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Biomedical subjects

R D Granstein

Publications and source records attributed to R D Granstein.

At least 37 records · Page 2Linked to original sources

Calcitonin gene-related peptide and Langerhans cell function.

Morphologic studies have indicated that Langerhans cells (LC) are frequently in anatomic apposition with epidermal nerves containing the neuropeptide calcitonin gene-related peptide (CGRP). Experiments were undertaken to examine whether CGRP modulates LC function. The effect of pre-exposure of LC to CGRP in vitro on alloantigen presentation and specific protein presentation to a responsive T-cell line were studied using freshly prepared murine epidermal cell populations enriched for LC content (EC) by treatment with antibody to Thy-1 and complement. The ability of EC to present tumor-associated antigens for induction and elicitation of delayed-type hypersensitivity (DTH) in tumor-immune mice was also examined. Inhibitory effects of CGRP on antigen presentation were observed in each of these assays. Experiments were also performed examining the ability of intradermally administered CGRP to modulate induction of contact hypersensitivity (CHS) to a hapten applied at the injected site. Administration of CGRP led to a decrease in the CHS response after immunization at the site of injection. Intracellular cAMP was significantly increased in freshly prepared LC after exposure to CGRP, and this process could be inhibited by a specific inhibitor of the CGRP receptor, demonstrating the existence of CGRP receptors on LC. B7-2 expression induced by LPS and GM-CSF in the LC-like line XS52, and by LPS in peritoneal macrophages, was suppressed by CGRP. This suppression may account, in part, for the inhibitory effect of CGRP. As a whole, these observation suggest that regulation of antigen presentation by nerves may occur in the epidermis.

Afferent Pathways↗

Calcitonin gene-related peptide inhibits proliferation and antigen presentation by human peripheral blood mononuclear cells: effects on B7, interleukin 10, and interleukin 12.

CGRP is a neuropeptide that has previously been described to possess immunosuppressive activities. CGRP is released from peripheral nerves that, in the skin, are in close physical association with dendritic APC. We sought to investigate the mechanisms by which CGRP can inhibit immune responses by studying its effects on human peripheral blood mononuclear cells (PBMC). Using allogeneic monocytes as stimulator cells, CGRP could inhibit the proliferation of PBMC by 47% when CGRP was present for the duration of culture. Interestingly, when the stimulator monocytes were incubated with CGRP for 2 h prior to irradiation then washed, the observed inhibition increased to 85%, suggesting that CGRP was exerting a direct effect on the monocyte stimulator population. Finally, the recall response to tetanus toxoid (TT) by PBMC from individuals vaccinated with TT 14 d prior was inhibited by 25-50% in the presence of CGRP. Also, CGRP decreased the levels of B7.2 but not B7.1 on treated monocytes, and this inhibition could be abrogated by the addition of anti-IL-10 antibody, suggesting that the inhibition was mediated by an increase in IL-10 production. Moreover, increased IL-10 production was confirmed by ELISA. Both IL-12 p40 and IFN-gamma levels in CGRP-treated cultures were found to be decreased by approximately 30%. The decrease in IL-12 p40 levels could be reversed by addition of anti-IL-10. These data suggest that CGRP inhibits PBMC proliferation, in part, through the release of IL-10, which in turn can downregulate important co-stimulatory molecules and the cytokines IL-12 and IFN-gamma.

Antigen Presentation↗

Expression of neurotrophic factors and neuropeptide receptors by Langerhans cells and the Langerhans cell-like cell line XS52: further support for a functional relationship between Langerhans cells and epidermal nerves.

Epidermal Langerhans cells are frequently anatomically associated with calcitonin gene-related peptide-containing nerves. Furthermore, calcitonin gene-related peptide inhibits Langerhans cells antigen-presenting function in several assays. Studies were performed to further explore the hypothesis that Langerhans cells and nerves have a functional relationship. To examine whether Langerhans cells may produce factors that influence nerve cell differentiation, we utilized the Langerhans cell-like cell line XS52 as a surrogate for Langerhans cells and compared it with Langerhans cells enriched to 90%. Supernatants conditioned by lipopolysaccharide-stimulated XS52 cells were able to induce the differentiation of the pheochromocytoma line PC12 into sympathetic neuron-like cells. This was also the case with enriched Langerhans cells stimulated by lipopolysaccharide. Pretreatment of conditioned supernatants with specific neutralizing anti-sera indicated that most of the differentiation-inducing activity was due to interleukin-6 and a small amount was due to nerve growth factor and basic fibroblast growth factor. By reverse transcriptase polymerase chain reaction, three clones of the XS52 cell line, XS52-4D, XS52-11D, and XS52-8B, were found to express mRNA for interleukin-6 and expression was markedly augmented by lipopolysaccharide. mRNA for nerve growth factor and basic fibroblast growth factor was detected in XS52-4D and XS52-11D, but not in XS52-8B. The expression of these neurotrophic factors by enriched Langerhans cells was quite similar to that of XS52-4D. In order to examine whether Langerhans cells may express receptors for nerve-derived peptides, reverse transcriptase polymerase chain reaction was employed to look for pituitary adenylate cyclase activating polypeptide type I, type II, and type III, and gastrin-releasing peptide receptors. All clones examined, as well as enriched Langerhans cells, expressed pituitary adenylate cyclase activating polypeptide type II and type III, and gastrin-releasing peptide receptors. These results suggest bi-directional signalling between Langerhans cells and nerves; nerve cells may regulate Langerhans cell function by elaboration of certain neuropeptides whereas Langerhans cells may promote the differentation of nerves by elaboration of interleukin-6 and, possibly, other factors.

Animals↗

Quantitative analysis of cutaneous calcitonin gene-related peptide content in response to acute cutaneous mechanical or thermal stimuli and immobilization-induced stress in rats.

The effects of various stimuli on restricted skin areas or immobilization-induced stress on the calcitonin gene-related peptide (CGRP) content in rat skin were examined by radioimmunoassay (RIA) and immunohistochemistry. Various stimuli were delivered to the shaven skin of the medial thigh by pinching, brushing, or contact with a glass tube containing hot (50 degrees C) or ice-water for 2 min. To induce immobilization stress, animals were placed in the prone position and wrapped with flexible wire gauze at room temperature. The cutaneous CGRP content determined by RIA as well as the number of CGRP-immunoreactive nerve fibers of the skin were significantly higher at sites stimulated by pinching or ice-water compared to non-stimulated areas within the same animals. However, after brushing, hot water stimulation or any period (2 min, 30 min, 2 h, 6 h, or 3 days x 6 h) of immobilization stress, no differences in cutaneous CGRP content were observed. Plasma corticosterone levels increased after immobilization stress of 30 min or greater, but plasma CGRP level did not change after any period of immobilization stress. These data suggest that some forms of cutaneous stimulation cause a rapid rise in CGRP content in the skin, while emotional stress does not influence the cutaneous CGRP content.

Animals↗

Inhibition of neutrophil elastase suppresses the development of skin tumors in hairless mice.

In this study we investigated whether a reduction in neutrophil elastase activity in mice would alter the development of ultraviolet B or chemically induced skin tumors. A mutant strain of neutrophil elastase-deficient mice was developed by crossing beige mice with SKH 1 hairless mice. Ultraviolet irradiation three times per week for 20 wk developed an average of 10 tumors per normal mouse, whereas elastase-deficient hairless mice receiving the same treatment developed only 0.4 tumors per mouse. Benzopyrene administered topically for 20 wk resulted in an average of seven tumors per control mouse, while similar treatment to elastase-deficient hairless mice reduced the tumor count to 0.2 per mouse. Two small molecular weight elastase inhibitors, which were shown to inhibit mouse neutrophil elastase, were administered subcutaneously to normal SKH-1 mice during 16 wk of ultraviolet B exposure. Both inhibitors significantly reduced the incidence of ultraviolet B-induced tumors. When control and elastase-deficient mice were immunized with 2,4,6-trinitrochlorobenzene and oxazolone, both molecules elicited a significant contact hypersensitivity response. Ultraviolet B irradiation prior to immunization at a nonirradiated site completely suppressed the induction of contact hypersensitivity in both the normal and the deficient mice, suggesting that prevention of systemic immunosuppression was not the reason for the resistance to skin tumors observed in the elastase-deficient mice. The results suggest that neutrophil elastase can be an important factor in squamous cell tumor development.

Animals↗

Langerhans cells express inducible nitric oxide synthase and produce nitric oxide.

The importance of nitric oxide (NO) in mediating macrophage functions has been demonstrated, but production of this potent gas has not been examined in Langerhans cells (LC). Using murine LC purified from epidermal cell suspensions and the recently established LC-like cell line derived from newborn BALB/c epidermis (XS-52), it was shown with reverse transcriptase (RT)-PCR that inducible nitric oxide synthase (iNOS) message is present in these cells. Murine keratinocytes did not contain iNOS message. iNOS mRNA was increased in a concentration-dependent manner by lipopolysaccharide (LPS) in purified murine LC and XS-52 cells, and immunofluorescence using an antibody to iNOS revealed bright cytoplasmic staining in LPS-treated XS-52 cells. Anti-iNOS antibody brightly stained LC on human neonatal foreskin cryosections. An increase in NO production by LPS-treated XS-52 cells over 16 h, as measured by the determination of nitrite levels in culture supernatants using the Griess Reaction, was observed. Interferon-gamma (IFNgamma) did not affect NO production on its own. In the presence of LPS and IFNgamma, NO production was 3 times more than observed with LPS alone. NO production was inhibited by the NOS inhibitor L-NAME. Western blots with anti-iNOS antibody demonstrated an increase in iNOS expression in LPS-treated XS-52 cells that was suppressed by IL-10. NO produced in LC may affect LC functions such as microbicidal activity, antigen presentation, and cytotoxicity and may affect adjacent keratinocytes and melanocytes.

Animals↗

Hyporesponsiveness in contact hypersensitivity and irritant contact dermatitis in CD4 gene targeted mouse.

To determine the role of CD4 molecules in the generation and regulation of contact hypersensitivity (CHS), we treated mice lacking the CD4 gene as a result of targeted disruption with dinitrofluorobenzene to induce CHS. The mutant mice lacking CD4 (CD4(-) mice) showed marked hyporesponsiveness in CHS compared with normal syngeneic C57BL/6 mice (38.3 +/-9.0% of normal at 24 h after the challenge assessed by net ear swelling; p < 0.025). CD4(-) mice had a larger CD4-8- double negative T-cell receptor alpha beta+ cell population in the lymph nodes than did normal mice, and the increase of this cell population was observed in CD4(-) mice after sensitization. Draining lymph node cells from sensitized normal mice restored the responsiveness in CD4(-) mice, but those from sensitized CD4(-) mice were less effective in restoring the CHS response in normal mice. Langerhans cell numbers were normal, and function, as assessed by the ability to present soluble hapten, was not impaired in CD4(-) mice. Skin cytokine profiles demonstrated an increase in interferon-gamma, interleukin-2, and interleukin-4 mRNA levels after challenge in normal mice, whereas this response was blunted in CD4(-) mice. CD4(-) mice also showed hyporesponsiveness in inflammatory reaction to irritant chemicals. These results suggest that the CD4 molecule is required for optimal induction of CHS as well as irritant contact dermatitis and may influence the development of CHS by modulating the cytokine profiles in the skin.

Animals↗

Impaired immunosuppressive response to ultraviolet radiation in interleukin-10-deficient mice.

Exposure to mid-range ultraviolet radiation (UVR) [280-320 nm, ultraviolet B (UVB) radiation] inhibits the acquisition of delayed-type hypersensitivity in mice and contact hypersensitivity in rodents and humans. Intraperitoneal administration of interleukin 10 (IL-10) inhibits the sensitization of mice to alloantigens for a delayed-type hypersensitivity reaction and administration of neutralizing antibodies to IL-10 largely, but not totally, blocks the UVR-mediated suppression of the ability to sensitize mice. This suggests that these inhibitory effects of UVB radiation may be mediated by release of IL-10. To test this hypothesis directly, IL-10 gene-targeted (IL-10T) mice lacking expression of IL-10 were examined for the ability of UVB radiation to suppress induction of delayed-type hypersensitivity to alloantigens. IL-10T mice were completely resistant to UVB-induced immunosuppression in this system. Interestingly, UVB radiation could suppress in IL-10T mice the induction of contact hypersensitivity to a hapten applied to the skin at a site distant of irradiation, supporting the concept that regulation pathways of delayed-type hypersensitivity and contact hypersensitivity responses by UVR differ. These data provide additional understanding of the mechanisms of immunosuppression induced by UVR and suggest that IL-10 release subsequent to UVB radiation may play a role in the growth immunogenic UVB-induced cutaneous malignancies in the primary host.

Animals↗

UV-induced cutaneous photobiology.

Ultraviolet radiation (UVR) present in sunlight is a major environmental factor capable of affecting human health and well being. The organ primarily affected by UVR is the skin, which is composed of a variety of different cell types. Here, UVR is needed for production of active vitamin D as well as producing undesirable effects such as sunburn, premature cutaneous photoaging, and promoting skin cancer development. Depending on the radiation dose, UVR influences virtually every cutaneous cell type investigated differently. Since the end of the nineteenth century, sun exposure has been known to induce skin cancer, which is now the human malignancy with the most rapidly increasing incidence. In several experimental models, mid-range UVR has been demonstrated to be the major cause of UV-induced cutaneous tumors. The stratospheric ozone layer protecting the terrestrial surface from higher quantum energy solar radiation is being damaged by industrial activities resulting in the possibility of increased UVR exposure in the future. Investigations in the field of experimental dermatology have shown that within the skin an immunosurveillance system exists that may be able to detect incipient neoplasms and to elicit a host responses against it. This article reviews the literature on studies designed to investigate the effects of UVR on cutaneous cellular components, with special focus on the immune system within the skin and the development of UV-induced cancer.

Apoptosis↗

Immunomodulatory properties of maxadilan, the vasodilator peptide from sand fly salivary gland extracts.

Sand flies are the arthropod vector of leishmaniasis and salivary gland extracts from these flies exacerbate leishmaniasis in vivo. The mechanism of exacerbation appears to be due to immunomodulatory effects of the saliva on host immune function but the active component is unknown. The following studies reveal that maxadilan, the vasodilatory peptide present in sand fly salivary gland extracts, has immunomodulatory properties. To examine the effect of maxadilan on T cell proliferation, the peptide was added to murine spleen cells stimulated with either concanavalin A or plate-bound anti-T cell receptor antibody. Inhibition of proliferation was noted in a dose-dependent manner for both sets of experiments (P < 0.05). To examine the effect of maxadilan on alloantigen presentation, the peptide was added to mixed lymphocyte and mixed epidermal cell lymphocyte reactions. Inhibition of proliferation was found in these culture systems. Maxadilan also inhibited the delayed-type hypersensitivity reaction in mice (P < 0.05). These observations suggest a role for maxadilan in the pathogenesis of leishmaniasis since the peptide may inhibit the immune response at the site of parasite inoculation, allowing the infection to proceed.

Adjuvants, Immunologic↗

Specific induction of cAMP in Langerhans cells by calcitonin gene-related peptide: relevance to functional effects.

Epidermal Langerhans cells (LC) are associated anatomically with epidermal nerves, and a product of these nerves, calcitonin gene-related peptide (CGRP), inhibits the antigen-presenting capacity of LC and macrophages. As the CGRP receptor appears to be coupled to Gs alpha protein, which in turn activates adenylate cyclase, the ability of CGRP to induce cAMP in LC was examined and correlated with functional effects. LC were isolated from murine epidermal cells using antibodies on magnetic microspheres. Exposure to CGRP induced a significant increase in cAMP content, which could be inhibited by coculture with a truncated form of CGRP [CGRP-(8-37)] that is a specific competitive inhibitor of CGRP. Substance P and calcitonin failed to induce cAMP in LC. Although culture in CGRP reduced the ability of murine epidermal cells enriched for LC content to present pigeon cytochrome c to a responsive clone or to present antigen for elicitation of delayed-type hypersensitivity in immune mice, culture in forskolin had little or no effect on antigen presentation despite increased cAMP content of LC as much or more than that induced by CGRP. The effect of CGRP on antigen presentation in these systems could be blocked with CGRP-(8-37). CGRP inhibited the induction of B7-2 by lipopolysaccharide on peritoneal macrophages and a LC line, whereas calcitonin did not. CGRP induces specific accumulation of cAMP in LC and inhibits LC antigen-presenting function by a receptor-mediated event. However, the induction of cAMP by itself does not account for inhibition of antigen presentation. Suppression of the expression of B7-2 may be one mechanism by which CGRP inhibits antigen presentation.

Animals↗

Inhibition of the induction of delayed-type and contact hypersensitivity by calcitonin gene-related peptide.

Calcitonin gene-related peptide (CGRP)-containing nerves are frequently associated anatomically with epidermal Langerhans cells (LC), and LC Ag-presenting function is down-regulated by CGRP. To investigate possible regulation of cutaneous immunity by CGRP, we examined its effect on the induction of delayed-type hypersensitivity (DTH) and contact hypersensitivity (CHS). A system of immunity to the murine spindle cell tumor S1509a (H-2a) was employed to examine induction of DTH by LC. This system requires exposure of epidermal cells (EC) to GM-CSF for induction of substantial immunity. EC were prepared from CAF1 mice (H-2a/d) and Thy-1+ cells deleted. EC were exposed for 16 h to GM-CSF with or without CGRP. EC were then pulsed with tumor-associated Ags (TAA), washed, and injected s.c. into mice three times at 7-day intervals for immunization. Mice were challenged for a DTH response by injection of a hind footpad with TAA-pulsed EC, and 24-h footpad swelling assessed. Exposure of EC to CGRP significantly inhibited induction of DTH. To examine the effect of CGRP administered in vivo on induction of immunity, 530 pmol of CGRP or diluent alone was injected intradermally into the dorsum of the left ear of naive mice 8 h and 3 h before epicutaneous application of a hapten at the injected site. Mice were challenged on the right ear 7 days later and 24 h ear swelling was assessed. CGRP significantly inhibited the induction of CHS whereas calcitonin had no effect. Furthermore, when hapten was applied at a site distant from CGRP administration, no inhibition of CHS was observed, suggesting that the effect of CGRP is local. These data support the concept that CGRP may be an endogenous regulator of immune function and also suggest the possibility that CGRP or its analogues administered in vivo might have therapeutic utility as immunomodulators.

Animals↗

IL-10 inhibits tumor antigen presentation by epidermal antigen-presenting cells.

IL-10 inhibits Langerhans cell (LC) Ag presentation to Th1 clones. As LC are capable of presenting tumor-associated Ags (TAA) for primary and secondary tumor immune responses, we examined the effect of IL-10 on LC Ag presentation in a model of immunity to the S1509a spindle cell tumor (H-2a). Because induction of immunity to S1509a requires exposure of LC to granulocyte-macrophage (GM)-CSF, this system also allowed us to study the regulatory interactions of GM-CSF and IL-10 on LC. Naive CAF1 (H-2a/d) mice could be immunized against S1509a by injection with GM-CSF-exposed and TAA-pulsed epidermal cells (EC) as assessed by inhibition of the growth of inoculated tumor cells. Incubation of EC in IL-10 before GM-CSF exposure completely inhibited Ag presentation in this system. Significantly, neither co-incubation of EC in IL-10 and GM-CSF (without preincubation in IL-10) nor IL-10 treatment after GM-CSF incubation was able to exert a down-regulatory effect. The ability of IL-10 to modulate EC presentation of TAA for a secondary immune response was also examined. EC were pulsed with TAA in vitro and then injected into a hind footpad of tumor-immune mice with 24 h swelling assessed as a measure of delayed-type hypersensitivity. Preincubation in IL-10 before TAA exposure significantly inhibited elicitation of delayed-type hypersensitivity with or without subsequent exposure to GM-CSF. Co-incubation of EC in IL-10 and GM-CSF or exposure to IL-10 after GM-CSF led to a normal response. These data indicate that IL-10 may serve as an important regulator of LC Ag-presenting function for tumor immune responses. IL-10 appears to specifically prevent the GM-CSF-induced maturation of LC Ag-presenting function when treatment with IL-10 occurs before exposure to GM-CSF but does not reverse the established mature state.

Animals↗

Supernatants from UVB radiation-exposed keratinocytes inhibit Langerhans cell presentation of tumor-associated antigens via IL-10 content.

Exposure of mice to midrange UV radiation (UVB) (280-320 mm) in vivo leads to suppression of the ability to induce delayed-type hypersensitivity (DTH). Systemic administration of supernatants from UVB-exposed keratinocytes (KC) similarly inhibits the ability to induce DTH and the presence of interleukin-10 (IL-10) in the supernatants has been shown to be responsible for this effect. It has been hypothesized that release of IL-10 by KC after exposure to UVB radiation in vivo may be responsible for UVB-induced inhibition of DTH and also for the inability of chronically UVB-irradiated mice to immunologically reject immunogenic UVB-induced skin tumors. To test directly whether supernatants from UVB-irradiated KC can inhibit presentation of tumor-associated antigens (TAA) by epidermal Langerhans cells (LC), cultures of the transformed murine KC line PAM 212 were exposed to 200 J/m2 of UVB radiation and 24 h supernatants obtained. CAF1 (H-2a/d) epidermal cells (EC) enriched for LC content were exposed to supernatants from irradiated (UV-SN) or mock-irradiated (MI-SN) PAM 212 cells for 3 h followed by culture for 16 h in granulocyte-macrophage colony-stimulating factor and then were pulsed with soluble TAA derived from the murine spindle cell tumor S1509a (H-2a). ECs were then washed and injected subcutaneously into naive CAF1 mice three times at weekly intervals for priming. One week after the final immunization these mice were challenged subcutaneously with live S1509a cells and tumor growth scored over time. Pretreatment of EC with UV-SN but not MI-SN inhibited the induction of effective immunity by this immunization scheme. ECs were also treated with UV-SN or MI-SN for 3 h then pulsed with TAA and injected into a hind footpad of previously immunized mice for elicitation of a DTH response. Pretreatment of EC with UV-SN but not MI-SN inhibited the ability of EC to elicit DTH. Neutralization studies with specific neutralizing antibodies to IL-10 demonstrated that the presence of IL-10 in UV-SN was responsible for the inhibition of antigen presentation both for induction and elicitation of immunity. UV-SN inhibits tumor antigen presentation by epidermal LC through the action of IL-10.

Animals↗