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Effects of vaccination against different T cell receptors on maintenance of immune function during murine retrovirus infection.

Murine retrovirus infection causes an aberrant stimulation of several subsets of T helper 2 cells identified by their T cell receptors (TCR). C57BL/6 mice were treated with synthetic peptides based upon different human TCR V beta CDR1 sequences following experimental infection with the murine retrovirus. Previous studies established that retrovirally infected mice produced autoantibodies to certain of these peptides, and their administration after infection diminished many of the cytokine abnormalities induced by the virus. This study determined whether the complete 16-mer synthetic peptides modeling the V beta CDR1/FR3 were required, and whether admixture of autoantigenic peptides synergized immune preservation. Treatment with complete TCR pep beta 3 and pep V beta 5.2 peptide alone and combined largely prevented the retrovirus-induced reduction in B and T cell proliferation and Th1 cytokine secretion while suppressing excessive production of Th2 cytokines, which are stimulated by retrovirus infection. Treatment with overlapping short peptides corresponding to the N-terminal 11-mer and C-terminal 12-mer did not significantly prevent the immune dysfunction in retrovirus-infected mice. These data suggest that immune dysfunction and abnormal cytokine production, induced by murine retrovirus infection, were largely prevented by TCR V beta CDR1 peptides, and the complete CDR1 in association with the five residues from FR2 was required.

Amino Acid Sequence↗

Time constraints mediate predator-induced plasticity in immune function, condition, and life history.

The simultaneous presence of predators and a limited time for development imposes a conflict: accelerating growth under time constraints comes at the cost of higher predation risk mediated by increased foraging. The few studies that have addressed this tradeoff have dealt only with life history traits such as age and size at maturity. Physiological traits have largely been ignored in studies assessing the impact of environmental stressors, and it is largely unknown whether they respond independently of life history traits. Here, we studied the simultaneous effects of time constraints, i.e., as imposed by seasonality, and predation risk on immune defense, energy storage, and life history in lestid damselflies. As predicted by theory, larvae accelerated growth and development under time constraints while the opposite occurred under predation risk. The activity of phenoloxidase, an important component of insect immunity, and investment in fat storage were reduced both under time constraints and in the presence of predators. These reductions were smaller when time constraints and predation risk were combined. This indicates that predators can induce sublethal costs linked to both life history and physiology in their prey, and that time constraints can independently reduce the impact of predator-induced changes in life history and physiology.

Animals↗

[Cell-mediated immune function in NPC patients treated with cimetidine].

Cimetidine (CMD), an H2 receptor antagonist, was used in combination with radiation for the treatment of patirnts with nasopharyngeal cancer (NPC). In patients treated with radiotherapy alone, there was an increase in the number of CD4+ T cells and in NK cell activity. In patients received combined treatment of radiation and CMD, in addition, there was a decrease in CD8+ T cells with an increase in CD4/CD8 ratio and an increase in IL-2 production. The NK cell activity was also stronger in the latter group. The results suggest that CMD helps restore cell-mediated immunity in NPC patients radiation treated.

Adjuvants, Immunologic↗

Age impairments in sleep, metabolic and immune functions.

Age-related sleep impairments are chronic and common, occurring even in the absence of diagnosable disorders. Additional loss of sleep occurs with clinical sleep disorders, many of which can be ameliorated. This literature, reviewed below, raises the question of the possible biological consequences of age-related, chronic sleep loss, an area that is poorly understood at present. Some of the more age-relevant theories about sleep loss will be explored in a review of current research on sleep deprivation arising from normal aging, experimental induction and pathology. The biological consequences of sleep deprivation in young adults include metabolic, systemic inflammatory and immune changes that are similar to those of aging and age-related disorders. The possibility that chronic sleep impairment contributes to age changes in metabolism, systemic inflammation and immunocompetence is explored.

Aged↗

Immune function, pain, and psychological stress in patients undergoing spinal surgery.

STUDY DESIGN: This study was an exploratory repeated measures design comparing patients undergoing two magnitudes of surgery in the lumbar spine: lumbar herniated disc repair and posterior lumbar fusion. OBJECTIVE: The present study evaluated and compared the effect of perceived pain, perceived stress, anxiety, and mood on natural killer cell activity (NKCA) and IL-6 production among adult patients undergoing lumbar surgery. SUMMARY OF BACKGROUND DATA: Presurgical stress and anxiety can lead to detrimental patient outcomes after surgery, such as increased infection rates. It has been hypothesized that such outcomes are due to stress-immune alterations, which may be further exacerbated by the extent of surgery. However, psychologic stress, anxiety, and mood have not been previously characterized in patients undergoing spinal surgery. METHODS: Pain, stress, anxiety, and mood were measured using self-report instruments at T1 (1 week before surgery), T2 (the day of surgery), T3 (the day after surgery), and T4 (6 weeks after surgery). Blood (30 mL) was collected for immune assessments at each time point. RESULTS: Pain, stress, anxiety, and mood state were elevated at baseline in both surgical groups and were associated with significant reduction in NKCA compared with the nonsurgical control group. A further decrease in NKCA was observed 24 hours after surgery in both surgical groups with a significant rise in stimulated IL-6 production, regardless of the magnitude of surgery. In the recovery period, NKCA increased to or above baseline values, which correlated with decreased levels of reported pain, perceived stress, anxiety, and mood state. CONCLUSIONS: This study demonstrated that patients undergoing elective spinal surgery are highly stressed and anxious, regardless of the magnitude of surgery and that such psychologic factors may mediate a reduction in NKCA.

Adolescent↗

Using heat shock proteins as indicators of the immune function in wistar rats during a secondary Trichinella spiralis infection.

The muscle, liver, brain and spleen tissues from Wistar rats with either a primary Trichinella spiralis infection alone, or reinfected 45 days after primary infection, were collected at Days 1, 7, 14, 20 and 27 post reinfection. They were then assayed for levels of four heat shock proteins (HSPs), i.e. hsp90, hsp70, hsp60 and hsp25. Detection and quantitation of the separate HSPs in tissue specimens were achieved using Western blot and image analysis technique, respectively. The results show that the elements affecting altered expression of rat organs' HSP were 'neutralized' by resistance-related events in immunized rats. Thus, while rat organs exhibited varying HSP levels in primary infections [Martinez, J., Perez-Serrano, J., Bernadina, W., Rodriguez-Caabeiro, F., 1999. Parasitology 118, 202-209], there was, in reinfected versus primary-infected rats, no difference in test HSPs levels in any organ, and at any time within the time course of this study. We have interpreted the results by using the model that involves induction of anti-T.spiralis immunity during primary infection and (almost) complete removal of effectors of tissue injury (infective T.spiralis larvae and newborn larvae) during reinfection.

Animals↗

Reduction in arthritis severity and modulation of immune function in tissue factor cytoplasmic domain mutant mice.

Tissue factor (TF), a transmembrane receptor for plasma factor VII(a), is the main initiator of the coagulation cascade. It has also been implicated in noncoagulant processes, including inflammation. The function of the TF cytoplasmic domain was studied in mice in which 18 of the 20 cytoplasmic amino acids were deleted. This mutation (TF(deltaCT/deltaCT)) is not associated with alterations in blood coagulation. Arthritis was induced by intra-articular injection of methylated bovine serum albumin (mBSA) in mice preimmunized with mBSA. Arthritis severity was significantly reduced in TF(deltaCT/deltaCT) mice compared to wild-type mice, including reductions in synovitis, synovial exudate, cartilage degradation, and bone damage. A marked reduction in synovial interleukin (IL)-1beta and IL-6 mRNA was also observed. Serum anti-mBSA IgG1, but not IgG2a, was increased in mutant mice. Cutaneous delayed-type hypersensitivity and antigen-induced T-cell proliferation were reduced in TF(deltaCT/deltaCT) compared to wild-type mice. A significant down-regulation of lipopolysaccharide-induced IL-1, tumor necrosis factor, IL-6, macrophage migration inhibitory factor, and matrix metalloproteinase-13 mRNA was observed in immunized, but not in naive TF(deltaCT/deltaCT) macrophages ex vivo. These data suggest a significant role for the cytoplasmic domain of TF in the regulation of the immunoinflammatory responses, a murine arthritis model, and macrophage function.

Animals↗

Modulation of immune function by dietary lectins in rheumatoid arthritis.

Despite the almost universal clinical observation that inflammation of the gut is frequently associated with inflammation of the joints and vice versa, the nature of this relationship remains elusive. In the present review, we provide evidence for how the interaction of dietary lectins with enterocytes and lymphocytes may facilitate the translocation of both dietary and gut-derived pathogenic antigens to peripheral tissues, which in turn causes persistent peripheral antigenic stimulation. In genetically susceptible individuals, this antigenic stimulation may ultimately result in the expression of overt rheumatoid arthritis (RA) via molecular mimicry, a process whereby foreign peptides, similar in structure to endogenous peptides, may cause antibodies or T-lymphocytes to cross-react with both foreign and endogenous peptides and thereby break immunological tolerance. By eliminating dietary elements, particularly lectins, which adversely influence both enterocyte and lymphocyte structure and function, it is proposed that the peripheral antigenic stimulus (both pathogenic and dietary) will be reduced and thereby result in a diminution of disease symptoms in certain patients with RA.

Antigens↗

Immune function of successfully treated lymphoma patients.

Immunologic function was evaluated in 12 patients with Hodgkin's disease and 5 patients with lymphocytic lymphoma who had been successfully treated with either chemotherapy, radiation therapy, or both of these modalities 3-42 mo previously. Only two of the patients were found to have total anergy to a battery of six recall skin test antigens and all were responsive to skin testing with phytohemagglutinin. However, 10 of 16 patients were unable to develop delayed cutaneous hypersensitivity to either of the neoantigens dinitrochlorobenzene or keyhole limpet hemocyanin. Four other patients developed reactivity to only one of these neoantigens for a total of 14 of 16 (88%) of the patients demonstrating some impairment in neoantigen response. Total lymphocyte, T-lymphocyte, B-lymphocyte, and null cell numbers, as well as serum immunoglobulins were quantitatively normal. Monocyte numbers, chemotaxis, and Fc receptor activity were normal. Monocyte staphylocidal activity at 60 min was modestly depressed and candidacidal activity was depressed in those receiving both chemotherapy and radiation therapy. Spontaneous (unstimulated) lymphocyte [3H]thymidine incorporation was low in the patients as a group and lymphoblastic transformation to specific antigens was impaired in 11 of 17 patients who had positive skin test reactions to the same antigen. Highly significant suppression of lymphoblastic transformation was noted after stimulation by the mitogens phytohemagglutinin, pokeweed, and concanavalin-A. The greatest impairment of mitogen response was seen in those patients receiving both chemotherapy and radiation therapy. These data demonstrate specific impairments of neoantigen processing, lymphocyte function, and to a lesser extent monocyte function in successfully treated patients with lymphoma. These impairments may contribute to the increased incidence of infections and second primary malignancies in these patients.

Adolescent↗

[Immune function and abdominal surgery in blood stasis syndrome in patients with gastrointestinal diseases].

52 Patients with Blood Stasis Syndrome (BSS) in abdominal surgical diseases were divided into 3 types according to their symptoms, signs and natures of diseases. Peripheral blood T lymphocyte subsets of these BSS patients and 12 healthy persons were studied with Flow Cytometry and monoclonal antibodies. The immunoglobulins and complements of these cases were also studied. There were no difference in T cell subsets, immunoglobulins and complements between Qizhi-BSS group and normal control. The Shire-BSS group showed that CD8 cell, IgG, IgM, and C1, C3c were increased. These results showed that the immune response increased in this type of BSS patients. In the Qixu-BSS group, the CD3 was nearly normal, and the CD4+, CD4+/CD8+ ratio, and CD16+ were statistically decreased. However, the CD8+ cells markedly increased, the IgG, IgM and IgD were also lowered significantly in this type. The marked morphologic abnormal changes in ultrastructures of T lymphocyte were found in 6 patients with Qixu-BSS group. These results showed that the Qixu type of Blood Stasis Syndrome patients were in the immuno-suppressive status.

Abdomen↗

Glucocorticoids and immune function: physiological relevance and pathogenic potential of hormonal dysfunction.

The more knowledge accumulates on the molecular action of glucocorticoids, the less appears to be known about the physiological relevance of these data. Mechanisms that determine bioactivity of glucocorticoids are largely neglected in studies on their molecular actions in immunoregulation. However, alterations of these mechanisms may contribute to the pathogenesis of acute of chronic inflammation, ranging from septic shock to autoimmune disease, or even acquired immuno deficiency syndrome. In this article, Thomas Wilckens attempts to challenge the long-standing dogma of glucocorticoids being only immunosuppressive in their action, and suggests a physiological role in which they are a prerequisite for a coordinated immune response.

Animals↗

Social support and the development of immune function in human immunodeficiency virus infection.

A psychosocial investigation offered to all human immunodeficiency virus (HIV)-infected men with moderately severe or severe hemophilia in Sweden was made in 1986. Most of these men had been infected in the years 1980 to 1984 and told about their infections in 1985. Forty-nine subjects had answered questions in regard to sources of emotional support in their life situation. Based on the responses to these questions a score of "availability of attachment" (AVAT) was calculated, and two groups of patients were identified: one with high AVAT and one with low AVAT scores. The subjects were followed with regard to the state of their immune system, as reflected by CD4 counts, until 1990. The results indicated that a low AVAT score in 1985 was associated with a significantly more rapid progressive deterioration in CD4 count during subsequent years. The mechanism behind this association is unknown. Several possible confounders were not studied. However, if the association between a poor AVAT score and rapid CD4 deterioration after HIV infection is replicated in other samples, it could be important to the future clinical care of HIV-infected subjects.

Adolescent↗

[Effect of Kunyining capsule on reproductive endocrine-immune functions in ovariectomized rats].

OBJECTIVE: To study the therapeutic mechanism of Kunyining (KYN) on the climacteric syndrome and provide the pharmacodynamic basis. METHOD: Ovariectomized rats were used as model to observe the effect of KYN on weight and the index of the organ of OVX rats. The concentration of E2, FSH, LH, PRL, BGP and IL-2 in serum were measured by competitive radio-immunological methods. RESULT: KYN could obviously increase the index of uterus and adrenal gland in OVX rats, and enhance the contents of E2, IL-2 and BGP. The level of FSH, LH, PRL in serum were decreased. CONCLUSION: KYN can regulate beneficially the unbalanced reproductive endocrine-immune network, which is the pharmacological basis of KYN treating climacteric syndrome.

Adrenal Glands↗

Humoral immune functions in IL-4 transgenic mice.

We have analyzed mice expressing IL-4 as a transgene, and found that expression of this lymphokine has profound effects on B cell function. B cells from transgenic mice exhibit phenotypic changes, including an increase in size and elevated expression of class II MHC. IL-4 increases the quantity of IgE produced by transgenic-derived B cells in response to LPS stimulation. In vivo, IL-4 markedly affects the serum Ig isotype repertoire. Serum levels of IgG1 and IgE are elevated, and levels of IgG2a, IgG2b, and IgG3 are depressed in IL-4 transgenic mice. Ag-specific antibody responses to immunization with hapten-carrier conjugates are also affected by IL-4. Transgenic mice show increased anti-hapten IgE and IgG1 and reduced anti-hapten IgG2a, IgG2b, and IgG3, compared with wild-type mice. Ag-specific IgE is substantially induced by T cell-dependent Ag, but not T cell-independent Ag, suggesting that cognate T-B interactions in addition to IL-4 are required for generating IgE responses in vivo. In vivo treatment with the anti-IL-4 mAb 11B11 reverses many of the isotype alterations in the transgenic mice, indicating that these changes arise as a direct consequence of IL-4 secretion.

Animals↗

Suppressive effects of benzo[a]pyrene upon fish immune function: evolutionarily conserved cellular mechanisms of immunotoxicity.

Knowledge gained through the use of alternative animal models has significantly enhanced our understanding of life at all levels of biological organization. The discipline of toxicology is under considerable pressure to develop such models due to increasing public concern regarding the experimental use of mammals. Studies in this laboratory have focused on the utility of a small laboratory fish model, the Japanese medaka (Oryzias latipes), to investigate immunotoxicological effects of benzo[a]pyrene (BaP). BaP is a ubiquitous environmental contaminant and known mammalian immunotoxicant. This laboratory has demonstrated that in vivo exposure of medaka to BaP (2-200 microg/g BW) significantly depresses both innate and humoral immunity. Further studies have indicated that BaP activates its own biotransformation pathway within medaka immune cells following both in vivo and in vitro exposure. In addition, reduction of BaP metabolism with alpha-naphthoflavone results in the reversal of BaP-induced suppression of antibody production in vitro. Inhibition of CYPlA-mediated metabolism within medaka immune cells also alleviates the immunotoxicity induced by benzo[a]pyrene-7,8-dihydrodiol, but not benzo[a]pyrene-7,8-dihydrodiol-9,10-epoxide (BPDE). This suggests that BPDE may be an ultimate immunotoxicant. Results from this study in medaka are in agreement with previously conducted rodent studies that indicated a role for immunotoxic BaP metabolites in BaP-induced suppression of humoral immunity.

7,8-Dihydro-7,8-dihydroxybenzo(a)pyrene 9,10-oxide↗

Immune function in transplanted small intestine. Total secretory IgA production and response against cholera toxin.

Secretory IgA is the dominant immunoglobulin produced in the small intestine and one important component of the local defense against dietary and infectious agents present in the gut lumen. The effect of small intestine transplantation on total production of sIgA and on the response to a newly presented antigen, cholera toxin, was determined in a rat segmental heterotopic intestinal transplant model. Lewis x Brown Norway F1 (LBNF1) allografts in Lewis hosts made normal amounts of sIgA, when compared with LBNF1 Thiry-Vella loops or LBNF1 isografts. In contrast, the allografts failed to make a significant specific sIgA response when immunized with cholera toxin at days 0 and 7 following transplantation. This failure was not the result of surgical manipulation, as isografts made normal amounts of specific sIgA directed against cholera toxin. Cyclosporine immunosuppression delayed, but did not prevent, the secretion of specific antibody in isografts. This failure to respond to a new antigen may have important implications for the safety of small bowel transplantation.

Animals↗

[Effect of integrated Traditional Chinese and Western medicine on immune function in patient of acute cerebral infarction].

OBJECTIVE: To investigate the change of serum soluble vascular cell adhesion molecule-1 (sVCAM-1) in acute cerebral infarction patients treated with integrated traditional Chinese and western medicine (TCM-WM). METHODS: Serum sVCAM-1 level of patients treated with TCM-WM or western medicine alone was measured by ELISA, and compared with that of healthy person. RESULTS: TCM-WM could reduce the sVCAM-1 level in patients with cerebral infarction (P < 0.05). The therapeutic effect of TCM-WM was better than that of western treatment alone, P < 0.05. CONCLUSION: The therapeutic mechanism of TCM-WM may be related with the modulation on immune status of patients.

Aged↗