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T A Seemayer

Publications and source records attributed to T A Seemayer.

At least 19 recordsLinked to original sources

Macrophage priming and lipopolysaccharide-triggered release of tumor necrosis factor alpha during graft-versus-host disease.

In this report we have investigated macrophage (M phi) activity and tumor necrosis factor alpha (TNF-alpha) production during graft-vs.-host disease (GVHD). TNF-alpha production by M phi requires two signals: priming of M phi by interferon followed by triggering of TNF-alpha production and release by lipopolysaccharide (LPS). The state of M phi activation was examined in nonirradiated B6AF1 recipient mice injected with either 60 x 10(6) (acute GVHD) or 30 x 10(6) (nonlethal GVHD) parental B6 lymphoid cells. During the early phase of acute GVHD, administration of normally sublethal amounts of LPS-triggered release of significant amounts of TNF-alpha into the serum resulting in death of the animals within 36 h. Normal animals treated with the same dose of LPS neither died nor produced detectable amounts of serum TNF-alpha. In vitro studies demonstrated that M phi were primed during GVHD. The level of M phi priming was greater during acute GVHD than nonlethal GVHD since 100-fold less LPS was required to trigger killing of a TNF-alpha-sensitive cell line by M phi from acute GVHD animals. The amount of TNF-alpha released into the serum after LPS injection increased during the course of the GVHD and was significantly greater in acute GVH-reactive mice. Endogenous LPS was detected in the serum of acute GVH-reactive animals coincident with the onset of mortality. The data provide evidence that during GVHD M phi are primed as a result of the allogeneic reaction and that endogenous LPS therefore triggers M phi production of TNF-alpha resulting in the symptoms characteristic of acute GVHD.

Animals

Increased vascular permeability in pancreas of diabetic rats: detection with high resolution protein A-gold cytochemistry.

The role of the pancreatic microcirculation in the pathogenesis of Type 1 (insulin-dependent) diabetes mellitus remains poorly understood. Herein, a method is described for the ultrastructural investigation of the integrity of the pancreatic microvasculature. The method consists of histochemical detection and isolation of the islets followed by albumin and protein A-gold immunocytochemistry, whereby the distribution of endogenous albumin is used as a marker of endothelial integrity. This technique, applied to the study of spontaneously diabetic rats, reveals a selective increase in permeability of islet capillaries and post-capillary venules at the onset of diabetes, while acinar capillaries and arterioles remain intact. At 50 days of age, before the onset of diabetes, the microvasculature of diabetes-prone rats shows no alterations in permeability to albumin. When used in conjunction with morphometric analyses, this methodological approach may be useful for further studies in pathologic or experimental conditions involving the pancreatic microvasculature.

Aging

Diabetes prevention in BB rats by inhibition of endogenous insulin secretion.

Chronic prophylactic exogenous insulin treatment commenced in young diabetes susceptible BB rats has been shown to prevent type I diabetes. This study was undertaken to examine whether this diabetes protection resulted from inhibition of beta-cell insulin secretion by exogenous insulin administration or from either a metabolic (chronic hypoglycemia) or immune effect of this treatment. We compared the effects of prophylactic exogenous insulin treatment with those of an insulin secretion inhibitor, diazoxide, an oral hypoglycemic agent, glyburide, and, water alone as controls in randomly divided BB diabetes-prone littermates treated from age 30 to 150 days. These experiments confirmed that exogenous insulin can prevent type I diabetes in the BB rat. Diazoxide, which inhibits endogenous insulin secretion while causing hyperglycemia (rather than hypoglycemia with insulin), also offered protection from diabetes. In contrast, the oral hypoglycemic agent glyburide, which increased insulin secretion, but decreased plasma glucose during the early part of the experiment, did not affect the incidence of diabetes. The lymphocyte subpopulations were unaffected by these treatments. These data support the hypothesis that decreased beta-cell activity is responsible for the protection against the immune beta-cell destruction.

Analysis of Variance

Induction, specificity and elimination of asialo-GM1+ graft-versus-host effector cells of donor origin.

In previous studies we demonstrated that an induced asialo-GM1 positive (ASGM1+) cell of donor origin that exerts natural killer cell-like activity (NK activity+) plays a crucial role in the development of graft-versus-host (GVH)-associated tissue damage and severe immunosuppression. This study examined whether the ASGM1+ (NK activity+) GVH effector cells were activated by non-specific signals or whether these cells were triggered by specific alloantigens and displayed antigenic specificity. C57B1/6 (B6) donor mice were treated with either B6 x AF1 (B6AF1) lymphoid cells and anti-asialo GM1 antibodies (anti-ASGM1) to induce and eliminate specifically activated B6-anti-B6AF1 ASGM1+ (NK activity+) cells or with polyinosinic: polycytidylic acid (poly I:C), and anti-ASGM1 to eliminate non-specifically activated ASGM1+ (NK activity+) cells. Donor spleen and lymph node cells depleted of the specific allo-induced ASGM1+ NK reactive cells showed near normal numbers of L3T4+ and Lyt-2+ cells and retained T- and B-cell functions as measured by mitogen responses (to PHA, Con A and LPS), mixed lymphocyte responses (MLR) (to B6AF1) and the generation of cytotoxic T cells (CTL) (to B6AF1 blasts). Anti-ASGM1 treatment almost completely abrogated NK activity in all donor inocula. GVH reactions were induced by injecting treated donor cells into B6AF1, B6 x C3HejF1 (B6C3HF1) and B6 x SJLF1 (B6SJLF1) hybrids and monitored by splenomegaly, suppression of T-cell mitogen responses and the development of histopathological lesions in the thymus, liver and pancreas. Cells from donors depleted of non-specifically (poly I:C) induced ASGM1+ cells induced severe histological lesions, marked immunosuppression and splenomegaly in all three F1 hybrid combinations. When the donor cells were depleted of specifically induced (B6-anti-B6AF1) ASGM1+ cells and injected into the three F1 combinations they induced splenomegaly in all three but caused severe tissue injury and intense immunosuppression only in B6C3HF1 and B6SJLF1 mice and not in B6AF1 mice. Genetic analysis suggests that the H-2D (or a closely related) region of the H-2 complex plays an important role in the activation of the specific GVH effector cells. These results suggest that the cell(s) responsible for splenomegaly are different from the ones that cause severe GVH-associated tissue damage and immunosuppression although there may be cells and/or lymphokines common to both processes.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

A crossroad.

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DNA, Recombinant

Intermediate filament proteins and actin isoforms as markers for soft-tissue tumor differentiation and origin. III. Hemangiopericytomas and glomus tumors.

Intermediate filament proteins and actin isoforms of a series of 12 malignant hemangiopericytomas and five glomus tumors were examined by light microscopy, transmission electron microscopy, two-dimensional gel electrophoresis (2D-GE), and by immunohistochemistry, the latter using monoclonal or affinity-purified polyclonal antibodies to desmin, vimentin, cytokeratins, alpha-smooth muscle, and alpha-sarcomeric actins. By light microscopy, all hemangiopericytomas disclosed a predominant vascular pattern with scant storiform, myxoid and spindle cell areas, and with variable degrees of perivascular fibrosis. By ultrastructure, smooth muscle differentiation was observed in each hemangiopericytoma. Immunohistochemically, neoplastic cells of hemangiopericytomas expressed vimentin as the sole intermediate filament protein and lacked alpha-smooth muscle or alpha-sarcomeric actins. 2D-GE revealed only beta and gamma actins, in proportions typical for fibroblastic tissues. Glomus tumors revealed vimentin and alpha-smooth muscle actin within glomus cells by immunohistochemical techniques and disclosed ultrastructurally distinct smooth muscle differentiation. Therefore hemangiopericytomas represent a distinct soft-tissue neoplasm with uniform morphologic, immunohistochemical, and biochemical features most likely related to glomus tumors, the former representing an aggressive and potentially malignant neoplasm of vascular smooth muscle cells and the latter a well-differentiated neoplasm of vascular smooth muscle cells. Because malignant hemangiopericytomas disclose smooth muscle differentiation by ultrastructure, but do not express alpha-smooth muscle actin, as normal pericytes and glomus cells, it is suggested that these neoplasms represent highly vascularized smooth muscle neoplasms, ie, poorly differentiated leiomyosarcomas derived from vascular smooth muscle cells or their equivalent, the pericytes, which have lost alpha-smooth muscle actin as a differentiation marker that is similar to many conventional poorly differentiated leiomyosarcomas.

Actins

Immunologic and genetic studies of diabetes in the BB rat.

The spontaneous development of diabetes in the Bio-Breeding (BB) rat is an excellent model of human insulin-dependent diabetes mellitus (IDDM). Disease expression is dependent on several genetically determined abnormalities, including specific major histocompatibility complex (MHC) genes. At least one MHC class II locus of the U haplotype is a necessary, but not sufficient, condition for disease expression. The immune system of BB rats is markedly abnormal. There is a striking reduction in the number and function of mature cytotoxic/suppressor T cells, a poor proliferative response to mitogens and in mixed lymphocyte culture, poor interleukin-2 production, and a reduced ability to reject skin allografts. While these immune system abnormalities are closely related to the development of diabetes, the immune recognition and effector mechanisms resulting in islet cell destruction are still poorly understood. The hypothesis that MHC class II induction on pancreatic beta cells serves to target these lymphokines, natural killer (NK) cells, macrophages, etc.) have been implicated in islet cell killing. The incidence of IDDM is reduced by immunosuppressive therapy in both rats and humans, further supporting the role of immune mechanisms in this disease.

Animals

Molecular mechanisms of oncogenesis.

Cellular oncogenes (c-oncs) have been highly conserved throughout evolution and subserve important roles in growth and development. Both in development and the neoplastic state, c-oncs appear to collaborate rather than function independently. Cellular oncogenes are activated in the neoplastic process by four (nonviral) mechanisms; (a) chromosomal translocations; (b) gene amplifications; (c) point mutations; and (d) DNA rearrangements. The timing of c-onc gene product expression may be as important in oncogenesis as the level of expression. At this writing, mutant oncogenes have not been shown to be inherited. Oncogene amplification, if important in oncogenesis, is more likely to be involved with tumor progression rather than initiation. Chromosomal/molecular aberrations tend to be characteristic for a given type of cancer. These genetic alterations are often situated near heritable fragile sites, tumor-suppressor gene loci and/or oncogene loci. Similar molecular mechanisms involving translocations and inversions may underly the common T and B cell neoplasms. The loss/inactivation of both normal alleles at a locus thought to encode for tumor-suppressing activities (antioncogenes) may represent an event common to many childhood and adult neoplasms. The consistency and cell specificity with which this has been identified is consistent with a role for such genes in cellular differentiation. At this writing, the paradigm for such a controlling locus is 13q14, the site of the retinoblastoma gene. Based on recent studies in familial and sporadic Wilms' tumor which suggest etiological heterogeneity, theoretical modifications of the carcinogenesis model which has been central to understanding retinoblastoma may soon be forthcoming to explain molecular mechanisms operative in other cancer. The role of genomic imprinting in carcinogenesis is only recently being explored. Further study of this process may prove to be a fruitful area of future research.

Chromosome Aberrations

The effect of islet-activating protein (IAP) of pertussis toxin on the spontaneous diabetic syndrome in the rat.

The administration of the Islet-Activating Protein (IAP) of pertussis toxin results in an increased insulin response to oral glucose in a dose- dependent manner. This response can be detected for up to 12 days after a single injection. In addition, IAP increases the number of peripheral blood leucocytes and lymphocytes. Inbred strains of rats differ in the magnitude of the leucocyte but not the insulin responses to IAP. Multiple injections of 1,000 ng of IAP to diabetes-prone BB rats at 50, 64 and 78 days of age caused an increased release in response to glucose challenge and a slight increase in peripheral blood leucocytes when compared to animals receiving saline injections. The prevalence of insulin-dependent diabetes in BB rats was increased in the IAP group as compared to controls. Histolgic examination of the pancreas at the time of detection of diabetes revealed a widespread intense insulitis. We speculate that the increased expression of disease observed in the BB rats receiving IAP may be secondary to the chronic increase in insulin release and/or to an effect on the cells of the immune system.

Animals

The effects of polyinosinic:polycytidylic acid on the graft-versus-host reaction. III: Increased severity of the reaction with delayed pI:C treatment.

We have been investigating the effects of polyinosinic:polycytidylic acid (pI:C), an interferon inducer, on the graft-versus-host reaction. We have previously shown that pI:C treatment of C57BL/6xAF1 (B6AF1) recipient mice immediately before injection of C57BL/6 (B6) parental lymphocytes inhibited the immuno-suppression and pathological changes normally caused by the GVH reaction, by a mechanism apparently identical to that seen in F1 hybrid resistance (HR) to hematopoietic grafts. We now demonstrate that delaying pI:C treatment by as little as 48 hr produces the opposite effect. Treatment of recipient B6AF1 mice at different days after transfer of parental lymphocytes induced a marked increase in the severity of the GVH reaction, as measured by a decreased plaque-forming cell response to sheep erythrocytes; decreased proliferative response to the T and B cell mitogens PHA, Con A, and LPS; increased pathological changes in both lymphoid and nonlymphoid tissues; and increased GVH-associated mortality. This effect is unrelated to HR, as pI:C was able to augment the severity of the GVH reaction when A strain cells were injected into AxCBAF1 recipients, which do not manifest HR. Early pI:C treatment (1 and 2 days after parental cell transfer) increased the severity of the GVH reaction much more than later pI:C treatment (7 and 8 days after parental cell transfer). This observation, along with the demonstration of altered pathology in GVH mice treated with pI:C, suggests that the effect of pI:C is not mediated through a direct suppressive effect of IF on the cells responding in either the PFC or mitogen assays, but rather by the ability of IF to activate or suppress mechanisms involved in the development of GVH-induced alterations.

Animals

Class I and II major histocompatibility complex gene product expression by a rat insulinoma cell line in vitro following exposure to gamma interferon.

A study of Class I and II major histocompatibility complex gene product expression by a rat insulinoma cell line (RINm5F) was performed using monoclonal antibodies and immunoperoxidase techniques. RINm5F cells were incubated with different concentrations of gamma interferon. RINm5F cells exhibit low levels of Class I molecules and are normally devoid of Class II gene products. Upon exposure to gamma interferon, RINm5F cells showed a dramatic increase in Class I expression. This expression was homogenous and could be detected on all cells after 18 h of incubation with as little as 1 unit/ml of interferon. In contrast, de novo Class II expression was not homogeneous and required 36 h of incubation with 10 units/ml of interferon. The number of RINm5F cells expressing Class II antigens was dose- and time-dependent. Interferon treatment did not affect the morphology of RINm5F cells as determined by ultrastructural analysis. Withdrawal of interferon from the culture medium for as long as 78 h diminished but did not abolish the expression of Class I and Class II molecules already induced. The ability of interferon to enhance expression of Class I gene products and induce de novo expression of Class II molecules on B-cell-derived RINm5F cells supports the hypothesis that aberrant expression of major histocompatibility complex gene products on pancreatic B cells may be an important factor in triggering the immune response in Type 1 (insulin dependent) diabetes mellitus.

Adenoma, Islet Cell

Metabolic time course and immunologic concomitants of adoptive transfer of type I diabetes in the BB rat.

The metabolic and cellular immune changes during adoptive transfer of type I diabetes mellitus in the BB rat were examined. Concanavalin A (Sigma Chemical Co, St Louis) stimulation of acutely diabetic BB rat splenocytes increased the Ia-positive cells, but no other lymphocyte subset. Each spleen cell preparation was divided into two and injected into two separate recipients. Thirty-day-old diabetes-prone BB rats received these splenocytes intravenously (62 +/- 5 x 10(6) cells, n = 30) or buffer alone (controls, n = 14). Seventy-seven percent of the cell-injected rats became diabetic before 60 days of age, 15 +/- 1 days after injection. They were glucose intolerant two to three days before onset, with normal fasting glucose. All controls maintained normal glucose tolerance. The morphology revealed intense insulitis in all the rats that became diabetic, and its absence in all the controls. Eighty-three percent of the spleen cell preparations produced the same outcome in both recipients. The cell-injected rats had an increase in lymphocyte counts eight days after injection compared with the controls. The most affected subsets were the pan T cells (OX19+) and helper T cells (W3/25+). While the rats that ultimately became diabetic had a decrease of their lymphocyte subsets to control levels between eight and 14 days, the injected rats that maintained normal glucose tolerance maintained elevated T cells. We conclude that (1) adoptive transfer of diabetes occurs in the presence of an increase of the helper T (W3/25+) lymphocytes after spleen cell injections; (2) glucose intolerance precedes by two to three days fasting hyperglycemia; and (3) while the lymphocyte counts are increased in all recipients of splenocyte preparations, these counts decrease rapidly only in the rats that develop diabetes, possibly by entrapment of lymphocytes in the insulitis.

Animals

Association between the degree of thymic dysplasia and the kinetics of thymic NK cell activity during the graft-versus-host reaction.

In this study, by employing different cell doses and parent into F1 hybrid combinations, we have investigated the relationship between the severity of thymic medullary dysplasia and the kinetics of thymic natural killer (NK) cell activity after the induction of graft-versus-host (GVH) reactions. GVH reactions were induced by injecting different doses (30, 20, 10 X 10(6] of C57BL/6 (B6) of A parental lymphoid cells (PLC) into non-X-irradiated adult B6xAF1 (B6AF1) mice. On different days after the induction of GVH reactions, the thymuses were examined histologically and thymocyte NK cell activity was tested by using YAC targets. Our results show that, depending upon the genotype and dose of PLC injected, various degrees of thymic medullary dysplasia (mild, moderate, or severe) can be induced. Furthermore, severe to moderate thymic medullary dysplasia is observed only in those groups of GVH-reactive mice in which thymic NK cell activity occurs early and increases rapidly. In contrast, when mild thymic medullary dysplasia or no thymic alterations was observed, thymic NK cell activity peaked later and was of lower intensity than that of the groups with moderate to severe lesions. These results suggest an association between the degree of thymic medullary dysplasia and the kinetics of NK cell activity in the thymus. Furthermore, the different degrees of thymic medullary dysplasia as described here may serve as a powerful tool to study the role of thymic medullary dysplasia in determining the duration of T-cell immunodeficiency associated with the GVH reactions.

Animals

Prevention of murine graft-versus-host disease by inducing and eliminating ASGM1+ cells of donor origin.

In this study anti-asialo GM1 antibodies (anti-ASGM1) were used to further characterize the effector cells responsible for graft-versus-host (GVH)-induced histopathological lesions: Two different types of ASGM1+ cells were identified: an endogenous ASGM1+ population and an induced ASGM1+ population. Both of the ASGM1+ cell populations exhibited natural killer (NK) cell activity, as assessed by their ability to lyse YAC tumor targets in vitro. Donor C57BL/6 (B6) mice were treated in vivo with anti-ASGM1 to eliminate endogenous ASGM1+ cells. ASGM1+ cells were induced in B6 donor mice by treating the animals with 15 x 10(6) B6 x AF1 (B6AF1) lymphoid cells for 44-48 hr. The induced ASGM1+ cells were eliminated by in vivo treatment with anti-ASGM1. GVH reactions were induced by injecting B6 lymphoid cells into B6AF1 mice. Prior to GVH induction the B6 donor cells were tested for NK cell activity against YAC tumor target cells in vitro and for T and B cell functions by mitogen responses in vitro. GVH reactions were determined by splenomegaly, suppression of the plaque-forming cell (PFC) response to sheep red blood cells (SRBC), suppression of the T and B cell mitogen responses, and the development of GVH-associated histopathological alterations in the thymus, liver, and pancreas. Donor lymphoid cells depleted of endogenous ASGM1+ cells were effective at inducing splenomegaly, severe suppression of immune functions, and histopathological lesions. Donor lymphoid cells depleted of both the endogenous and induced ASGM1+ cells displayed normal T cell mitogen responses and were capable of inducing splenomegaly and partial suppression of the PFC response to SRBC when injected into B6AF1 recipients, however, these lymphoid cells failed to induce both GVH-associated histopathological lesions and severe suppression of T and B cell mitogen responses. These results suggest that semiallogeneic stimulation induces an ASGM1+ population in the donor inoculum that displays NK cell-like function (YAC killing) and that plays a crucial role in inducing GVH-mediated histopathological lesions and severe immunosuppression of both T and B cell responses.

Animals