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Biomedical subjects

R A Good

Publications and source records attributed to R A Good.

At least 217 records · Page 12Linked to original sources

The suppressive effect of a synthetic retroviral peptide on the human IFN gamma production is abrogated by the combined stimulation with IL-1 and IL-2.

Certain retroviral envelope proteins and peptides have been shown to be highly immunosuppressive. Recently, we have demonstrated that a synthetic 17 amino acid peptide (CKS-17*) homologous to a highly conserved region in the transmembrane portion of the envelope of several human or animal retroviruses suppresses the production of human interferon-gamma (IFN gamma) by human peripheral blood leukocytes (PBL). In the present investigation, we studied the role of exogenous IL-1 or IL-2, and IL-1 plus IL-2 on the suppressive action of CKS-17* in the production of IFN gamma. The results showed that preculture of PBL with CKS-17* reduced the production of IFN gamma in a dose-dependent manner. The addition of IL-1 or IL-2 reduced, in part, this suppression of IFN gamma production. Full abrogation of the inhibition attributable to CKS-17, however, occurred only when PBL precultured with CKS-17* were recultured with staphylococcus enterotoxin A (SEA) together with exogenous IL-1 plus IL-2. These results show that the inhibition of IFN-gamma production by CKS-17* is reversible. The findings indicate that cytokines can modulate certain of the immunosuppressive actions attributable to retroviruses or their components and suggest that some cytokines influence immunosuppressive consequences of retroviral infection.

Cells, Cultured↗

Up-regulation and down-regulation of cell surface and mRNA expression of CD5 antigen by various humoral factors on murine 70Z/3 pre-B cell leukemia cell line: IL-4 down-regulates CD5 antigen expression.

CD5, a pan-T cell antigen, is expressed on a minor subset of normal B lymphocytes and on cells of most B lineage tumors or transformed B cells in both man and animal models. In the present study, the effects of various humoral factors on CD5 expression by cells of a subcloned 70Z/3 murine pre-B leukemia cell line were investigated. Among the humoral factors studied, only LPS up-regulated CD5 expression on 70Z/3 cells (three- to fourfold) in a dose-dependent manner. However, this up-regulatory effect of LPS was not observed when cells were cultured in serum-free medium. NZB-serum factor (NZB-SF), a cytokine we have identified and shown to enhance the maturation and proliferation of immature B cells, synergistically enhanced CD5 expression in the presence of suboptimal doses of LPS. IL-4 down-regulated CD5 expression by 70Z/3 cells induced by LPS or LPS plus NZB-SF in a dose-dependent manner. IL-4 also suppressed spontaneous CD5 expression by 70Z/3 cells. No other cytokine tested showed an inhibitory effect. LPS, IFN-gamma, NZB-SF, and IL-1 enhanced sIg expression on 70Z/3 cells and their action on sIg expression was not inhibited by IL-4. Thus, the down-regulatory action of IL-4 on CD5 expression appeared specific for this antigen. IFN-gamma, which inhibits IL-4 induced CD23 and DR expression on B cells, does not abolish the down-regulatory action of IL-4 on CD5 expression by 70Z/3 cells. Changes in mRNA levels on coding CD5 were also examined following the incubation of 70Z/3 cells (24 hr) in the presence of humoral factors which can influence CD5 Ag expression. The levels of mRNA for CD5 Ag were moderately increased in the presence of LPS and NZB-SF. IL-4 appeared to suppress the actions of NZB-SF and LPS at least in part by reducing the levels of mRNA encoding CD5.

Animals↗

Inhibition of murine cytotoxic T lymphocyte activity by a synthetic retroviral peptide and abrogation of this activity by IL.

A synthetic 17 amino acid peptide (CKS-17) homologous to a highly conserved region of human and animal retroviral transmembrane proteins was investigated for its influence on the generation of murine alloantigen-specific CTL activity in vitro. CKS-17 coupled to a carrier protein, BSA or human serum albumin, inhibited the generation of anti-allo CTL in a dose-dependent manner. Controls consisting of BSA and human serum albumin, which had undergone the coupling procedure or neurotensin, an unrelated peptide, coupled to BSA in an identical manner as CKS-17 showed no such inhibitory action. The suppression was not restricted to the Ag specificity of the CTL activity. CKS-17 exerted inhibitory effects on the early afferent phase of CTL induction. Kinetic studies showed that the suppressive activity occurred when CKS-17 was introduced to the immunologically stimulating culture concomitant with or up to 48 h after initiation of culture. Analysis of the frequency of CTL precursor cells using limiting-dilution assays revealed that CKS-17 did act to reduce the number of precursor cells. Abrogation of the inhibition of CTL activity was observed when IL-2 was introduced to the culture together with the stimulator cells. Other lymphokines, such as IL-4, exerted a similar influence to counteract this suppression.

Animals↗

Risk factors for chronic graft-versus-host disease after HLA-identical sibling bone marrow transplantation.

Chronic graft-versus-host disease (GVHD) is an important complication of bone marrow transplantation. We analyzed risk factors for chronic GVHD in 2,534 recipients of HLA-identical sibling transplants surviving at least 90 days after transplantation. The actuarial probability of developing chronic GVHD within three years posttransplant was 46% +/- 3% (95% confidence interval). The most important risk factor for chronic GVHD was acute GVHD. The 3-year probabilities of chronic GVHD were 28% +/- 3%, 49% +/- 5%, 59% +/- 6%, 80% +/- 9%, and 85% +/- 15% for persons with grades 0, I, II, III, and IV acute GVHD, respectively (P less than .0001). Among patients with no or grade I acute GVHD, recipient age greater than 20 years, use of non-T-cell depleted bone marrow, and alloimmune female donors for male recipients predicted a higher risk of chronic GVHD. When all three adverse risk factors were present, the probability of chronic GVHD was 62% among persons with no prior acute GVHD and 85% among those with grade I acute GVHD. Among patients with grade II through IV acute GVHD, no other risk factor predicted chronic GVHD. These data identify individuals who might benefit from treatment strategies aimed at changing the incidence of chronic GVHD.

Acute Disease↗

Inhibition of tumor cell proliferation by natural suppressor cells present in murine bone marrow.

Natural suppressor (NS) cells, which are Thy-1-, immunoglobulin-, and nonadherent cells with relatively low density (1.063 to 1.075 g/ml), inhibit not only the proliferation of spleen cells which have been stimulated by allogeneic cells or mitogens but also the proliferation of tumor cell lines. Cell-to-cell contact is not necessary for NS cells to exert NS activity. Being radioresistant, DNA synthesis is not necessary for NS cells to suppress proliferation. However, protein synthesis is necessary, since puromycin blocks NS cell activity. In addition, NS cells were found to secrete a factor which inhibits DNA synthesis. Of the various cytokines tested, interleukin 3 and granulocyte-macrophage colony-stimulating factor enhance NS activity. These results suggest that NS cells play an important role in the suppression of not only immune responses but also tumor growth.

Animals↗

Enrichment of natural suppressor activity in a wheat germ agglutinin positive hematopoietic progenitor-enriched fraction of monkey bone marrow.

Natural suppressor (NS) activity, the capacity of unprimed cells to suppress immunologic responses, is present in mouse, rabbit, and human bone marrow (BM). In this study we characterize NS activity in bone marrow cells of the rhesus monkey. Greatest NS activity was found in low-density cells (1.0600 to 1.0655 g/mL) obtained by density centrifugation on a discontinuous Percoll gradient. NS activity was further enriched when cells were separated by affinity for wheat germ agglutinin (WGA). Cells with high affinity to WGA demonstrated potent NS activity, whereas cells with low affinity to WGA had no NS activity. A significant relationship between NS activity and hematopoietic activity was demonstrated using in vitro assays of colony formation (CFU-GM and CFU-MIX). NS activity was not affected by treatment with monoclonal antibodies (MoAbs) to human Fc gamma receptors (Leu, 11a,b,c) or treatment with MoAbs to monkey natural killer cells. These findings extend our prior observations by showing that cells with NS activity, which apparently have WGA receptors, are present not only in murine BM but also in monkey bone marrow, and suggest that such cells may be involved in immunoregulation by primitive cells of BM.

Animals↗

Cell components required for deletion of an autoreactive T cell repertoire.

T cells become tolerant to self antigens during their development in the thymus. Clonal deletion of thymocytes bearing T cell receptor (TcR) which recognize self antigens is a major mechanism for generating tolerance. In the present study we have used allogeneic bone marrow (BM) chimeras, prepared with various combinations of mouse strains and focusing especially on expressions of I-E molecules and Mls-1a antigens on the cell surface, to investigate both immunohistochemically and by flow cytometry the cell components that contribute to the clonal deletion of T cells positive for V beta 6 TcR. The V beta 6 TcR expression is strongly associated with T cell recognition of both I-E and Mls-1a antigens. We found that I-E+ cells derived from donor BM (and thus not of recipient lineage) represented a primary requirement for deletion of Mls-1a-reactive thymocytes which bear V beta 6 TcR. Immunohistochemical analysis revealed that the donor-derived I-E+ cells were distributed mainly to the thymic medulla and that the V beta 6+ cells were eliminated from the thymic medulla between 2 and 3 weeks following BM transplantation. In contrast, Mls-1a+ cells of either donor or recipient origin might be responsible for the deletion, even though cortical epithelial cells appeared not to express Mls-1a antigens.

Animals↗

Report of the symposium on the use of intravenous gammaglobulin in adults infected with the human immunodeficiency virus.

On July 27, 1989, the International Conference on Molecular Aspects of Immune Response and Infectious Diseases devoted a symposium to the subject of the use of intravenous gamma globulin (IVIG) in acquired immunodeficiency syndrome (AIDS). The information presented confirmed that IVIG benefits human immunodeficiency virus (HIV)-infected children with recurrent infections and that much remains to be learned about the influence of IVIG in adult AIDS. The symposium participants recognized the urgent need to develop randomized clinical trials using a control group to assess the efficacy of a treatment with IVIG in PGL (persistent generalized lymphadenopathy), ARC (AIDS-related complex), and AIDS. To prepare this report, a committee was established, including individuals with expertise in immunology, immunopharmacology, microbiology, virology, infectious diseases, general medicine, and pediatrics and representing research experience in academia and hospitals. After an introduction to the report with a summary of immunotherapeutic agents under evaluation to treat HIV infection, section 1 lays out the present understanding of the disease pathogenesis. Section 2 then outlines the treatment of HIV-seropositive individuals, discussing the uncertainties that any treatment entails. Section 3 discusses the rationale for treating HIV-infected individuals with IVIG, and Section 4 examines the major differences between IVIG and hyperimmunoglobulins for the treatment of HIV infection. Section 5 looks at IVIG as a mean to delay the emergence of opportunistic infections and restore immunocompetence in AIDS and related illnesses, and Sections 6 and 7 suggest a pilot protocol on the use of IVIG in association with low-dose or standard-dose zidovudine (AZT).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Experimental approaches to nutrition and cancer: fats, calories, vitamins and minerals.

Chronic energy intake restriction (CEIR) inhibits lymphoproliferative disease, autoimmune-based renal disease and mammary adenocarcinoma in mice of numerous short-lived strains (MRL/lpr, C3H/Bi, C3H/Ou). Doubling and tripling of life span and health span and inhibition of development of diseases associated with aging could be attributed to restriction of calories but not to restriction of dietary fat in the absence of calorie restriction. In mice of both long- and short-lived strains, CEIR dramatically prevents the waning of immunologic vigor that commonly occurs with aging, delays thymic involution, impairs formation of circulating immune complexes, prevents the renal injury that accompanies autoimmune disease, and significantly forestalls development of genetically determined lymphoproliferative or neoplastic disease. Evidence suggests that CEIR may exert these beneficial influences in part through regulation of cellular proliferation. Trace elements, particularly zinc, as well as vitamins may play important roles in maintaining immunocompetence and also appear to be of significance in the dietary prevention of certain experimental cancers.

Animals↗

Sequential analysis of the thymocyte differentiation in fully allogeneic bone marrow chimera in mice. I. Relationship between functions and surface characteristics of thymocytes.

Differentiation of thymocytes according to surface phenotype, functional status and cell size was investigated using fully allogeneic bone marrow chimeras. Most of the donor-derived thymocytes obtained from chimeras 9 days after hematopoietic reconstitution were CD4-8- and IL2R+. At day 14, CD4+8+ cells became prominent in the thymus. Eighty-six per cent of thymocytes were CD4+8+ and 9% were CD4-8- at this stage. After day 21, the proportion of CD4+8- or CD4-8+ single positive cells transiently increased and then declined to normal level at day 42. Further, the mean size of CD4+ or CD8+ single positive cells in chimeric thymuses at day 21 after reconstitution was markedly larger than that at day 35. When proliferative responses to various stimuli (PMA + rIL2, anti-CD3 mAb (2C11) and anti-V beta 8 mAb (F23.1] were evaluated, significant responses were generated by thymocytes for the first time at around day 28 and the responses reached their peaks at day 35. These findings demonstrated that the process of thymocyte differentiation in the fully allogeneic chimeras was similar to ontogenic development as observed in fetal mice. However, the tempo at which the differentiation of surface phenotypes and development of functions proceeded was quite different from that seen in normal mice. The relationship among surface phenotypes, cell size and functions of developing thymocytes of bone marrow chimeras is discussed.

Animals↗

Sequential analysis of the thymocyte differentiation in fully allogeneic bone marrow chimera in mice. II. Further characterization of the CD4+ or CD8+ single positive thymocytes.

Differentiation of CD4+8- and CD4-8+ single-positive (SP) thymocytes in fully allogeneic bone marrow chimeras were investigated using multicolor cytometric analysis. The proportion of CD3+ cells in CD4+ SP population derived from donor mice considerably increased between day 12 and 14 after bone marrow transplantation (BMT), and gradually increased thereafter. The proportion of V beta 8+ cells in the CD3+CD4+ population remained constant (around 20%) at each period, suggesting that alpha and beta chains were used as TCR. The proportion of J11d+ cells in the CD4+ SP thymocytes transiently increased from day 12 to 14 and decreased thereafter, even though almost half of CD4+ SP cells were still dull J11d+ at day 35 after BMT. When CD8+ SP populations were analyzed, the proportion of CD3+ cells was very small until day 18. Thereafter, the proportion considerably increased and reached a maximum (83.2%) at day 21. The proportion of V beta 8+ cells in the CD3+ CD8+ SP population fell within range between 20 and 30%. However, before day 18, most of the V beta 8+ cells were dull positive, while after day 21 the majority were bright V beta 8+. Further, CD8+ SP cells at day 12, 14 and 18 were largely bright J11d+. After day 21, however, the proportion of bright J11d+ cells rapidly decreased. Similar results were obtained when the sequence of appearance of CD4+ and CD8+ SP cells was compared among bright CD3+, bright V beta 8+ or J11d- mature populations. The CD4+ SP cells regularly appeared earlier than CD8+ SP cells in the mature populations. These findings indicate that a considerable heterogeneity exists within both CD4+ and CD8+ SP populations and that the differentiation process for CD4+ SP cells precedes that for CD8+ SP cells.

Animals↗

Thymus: a direct target tissue in graft-versus-host reaction after allogeneic bone marrow transplantation that results in abrogation of induction of self-tolerance.

Graft-versus-host reaction (GVHR) following allogeneic bone marrow (BM) transplantation was investigated by analyzing expression of antigen receptors on T cells specific for recipient antigens. GVHR chimeras were prepared by transplanting mixtures of splenic T cells and T-cell-depleted BM cells from B10 (I-E-, Mls-1b) or B10.AQR (I-E+, Mls-1b) mice into lethally irradiated AKR/J (I-E+, Mls-1a) recipients. Increased proportions of V beta 6+ T cells reactive to recipient antigens (I-E and Mls-1a) were observed in thymuses from such chimeras 1 or 5 wk after BM transplantation. V beta 6+ T cells observed 1 wk after BM transplantation were derived from mature T cells that had been inoculated into recipients. These cells responded to recipient antigens expressed in the thymus. After 5 wk, thymocytes brightly positive for V beta 6+ were shown not to descend from mature T cells but to differentiate from precursor cells present in the BM inocula. Since V beta 6+ T cells were eliminated in thymuses from non-GVHR chimeras 5 wk after BM transplantation using T-cell-depleted BM cells alone, it appears that GVHR occurring in the thymus at an early stage abrogates thymic stromal functions essential to induction of self-tolerance in the T-cell repertoire. These findings propose a mechanism (autoimmunity) to explain in part the pathogenesis of chronic GVHR.

Animals↗

Prolactin effects on the dietary regulation of mouse mammary tumor virus proviral DNA expression.

Chronic energy-intake restriction inhibits mouse mammary tumor virus (MMTV)-induced mammary tumors in C3H/Ou mice by greater than 90%. We have shown that associated with suppression of mammary tumorigenesis there is a reduction or inhibition of circulating prolactin, MMTV particles expressed, and MMTV mRNA transcription in mammary glands (and in most organs tested). To understand the concerted action of prolactin, energy-consumption level, and MMTV on inducing mammary tumors, experiments were designed to control prolactin and energy levels in order to evaluate their effects on MMTV mRNA expression. Mice on restricted diets were grafted with adenohypophyses, and mice fed ad libitum were treated with the dopaminomimetic agent octahydrobenzo [g]quinoline. Adenohypophyseal grafting significantly increased prolactin in dietary (energy)-restricted mice, and this effect was associated with an increase in MMTV mRNA expression within the mammary gland; a linear correlation between prolactin levels and MMTV mRNA expression in the mammary gland was found. Conversely, elimination of the nocturnal peak of circulating prolactin by i.p. injection of dopaminomimetic octahydrobenzo [g]quinoline to mice fed ad libitum delayed (by 8 weeks) and reduced (even as long as 25 weeks) mammary gland MMTV mRNA expression. These findings associate prolactin influences with MMTV mRNA production in mice and help explain the link between chronic energy-intake restriction and reduced MMTV gene expression.

Aminoquinolines↗

Primary combined immunodeficiency resulting from defective transcription of multiple T-cell lymphokine genes.

The circulating T lymphocytes of a female child with recurrent opportunistic infections were normal in number and phenotype but exhibited poor proliferation and decreased synthesis of the T-cell growth factor interleukin (IL) 2 in response to mitogens. Recombinant IL-2 fully restored the proliferative responses of her T cells, suggesting that her poor immune function was related to IL-2 deficiency. Northern blot analysis of total cellular RNA from the patient's T cells revealed markedly decreased levels of IL-2 mRNA of normal size. In addition, mRNA levels of other lymphokines selectively expressed by T cells, which include IL-3, IL-4, and IL-5, were either severely depressed or absent. The levels of interferon gamma mRNA were moderately decreased, while those of granulocyte-macrophage colony stimulating factor, a lymphokine the production of which is not restricted to T cells, were unaffected. The decreased level of lymphokine mRNA in the patient's T lymphocytes was not from enhanced catabolism but resulted from a diminution in the transcription rate of the affected lymphokine genes. Normal transduction via the T-cell receptor/CD3 complex of biochemical signals necessary for the initiation of lymphokine gene transcription indicated that the defect was distal to the membrane signal-transducing apparatus. The defect is hypothesized to involve a T-cell-specific trans-acting regulatory factor required for transcription of the affected lymphokine genes.

Antibodies, Monoclonal↗

Suppression of mouse mammary tumor proviral DNA and protooncogene expression: association with nutritional regulation of mammary tumor development.

Chronic energy intake restriction (CEIR) reduces mouse mammary tumor virus (MMTV)-induced mammary tumors in C3H/Ou mice. Fewer than 10% of C3H/Ou mice developed mammary tumors during 88 wk of study when subjected to CEIR regardless of calorie source (fat vs. carbohydrate). By contrast, 100% of mice fed ad libitum diets relatively high in fat or carbohydrate or a commercial diet developed tumors by 35-40 wk. MMTV proviral DNA transcription was shown to be activated in spleen, liver, lung, kidney, small intestine, and mammary gland of mice consuming these diets ad libitum. By contrast, these messages were suppressed by CEIR in all tissues analyzed except spleen. MMTV proviral messages in liver and mammary gland increased with age in full-fed mice and were suppressed by CEIR. These findings suggest that the nutritional regulation of MMTV proviral DNA expression is tissue-specific. In CEIR mice the suppressed MMTV proviral DNA transcripts in mammary gland and liver increased with time in association with the delayed onset of mammary tumors. Mammary tumorigenesis in C3H mice is associated with integration of MMTV proviral DNA, which appears to activate a putative mammary tumor protooncogene, int-1. CEIR apparently decreases the frequency of viral reintegration adjacent to the int-1 gene and thus inhibits expression of int-1 and probably an initiation step in mammary tumorigenesis. Expression of other putative protooncogenes, int-2 and ras, in liver tissue was also reduced by CEIR. These findings indicate that both initiation and promotion of mammary tumorigenesis are influenced by CEIR in C3H/Ou mice.

Animals↗

Involvement of the thymus and cellular immune system in craniofacial malformation syndromes.

Craniofacial structures, the aortic arch, thymus, and parathyroid glands all arise from the embryologic pharyngeal pouches, and DiGeorge and Job craniofacial malformation syndromes have defined immunologic deficiencies. The question addressed by this study is whether patients with other pharyngeal pouch malformations could also have immunologic abnormalities. Twelve patients, 4 female and 8 male, were selected at random from the Tampa Bay Craniofacial Center. Their diagnoses included: cleft lip/cleft palate, hemifacial microsomia/Goldenhar syndrome, Treacher-Collins syndrome, craniofacial hemangiomata, cranio-synostosis syndromes, and Tessier 13 cleft. Fresh blood samples were analyzed against age-matched controls for immunoglobin number, using immunoelectrophoresis, T-cell, B-cell, and natural killer cell quantity via Coulter counter and monoclonal antibody labeling, as well as lymphocyte stimulation and response functions with phytohemagglutinin, concanavalin A, pokeweed mitogen, and Staphylococcus aureus mitogens. All patients studied had some abnormality of their immune systems. Seven had specific T-cell abnormalities and three patients had abnormalities in all three categories studied. This indicates that patients with any pharyngeal pouch malformation may have an abnormality of the immune system.

Abnormalities, Multiple↗

Allogeneic bone marrow-plus-liver transplantation in the C57BL/KsJ spm/spm mouse, an animal model of Niemann-Pick disease.

The C57BL/KsJ spm/spm mouse, an animal model of Niemann-Pick disease, shows defective sphingomyelinase activity resulting in accumulation of sphingomyelin in various organs. To replace the defective enzyme, allogeneic bone marrow-plus-liver transplantation was performed. Bone marrow transplantation with or without concomitant liver grafting in C57BL/KsJ spm/spm mice at the age of 2-9 weeks led to an amelioration of the hepatosplenomegaly. The treatment, however, neither prevented the development of neurological signs nor increased the life-span. The sphingomyelin and cholesterol contents of the liver decreased, while sphingomyelinase activity in the liver increased after bone marrow transplantation. Foam cells disappeared from the bone marrow, liver, spleen, thymus, and lymph nodes, but depletion of Purkinje cells was not prevented. These results suggest that bone marrow transplantation either alone or with liver transplantation may become a useful strategy for the treatment of Niemann-Pick disease provided the central nervous system is not involved.

Animals↗