseases↗

Oxidative stress in autism.

Autism is a severe developmental disorder with poorly understood etiology. Oxidative stress in autism has been studied at the membrane level and also by measuring products of lipid peroxidation, detoxifying agents (such as glutathione), and antioxidants involved in the defense system against reactive oxygen species (ROS). Lipid peroxidation markers are elevated in autism, indicating that oxidative stress is increased in this disease. Levels of major antioxidant serum proteins, namely transferrin (iron-binding protein) and ceruloplasmin (copper-binding protein), are decreased in children with autism. There is a positive correlation between reduced levels of these proteins and loss of previously acquired language skills in children with autism. The alterations in ceruloplasmin and transferrin levels may lead to abnormal iron and copper metabolism in autism. The membrane phospholipids, the prime target of ROS, are also altered in autism. The levels of phosphatidylethanolamine (PE) are decreased, and phosphatidylserine (PS) levels are increased in the erythrocyte membrane of children with autism as compared to their unaffected siblings. Several studies have suggested alterations in the activities of antioxidant enzymes such as superoxide dismutase, glutathione peroxidase, and catalase in autism. Additionally, altered glutathione levels and homocysteine/methionine metabolism, increased inflammation, excitotoxicity, as well as mitochondrial and immune dysfunction have been suggested in autism. Furthermore, environmental and genetic factors may increase vulnerability to oxidative stress in autism. Taken together, these studies suggest increased oxidative stress in autism that may contribute to the development of this disease. A mechanism linking oxidative stress with membrane lipid abnormalities, inflammation, aberrant immune response, impaired energy metabolism and excitotoxicity, leading to clinical symptoms and pathogenesis of autism is proposed.

Journal Article↗

The role of FcgammaRIIa as an inflammatory mediator in rheumatoid arthritis and systemic lupus erythematosus.

Despite their essential role in host protection, immunoglobulins are also involved in autoimmune processes where antibodies recognize the host's own tissue, triggering inflammatory responses that result in extensive tissue damage. A complex interaction of genetic predisposition, together with environment factors, is thought to trigger immune dysfunction. Although recent studies have dissected the essential role of Fc receptors in autoimmune antibody mediated processes, the uniquely human FcgammaRIIa has not been studied in detail. This Fc receptor is of particular interest, as it is the most abundantly expressed Fc receptor in humans and is implicated in immune complex disease. Investigation of its role has been hampered to date due to lack of suitable animal models. This review examines the evidence for the direct role of this receptor in diseases such as systemic lupus erythematosus and rheumatoid arthritis.

Animals↗

Tumor-reactive immunoglobulins in ovarian cancer: diagnostic and therapeutic significance? (review).

Inhibition of the immune system has been observed in association with most stages of ovarian cancer; however, the mechanisms involved in the induction and maintenance of this chronic immune unresponsiveness associated with cancer progression are poorly understood. This immunosuppressed state is primarily defined as the failure to eradicate the tumor. This immunosuppressed state is generally associated with decreased numbers and reactivity of lymphoid cells in women with ovarian cancer. The degree of immune dysfunction in ovarian cancer patients has been demonstrated to correlate with patient survival. While ovarian cancer patients generally fail to exhibit effective immunosurveillance, as manifested by continued tumor growth and progression, the presence of tumor-reactive immunoglobulins can be demonstrated in these women, indicating the continued presence of immune recognition. We have not only demonstrated the presence of tumor-reactive antibodies in ovarian cancer patients, but have also shown that the levels of these antibodies increase as the disease progresses. The antigens recognized by the patients' humoral response have been identified as either membrane-associated or intra-cellular. In general, the localization of these antigens tend to be linked to the patient's prognosis. The presence of a humoral response against intracellular proteins are correlated with poor prognosis, while autoantibodies reactive with surface components appear to have a better prognosis. In addition to general antigen recognition, these reactive antibodies have been utilized to define specific epitopes on tumor-associated proteins. Certain specific antigenic epitopes exhibit common recognition among patients with the same tumor type. The specific recognition of certain epitopes can provide early evidence of aberrant protein expression and this aberrant expression of certain proteins, such as procathepsin D, appear to be linked to the tumor's acquisition of specific malignant characteristics, including metastasis formation and chemoresistance. Despite the existence of circulating tumor-reactive immunoglobulins, their presence correlates, in general, with poor prognosis and poor host survival. Since tumor-reactive immunoglobulins are elicited and can be detected early in the development of tumors and their enhanced synthesis is induced prior to the clinical manifestation of recurrence, the assessment of the tumor-reactive immune response against specific antigenic epitopes should represent an early significant diagnostic and prognostic marker in ovarian cancer.

Antibodies, Neoplasm↗

Modelling the immunogenicity of therapeutic proteins using T cell epitope mapping.

A new approach to designing therapeutic proteins is emerging, due to an improved understanding of T cell modulation of the immune response and new methods for modelling T cell epitopes using bioinformatics. In silico T cell epitope-mapping using the bioinformatics, when combined with other ex silico means of evaluating MHC-peptide and T cell interaction such as tetramers and HLA transgenic mice, enables the evaluation of dysfunctional immune responses to therapeutic proteins. This approach may even permit researchers to develop means of modulating anticipated adverse effects. The pocket profile method for developing T cell epitope prediction tools is reviewed here, and a comparison between the pocket profile method and the extended anchor method for epitopes restricted by the class II allele HLA DR B*0101 is described.

Animals↗

[The relationship between abnormalities of cell-mediated immunity and gut origin endotoxemia in a rat model of thermal injury].

This study was conducted to determine the relationship between abnormalities of cell-mediated immunity and gut-derived endotoxemia in rats following burns. Animals were subjected to a 40% full-thickness scald injury, and randomly divided into control and selective decontamination of the digestive tract (SDD) treated groups. It was found that thermal injury resulted in marked reductions in splenocyte proliferative response to concanavalin A or phytohemagglutinin, interleukin 2 (IL-2) production, and T helper/suppressor (Th/Ts) cells ratio. Prophylactic treatment with SDD significantly reduced the incidence of endotoxemia, prevented suppressive mitogenic response and inadequacy in IL-2 production (P < 0.05-0.01), but did not affect the abnormal ratio of Th/Ts in blood (P > 0.05). We conclude that bacteria/endotoxin translocation from the gastrointestinal tract appears to be involved in cellular immune dysfunction after thermal injury. Pretreatment with SDD might attenuate systemic immunosuppression by preventing translocation events.

Animals↗

Cellular immunity in monozygotic twins discordant for chronic fatigue syndrome.

Studies elsewhere have suggested that immune dysfunction may be common in patients with chronic fatigue syndrome (CFS). The objective of this study was to assess the nature and extent of abnormalities in lymphocyte cell surface markers and NK cell activity in patients with CFS while controlling for genetic factors. A co-twin control study of immune system parameters was conducted for 22 pairs of monozygotic twins discordant for CFS and 9 healthy pairs of twins. The CFS twins had greater numbers of CD62L(+) T cells in several T cell subsets, although these differences did not achieve statistical significance. Significantly greater variability was noted in twins discordant for CFS than in the concordant healthy twins for 20 of 48 variables examined. The monozygotic co-twin control design is of unique value because of its ability to control for genetic influences on CFS; however, additional studies will be required to further assess immune dysregulation in this illness.

Adult↗

Immunologic basis for susceptibility to infection in the aged.

Age-related immune dysfunction contributes to the vulnerability of old individuals to infection, e.g., animal model studies demonstrate the association between age-related decline in T cell-dependent immunologic responses and the decline in resistance against viral, bacterial, and parasitic infections. This review briefly describes age-related changes in the immune system at the systemic, tissue and cellular levels. At the systemic level, emphasis is on polymorphic effects of aging; at the tissue level, emphasis is on the vulnerability of primary tissues engaged in the generation of antigen-responsive cells and on the difference in the onset and rate of changes between different peripheral tissues of the system; and at the cellular level, emphasis is on the qualitative changes at the surface receptor, cytoplasmic and nuclear levels.

Aged↗