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Biomedical subjects

R A Good

Publications and source records attributed to R A Good.

At least 235 records · Page 13Linked to original sources

Ia restriction specificity of KLH-specific T cells from allogeneic bone marrow chimeras is influenced by histocompatibility at the H-2 and minor histocompatibility loci.

Ia restriction specificity involved in T cell proliferative responses to keyhole limpet hemocyanin (KLH) has been analyzed using a variety of allogeneic bone marrow chimeras. The chimeric mice were prepared by reconstituting irradiated AKR, SJL, B10.BR and B10.A(4R) mice with bone marrow cells from B10 mice. When such chimeric mice had first been primed with KLH in complete Freund's adjuvant (CFA), T cells from H-2 incompatible fully allogeneic chimeras showed significantly higher responses to KLH in the presence of antigen-presenting cells (APC) of donor strain (B10) than APC of recipient strain. However, in H-2 subregion compatible chimeras, [B10----B10.A(4R)], which were matched at the H-2D locus and at minor histocompatible loci, the T cells could mount vigorous responses to KLH with antigen-presenting cells (APC) of either donor or recipient type. The same results were obtained as well with chimeras that had been thymectomized after full reconstitution of lymphoid tissues by donor-derived cells. A considerable proportion of KLH-specific T cell hybridomas established from [B10----B10.A(4R)] chimeras exhibited both I-Ab and I-Ak restriction specificities. The present findings indicate that the bias to donor Ia type of antigen specific T cells is determined by donor-derived APC present in the extrathymic environment but that cross-reactivity to the recipient Ia is influenced to some degree by histocompatibility between donor and recipient mice, even though the histocompatible H-2D locus and minor histocompatibility loci seem not to be directly involved in the I-A restricted responses studied herein.

Animals↗

Sequential analysis of distributions of donor-derived thymocytes bearing T-cell antigen receptor (TCR) and donor-derived Ia+ cells in thymuses of fully allogeneic bone marrow chimera in mice.

Lethally irradiated SJL/J mice were reconstituted with B10 bone marrow cells, and the process of thymic reconstitution by donor-derived cells positive for I-A or V beta 8 molecules was investigated. The donor-derived Ia+ cells appeared in the medulla on day 7 after reconstitution. The Ia+ cells became confluent up to day 14, and the cellularity in the medulla on day 17 was almost the same as that in the normal thymus. Dull V beta 8+ thymocytes were first recognized in the cortex on day 10 and were identifiable in the medulla by day 14. The V beta 8+ cells seemed to be mainly CD4+8+ double-positive. Furthermore, most of the V beta 8+ cells in the medulla of chimeras given cyclosporin A for 3 weeks after reconstitution appeared to be CD4+8+ thymocytes which bear a low concentration of TCR exist in the thymic medulla at a relatively early stage when donor-derived Ia+ cells have already settled there. The coincidental appearance and coexistence of Ia+ cells and TCR+ thymocytes in the medulla suggest that these histological characteristics may be related to the selection of thymocytes in this area.

Animals↗

Undernutrition without malnutrition restricts the numbers and proportions of Ly-1 B lymphocytes in autoimmune (MRL/I and BXSB) mice.

MRL/Mp-lpr/lpr (MRL/l) and BXSB mice represent inbred mouse strains in which lymphoproliferative disease and autoimmune disease that includes lethal renal disease routinely occurs by 6 months of age. Chronic energy intake restriction increases longevity and health span of MRL/l and BXSB mice as it does in mice of other short-lived as well as long-lived strains. Chronic energy intake restriction forestalls development of the lymphoproliferative process, prevents development of renal lesions, decreases levels of circulating immune complexes, and permits maintenance of vigorous immunologic function with age. We have reported that in autoimmune-prone mice, a population of Ly-1 B lymphocytes that is associated with autoimmune disease and is greatly expanded among cells of the spleen, peritoneal exudate, and peripheral blood can be reduced in proportion as a consequence of undernutrition without malnutrition. Herein, we demonstrate that in MRL/l and BXSB mice, chronic energy intake restriction imposed at weaning inhibited accumulation of Ly-1 B lymphocytes throughout the lymphoid system, i.e., among cells of the spleen, thymus, mesenteric lymph nodes, bone marrow, peritoneal exudate, and peripheral blood when these tissues or fluids were studied at age 3 or 5 months. These results extend our previous finding that autoimmune-prone mice possess unusually large numbers of Ly-1 B cells in their lymphoid tissues which can be reduced in frequency as a function of diet toward the levels present in long-lived autoimmune-resistant mice.

Aging↗

Calorie consumption level influences development of C3H/Ou breast adenocarcinoma with indifference to calorie source.

To analyze simultaneously the influence attributable to calorie consumption level and percentage of dietary fat on the spontaneous development of mammary adenocarcinoma, virgin female C3H/Ou mice were separated into five dietary groups. Four groups of mice were fed purified diets either ad libitum (16-18 kcal/mouse/day) or restricted 40% in calorie consumption (10-11 kcal/mouse/day), and diets contained either 4.5%, 7.5%, 67%, or 68% calories from fat. Mice that consumed isocaloric diets developed breast malignancy at a comparable pace. Consuming a diet in which fats were present only at levels sufficient to satisfy the threshold requirement of essential fatty acids, 4.5-7.5% of the total calories, or alternatively where dietary fat represented greater than 67% of the total calories consumed, did not significantly alter the tendency for breast tumor development. The pace and frequency with which tumors occurred reflected the host's level of calorie consumption. Mice consuming a high caloric diet, low or high in fat, tended to have a shortened latency to breast tumor formation, an increased incidence of breast tumors, elevated serum prolactin levels, elevated levels of antibodies to mouse mammary tumor virus, and elevated circulating immune complex levels.

Adenocarcinoma↗

Dietary manipulation of mammary tumor development in adult C3H/Bi mice.

Chronic energy intake restriction (CEIR) in virgin female mice is one of the most effective ways of reducing significantly mammary adenocarcinoma in C3H/Bi mice, a strain which develops mammary adenocarcinoma associated with the murine mammary tumor virus spontaneously and at high incidence. In this study, the influence of chronic energy intake restriction imposed on fully mature (4- to 5-month-old), breeding female C3H/Bi mice was addressed, and the influence of energy intake where energy was derived largely from fat versus diets in which energy was derived largely from carbohydrates on tumor development and survival rate was investigated. The results show that chronic energy intake restriction can be delayed until full maturation and successful reproduction and still reduce significantly the incidence of mammary tumor development in this relatively short-lived strain of mice. Our findings demonstrate that the overriding dietary factor controlling mammary tumor development in these experiments in C3H/Bi mice was the level of energy intake, regardless of the primary source of energy (fat or carbohydrates).

Adenocarcinoma↗

Immunosuppressive actions of retroviruses.

The immunosuppressive properties of retroviruses were first demonstrated by Old et al. We later showed that Gross Passage A retrovirus superinfection in mice resulted in decreased antibody production and diminished allograft rejection. We have studied in some detail the immunosuppression which occurs subsequent to infection with feline leukemia virus (FeLV) as characterized by profoundly depressed T and B lymphocyte responses and decreased production of gamma-interferon. Injection of staphylococcal protein A (SPA) corrected these deficient immune responses, cleared circulating FeLV from blood and produced a regression of FeLV-induced lymphomas and leukemias. The immunosuppressive properties of FeLV and certain other retroviruses have been linked to the transmembrane viral envelope peptide, p15E. Cianciolo et al synthesized a 17-amino acid viral component which shares sequence homology with a highly conserved region of p15E. In vitro analyses have shown that this synthetic retroviral peptide suppresses T and B cell functions, inhibits the generation of cytotoxic lymphocyte (CTL) responses and dramatically alters the morphology and distribution of monocytes. The latter finding, along with reports that cells of the monocyte/macrophage lineage play a critical role in the initiation of human immunodeficiency infection, suggests that monocytes and macrophages may play a crucial role in retroviral infection and some of the associated immunodeficiencies associated with retroviral infection.

Acquired Immunodeficiency Syndrome↗

Effects of juzen-taiho-toh (TJ-48), a traditional Oriental medicine, on hematopoietic recovery from radiation injury in mice.

Effects of Juzen-taiho-toh (TJ-48) on the recovery of hemopoietic systems from radiation injury are analyzed. Female C57BL/6N mice (6-8 weeks old) were irradiated at doses of 1, 2, 3, 5, or 7 Gy from a 60Co source. After irradiation, the mice were given TJ-48 (1.25 g in 100 ml drinking water). Seven days after irradiation, the mice were sacrificed, and bone marrow (both femurs), thymus, spleen, and peripheral blood counts were made. The bone marrow cells were used for fibroblast colony-forming unit (CFU-f), spleen colony-forming unit (CFU-S), granulocyte-macrophage colony-forming unit (CFU-GM), erythroid colony-forming unit (CFU-E), and erythroid burst-forming unit (BFU-E) assays. No difference was observed between the experimental and control groups except for CFU-S counts. In the assay for day-14 CFU-S, the mice injected with TJ-48-treated bone marrow cells showed better general condition (including increased body weight) and heavier spleens with larger and more numerous colonies. The effect of TJ-48 does not seem to be elicited via the hemopoietic microenvironment, because mice that had been given TJ-48 before irradiation at 8 Gy and then injected with syngeneic bone marrow cells did not show enhanced day-14 CFU-S counts. These results suggest that TJ-48 manifests a radioprotective effect by increasing the number and size of day-14 CFU-S.

Animals↗

Marrow transplantation for acute lymphoblastic leukemia: factors affecting relapse and survival.

Transplant outcome was analyzed in 690 recipients of bone marrow transplants (BMTs) for acute lymphoblastic leukemia (ALL) in first (n = 299) or second remission (n = 391). Actuarial 5-year leukemia-free survival was 42% +/- 9% (95% confidence interval) and 26% +/- 6%, respectively; relapse rates were 29% +/- 9% and 52% +/- 8%, respectively. Five-year leukemia-free survival was 56% +/- 18% in children and 39% +/- 10% in adults (P less than .02) transplanted in first remission. In first-remission adults, non-T-cell phenotype, male to female donor-recipient sex-match and graft-v-host disease (GVHD) were associated with decreased leukemia-free survival; inclusion of corticosteroids in the regimen to prevent GVHD was associated with increased leukemia-free survival. Variables associated with decreased leukemia-free survival after second-remission transplants were age greater than or equal to 16 years and relapse occurring while on therapy. Variables associated with increased probability of relapse were similar for first- and second-remission transplants and included GVHD prophylaxis without methotrexate and absence of GVHD. In first-remission transplants, leukocyte count greater than or equal to 50 x 10(9)/L at diagnosis was also associated with increased relapse; in second remission, relapse while receiving chemotherapy was also associated with increased posttransplant relapse. These data emphasize the importance of both disease- and transplant-related variables in predicting outcome after BMT. They may be used to explain differences between studies, design future trials, and identify persons most likely to benefit from BMT.

Adolescent↗

Long-lasting skin allograft tolerance in adult mice induced across fully allogeneic (multimajor H-2 plus multiminor histocompatibility) antigen barriers by a tolerance-inducing method using cyclophosphamide.

A new method of cyclophosphamide (CP)-induced skin allograft tolerance in mice that can regularly overcome fully allogeneic (major H-2 plus non-H-2) antigen barriers in mice has been established. The components of the method are intravenous or intraperitoneal administration of 50-100 micrograms of anti-Thy-1.2 mAb on day -1, intravenous injection of 90 x 10(6) allogeneic spleen cells mixed with 30 x 10(6) allogeneic bone marrow cells from the same donor on day 0, and intraperitoneal injection of 200 mg/kg CP on day 2. In each of four fully allogeneic donor----recipient combinations, including C3H/HeJ (C3H; H-2k)----C57BL/6J(B6; H-2b), B6----C3H, BALB/cByJ (BALB; H-2d)----B6, and BALB----C3H, long-lasting survival of skin allografts was induced in most of the recipient mice. The specific tolerant state induced was dependent on the doses of the antibody and bone marrow cells used. The optimal timing of CP treatment to induce tolerance was found to be 1-3 d after the stimulating cell injection. Treatment with the anti-Thy-1.2 antibody together with CP on day 2 after the cell injection on day 0 also induced profound tolerance. In the B6 mice made tolerant of C3H with antibody, C3H spleen cells plus C3H bone marrow cells, and then CP, a minimal degree of stable mixed chimerism was established and the antitolerogen (C3H) immune responses examined here, including delayed footpad reaction (DFR), CTL activity, and capacity for antibody production against donor-strain antigens were abrogated in a tolerogen-specific manner. From cell transfer experiments, the mechanism of tolerance could be largely attributed to reduction of effector T cells reactive against the tolerogen, and strong suppressive influences that might prolong skin allograft survival directly were not detected in the tolerant mice. Moreover, pretreatment with anti-Thy-1.2 antibody or anti-L3T4 (CD4) antibody was more effective than pretreatment with anti-Lyt-1 (CD5) antibody or anti-Lyt-2 (CD8) antibody as an initial step in tolerance induction. These results suggest that permanent tolerance to fully allogeneic skin grafts may be induced because antibody given before the stimulating cell injection reduces the number of reactive T cells in the recipient mice. This antibody treatment may facilitate an antigen-stimulated destruction of responding and thus proliferating cells with CP by preventing a possibly less proliferative, more rapid maturation of reactive T cells or by destroying residual effector T cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Inhibition of murine lymphokine-activated killer (LAK) cell activity by adherent cells.

The effects of adherent cell depletion, indomethacin, and prostaglandin E2 (PGE2) on murine LAK cell activity were investigated. Removal of plastic adherent cells from splenocyte suspensions either prior to 5-day culture with 1000 U/ml of recombinant human IL-2 (rIL-2) or prior to assay resulted in an enhanced LAK cell cytotoxicity compared to that of whole spleen cell suspensions. Indomethacin enhanced LAK cell cytotoxicity of whole splenocyte suspensions if present during the culture period, but had no effect on whole splenocyte or adherent cell-depleted cell suspensions if added just prior to assay. PGE2 suppressed LAK cell activity of nonadherent splenocyte but not whole splenocyte suspensions when present during the culture period. In vivo treatment of mice with indomethacin enhanced cytotoxicity directed toward both LAK sensitive, natural killer (NK) resistant (P-815) and LAK, NK sensitive (YAC-1) tumor cell targets. Splenocytes from indomethacin-treated mice cultured with additional indomethacin and rIL-2 exhibited highest LAK cell activity. The results from this study indicate that LAK cells are regulated by adherent cells which suppress LAK cell activity. This suppression can be reversed both in vitro and in vivo by indomethacin. This study has important implications for the possible clinical use of indomethacin in the potentiation of in vivo and in vitro LAK cell activity for immunotherapeutic protocols.

Animals↗

Management of a novel immune deficiency with IL-2 therapy.

The present study describes a female child, who had a primary defect in the ability of her T-cells to secrete interleukin-2. Numbers of B- and T-cells were normal, but their functions were severely deficient. The patient had decreased immunoglobulins and poor ability to mount antibody responses. Phytohemagglutinin (PHA) and antigen-driven lymphoproliferative responses were diminished and were correctable in vitro with exogenous IL-2. Upon stimulation with PHA the patient's lymphocytes expressed IL-2 receptors normally, but were grossly deficient in endogenous IL-2 production. The patient was diagnosed as having a form of severe combined immunodeficiency disease at 6 months of age. Two attempts at immune reconstitution by haploidentical bone marrow transplantation failed to result in sustained engraftment. At age 18 months, treatment was initiated with rIL-2 10,000 units/kg i.v. daily and gradually increased to 30,000 units/kg. A marked improvement was noted, clinically as well as in T-cell immune functions. The child has been maintained on rIL-2 treatment at home for the past year without significant adverse effects, and she is currently receiving 30,000 units/kg of rIL-2 three times a week. This case illustrates that IL-2 is a potentially useful therapeutic modality which can be safely administered for prolonged periods to children with primary immunodeficiency diseases.

B-Lymphocytes↗

Induction of tolerance across major barriers using a two-step method with genetic analysis of tolerance induction.

Using a murine skin allograft tolerance induction system that consists of intravenous injection of 1 x 10(8) allogeneic spleen cells followed by intraperitoneal (i.p.) injection of 200 mg/kg cyclophosphamide (CP) 2 days later, sensitivity to tolerance induction was examined across various histocompatibility (H) barriers. Although each group of class I, class II or multiminor H antigens was not by itself a prohibitively strong barrier, resistance to tolerance induction increased when the three types of barriers were combined in various ways. When the donor-recipient combinations were disparate at the entire spectrum of both H-2 plus non H-2 antigens (fully allogeneic), profound tolerance to skin allografts was not induced by this method in any of the combinations examined. Based on these results, induction of tolerance across fully allogeneic barriers was attempted in C57BL/10SnJ (B10; H-2b) mice against C3H/HeSnJ (C3H; H-2k) strain by addressing the 11 barriers as two separate challenges. B10 mice were first given B10.BR/SgSnJ (B10.BR; H-2k) spleen cells plus CP to make them tolerant to the H-2k component represented among C3H antigens, and then later were given C3H spleen cells plus CP to establish a tolerant state to the remainder of the disparate antigens of the C3H donors. After these two separate manipulations, C3H skin was accepted in the B10 mice, and normal hair growth was observed in the grafted C3H skin. By contrast, B10 mice given C3H spleen cells plus CP and then again another injection of C3H spleen cells plus CP were not rendered tolerant to C3H skin. In B10 mice, tolerance to C3H induced with B10.BR spleen cells plus CP and then C3H spleen cells plus CP was specific to C3H, and the tolerant B10 mice rejected third-party skin from DBA/2J (DBA; H-2d) strain in a normal fashion. In transfer experiments, the mechanism of tolerance was found to be based largely on reduction of the effector cells rather than on a mechanism involving active suppression. Assays for chimerism revealed that maintaining the tolerant state required persistence of cells of donor origin. These data indicate that in a primary immune response to a certain dose of allogeneic cells (tolerogen), the existence of a relatively large proportion of potentially reactive clones in the host may trigger proliferation of only a part of the population and some of the potentially reactive cells may differentiate rapidly without a prolonged period of proliferation.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Donor and recipient specific tolerance in cells from semi-allogeneic, H-2 subregion compatible or fully allogeneic bone marrow chimeras attributable to clonal deletion.

Specificities of tolerance induced in allogeneic bone marrow (BM) chimeras which had been established by injecting allogeneic BM cells pretreated with anti-Thy-1 mAb alone (without complement (C)) were analyzed using Simonsen's splenomegaly assay. Lymphocytes from fully allogeneic, semi-allogeneic and H-2 subregion compatible BM chimeras were specifically unresponsive to donor and recipient antigens (Ag). However, cells from H-2 subregion compatible chimeras initiated as vigorously a GVHR in F1 recipient mice, which were disparate at H-2K and I-A regions, as did spleen cells of donor mice, which were incompatible at the entire H-2 and minor histocompatibility regions of the recipients. The donor cells from such chimeras that initiated these considerable GVHR were either CD4+ or CD8+ T cells. Furthermore, synergistic effects by the CD4+ and CD8+ T lymphocytes were also observed. We found no evidence for a suppressive mechanism(s) in maintenance of the specific tolerance in allogeneic chimeras. Further, when lymphoid cells from these chimeras were adoptively transferred to irradiated mice of the donor strain and maintained for 5 days in the absence of recipient Ag (tolerogen), the adoptively transferred cells were shown to retain their unresponsiveness to the recipient Ag. These results reveal that T lymphocytes from allogeneic BM chimeras prepared by our method had been specifically induced to a tolerant state to both donor and recipient Ag and that the major mechanism of induction and maintenance of long-lasting tolerance is attributable to clonal deletion of both CD4+ and CD8+ T cell subsets rather than to the development of a population of suppressor cells of any sort.

Animals↗

The necessity of both allogeneic antigens and stem cells for cyclophosphamide-induced skin allograft tolerance in mice.

We have reported that in an H-2 identical murine combination of AKR/J (AKR, H-2k, Thy1.1) and C3H/HeJ (C3H, H-2k, Thy 1.2), specific tolerance to C3H skin in AKR mice is induced only when both intravenously (i.v.) 1 x 10(8) viable C3H spleen cells and, two days later, intraperitoneally (i.p.) 200 mg/kg cyclophosphamide (CP) have been given. To further examine this mechanism of tolerance, we used 2000R-irradiated C3H spleen cells as an antigen source and bone marrow cells depleted of Thy1.2+ cells and Ia+ cells as a stem cell source. When a mixture of 1 x 10(8) irradiated spleen cells and 3 x 10(7) bone marrow cells was used as tolerogen and 200 mg/kg CP was administered two days later, a profound and specific long-lasting tolerance was induced. This tolerant state, however, was less profound than that induced with spleen cells plus CP. When the number of irradiated spleen cells was fixed at 1 x 10(8), the tolerant state was dose-dependent on the quantity of bone marrow cells. On the other hand, when the number of bone marrow cells was fixed at 1 x 10(6), tolerance induction depended on the dosage of irradiated spleen cells. Tolerance induced with irradiated spleen cells plus bone marrow cells and CP was tolerogen specific. Tolerance was never induced when the bone marrow cells had been irradiated with 2000R prior to injection. Transfer experiments showed that the tolerant state, in its acute phase, appeared to be predominantly based on reduction of functionally reactive cells. The prolongation of skin allograft survival in tolerant mice could not be attributed directly to suppressor cells, nor was any evidence of suppressive factor induction observed. In the chronic phase, however, the importance of the suppressive mechanisms appeared to be relatively increased. EPICS analysis of the thymocytes using fluorescein-conjugated anti-Thy1.1 and anti-Thy1.2 antibodies showed that a minimal degree of mixed chimerism had been established in the tolerant mice. Moreover, both T cells and Ia+ cells had beneficial effects on the induction of tolerance. We conclude that in the tolerance induced by spleen cells plus CP, histocompatibility antigens expressed on the surface of the spleen cells were essential to the antigen-stimulated cell destruction mechanism. Stem cells contained in the spleen cells also appeared to be crucial for maintaining tolerance by establishing a minimal degree of mixed chimerism.

Animals↗

Influence of dietary energy restriction on the numbers and proportions of Ly-1+ B lymphocytes in autoimmunity-prone mice.

Chronic energy-intake restriction (CEIR) has been shown to increase life-span, delay diseases expression, and inhibit immunological perturbations in all strains of autoimmunity-prone mice studied, including NZB, (NZB x NZW)F1, MRL/Mp-lpr/lpr, BXSB, and kd/kd mice. In (NZB x NZB)F1 mice, increased percentages and increased absolute numbers of Ly-1+ B lymphocytes in spleen, mesenteric lymph nodes, thymus, and bone marrow as revealed by two-color immunofluorescence analysis were greatly reduced by CEIR with a diet high in carbohydrate and low in fat. This influence on a possibly crucial lymphocyte subpopulation was associated with delayed onset of disease and with greatly prolonged life-span. In the present investigation, the percentages and absolute number of Ly-1+ B lymphocytes in the spleen, peritoneal exudate, and peripheral blood were found to be increased in each autoimmunity-prone strain studied. CEIR decreased the absolute and relative numbers of the Ly-1+ B lymphocytes in mice of each of the autoimmunity-prone strains and returned the number and proportions of Ly-1+ B cells close to levels present in the same locations in genetically long-lived C57BL/6, DBA/2, or BALB/c mice fed a standard commercial diet ad libitum.

Animals↗