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Modulation of immune function and cytokine production by various levels of vitamin E supplementation during murine AIDS.

Female C57BL/6 mice were infected with LP-BM5 retrovirus, causing murine AIDS which is functionally similar to human AIDS. Dietary supplementation, with a 15-, 150- and 450-fold increase of vitamin E in a liquid diet, significantly restored levels of interleukin-2 (IL) and interferon-gamma produced by splenocytes, which were suppressed by retrovirus infection. Retrovirus infection elevated levels of IL-6 and IL-10 produced by splenocytes, which were significantly normalized by all levels of vitamin E supplementation, respectively. Increased levels of IL-6 and tumor necrosis factor-alpha, produced by splenocytes during progression to murine AIDS, were also significantly normalized by all levels of vitamin E supplementation. Vitamin E supplementation restored retrovirus-suppressed splenocyte proliferation and natural killer cell cytotoxicity. Vitamin E supplementation also alleviated the AIDS symptoms: splenomegaly and hypergammaglobulinemia. These data indicate that dietary vitamin E supplementation at extremely high levels was not immunotoxic, and can modulate cytokine release and normalize immune dysfunctions during progression to murine AIDS. It should favorably affect host resistance and thereby retard the development of AIDS.

Animals↗

CD25(+)CD4(+) regulatory T cells from the peripheral blood of asymptomatic HIV-infected individuals regulate CD4(+) and CD8(+) HIV-specific T cell immune responses in vitro and are associated with favorable clinical markers of disease status.

Human immunodeficiency virus (HIV) disease is associated with loss of CD4(+) T cells, chronic immune activation, and progressive immune dysfunction. HIV-specific responses, particularly those of CD4(+) T cells, become impaired early after infection, before the loss of responses directed against other antigens; the basis for this diminution has not been elucidated fully. The potential role of CD25(+)CD4(+) regulatory T cells (T reg cells), previously shown to inhibit immune responses directed against numerous pathogens, as suppressors of HIV-specific T cell responses was investigated. In the majority of healthy HIV-infected individuals, CD25(+)CD4(+) T cells significantly suppressed cellular proliferation and cytokine production by CD4(+) and CD8(+) T cells in response to HIV antigens/peptides in vitro; these effects were cell contact dependent and IL-10 and TGF-beta independent. Individuals with strong HIV-specific CD25(+) T reg cell function in vitro had significantly lower levels of plasma viremia and higher CD4(+): CD8(+) T cell ratios than did those individuals in whom this activity could not be detected. These in vitro data suggest that CD25(+)CD4(+) T reg cells may contribute to the diminution of HIV-specific T cell immune responses in vivo in the early stages of HIV disease.

CD4 Antigens↗

Transfer of accelerated presbycusis by transplantation of bone marrow cells from senescence-accelerated mice.

Until now, there has been no effective therapy for chronic sensorineural hearing impairment. This study investigated the role of bone marrow cells (BMCs) in cochlear dysfunction. BALB/c mice (2 months of age), a non-presbycusis-prone mouse strain, were lethally irradiated and then transplanted with BMCs from SAMP1 mice (2 months of age), a presbycusis-prone mouse strain. Acceleration of age-related hearing loss, early degeneration of spiral ganglion cells (SGCs) and impairment of immune function were observed in the recipient mice as well as in the SAMP1 mice. However, no spiral ganglion cells of donor (SAMP1) origin were detected in the recipient mice. These results indicated that accelerated presbycusis, cochlear pathology, and immune dysfunction of SAMP1 mice can be transferred to BALB/c recipient mice using allogeneic bone marrow transplantation (BMT). However, although the BMCs themselves cannot differentiate into the spiral ganglion cells (SGCs), they indirectly cause the degeneration of the SGCs. Further studies into the relationship between the inner ear cells and BMCs are required.

Aging↗

[Immunology in the severely injured].

Immunological complications frequently occur during the clinical course in patients with multiple injuries. The increased release of pro-inflammatory mediators during the immunological response to trauma may lead to the systemic inflammatory response syndrome (SIRS) and furthermore, to multisystem organ failure (MOF), which is associated with a mortality of up to 80%. The development of multiple organ failure following major trauma is associated with remote organ failure, the dysfunction of organs which were not initially affected by the trauma. This manuscript reviews recent data in experimental trauma research and offers a more detailed evaluation of the immunological findings in trauma patients. In particular, the role of pro- and anti-inflammatory cytokines in the development or SIRS, MOF and ROF is discussed. Despite the enormous progress in clinical immunology and the available data on trauma-induced immune dysfunction, a large number of questions still remain to be answered before the immunological alterations following severe trauma can be beneficially influenced by immunomodulatory therapeutic efforts.

Acute Disease↗

Strain-dependence and cellular aspects of the acceleration of age-dependent shift in class-specific helper and suppressor activity in the thymus of MRL/Mp mice by the LPR gene.

Previous studies of the immunoregulatory activity of thymocytes from SJL/J mice have shown loss of suppressor activity for the antibody response by 24 weeks of age with appearance of helper activity. At the same time, suppressor cells developed which inhibit the generation of cytotoxic T lymphocytes (CTL). We now show a similar pattern of helper and suppressor activity in MRL/Mp mice. Presence of the lpr/lpr genotype significantly accelerated the onset of these changes in thymocyte activity. A similar pattern of thymocyte activity was not detected in C57B1/6 mice. In aged MRL-lpr mice, evidence of increased suppressor cell activity for the CTL response could be demonstrated in spleen, and the suppressor was sensitive to treatment with anti-thy 1.2 + complement. The magnitude of the deficiency in the CTL response in MRL-lpr mice was greater than could be accounted for by suppressor cell activity alone. Measurement of the frequency of CTL precursors (CTLP), the yield of CTL per CTLP, and the ability to produce and to respond to interleukin 2 (IL-2) indicated that a drop in CTLP frequency, subnormal generation of IL-2, and probably an intrinsic defect in the responsiveness of MRL-lpr CTLP to IL-2 was contributing to the defective CTL response. We were not able to link suppressor T cells with reduced responsiveness to IL-2. Ageing involves different patterns of change in immunoregulatory T-cell subsets in different strains of mice, depending on their genetic constitution. The general implications of this conclusion for prediction of immune dysfunction with age in genetically distinct members of an outbred population are discussed.

Aging↗

Involvement of interleukin-2 in immunologic reconstitution following bone marrow transplantation in mice.

Allogeneic or autologous bone marrow transplantation (BMT) is a curative form of treatment for patients with a variety of hematologic disorders. Impaired immune reconstitution following BMT may seriously impede successful outcome. In this study, the immune function of spleen and thymus was investigated in mice exposed to myeloablative total-body irradiation followed by syngeneic BMT. The T cell mitogen-induced proliferation of both splenic and thymic cells was delayed. Spleen cells started to respond only after 21 days, whereas thymic cells remained unresponsive. Kinetic analysis of surface markers revealed the early appearance of spleen cells with the CD3+CD4-CD8- phenotype, and the thymus, despite a low total number of cells, displayed fast recovery of CD3+CD4+CD8+. At the level of mRNA, a mild decrease in interleukin-2 (IL-2) induction following phytohemagglutinin activation of spleen cells correlated with a decrease in IL-2 secretion for only the first 2 weeks following transplantation. The early restoration of IL-2 implies other avenues for investigation of the immune dysfunction and its correction following syngeneic BMT.

Animals↗

[Study on the cellular immune function and cytokines in aplastic anemia patients].

OBJECTIVE: To evaluate the effects of cellular immune function and cytokines on the pathogenesis of aplastic anemia (AA) and its clinical significance. METHODS: T lymphocyte subsets and HLA-DR antigen expression in the peripheral blood cells were assayed, and the levels of G-CSF, IL-6, TNF alpha, IFN alpha and IL-8 in the PBMNC culture supernatants were determined in 38 AA patients and 20 normal control with APAAP and ELISA methods. RESULTS: CD4+ cells, CD4+/CD8+ cells and G-CSF level were lower, and CD8+ cells, HLA-DR+ cells and IL-6, TNF alpha, IFN alpha and IL-8 levels were higher in AA patients than in normal controls. The level of G-CSF was positively correlated with CD4+ cells and CD4+/CD8+ cells and negatively with IFN alpha level. IL-6 level was negatively correlated with WBC count and CD4+ cells. TNF alpha level was positively correlated with CD8+ cells and negatively with CD4+/CD8+ cells. IL-8 level was positively correlated with CD8+ cells and HLA-DR+ cells. CONCLUSION: The cellular immune dysfunction and cytokine aberration participate in the pathogenesis of AA.

Adult↗

Long lasting control and lack of pathogenicity of the attenuated Rev-independent SIV in rhesus macaques.

A cohort of 22 rhesus macaques of Indian origin infected as neonates, juveniles, or adults by Rev-independent strains of SIV was monitored over several years. After the initial acute phase, virus replication was controlled and plasma virus loads were persistently below the threshold of the assay. The animals were monitored for up to 7.6 years after infection for viral loads, cellular and humoral immune responses, hematological changes, and overall health and no signs of immune dysfunction or AIDS were observed. This study represents several years of additional observation compared to the previously published results, and indicates that the Rev-independent SIV clones tested do not cause AIDS-like progressive disease within 7.6 years from infection. All the animals showed persistent humoral and cellular SIV-specific immune responses, consistent with chronic infection. Different Rev-independent SIV strains showed similar properties and lack of pathogenicity. Multicolor flow cytometric analysis demonstrated preservation of the Central Memory subset of T cells in the attenuated SIV-infected animals. This study demonstrates a potent, long-lasting control of the Rev-independent attenuated SIV in macaques independent of the age at virus exposure.

Animals↗

Opioids modulate human neutrophil and lymphocyte function: thermal injury alters plasma beta-endorphin levels.

To investigate the role of opioids in the acquired immune dysfunctional state that occurs after burns or trauma, plasma beta-endorphin levels were measured serially in nine severely burned patients, and the effect of four different opioids on normal neutrophil and lymphocyte function was quantitated. The rationale for these studies is that the neuroendocrine system appears capable of interacting with and modulating immune function. The plasma levels of beta-endorphin increased to higher than normal during the first 36 hours after burn (15 versus 3.4 pmol/L, p less than 0.05) but quickly returned toward normal. Morphine had the most profound effect on in vitro neutrophil function; it decreased neutrophil chemotaxis but increased neutrophil bactericidal activity for Staphylococcus aureus, as well as resting and zymosan-stimulated oxygen consumption. Other opioids (naloxone, met-enkephalin, and beta-endorphin) had no direct effect on neutrophil chemotaxis or bactericidal activity. Both naloxone and met-enkephalin increased neutrophil oxygen consumption in a dose-dependent fashion, whereas beta-endorphin impaired neutrophil oxygen consumption. None of the opioids altered resting lymphocyte blastogenesis. The only opioid that impaired the ability of normal lymphocytes to respond to mitogen stimulation at physiologically relevant doses was beta-endorphin. These results, documenting that beta-endorphin levels are altered after thermal injury and that opioids can modulate normal neutrophil and lymphocyte function in vitro, support the concept that changes in neuroendocrine activity may occur and potentially alter immune function.

Blood Bactericidal Activity↗

HLA, aging, and longevity: a critical reappraisal.

Despite a large number of studies, available data do not allow at present to reach definitive and clear conclusions on role of HLA on longevity, owing to major methodological problems, such as serological and molecular typing of different loci, insufficient sample sizes, different inclusion criteria and age cut-off, inappropriate mixing of data referred to people from 58 to over 100 years of age, inappropriate control matching, and neglected consideration of sex-related effects and the different genetic make-up of studied populations. However, within this confused scenario, some data emerge. First, two studies that do not fit the biases above discussed show that some HLA alleles are associated with longevity. However, some of these alleles may confer an increased risk to undergo a variety of diseases. Second, longevity may be associated with an increased homozygosity at HLA loci. Third, an intriguing association between longevity and the 8.1 ancestral haplotype (AH), which has been proven to be associated with a variety of immune dysfunctions and autoimmune diseases, apparently emerges. This association appears to be a sex-specific (males) longevity contributor, and it is particularly interesting, taking into account that a type 2 (early infancy) --> type 1 (adulthood) --> type 2 (aging) shift of cytokine profile occurs lifelong, and that individuals bearing this haplotype show a type 2 immune responsiveness (note that type 1 cytokines mainly enhance cellular responses, whereas type 2 cytokines predominantly enhance humoral responses). On the whole, the (sex specific) association of longevity with alleles or haplotypes of several genes related to risk factors for a variety of diseases (cardiovascular diseases, cancer), including HLA alleles and haplotypes, is not unexpected on the basis of previous studies on the genetics of longevity in centenarians. This association can be interpreted under the perspective of a well known evolutionary theory of aging (antagonistic pleiotropy). This theory predicts that the same gene (or allele or haplotype) can have different roles (positive or negative) in different periods of the life span. Thus, the 8.1 AH should exert a positive effect during the infancy and aging but not in adulthood, when, indeed it is associated to susceptibility to a variety of diseases.

Aged↗

Psychoneuroimmunology: an emerging framework for nursing research.

Psychoneuroimmunology (PNI) is concerned with the mechanisms of bidirectional communication between the neuroendocrine and immune systems. Investigators in other disciplines have used this framework to guide the examination of possible relationships between behavioural factors and the progression of immunologically mediated illnesses and to evaluate the role of immune products in central nervous system disturbances. Nurse scientists have an opportunity to make unique contributions to the growing field of PNI. Unlike basic science research, which has as its goal the generation of fundamental knowledge concerning biological or behavioural processes, nursing research is driven by the need to promote excellence in nursing science as a guide for nursing practice. Although a few nurse scientists have conducted PNI research to date, additional studies are needed to generate new knowledge concerning mind-body interactions in health and illness and to develop strategies that promote mental and physical well-being in persons at risk for immune dysfunction. This paper highlights the few recently conducted nursing studies grounded in a PNI framework to illustrate the utility of PNI in advancing nursing science.

Health Promotion↗

SERPINE1-centric inflammatory signature associates with treatment resistance and survival in laryngeal squamous cell carcinoma.

BACKGROUND: Laryngeal squamous cell carcinoma (LSCC) prognosis remains poor despite treatment advances. More accurate prognostic assessment models can help guide individualized treatment and improve prognosis. Chronic inflammation contributes to tumorigenesis, yet inflammatory response-related genes (IRGs) in LSCC prognosis are underexplored. This study aimed to construct an IRG prognostic signature for LSCC and further dissect core IRG-mediated mechanisms of immune escape and chemoresistance. METHODS: Transcriptional profiles and clinical data from LSCC patients were retrieved from The Cancer Genome Atlas (TCGA). IRGs were sourced from Gene Set Enrichment Analysis (GSEA) hallmark gene set. We identified differentially expressed IRGs linked to survival outcomes in LSCC. Key IRGs were subsequently selected using least absolute shrinkage and selection operator (LASSO) Cox regression analysis to establish an inflammatory risk score model. This model underwent internal validation within the TCGA cohort and external validation using independent Gene Expression Omnibus (GEO) datasets. We further assessed the model's association with the tumor immune microenvironment and the impact of IRGs on chemotherapy response. Finally, the functional roles of interested signature IRG were experimentally validated in LSCC cell lines. RESULTS: Four significant IRGs (AQP9, ITGA5, LCK, SERPINE1) were identified to build the risk score model. The model stratified LSCC patients into distinct prognostic groups: TCGA cohort: 5-year area under the curve (AUC) =0.836, P<0.001; GSE25727 cohort: 5-year AUC =0.706, P=0.02; GSE27020 cohort: 5-year AUC =0.798, P<0.01. Multivariate analysis confirmed the risk score as an independent prognostic factor (P<0.05). High-risk patients showed reduced immune cell infiltration (CD8+ T cells, dendritic cells) and suppressed immune pathways. Multi-algorithm immune analysis further revealed defective antigen presentation and reduced anti-tumor immune infiltration in high-risk LSCC, promoting tumor immune escape. GSEA/Gene Ontology (GO) enrichment combined with drug sensitivity prediction further revealed that high-risk tumors activate invasive signaling and acquire broad chemoresistance alongside impaired anti-tumor immunity. SERPINE1 might be associated with chemotherapy resistance and exhibited the highest alteration frequency (predominantly amplification) and overexpression in LSCC tissues. Its knockdown significantly suppressed proliferation, migration, invasion and chemoresistance in LSCC cells. Immunohistochemistry (IHC) confirmed tumor SERPINE1 overexpression (P=0.002 vs. normal tissues), correlating with poor survival (P<0.001). CONCLUSIONS: The 4-IRG risk signature is a reliable prognostic indicator reflecting immune dysfunction in LSCC. SERPINE1 is validated as a therapeutic target and biomarker, enriching our understanding of gene regulation dynamics in LSCC.

Laryngeal cancer↗

[Th1/Th2 balance in systemic inflammatory response syndrome (SIRS)].

The activation of a pro-inflammatory cascade after infection, major surgery, burn or trauma appears to be important in the development of subsequent immune dysfunction, susceptibility to sepsis and multiple organ failure. It is well known that T-cell plays a critical role in the systemic response to infection. Distinct patterns of cytokines are produced by two different types of T-helper cells (Th). Th1 lymphocytes produce IFN-gamma and IL-2, favoring cell mediated immunity; Th2 cells secrete IL-4, IL-5, IL-10, IL-13, favoring humoral immunity. Cytokines produced in systemic inflammatory response syndrome (SIRS) may effect Th subset predominance and subsequent immune responses. We measured Thl/Th2 balance in patients with severe sepsis, SIRS patients with non sepsis, and healthy subjects by flow cytometry. In patients with severe sepsis, Th2 antibody mediated (humoral) immune responses predominate. We believe that severe sepsis clearly induce polarization of T-helper lymphocyte activity with a clear shift in Th2 direction. This type of response may lead immunosuppression. Modulation of Th cell subset predominance may present a novel therapeutic option in the treatment of severe sepsis.

Humans↗

Progressive immune failure in dyskeratosis congenita. Report of an adult in whom Pneumocystis carinii and fatal disseminated candidiasis developed.

Community-acquired Pneumocystis carinii pneumonia developed in a young adult patient with dyskeratosis congenita. His hospitalization ended fatally with disseminated candidiasis. Evaluation during the admission showed evidence of cellular immune dysfunction as indicated by skin test anergy and absent lymphocyte proliferation in an in vitro mixed lymphocyte culture. Treatment with transfer factor failed to reverse the cutaneous anergy or affect the clinical course. Dyskeratosis congenita is a rare multisystem disorder with prominent dermatologic manifestations; bone marrow failure or malignant neoplasm are common fatal outcomes. Immune system abnormalities are not classically considered a part of the disease complex. Serial evaluation of our patient's condition over several years suggests that depressed immune function, especially of the cellular limb, may evolve as a feature of clinical importance in these patients.

Acquired Immunodeficiency Syndrome↗

Immune responses in the draining lymph nodes against cancer: implications for immunotherapy.

Regional lymph nodes are the first site for melanoma metastases. The sentinel node (SN), on the direct lymphatic drainage pathway, which usually harbors first metastases, demonstrates significant suppression in its ability to respond to antigenic stimulation. This down-regulation of SN immunity is likely the basis of its susceptibility to tumor metastases, suggesting a potential role of the immune system in the control of malignant tumors. Despite immune dysfunction in the SN, phase II trials of systemic post-operative immunotherapy with a polyvalent melanoma vaccine developed at the John Wayne Cancer Institute showed improved 5-year overall survival in patients with melanoma metastatic to regional nodes. However, most immunotherapy clinical trials have failed to demonstrate a significant clinical response, and analyses of immune responses to tumor-associated antigens that correlate clinical responses have not been established. Therefore, refinements in assay methodologies and improvements in vaccine designs are critical to the success of cancer immunotherapy. Antigen presentation by dendritic cells (DCs) is the most potent means to initiate a T cell immunity. Dendritic cell-based immunotherapies have been vigorously attempted in the past decade. To improve the immunogenicity of cancer vaccines, we recently generated heterokaryons of DCs and tumor cells by electrofusion. The fusion hybrids retained their full antigen-presenting capacity and all natural tumor antigens. In pre-clinical animal experiments, a single injection of the DC-tumor fusion hybrids was sufficient to mediate the regression of tumors established in the lung, skin and brain. Most interestingly, successful therapy required the delivery of fusion hybrids directly into lymphoid organs such as lymph nodes. A clinical trial is now being carried out to test the immunogenicity and therapeutic effects of fusion hybrids for the treatment of metastatic melanoma.

Animals↗

ELN orchestrates prometastatic and immunosuppressive niche in bladder cancer via TGFB1 autocrine signaling.

Bladder cancer (BCa) mortality is mainly driven by metastatic dissemination and an immunosuppressive tumor microenvironment. Here, we identify ELN (tropoelastin), an extracellular matrix protein abundantly secreted by cancer-associated fibroblasts (CAFs), as a critical determinant of these processes and a marker of poor prognosis. ELN promotes epithelial-mesenchymal transition (EMT), facilitates lymphatic spread, and induces immune dysfunction characterized by macrophage polarization toward an M2 phenotype and T cell exhaustion. Mechanistically, ELN functions as a binding partner of TGF-&#x3b2; receptor 2 (TGFBR2), thereby triggering SMAD2/3-dependent TGF-&#x3b2;1 secretion and establishing a feed forward signaling loop. This ELN/TGFBR2/TGF-&#x3b2;1 axis amplifies metastatic capacity and immunosuppressive signaling, ultimately accelerating disease progression and diminishing responsiveness to immune checkpoint blockade. Functional studies in BCa organoids and murine models demonstrated that pharmacologic blockade of the ELN-TGFBR2 interaction effectively suppressed tumor metastasis and restored antitumor immunity. Collectively, our findings establish ELN as a CAF-derived driver of metastasis and immune evasion in BCa. Targeting the ELN-TGFBR2 interaction offers a promising therapeutic strategy to limit metastatic progression and enhance the efficacy of immunotherapy in this lethal disease.

Animals↗

Distinct chemokine triggers and in vivo migratory paths of fluorescein dye-labeled T Lymphocytes in acutely simian immunodeficiency virus SIVmac251-infected and uninfected macaques.

To define the possible impact of T-lymphocyte trafficking parameters on simian immunodeficiency virus (SIV) pathogenesis, we examined migratory profiles of carboxyfluorescein diacetate succinimidyl ester (CFSE)-labeled T lymphocytes in acutely SIVmac251-infected and uninfected macaques within 48 h after autologous transfer. Despite significant upregulation of homeostatic chemokine CCL19/macrophage inflammatory protein 3beta and proinflammatory chemokine CXCL9/monokine induced by gamma interferon in secondary lymphoid tissue in SIV infection, no differences in CFSE+ T-lymphocyte frequencies or cell compartmentalization in lymph nodes were identified between animal groups. By contrast, a higher frequency of CFSE+ T lymphocytes in the small intestine was detected in acute SIV infection. This result correlated with increased numbers of gut CD4 T lymphocytes expressing chemokine receptors CCR9, CCR7, and CXCR3 and high levels of their respective chemokine ligands in the small intestine. The changes in trafficking parameters in SIV-infected macaques occurred concomitantly with acute gut CD4 T-lymphocyte depletion. Here, we present the first in vivo T-lymphocyte trafficking study in SIV infection and a novel approach to delineate T-lymphocyte recruitment into tissues in the nonhuman primate animal model for AIDS. Such studies are likely to provide unique insights into T-lymphocyte sequestration in distinct tissue compartments and possible mechanisms of CD4 T-lymphocyte depletion and immune dysfunction in simian AIDS.

Animals↗

Immunological approaches for manipulation of animal growth, body composition and fecundity.

The ability to manipulate certain physiological processes by using the immune system, so as to regulate endocrine secretions and/or actions is clearly possible. The dramatic effects of immunocastration and the ability to increase ovulation rates in sheep are probably the best examples. Other approaches along similar lines have produced equivocal results, the effects of immunization against somatostatin being the most notable case. Although anti-idiotypic antibody approaches to producing hormone mimics have also been shown to be attainable and, indeed, possibly involved in certain auto-immune dysfunctions of the endocrine system, to date no successful applications of this approach have been demonstrated in commercial livestock. The ability to enhance hormone action using antibodies is an extremely promising area. Its prospects probably hinge on the ability to synthesize suitable short peptides which will mimic epitopes on the hormone and so permit the development of active immunization techniques to produce polyclonal antibodies of restricted and enhancing specificity. It seems less likely that administration of hormones pre-complexed to monoclonal antibodies has any potential as a practical approach to manipulating animal productivity. All of these approaches involving active immunization suffer the same limitations: the highly variable response of individual animals and the general inability to regulate the duration of the response; a need to find suitable adjuvants to replace the almost universally used and commercially unacceptable Freund's adjuvant; and the problem of trying to generate what, in most cases, is an auto-immune response. A second group of approaches consists of attempts to use antibodies in their classical role, that is by targeting antigens or cells for destruction by the immune system. These include, for example, antibodies directed against adipose tissue or cytotoxic antibodies to specific hormones aimed at destruction of the hormone-secreting cells. Since these are passive immunization techniques, the antibodies can be assessed carefully in vitro and administered in appropriate doses. However, success in these applications is largely dependent on the inability of damaged tissues to regenerate, since retreatment is generally precluded because of the anti-immunoglobulin response induced in treated animals. Toleragenic forms of such antibodies or the use of appropriate immunosuppressants may ultimately remove this limitation. Perhaps the greatest current limitation to the use of all of these techniques in animal production systems, however, is public resistance to the use of such techniques.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗