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B A Araneo

Publications and source records attributed to B A Araneo.

16 recordsLinked to original sources

The presence of a dehydroepiandrosterone-specific receptor binding complex in murine T cells.

We have investigated the ability of dehydroepiandrosterone (DHEA) to alter the production of interleukin-2 (IL-2) and to bind to a specific binding complex in antiCD3 epsilon activated T cells. Binding activity correlated with the presence of a specific DHEA binding complex in the cytosol and nuclei of DHEA-responsive T-cell hybridomas, as well as in CD4+ and CD8+ cells isolated from peripheral lymph nodes of normal mice. Scatchard analysis determined that intact lymphocytes and cytosolic fractions contained high affinity binding for [3H]DHEA (approx. 2.6 nM) with 1000-7000 binding sites existing per cell. Five of the T-cell hybridomas tested both responded to DHEA treatment with increased production of IL-2 and also contained specific high affinity [3H]DHEA binding. Four additional T-cell hybridomas were found to contain no specific [3H]DHEA binding and were also unresponsive to DHEA influences on IL-2 production. Sucrose density gradients demonstrated a 3-4s [3H]DHEA binding complex in high salt and a 7-8s binding complex in low salt. Specific binding was inhibited by preincubation of the cytosol fractions with either trypsin or chymotrypsin, or by heating to 60 degrees C for 1 h (less than 15% of control). [3H]DHEA binding was unaffected by preincubation of the cytosol fractions with ribonuclease, deoxyribonuclease, or phospholipase A. The DHEA-protein complexes bound to DNA-cellulose with the amount of binding being slightly increased by preincubation at 25 degrees C as compared to 4 degrees C. As expected, [3H]DHEA binding was inhibited by the addition of unlabeled DHEA, but was also modestly inhibited by dihydrotestosterone and cortisol. Binding of DHEA was unaffected by progesterone, dexamethasone, estradiol, androsterone, DHEAS, and beta-etiocholanolone at all concentrations tested. DHEA was incapable of inhibiting the binding of [3H]DHT to the androgen receptor or [3H]dexamethasone to the glucocorticoid receptor. Collectively, these findings suggest that murine T cells contain a specific DHEA receptor. We believe that DHEA is a steroid hormone that is directly involved in the regulation of IL-2 production by both normal and some T-cell hybridomas.

Animals

Natural regulators of T-cell lymphokine production in vivo.

The mammalian immune system possesses the intrinsic capacity to evoke a wide variety of functionally distinct effector mechanisms following stimulation by a particular antigenic substance. Such diversity in available responses is absolutely essential to the immunocompetent host, which must continually deal with a diverse set of potential pathogens within its ever-changing environment. The development of appropriate types of immune responses, therefore, represents a highly dynamic process that requires that an equivalent consideration be given to a large array of components, any one of which is capable of modulating the final outcome. While the nature and complexity of the antigen(s), plus the intracellular or extracellular mode of presentation, provide specificity and some selection to the developing process, the route of antigen entry, as well as the physiological status of the host at the time of antigen insult, also contribute significantly to the formation of any immune response. The overall objective of this article is to introduce the concept that platelet-derived growth factor (PDGF) (either preformed or synthesized in response to stimulation), plus a number of steroid hormones (some of which are end-organ metabolized at local tissue sites), can all play significant roles in the genesis of immunologic responses in vivo.

Aging

Decidual cell biosynthesis of interleukin-6: regulation by inflammatory cytokines.

Intrauterine infection is an important cause of preterm labor and delivery and is characterized by increased production of inflammatory cytokines by gestational tissues. We have evaluated the biosynthesis of the inflammatory cytokine, interleukin-6 (IL-6), by human decidua and its regulation by other cytokines essential to the inflammatory process. We found that decidual cells secrete small amounts of IL-6 in the presence of growth medium supplemented only with 10% fetal calf serum. Interleukin 1 (alpha and beta) and tumor necrosis factor (TNF) all induced a significant concentration-dependent stimulation of IL-6 production by decidual cells. Treatment of decidual cells with actinomycin D or cycloheximide abrogated the increase in IL-6 production induced by IL-1 beta. Northern blot analysis of cultured decidual cells revealed an increase in IL-6 messenger RNA (mRNA) over time in response to IL-1 beta. These data indicate that IL-1 beta stimulates an increase in IL-6 mRNA and protein production, reflecting either direct gene activation or stabilization of IL-6 mRNA. The concentration range tested (0.1 to 10 ng/mL) of each cytokine is within the range of values found in the amniotic fluid of women destined to deliver preterm due to infection of gestational tissues. Our data suggest that IL-6 is produced by human decidua in response to inflammation and, in conjunction with other inflammatory mediators, may play a role in the pathophysiology of preterm labor due to infection.

Blotting, Northern

Platelet-derived growth factor is a potent biologic response modifier of T cells.

Freshly isolated lymph node (LN) cells cultured in serum-containing medium were restricted to produce primarily interleukin 2 (IL-2) subsequent to T cell activation. Only minimal amounts of IL-4, IL-5, or interferon gamma (IFN-gamma) were produced under these conditions. Similar populations of LN cells cultured in serum-free medium were able to produce a variety of lymphokines after T cell activation, with the relative quantities of each species being dependent upon the lymphoid organ source of the lymphocytes. A similar relationship in the patterns of lymphokines produced by activated T cell hybridomas maintained under serum-free conditions was also observed, whereas activation in serum-supplemented media resulted in a predominant restriction to the secretion of IL-2. Additional studies determined that the entity in serum responsible for restricting T cell function in vitro was platelet-derived growth factor (PDGF). The PDGF-BB isoform was established to be the most active in the regulation of T cell function, enhancing IL-2 while depressing the production of IL-4, IL-5, and IFN-gamma at concentrations below 1 ng/ml. PDGF-AB was also found to be quite active, however, this isoform of PDGF was incapable of influencing IFN-gamma production at the concentrations tested. PDGF-AA was very weakly active. It therefore appears that PDGF, acting primarily through a beta receptor subunit (either alpha/beta- or beta/beta-type receptors) is able to influence profoundly the behavior of T cells, with some of its modulatory effects exhibiting isoform specificity. This is reflected by an enhancement in the production of IL-2, while simultaneously depressing the secretion of IL-4, IL-5, and IFN-gamma (PDGF-BB only) after T cell activation. Kinetic studies, where cell supernatants were analyzed both 24 and 48 h after T cell activation, suggested that "desensitization" to PDGF influences can occur naturally in vitro. Those species of lymphokines that were inhibited by PDGF over the first 24 h after activation could be produced at normal levels over the subsequent 24-h period. Finally, lymphokines maintained in the presence of PDGF-BB for greater than 24 h before their activation lost sensitivity to this growth factor. These cells regained responsiveness to PDGF after an additional incubation period in PDGF-free medium. Collectively, our data imply that the pattern of T cell lymphokines produced, plus the kinetics of their production after activation, are being controlled by the potent serum growth factor PDGF.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Dihydrotestosterone exerts a depressive influence on the production of interleukin-4 (IL-4), IL-5, and gamma-interferon, but not IL-2 by activated murine T cells.

The present study examined the effects of the androgen steroid, dihydrotestosterone (DHT), on murine T-cell production of a number of lymphokines. Direct exposure of murine T cells to DHT in vitro was found to reduce the amount of interleukin-4 (IL-4), IL-5, and gamma-interferon (gamma IFN) produced after activation with anti-CD3 without affecting the production of IL-2. Exposure of T cells to either androstenedione or testosterone (the metabolic precursors of DHT) affected no change in the biosynthesis of either of these lymphokines. We have determined that macrophages possess 5 alpha-reductase, and are thus competent to metabolize testosterone to DHT. This physicochemical information is complemented by a functional analysis of macrophage metabolism of testosterone. By incubating bone marrow macrophages with testosterone, before their use as accessory cells, the IL-4 and IL-5 producing potential of the activated T cells cocultured with them was depressed. That the observed effect was mediated by the conversion of testosterone to DHT was further corroborated by illustrating that the inhibition of IL-4 production was abrogated if 4MA, a specific 5 alpha-reductase inhibitor, was added to macrophage cultures containing testosterone. The biologic role of DHT in lymphokine and immune response regulation in vivo was addressed using several lines of investigation. First, transdermal delivery of DHT to groups of mice altered the capacity of T cells residing in the draining lymph nodes, only, to produce lymphokines. Second, treatment of either aged mice or the T cells isolated from them with a combination of dehydroepiandrosterone and DHT restored the capacity of their T cells to produce IL-2, IL-4, and gamma IFN to levels equivalent to that of younger mice. Finally, we observed a difference between males and females of a given age to produce IL-2, IL-4, and gamma IFN, with both IL-4 and gamma IFN production being elevated in females. Collectively, our findings indicate that DHT, similar to other steroid hormones, may play an important role in lymphokine regulation in vivo.

Androstenedione

Thymic modulation of IL-2 and IL-4 synthesis by peripheral T cells.

In this paper we provide several lines of evidence to support the hypothesis that the thymus can exert regulatory influences on the functional capabilities of mature recirculating T cells. Our studies demonstrate that while the IL-2-producing potential of T cells that repopulate the secondary lymphoid organs of lethally irradiated and stem cell-reconstituted mice is significantly reduced compared to that of T cells harvested from normal mice, the amount of IL-4 produced by the T cells of these experimental animals is equivalent to, or greater than, the amount produced by T cells from control animals. In addition, we determined that the amount of biologically active IL-2 and IL-4 secreted by T cells harvested from lethally irradiated animals who reconstitute their hematopoietic and immune systems under the influence of nonirradiated thymic epithelial grafts is essentially identical to the amount produced by T cells harvested from nonirradiated control animals. Collectively, these findings suggest that: (1) the alterations observed in the lymphokine-producing potential of T cells harvested from lethally irradiated and stem cell-reconstituted mice is not due to a direct effect of ionizing radiation on the T lymphocytes themselves, and (2) the exposure of the epithelial cells of the thymus to ionizing radiation during marrow-ablative regimens abrogates or modifies a component of thymic function which can influence the lymphokine-secreting potential of recirculating T cells. Further evidence for thymic involvement in the regulation of lymphokine production by peripheral T cells comes from our finding of a post-thymectomy time-dependent reduction in the capacity of T cells from animals to produce IL-2. Coincident with this reduction, T cells harvested from peripheral lymphoid organs of thymectomized animals demonstrated an augmentation in their IL-4-producing capabilities. The finding that treatment of thymectomized animals with the androgen steroid hormone dehydroepiandrosterone reestablished a normal IL-2-producing potential by their T cells makes it unlikely that the reduced capacity to produce IL-2 was secondary to a loss in fresh thymic emigrants.

Animals

Adrenal androgen secretion and biologic effects.

This article reviews the physiology of adrenal androgen secretion. The effects of glucocorticoid administration, age, stress, and other drugs on the secretion of adrenal androgens are discussed. The biologic effects of dehydroepiandrosterone on cytokine secretion by lymphocytes, reduction of neoplasia, obesity, and endothelial injury and stimulation of bone growth appear to be unexplained by metabolism of this adrenal androgen to other steroid hormone, suggesting that dehydroepiandrosterone is a steroid hormone.

Adrenal Cortex

Ir gene defects may reflect a regulatory imbalance. I. Helper T cell activity revealed in a strain whose lack of response is controlled by suppression.

A singular responsiveness to HEL was revealed in a peripheral lymphoid compartment of the genetically nonresponsive H-2b mouse. Although i.p. injection of HEL induces suppression and a lack of anti-HEL production, following footpad injection there is an early emergence in the popliteal lymph node (P-LN) of HEL-specific helper activity and plaque-forming cells. Furthermore, the early P-LN transiently expresses one of two T cell types needed for initiation of suppression. Delayed recruitment of the second required cell-type permits the induction of efficient suppression. There is only a short period during which there is concurrent representation of the two T cell subpopulations, and by mixing early and late deficient P-LN T cells, suppression could be established. The general implication of these results is that although a vigorous helper cell potential may exist in a strain nonresponsive to a multideterminant antigen, it can be obscured by a regulatory cell imbalance that results in the manifestation of a generalized Ir gene "defect."

Animals

Functional heterogeneity among the T-derived lymphocytes of the mouse. VII. Conversion of T1 cells to T2 cells by antigen.

The T1 subpopulation of peripheral T cells was defined in mice by its short half life, insensitivity to anti-thymocyte sera (ATS) in vivo, and slow kinetics of response to antigen. The T2 subpopulation was defined by its long life time, elimination by ATS in vivo, and rapid response to antigen. Mice containing only T1-type T cells were constructed by adult thymectomy (ATx) followed immediately by the elimination of T2 cells by ATS treatment. Immunization of these mice with SRBC led to the production of memory helper cells in the T2 subpopulation. This process depended on the presence of T1 cells and for the most part required SRBC immunization, although a few SRBC-specific T2 cells reappeared in the mice in the absence of antigen. We conclude that T1 cells can give rise to T2 cells in an antigen-driven step and that the two populations correspond to virgin and memory T cells, respectively.

Animals

Functional heterogeneity among the T-derived lymphocytes of the mouse. V. Response kinetics of peripheral T cell subpopulations.

The kinetics of the proliferative response and the appearance of effectors of helper activity after stimulation by antigen were examined in T cell subpopulations. As defined in previous papers of this series, one population, T1, is short-lived after adult thymectomy (ATx), and relatively resistant to elimination by anti-thymocyte serum (ATS). Another population, T2, is long-lived after ATx, but highly sensitive to elimination by small doses of ATS. From precursors within the T2 population, effectors of specific helper activity, after priming with antigen, appeared within 1 to 2 days and reached a maximum on day 4. The responding cells reached their peak proliferative response within 24 hr after stimulation by antigen. In contrast, helper activity arising from T1 precursors first appeared on day 3 and peaked on day 5. These cells did not reach their maximal proliferative response until 60 hr after priming. These findings indicate additional useful markers for distinguishing the T1 and T2 subpopulations and are consistent with models for T cell development in which T1 cells are virgin cells and T2 cells are memory cells.

Animals

Functional heterongeneity among the T-derived lymphocytes of the mouse. VI. Memory T cells stored in the T2 subpopulation.

Memory T cells were demonstrated in mice which were the precursors for cells causing sheep red blood cell-(SRBC) specific helper activity in the in vitro response of spleen cells to trinitrophenyl (TNP)-SRBC. These memory cells were distinguished from the effectors of helper activity generated during the primary response and were shown to belong to the T2 subpopulation of peripheral T cells on the basis of 1) their rapid response to a challenge with SRBC, 2) their long lifetime, and 3) their sensitivity to small in vivo doses of anti-thymocyte serum.

Animals

Functional heterogeneity among the T-derived lymphocytes of the mouse. II. Sensitivity of subpopulations to anti-thymocyte serum.

A number of T cell functions were examined in mice after treatment with rabbit anti-mouse thymocyte serum (ATS). Two populations of T cells were distinguished; the first, sensitive, and a second, resistant, to elimination by ATS. The helper cell involved in the primary humoral response to sheep red blood cells (SRBC) was found within the sensitive population, whereas the T-cells required for the priming of mice with SRBC for helper activity or delayed hypersensitivity were found within both populations. Previous work and experiments utilizing both adult thymectomy and ATS treatment indicated that the ATS-sensitive population is long-lived, whereas the ATS-resistant population is short-lived.

Animals