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Biomedical subjects

R A Good

Publications and source records attributed to R A Good.

At least 109 records · Page 6Linked to original sources

Life-span, T-cell responses, and incidence of lymphomas in congenic mice.

Survival, T-cell functions, and postmortem histopathology were studied in H-2 congenic strains of mice bearing H-2b, H-2k, and H-2d haplotypes. Males lived longer than females in all homozygous and heterozygous combinations except for H-2d homozygotes, which showed no differences between males and females. Association of heterozygosity with longer survival was observed only with H-2b/H-2b and H-2b/H-2d mice. Analysis using classification and regression trees (CART) showed that both males and females of H-2b homozygous and H-2k/H-2b mice had the shortest life-span of the strains studied. In histopathological analyses, lymphomas were noted to be more frequent in females, while hemangiosarcomas and hepatomas were more frequent in males. Lymphomas appeared earlier than hepatomas or hemangiosarcomas. The incidence of lymphomas was associated with the H-2 haplotype--e.g., H-2b homozygous mice had more lymphomas than did mice of the H-2d haplotype. More vigorous T-cell function was maintained with age (27 months) in H-2d, H-2b/H-2d, and H-2d/H-2k mice as compared with H-2b, H-2k, and H-2b/H-2k mice, which showed a decline of T-cell responses with age.

Animals↗

Differential modulation of Th1- and Th2-related cytokine mRNA expression by a synthetic peptide homologous to a conserved domain within retroviral envelope protein.

The influence of a synthetic retroviral peptide, CKS-17, on T helper type 1 (Th1)- or Th2-related cytokines was investigated in human blood mononuclear cells. Cells were stimulated with staphylococcal enterotoxin A, anti-CD3 plus anti-CD28 monoclonal antibodies, or lipopolysaccharide to induce cytokine mRNA. mRNA was detected by a reverse transcription-polymerase chain reaction or Northern blot analysis. CKS-17 down-regulated stimulant-induced mRNA accumulation for interferon gamma (IFN-gamma), interleukin (IL)-2, and p40 heavy and p35 light chains of IL-12, a cytokine that mediates development of Th1 response. CKS-17 up-regulated stimulant-induced mRNA accumulation of IL-10 and did not suppress Th2-related cytokine (IL-4, IL-5, IL-6, or IL-13) mRNA expression. A reverse sequence of CKS-17 peptide, used as a control, showed no such action. Anti-human IL-10 monoclonal antibody blocked ability of CKS-17 to inhibit mRNA accumulation for IFN-gamma but not the CKS-17 suppressive activity of IL-12 p40 heavy chain mRNA. Thus, CKS-17-mediated suppression of IFN-gamma mRNA expression is dependent upon augmentation of IL-10 production by CKS-17. This conserved component of several retroviral envelope proteins, CKS-17, may act as an immunomodulatory epitope responsible for cytokine dysregulation that leads to suppression of cellular immunity.

Amino Acid Sequence↗

Mammary and submandibular gland epidermal growth factor expression is reduced by calorie restriction.

Calorie restriction reduces mammary mitogenesis and tumorigenesis. To test whether epidermal growth factor (EGF) levels are influenced by calorie intake, 72 four-week-old C3H/HeOu mice were separated into two groups and either fed ad libitum (group AL) or calorie-restricted at a mean 19% (group CR). Three mice from each group were evaluated when 6, 8, 10, and 12 weeks old for submandibular gland transcription of EGF and beta-actin RNA for levels of EGF protein in the submandibular gland, mammary gland, and serum and for immunohistological evidence of EGF protein within the submandibular and mammary glands. Submandibular levels of EGF RNA and protein and mammary and serum levels of EGF protein were similar between dietary groups when mice were 6 and 8 weeks old. Mean EGF:beta-actin RNA transcription in submandibular glands of 12-week-old mice were approximately 10-fold greater in AL compared to CR mice (ratio means, 1.499 versus 0.157, respectively; P < 0.01). Mean submandibular levels of EGF protein were greater in 10-week-old AL compared to CR mice (7017.4 versus 4098.5 ng/mg protein, respectively; P < 0.05) and even greater in 12-week-old AL compared to CR mice (4342.6 versus 137.9 ng/mg protein; P < 0.001). Mean mammary levels of EGF protein were greater among 12-week-old AL compared to CR mice (7.8 versus 5.0 ng/mg protein; P < 0.05). Serum levels of EGF did not differ between dietary cohorts. More anti-EGF immunoprecipitate was present in submandibular and mammary gland sections of 10- and 12-week-old AL compared to CR mice. Lowered EGF levels may contribute to the antiproliferative and antineoplastic effects of calorie restriction.

Animals↗

Monoclonal anticardiolipin autoantibodies established from the (New Zealand white x BXSB)F1 mouse model of antiphospholipid syndrome cross-react with oxidized low-density lipoprotein.

OBJECTIVE: Autoimmunity-prone (New Zealand white x BXSB)F1 ([NZW x BXSB]F1) mice have been shown to be useful as a model of antiphospholipid syndrome with myocardial infarction. The aim of this study was to examine the cross-reactivity of anticardiolipin antibody (aCL) derived from (NZW x BXSB)F1 mice with oxidized low-density lipoprotein (ox-LDL), which is closely associated with atherosclerosis. METHODS: Six monoclonal antibodies (MAb) against CL were established from (NZW x BXSB)F1 mice, and reactivity of aCL with ox-LDL was examined by micro-enzyme-linked immunosorbent assay. RESULTS: Higher titers of anti-ox-LDL autoantibodies were found in adult (NZW x BXSB)F1 mice compared with other autoimmunity-prone mouse strains (P < 0.01) or a control strain (P < 0.005). There was a significant positive correlation between titers of aCL and those of anti-ox-LDL in (NZW x BXSB)F1 mice (r = 0.79, P < 0.001). Of the 6 MAb against CL, 2 clones that showed beta 2-glycoprotein 1-dependent reactivity also cross-reacted with ox-LDL. Binding of monoclonal aCL to solid-phase cardiolipin was inhibited by ox-LDL, but not by native LDL. CONCLUSION: We confirmed that aCL derived from (NZW x BXSB)F1 mice can cross-react with ox-LDL. This result suggests that aCL, which is closely associated with lupus-associated thrombosis, may also play an important role in atherosclerotic complications in patients with systemic lupus erythematosus.

Animals↗

Predominance of sterile immunoglobulin transcripts in a female phenotypically resembling Bruton's agammaglobulinemia.

The transcription pattern of the heavy chain immunoglobulin gene locus was analyzed in a 6-month-old female with agammaglobulinemia characterized by the absence of mature B cells in peripheral blood, arrested B cell development in the bone marrow and lack of germinal center development. DNA sequencing provided no evidence of mutations within the coding region of the Bruton's tyrosine kinase gene. Polymerase chain reaction-generated cDNA libraries from blood and bone marrow were screened initially using JH and CH oligodeoxynucleotide probes and VH family-specific probes. Only 10% of the transcripts constituted mature VDJC mu recombinations. Ninety percent of the cDNA were sterile immunoglobulin transcripts comprised of: DJC mu (DH-JHC mu), JC mu (JH-C mu), EC mu (enhancer spliced to C mu), SC mu and IC mu [corresponding to switch (S) and intron (I) regions spliced to C mu]. In the mature immunoglobulin transcripts, VH use indicated germline expression with little evidence of somatic mutation. All cDNA were of the C mu type. Different D segments, D-D joining events and unknown D-like elements were noted in the DJC mu and VDJC mu transcripts. This pattern of immunoglobulin rearrangements, along with the phenotypic cell surface antigen characteristics (CD19-), suggest that an earlier arrest in B cell development than is characteristic of Bruton's X-linked agammaglobulinemia has occurred in this patient.

Agammaglobulinaemia Tyrosine Kinase↗

Immunology of Theiler's murine encephalomyelitis virus infection.

Theiler's murine encephalomyelitis virus (TMEV) is a single-stranded RNA virus that belongs to the family of picornaviruses. Intracranial inoculation of susceptible mouse strains with TMEV results in biphasic disease, consisting of early acute disease that resembles poliomyelitis, followed by late chronic demyelinating disease that is characterized by the appearance of chronic inflammatory demyelinating lesions. Susceptibility to TMEV infection is genetically controlled by three loci: one that maps to the H-2D region of the major histocompatibility complex, one to the beta-chain constant region of the T-cell antigen receptor, and one located on chromosome 3. Both early acute and chronic late demyelinating diseases are immunologically mediated. T cells appear to play an important role in the pathogenesis of the disease. TMEV-induced demyelinating disease in mice has extensive similarities with multiple sclerosis, and it is considered one of the best experimental animal models for multiple sclerosis.

Animals↗

Dehydroepiandrosterone inhibits replication of feline immunodeficiency virus in chronically infected cells.

Dehydroepiandrosterone (DHEA) is a steroid hormone produced by the adrenal cortex that serves as an intermediary in sex steroid synthesis. DHEA is produced in abundance by humans and most other warm-blooded animals. Based upon previous reports demonstrating the antiviral and immunostimulatory activities of DHEA and DHEA-sulfate (DHEAS) we sought to determine whether introduction of these compounds would affect replication of feline immunodeficiency virus (FIV) in chronically infected cells. When cell number, cell viability, cellular DNA synthesis, and levels of FIV reverse-transcriptase (RT) were measured in cell cultures treated with various dilutions of DHEA or DHEAS it was found that the production of FIV RT was inhibited by DHEA at levels where cellular viability and DNA synthesis were not affected. At the concentrations tested DHEAS did not inhibit FIV replication or impact on cellular viability or proliferation.

Animals↗

Immunosuppressive retroviral peptides: cAMP and cytokine patterns.

The mechanism(s) by which retroviral proteins exert immunosuppressive influences has remained enigmatic. Here, Soichi Haraguchi, Robert Good and Noorbibi Day propose that induction of intracellular cAMP by a synthetic, immunosuppressive, retroviral envelope peptide causes a shift in the cytokine balance, leading to suppression of cell-mediated immunity by upregulation of interleukin 10 (IL-10) and downregulation of IL-2, IL-12 and tumor necrosis factor alpha production. This may be a crucial step towards generation of immune dysfunction.

Amino Acid Sequence↗

Shwachman-Diamond syndrome associated with hypogammaglobulinemia and growth hormone deficiency.

Shwachman-Diamond syndrome is a rare congenital disorder of unknown etiology. Characteristic abnormalities of this disease include pancreatic insufficiency, skeletal anomalies, growth retardation, recurrent infections, and hematologic abnormalities. Significant morbidity and mortality in these patients result from respiratory infections, which are not well explained on the basis of neutrophil defects. We have had the opportunity to perform an in-depth clinical immunologic and endocrinologic evaluation of a patient with this syndrome with recurrent respiratory tract infections. She was found to have profound humoral immunologic defects, and serum thymulin was absent. In addition, endocrinologic evaluation for growth retardation revealed growth hormone deficiency. The patient responded to treatment with supplemental growth hormone and intravenous gammaglobulin with accelerated growth and cessation of infections. This case is unique in that it links growth hormone deficiency and hypogammaglobulinemia in a non-X-linked manner and may provide the basis for treatment of other patients with this rare syndrome.

Agammaglobulinemia↗

Presence of eosinophilic precursors in the human thymus: evidence for intra-thymic differentiation of cells in eosinophilic lineage.

The distribution of myeloid cells in the human thymus was investigated by light and electron microscopy, immunohistochemistry, and/or flow cytometry. A series of 74 thymic samples, from newborn to 37 year old patients, were studied. By light microscopy, aggregates of mononuclear cells were frequently present in intralobular septa and outer medulla. Among those cells, eosinophilic precursors (promyelocyte, myelocytes and metamyelocytes) were readily identified. These immature granular cells were present in all pre-involutional thymi, and were particularly frequent in the thymi of patients who were younger than 5 years of age. The cells made up 30-50% of the total eosinophilic population and were frequently observed as a group of cells at various stages of differentiation, suggesting that they differentiate from pre-existing precursors in the thymus. These eosinophilic precursors were mostly located in the intralobular septa and fibroreticular network at the corticomedullary junction, while mature eosinophils were scattered throughout the thymus. Flow cytometric analyses, using stem cell-enriched preparations, showed that cells expressing CD33 or CD34 constituted on average 2.55% and 3.33% (0.09% and 0.12% of the total cells), respectively. CD33+/CD34+ coexpressors were also identified, and they constituted 0.36% of the analyzed cells (0.01% of the total cells). No statistical difference in the proportions of CD33+ and/or 34+ cells was noted between any age groups. It is concluded that eosinophilic precursors present in the thymus differentiate into cells in the eosinophilic lineage in particular areas such as the intralobular septa and fibroreticular network of the outer medulla in preinvolutional human thymi.

Adolescent↗

Gastrointestinal vasculitis in autoimmune-prone (NZW X BXSB)F1 mice: association with anticardiolipin autoantibodies.

Gastrointestinal vasculitis is a fatal aspect of systemic lupus erythematosus. Whether lupus-prone strains of mice develop gastrointestinal vasculitis, and whether it is accompanied by elevated titres of anticardiolipin autoantibody is not known. Lupus-prone (NZW X BXSB)F1 (W/BF1) mice, and other strains were examined immunohistologically. Levels of anticardiolipin autoantibody and circulating immune complexes were determined by microELISA. Reciprocal haploidentical marrow transplantations between W/BF1 and autoimmune-resistent B6C3F1 mice were made. Young adult W/BF1 mice had the highest incidence of gastrointestinal vasculitis (61%), and the highest mean titre of anticardiolipin autoantibody. Lesions consisted of subintimal fibrinoid degeneration in arterioles of the duodenum, jejunum and ileum, and were prevented, or alternatively induced by reciprocal marrow transplantations between W/BF1 and B6C3F1 mice. Mice engrafted with W/BF1 marrow which developed vasculitis had higher titres of anticardiolipin autoantibodies than engrafted mice free of vasculitis (P < 0.005). This represents the first report of gastrointestinal vasculitis as an aspect of systemic autoimmunity in lupus-prone mice. The concurrent elevation of anticardiolipin autoantibody and development of vasculitis suggests that anticardiolipin autoantibodies, and their proposed thrombogenic and vascular injury consequences, contribute to development of microvasculitis in lupus-prone mice.

Animals↗

Immunomodulation by cells of mononuclear phagocyte lineage in acute cold-stressed or cold-acclimatized mice.

Immunoregulatory states in acute cold-stressed or cold-acclimatized mice were investigated. When male C57BL/6 mice were exposed to environmental temperature of 5 degrees for 24 hr (acute cold stress), the spleen cells showed depressed proliferative responses to stimulation with concanavalin A (Con A) or lipopolysaccharide (LPS) compared with control mice (reared at 25 degrees). The proportion of Thy-1.2+ cells increased significantly in spleens from these acute cold-stressed mice. The Con A responses of T-enriched cells from acute cold-stressed mice were restored to the normal level by adding plastic-adherent cells from control mice. Further, adherent cells from acute cold-stressed mice markedly suppressed the Con A responses of control spleen cells. Thus, the plastic-adherent cells appeared to be responsible for the suppressed Con A responses. On the other hand, proliferative responses to Con A or LPS were elevated in spleen cells from mice exposed to 5 degrees for 3 weeks (cold acclimatization). A significant decrease of Thy-1.2+ cells was detected in these spleens. It was shown that the enhanced proliferative responses were attributable to functional alterations of the plastic adherent cell population but not to those of lymphoid cell population. These findings indicate that the low or high responsiveness of spleen cells to Con A observed in cold-stressed or cold-acclimatized mice, respectively, may be due to a mechanism including the contrary modulations of functions of cells of mononuclear phagocyte lineage.

Adaptation, Physiological↗

Defective T cells from gld mice play a pivotal role in development of Thy-1.2+B220+ cells and autoimmunity.

The gld mouse represents a fascinating animal model of autoimmune disease, which is characterized by massive development of Thy-1.2+B220+ CD4-CD8- cells. These cells thus have double positive markers for T and B cells, but are double negative for CD4 and CD8 markers and are thus designated DN cells in the present context. An additional important feature in gld mice is a defect in expression of Fas ligand. To investigate the regulatory role of bone marrow-derived cells for the development of these DN cells and of gld autoimmunity, we constructed chimeric mice transplanted with fetal liver cells or fetal thymus from gld mice into nonirradiated severe combined immunodeficient (SCID) mice. These chimeric mice regenerated, developed both these DN cells and the gld autoimmune syndrome and also generalized lymphoproliferative disorders. However, when fetal liver cells from both gld and non-gld mice (C57BL/10 Thy-1.1 mice) were co-transplanted into SCID mice, the development of DN cells was apparently inhibited. Further, this inhibition was also seen in SCID mice that had been grafted with both gld and non-gld fetal thymus revealing the pivotal role played by T cells in development of DN cells. When B cells purified from non-gld (C3H+/+) mice were transplanted into SCID mice grafted with gld fetal thymus, the development of DN cells was not inhibited. Taken together, these findings indicate that T cells from non-gld mice inhibit the expression of gld features, e.g., lymphoproliferation, immune-based nephritic disease, and autoantibody production. These findings also suggest that the Fas ligand is selectively expressed on T cells.

Animals↗

Calorie intake during mammary development influences cancer risk: lasting inhibition of C3H/HeOu mammary tumorigenesis by peripubertal calorie restriction.

To test for a relationship between peripubertal calorie intake, mammary development, and tumorigenesis, weanling C3H/HeOu mice were separated into 3 groups: fed diet either ad libitum (AL) and designated group AL (n = 60); fed a similar, calorie-restricted (CR) diet only during mammary development when 4-12 weeks old and then subsequently fed ad libitum when > or = 13 weeks old (group CR4-12, n = 24); or continuously calorie restricted (group CR, n = 60). Eight weeks of peripubertal calorie restriction provided CR4-12 mice with lasting protection from mammary tumorigenesis (P = 0.004) and lowered cumulative tumor incidence by 33% compared to AL mice. Sustained calorie restriction of group CR mice further reduced mammary tumor incidence compared to both AL (P = 0.000001) and CR4-12 mice (P = 0.009). Calorie intake significantly influenced mammary development and cellular proliferation. Compared to the mammary development of AL mice, calorie restriction reduced the diameter of ductal end buds (189 microns compared to 146 microns; P < 0.01), lowered the end bud [3H]thymidine labeling index from > or = 20 to < or = 13% (P < 0.001), delayed end bud migration and mammary glandular growth (P < 0.01), reduced alveolar budding (P < 0.001), reduced the proportion of alveoli containing at least one [3H]thymidine labeled cell from > or = 50 to < or = 22% (P < 0.001), and lowered the alveolar [3H]thymidine labeling index of labeled alveoli from > or = 14 to < or = 7% (P < 0.001). These findings link peripubertal calorie intake, mammary development, and carcinogenic risk, and show that the abrogation of mammary tumorigenesis by calorie restriction is partially attributable to influences on mammary development.

Animals↗