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Biomedical subjects

T S Kupper

Publications and source records attributed to T S Kupper.

At least 73 records · Page 4Linked to original sources

Macrophage antigen presentation and interleukin 1 production after cecal ligation and puncture in C3H/HeN and C3H/HeJ mice.

Following cecal ligation and puncture with a 25-gauge needle, endotoxin-sensitive C3H/HeN mice have a 45% mortality compared with no mortality in endotoxin-resistant C2H/HeJ mice. Macrophage production of interleukin 1 and antigen presentation were studied in these two strains of mice following cecal ligation and puncture at 2, 4, 8, 16, and 24 hours and at 2, 4, 6, and 8 days. Splenic macrophages were cultured with a T-helper cell clone (D10.G4.1), and antigen presentation and interleukin 1 production were measured by D10.G4.1 proliferation. Macrophage antigen presentation by C2H/HeJ mice was markedly increased compared with that in C3H/HeN mice at all times after cecal ligation and puncture, most strikingly at 2 days (185m740 cpm for C3H/HeJ mice vs 30,300 for C2H/HeN mice). Macrophage interleukin 1 production was significantly increased in C3H/HeJ mice vs C3H/HeN mice at all times after cecal ligation and puncture (except at 2 days) and was maximal at 8 days (25,000 cpm for C3H/HeJ mice vs 5190 for C3H/HeN mice). These data suggest that the differences in mortality after cecal ligation and puncture between these two strains of mice may relate to a supranormal response of macrophages of C3H/HeJ mice or to an inadequate response of macrophages of C3H/HeN mice.

Animals↗

Outcome following femur fracture and subsequent cecal ligation and puncture in endotoxin-sensitive (C3H/HeN) and endotoxin-resistant (C3H/HeJ) mice.

This study examined the effect of sepsis following trauma in a reproducible model of sepsis--cecal ligation and puncture (CLP)--in endotoxin-sensitive (C3H/HeN) and endotoxin-resistant (CeH/HeJ) mice. Studies used CLP with a 25-gauge needle at different time intervals following injury, as induced by femur fracture (FF), to determine the effects of sublethal sepsis on survival after trauma. There was a 3% mortality for FF alone in both groups. Mortality in C3H/HeJ mice was not significantly increased over FF alone except when CLP followed FF by 3 days (45%, P less than 0.02, Chi-square). In contrast, C3H/HeN mice had significantly increased mortality rates (75 to 90%, P less than 0.001) versus FF alone at all intervals between FF and CLP. Mortality for FF plus CLP was significantly greater for C3H/HeN compared to C3H/HeJ (P less than 0.001) for all time intervals between FF and CLP. In conclusion, animals exposed to a septic episode following FF had significantly greater mortality than FF animals without a septic challenge. Endotoxin-sensitive mice had significantly higher mortality after CLP and significantly increased mortality when CLP followed FF (regardless of timing) compared to endotoxin-resistant mice.

Animals↗

Round fingerpad sign: an early sign of scleroderma.

We describe a clinical skin sign in scleroderma termed round fingerpad sign. This term refers to disappearance of the peaked contour on fingerpads and replacement with a hemisphere-like fingertip contour; this change is especially apparent on the ring fingers. A positive round fingerpad sign was found in 72 of 72 ring fingers in 36 patients with progressive systemic sclerosis in 69 of 72 ring fingers in patients with mixed connective tissue disease, and in 24 of 24 ring fingers of patients with Raynaud's phenomenon and sclerodactyly. In contrast, a negative round fingerpad sign was seen in 240 of 240 fingers in normal women (controls). The high sensitivity of this sign is noteworthy. A positive round fingerpad was seen in sign not only typical scleroderma patients but also in groups with less severe skin sclerosis (i.e., in those patients with mixed connective tissue disease or those with Raynaud's phenomenon and sclerodactyly). The sign is a new and useful clinical marker for the early diagnosis of scleroderma.

Adolescent↗

Human keratinocytes produce but do not process pro-interleukin-1 (IL-1) beta. Different strategies of IL-1 production and processing in monocytes and keratinocytes.

Keratinocytes comprise the majority of cells in the epidermis, the interleukin-1 rich layer of tissue contiguous with the outside world. Keratinocytes produce IL-1 alpha and beta mRNA in vitro, but only IL-1 alpha biological activity has been identified in keratinocyte cultures. In contrast, monocytes secrete biological activities attributable to both species of IL-1. Using several monoclonal antibodies to IL-1 beta, significant amounts of IL-1 beta protein could be found in keratinocyte cultures; all of this immunoreactive IL-1 beta was in the 31-kD form. This latent cytokine has been shown to bind inefficiently to the IL-1 receptor and to be (in relative terms) biologically inactive. Chymotrypsin cleaves 31-kD IL-1 beta at Tyr 113-Val 114, generating an 18-kD IL-1 species with activity equivalent to the authentic mature IL-1 beta (NH2-terminal Ala 117). Treatment of 31-kD keratinocyte IL-1 beta with chymotrypsin also generated an 18-kD molecule and significant IL-1 activity. Monocytes contain an IL-1 convertase enzyme that cleaves the IL-1 beta promolecule at Ala 117. We demonstrate here that keratinocytes do not contain such an IL-1 convertase activity, nor do they contain any activity capable of productively processing 31-kD IL-1 beta into a biologically active form. These data suggest that keratinocytes (and other non-bone marrow-derived cells) produce IL-1 beta in an inactive form that can be processed only after leaving the cell.

Blotting, Western↗

Effects of cytokines on human thymic epithelial cells in culture. II. Recombinant IL 1 stimulates thymic epithelial cells to produce IL6 and GM-CSF.

Our earlier study reported the ability of interleukin 1 (IL1) to promote proliferation and to induce morphological changes of human thymic epithelial cells (TEC) in culture. The present study was undertaken to examine the effects of IL1 on the secretory function of TEC. Both human recombinant IL1 alpha and IL1 beta induced TEC to produce molecules in the culture supernatant fluids (TES) which displayed marked thymocyte proliferative capacities. This activity was specifically induced by IL1 since other TEC growth factors such as epidermal growth factor and a bovine pituitary extract had no effect on promoting secretion of T cell-activating molecules by TEC. Using specific radioimmunoassays for both forms of IL1, we found that unstimulated TEC produced negligible amounts of IL1 alpha and IL1 beta in TES, which were not increased by IL1 stimulation, and we concluded that the IL1-induced TES molecules were not IL1. IL1 induced TEC to produce IL6, as detected by the hybridoma growth factor biological activity. Neutralizing anti-IL6 antibodies completely blocked the thymocyte activating capacities of the IL1-induced TES thus implying a major role for IL6 in TEC-derived T cell activation. IL1 also induced TEC to produce GM-CSF as measured by bioassay and confirmed by an immunoenzymetric assay. Our results confirm that TEC are a source of cytokines and show that TEC respond to IL1 by producing cytokines with consequences on the thymic lymphoid population. This further emphasizes the importance and complexity of paracrine molecular interactions involved in intrathymic development.

Antibodies↗

Biology of the interleukin-1 receptor.

The biological effects of the two interleukin-1s on cells of connective tissue origin are mediated by specific cell-surface receptors. Molecular cloning studies have revealed that these receptors are identical in protein sequence to the IL-1 receptors on cells of the T-lymphocyte lineage. The functional interleukin-1 receptor on T-cells and fibroblasts is composed of a single polypeptide chain that binds both IL-1 alpha and IL-1 beta. The single chain appears to be all that is required to transduce a signal to cells. While the nature of the signal is unknown, the structure of the receptor is inconsistent with its possessing any protein tyrosine kinase activity. It is therefore not surprising that the mitogenic activity of IL-1 for fibroblasts is mediated by IL-1 induction of PDGF-A gene transcription. Finally, IL-1 is known to modulate fibroblast-matrix interactions in several ways. It is interesting therefore, that the majority of the IL-1 receptors on cultured fibroblasts are clustered into focal adhesions.

Animals↗

The activated keratinocyte: a model for inducible cytokine production by non-bone marrow-derived cells in cutaneous inflammatory and immune responses.

Keratinocytes, fibroblasts, endothelial cells, and other sessile cells resident to human skin can be induced in vitro to synthesize and secrete cytokine molecules. Cytokines are small protein molecules produced upon injury or cellular activation which influence immune and inflammatory events; as such, they have been best understood previously as products of leukocytes. The appreciation that cultured non-bone marrow-derived cells from skin could produce cytokines capable of initiating an inflammatory response or facilitating an immune response has led to speculation that cells resident to skin may be less passive participants in such phenomena than previously thought. Using as a model the cultured keratinocyte, which produces both interleukin-1 alpha and beta and an interleukin-1 receptor, models of autocrine and paracrine activation of this cell have been constructed. Such "activated keratinocytes," or by analogy other activated resident skin cells, produce a spectrum of cytokines in vitro which could potentially influence leukocyte adhesion to endothelium, direction migration of leukocytes towards the activated cell (presumably an inflammatory nidus), and activation of leukocyte functions in situ. The putative role of regulation of cytokine and cytokine-receptor regulation in mediating the activation of such cells (and thus, presumably, local inflammation) is discussed. An important aspect of this hypothetical model is that in the absence of activation (which characterizes normal uninflamed skin), cytokine production and its consequences do not occur. The conclusion reached is that based on in vitro data it is plausible to guess that local inflammatory or immune responses can be both initiated and facilitated by locally produced cytokines.

Antibody Formation↗

Synergistic interactions of IL-1 and IL-6 in T cell activation. Mitogen but not antigen receptor-induced proliferation of a cloned T helper cell line is enhanced by exogenous IL-6.

Recent reports have indicated that in addition to its well characterized effects on B cells and hepatocytes. IL-6 also affects murine and human T cells and thymocytes. Our study was designed to analyze the effects of IL-1 and IL-6 in providing a second signal in T cell activation in the D10.G4.1 assay. Highly purified human rIL-6 was tested. rIL-6 had modest but detectable activity in the D10.G4.1 assay. Maximal enhancement of proliferation induced by IL-6 in the presence of mitogen in the D10.G4.1 assay was always far less than that induced by IL-1. The D10.G4.1 assay was used to test the possibility of synergistic interactions between IL-1 and IL-6. Quantities of IL-6 which alone were not costimulatory to D10 cells enhanced IL-1-induced D10 proliferation significantly when Con A was used as a costimulus. This synergistic response could be partially blocked by antibodies to rIL-6 and fully blocked by a mAb to rIL-1 alpha. In contrast, when 3D3 (a clonotypic activating anti-TCR mAb) was used as a costimulus, no synergistic interaction between IL-1 and IL-6 could be detected. The proliferation of D10 cells induced by IL-1 and 3D3 was unaffected by antibodies to IL-6 but was completely neutralized by antibodies to IL-1. These data suggest that although IL-6 alone cannot substitute for IL-1 in functional assays for IL-1, the presence of IL-6 significantly enhances T cell responses to IL-1 in the context of the appropriate costimulatory signal. These observations have important implications regarding the specificity and utility of the D10.G4.1 assay for the measurement of IL-1 in biologic samples.

Adjuvants, Immunologic↗

Interleukin 6 is expressed in high levels in psoriatic skin and stimulates proliferation of cultured human keratinocytes.

Psoriasis is a common papulosquamous skin disease. The histopathology is characterized by epidermal hyperplasia and inflammation. Recent studies suggest that keratinocyte proliferation and inflammation in psoriasis are manifestations of the same underlying pathological process. Interleukin 6 (IL-6), a cytokine that is a major mediator of the host response to tissue injury and infection, is produced by both keratinocytes and leukocytes in culture. IL-6 expression was studied in psoriatic plaques by immunoperoxidase staining with two different polyclonal anti-recombinant IL-6 antisera and by in situ nucleic acid hybridization with IL-6 cRNA probes. Epidermal and dermal cells in active psoriatic plaques from 35 psoriasis patients stained heavily for IL-6 as compared with nonlesional skin and with plaques after treatment with antimetabolic and antiinflammatory agents. Absorption of the anti-recombinant IL-6 antisera with purified fibroblast-derived IL-6 or with recombinant IL-6, but not bovine serum albumin, removed the immunostaining. Increased levels of IL-6 were detected in the plasma of patients with active psoriasis (mean 3 ng/ml) by using two different bioassays. IL-6 production by proliferating keratinocytes was suggested by IL-6-specific immunostaining in cultured normal and psoriatic keratinocytes and by the detection of mRNA specific for IL-6 in psoriatic epidermis by in situ hybridization. IL-6 stimulated the proliferation of cultured, normal human keratinocytes as assessed by two different assays. Thus, IL-6 could directly contribute to the epidermal hyperplasia seen in psoriatic epithelium as well as affect the function of dermal inflammatory cells.

Cell Division↗

Regulation of interleukin 1 and its receptor in human keratinocytes.

Keratinocytes in culture synthesize and respond to interleukin 1 (IL-1). We have measured surface IL-1 receptor (IL-1R) on keratinocytes in culture using radiolabeled IL-1 binding assays. Surface IL-1R levels are less than 2000 receptors per cell in postconfluent cultures but increase 9- to 20-fold 24 hr after treatment with phorbol 12-myristate 13-acetate (PMA) at 10 ng/ml or after raising the extracellular Ca2+ concentration to 2 mM. This induction of surface IL-1R can be blocked by the addition of retinoic acid and parallels induction of squamous differentiation markers. These results imply that IL-1R levels may be related to the degree of differentiation of these cells. In parallel studies IL-1 protein levels were determined by bioassay and by Western blotting (immunoblots). All detectable IL-1 protein and essentially all IL-1 activity was cell-associated. Although constitutive levels of IL-1 biological activity and protein are significant in these cultures, IL-1 levels increase when either PMA or retinoic acid alone are added to cultures. IL-1 does not increase when PMA and retinoic acid are added simultaneously to cultures; nor is it induced when extracellular Ca2+ concentrations are raised to 2 mM. Thus, cell-associated IL-1 levels do not necessarily parallel surface IL-1R levels in these cultures. Taken together, these results demonstrate that IL-1 and surface IL-1R levels are differentially and complexly regulated in keratinocyte cultures. Possible implications of these results in terms of normal and abnormal regulation of proliferation and differentiation are discussed.

Blotting, Western↗

Absence of a direct effect of recombinant interleukins and cultured peritoneal macrophages on early embryonic development in the mouse.

On the basis of their recent studies, several researchers have suggested that the infertility associated with mild endometriosis is due to the alteration of peritoneal fluid, resulting in impairment of the viability of gametes or embryos. Elevated numbers of macrophages and lymphocytes have been reported in the peritoneal fluid of patients with endometriosis. Interleukin-1 (IL-1) a major product of activated macrophages and Interleukin-2 (IL-2), a product of most activated T-cells, have been postulated to play a role in the infertility associated with this disease, possibly by acting as direct embryotoxic agents. We have examined the effect of purified recombinant IL-1 and IL-2, which are not species-specific, on in vitro development of mouse embryos. Both interleukins had no effect on development to the blastocyst stage or on early stages of implantation, as measured in vitro by attachment and outgrowth of blastocysts to fibronectin-coated dishes. Moreover, co-culture of mouse embryos with activated human peritoneal macrophages had no effect on embryogenesis. We conclude that neither IL-1, nor other products of human macrophages activated by lipopolysaccharide, nor IL-2 are directly toxic to early mouse embryonic development.

Animals↗

Production of cytokines by epithelial tissues. A new model for cutaneous inflammation.

The pathophysiological processes responsible for the histological and clinical appearance of skin diseases characterized by inflammatory infiltrates of dermis and epidermis remain obscure. The recent explosion of knowledge about cytokines with immune and inflammatory activities, as well as the identification of many of these cytokines as products of activated keratinocytes, fibroblasts, and endothelial cells, lends a novel and exciting perspective on these diseases. In this article, paradigms that incorporate what is known about epidermal and dermal cell cytokine production and the effects of these cytokines on mature immune and inflammatory cells are discussed.

Biological Factors↗

Parathyroid hormone and lipopolysaccharide induce murine osteoblast-like cells to secrete a cytokine indistinguishable from granulocyte-macrophage colony-stimulating factor.

Osteoblasts are the cells responsible for the secretion of collagen and ultimately the formation of new bone. These cells have also been shown to regulate osteoclast activity by the secretion of cytokines, which remain to be defined. In an attempt to identify these unknown cytokines, we have induced primary murine osteoblasts with two bone active agents, parathyroid hormone (PTH) and lipopolysaccharide (LPS) and analyzed the conditioned media (CM) for the presence of specific cytokines. Analysis of the CM was accomplished by functional, biochemical, and serological techniques. The data indicate that both PTH and LPS are capable of inducing the osteoblasts to secrete a cytokine, which by all of the techniques used, is indistinguishable from granulocyte-macrophage colony-stimulating factor (GM-CSF). Secretion of GM-CSF is not constitutive and requires active induction. Production of the cytokine is dependent on the dose of PTH or LPS added. It has been demonstrated that the addition of GM-CSF to bone marrow cultures results in the formation of increased numbers of osteoclasts. Therefore, these data suggest that osteoblasts not only participate in bone remodeling by formation of new matrix but may regulate osteoclast activity indirectly by their ability to regulate hematopoiesis.

Animals↗

Keratinocyte-derived granulocyte/macrophage colony-stimulating factor induces DNA synthesis by peritoneal macrophages.

Keratinocytes have been demonstrated to produce a number of cytokines, including growth factors such as the CSF IL-3. Circulating blood monocytes and some elicited macrophages retain a significant proliferative potential in response to colony-stimulating activity. Because a macrophage response is prominent in a variety of cutaneous immune reactions, we have studied the ability of conditioned media (CM) from a transformed murine keratinocyte cell line (PAM 212) and from normal murine keratinocytes to induce growth of peritoneal macrophages. CM from both normal and transformed keratinocyte cultures induces [3H]thymidine incorporation by thioglycollate-elicited, but not resident, peritoneal macrophages. IEF of PAM 212 CM reveals peaks of activity at pI 4.8 and less than or equal to 4.2. Analysis of CM by reversed-phase HPLC demonstrates active fractions that elute at 46 to 48% and 53 to 55% acetonitrile. The Mr of the 46 to 48% acetonitrile factor is 25 to 30 kDa by gel filtration HPLC. Polyclonal anti-granulocyte/macrophage (GM) CSF antibody blocks the induction of macrophage [3H]thymidine incorporation by factors with pI 4.8 and eluting at 46 to 48% acetonitrile but does not reduce the activity of crude CM or the factor eluting at 53 to 55% acetonitrile. Based on both physiochemical criteria and antibody neutralization, keratinocytes produce GM-CSF. Keratinocyte-derived factors, including GM-CSF, may play an important role in regulating cutaneous macrophage responses.

Animals↗