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Biomedical subjects

S E Ullrich

Publications and source records attributed to S E Ullrich.

At least 19 recordsLinked to original sources

The inhibition of antigen-presenting activity of dendritic cells resulting from UV irradiation of murine skin is restored by in vitro photorepair of cyclobutane pyrimidine dimers.

Exposing skin to UVB (280-320 nm) radiation suppresses contact hypersensitivity by a mechanism that involves an alteration in the activity of cutaneous antigen-presenting cells (APC). UV-induced DNA damage appears to be an important molecular trigger for this effect. The specific target cells in the skin that sustain DNA damage relevant to the immunosuppressive effect have yet to be identified. We tested the hypothesis that UV-induced DNA damage in the cutaneous APC was responsible for their impaired ability to present antigen after in vivo UV irradiation. Cutaneous APC were collected from the draining lymph nodes of UVB-irradiated, hapten-sensitized mice and incubated in vitro with liposomes containing a photolyase (Photosomes; Applied Genetics, Freeport, NY), which, upon absorption of photoreactivating light, splits UV-induced cyclobutane pyrimidine dimers. Photosome treatment followed by photoreactivating light reduced the number of dimer-containing APC, restored the in vivo antigen-presenting activity of the draining lymph node cells, and blocked the induction of suppressor T cells. Neither Photosomes nor photoreactivating light alone, nor photoreactivating light given before Photosomes, restored APC activity, and Photosome treatment did not reverse the impairment of APC function when isopsoralen plus UVA (320-400 nm) radiation was used instead of UVB. These controls indicate that the restoration of APC function matched the requirements of Photosome-mediated DNA repair for dimers and post-treatment photoreactivating light. These results provide compelling evidence that it is UV-induced DNA damage in cutaneous APC that leads to reduced immune function.

Animals

Modulation of T-helper cell populations: potential mechanisms of respiratory hypersensitivity and immune suppression.

Information presented at this symposium indicates that modulation of Th cell responses is one means by which xenobiotics may cause immunotoxicity. A shift from Th1 to Th2 responses can enhance both infectious and allergic disease. Hence, in some cases, a common mechanism may be responsible for effects that are generally considered to be very different. Because cytokines produced in the inflammatory process play a role in modulation of Th cell responses, there is a mechanism by which agents that appear to have only local effects at the portal of entry may, in fact, affect immune responses systemically. An understanding of conditions which trigger certain cytokine responses may be useful not only in understanding inflammation but also in predicting certain kinds of immunosuppressive and allergic responses. Future studies in this area are likely to provide insights into many areas of immunotoxicology.

Air Pollutants

Photocarcinogenesis: an overview.

Photocarcinogenesis represents the sum of a complex of simultaneous and sequential biochemical events that ultimately lead to the occurrence of skin cancer. These events, initiated by UV radiation of appropriate wavelength, include the formation of DNA photoproducts: DNA repair; mutation of proto-oncogenes and tumor suppressor genes; UV-production of radical species with subsequent effects on mutation and extra-nuclear function; and other epigenetic events that influence the course of carcinogenesis. The epigenetic influences may include immunological responses, antioxidant defenses, and dietary factors. This review represents an effort to provide current research results in the aforementioned areas and an attempt to meld these events into a comprehensive overview of photocarcinogenesis. If effective prevention and intervention strategies for skin cancer are to developed, a more thorough understanding of the disease process is imperative.

Animals

Sunlight and skin cancer: inhibition of p53 mutations in UV-irradiated mouse skin by sunscreens.

UV-induced mutations in the p53 tumor suppressor gene play an essential role in skin cancer development. We report here that such mutations can be detected in UV-irradiated mouse skin months before the gross appearance of skin tumors. Application of SPF-15 sunscreens to mouse skin before each UV irradiation nearly abolished the frequency of p53 mutations. These results indicate that p53 mutation is an early event in UV skin carcinogenesis and that inhibition of this event may serve as an early end point for assessing protective measures against skin cancer development.

Animals

Cloning and mapping of a putative barley NADPH-dependent HC-toxin reductase.

The NADPH-dependent HC-toxin reductase (HCTR), encoded by Hm1 in maize, inactivates HC-toxin produced by the fungus Cochliobolus carbonum, and thus confers resistance to the pathogen. The fact that C. carbonum only infects maize (Zea mays) and is the only species known to produce HC-toxin raises the question: What are the biological functions of HCTR in other plant species? An HCTR-like enzyme may function to detoxify toxins produced by pathogens which infect other plant species (R. B. Meeley, G. S. Johal, S. E. Briggs, and J. D. Walton, Plant Cell, 4:71-77, 1992). Hm1 homolog in rice (Y. Hihara, M. Umeda, C. Hara, Q. Liu, S. Aotsuka, K. Toriyama, and H. Uchimiya, unpublished) and HCTR activity in barley, wheat, oats and sorghum have been reported (R. B. Meeley and J. D. Walton, Plant Physiol. 97:1080-1086, 1993). To investigate the sequence conservation of Hm1 and HCTR in barley and the possible relationship of barley Hm1 homolog to the known disease resistance genes, we cloned and mapped a barley (Hordeum vulgare) Hm1-like gene. A putative full-length cDNA clone, Bhm1-18, was isolated from a cDNA library consisting of mRNA from young leaves, inflorescences, and immature embryos. This 1,297-bp clone encodes 363 amino acids which show great similarity (81.6%) with the amino acid sequence of HM1 in maize. Two loci were mapped to barley molecular marker linkage maps with Bhm1-18 as the probe; locus A (Bhm1A) on the long arm of chromosome 1, and locus B (Bhm1B) on the short arm of chromosome 1 which is syntenic to maize chromosome 9 containing the Hm2 locus. The Bhm1-18 probe hybridized strongly to a Southern blot of a wide range of grass species, indicating high conservation of HCTR at the DNA sequence level among grasses. The HCTR mRNA was detected in barley roots, leaves, inflorescences, and immature embryos. The conservation of the HCTR sequence, together with its expression in other plant species (R. B. Meeley and J. D. Walton, Plant Physiol. 97:1080-1086, 1993), suggest HCTR plays an important functional role in other plant species.

Amino Acid Sequence

Differential effects of a monoclonal antibody to cis-urocanic acid on the suppression of delayed and contact hypersensitivity following ultraviolet irradiation.

Urocanic acid (UCA) occurs naturally in the stratum corneum of the skin as the trans-isomer and, upon exposure to UVB radiation, converts to cis-UCA. It has been proposed that trans-UCA is the photoreceptor for and, following its isomerization to cis-UCA, a mediator of the suppressive effects of UVB irradiation on systemic T cell-mediated immune responses, such as contact hypersensitivity (CH) and delayed-type hypersensitivity (DTH). To address this question directly, we studied the consequence of deleting the in vivo function of cis-UCA on systemic suppression of CH and DTH, by injecting mice with a anti-cis-UCA mAb several hours before exposure to UVB radiation. We found that while DTH responses were completely restored, the anti-cis-UCA Ab had no effect on UV-induced immunosuppression of the CH response, even though suppressor cell formation was inhibited in both cases. Further, the kinetics of IL-10 expression in the skin of irradiated mice injected with the anti-cis-UCA mAb was altered and the diminished APC function of spleen-adherent cells from UVB-irradiated mice was totally reversed by the Ab. These findings suggest that cis-UCA acts as a mediator for some but not all of the systemic suppressive effects of UVB irradiation. They also suggest that cis-UCA may act indirectly via IL-10 to modulate immune function.

Adoptive Transfer

Evidence that DNA damage triggers interleukin 10 cytokine production in UV-irradiated murine keratinocytes.

UV irradiation interferes with the induction of T cell-mediated immune responses, in part by causing cells in the skin to produce immunoregulatory cytokines. Recent evidence implicates UV-induced DNA damage as a trigger for the cascade of events leading to systemic immune suppression in vivo. However, to date, there has been no direct evidence linking DNA damage and cytokine production in UV-irradiated cells. Here we provide such evidence by showing that treatment of UV-irradiated murine keratinocytes in vitro with liposomal T4 endonuclease V, which accelerates the repair of cyclobutylpyrimidine dimers in these cells, inhibits their production of immunosuppressive cytokines, including interleukin 10. Application of these liposomes to murine skin in vivo also reduced the induction of interleukin 10 by UV irradiation, whereas liposomes containing heat-inactivated T4 endonuclease V were ineffective. These results support our hypothesis that unrepaired DNA damage in the skin activates the production of cytokines that down-regulate immune responses initiated at distant sites.

Animals

Does exposure to UV radiation induce a shift to a Th-2-like immune reaction?

In addition to being the primary cause of skin cancer, UV radiation is immune suppressive and there appears to be a link between the ability of UV to suppress the immune response and induce skin cancer. Cytokines made by UV-irradiated keratinocytes play an essential role in activating immune suppression. In particular, we have found that keratinocyte-derived interleukin (IL)-10 is responsible for the systemic impairment of antigen-presenting cell function and the UV-induced suppression of delayed-type hypersensitivity (DTH). Antigen presentation by splenic adherent cells isolated from UV-irradiated mice to T helper-1 type T (Th1) cells is suppressed, whereas antigen presentation to T helper-2 type T (Th2) cells is enhanced. The enhanced antigen presentation to Th2 cells and the impaired presentation to Th1 cells can be reversed in vivo by injecting the UV-irradiated mice with monoclonal anti-IL-10 antibody. Furthermore, immune suppression can be transferred from UV-irradiated mice to normal recipients by adoptive transfer of T cells. Injecting the recipient mice with anti-IL-4 or anti-IL-10 prevents the transfer of immune suppression, suggesting the suppressor cells are Th2 cells. In addition, injecting UV-irradiated mice with IL-12, a cytokine that has been shown to be the primary inducer of Th1 cells, and one that prevents the differentiation of Th2 cells in vivo, reverses UV-induced immune suppression. These findings support the hypothesis that UV exposure activates IL-10 secretion, which depresses the function of Th1 cells, while enhancing the activity of Th2 cells.

Animals

Mechanism of UVB-induced suppression of the immune response to Mycobacterium bovis bacillus Calmette-Guerin: role of cytokines on macrophage function.

Previously we demonstrated that treatment of mice with either UVB radiation or supernatants derived from UVB-irradiated PAM 212 keratinocytes decreased the induction of the delayed-type hypersensitivity (DTH) response to Mycobacterium bovis bacillus Calmette-Guerin (BCG), impaired the clearance of bacteria from their lymphoid organs and also altered macrophage functions. In order to characterize the cytokines involved in these phenomena, UV-irradiated mice were injected with antibodies to interleukin-10 (IL-10), transforming growth factor-beta 1 (TGF-beta 1), or tumor necrosis factor-alpha (TNF-alpha). Injection of UVB-irradiated mice with anti-IL-10 immediately after UV irradiation restored the DTH response and reversed the UV-induced inhibition of bacterial clearance. Injection of UV-irradiated mice with anti-TGF-beta only partially restored the DTH response although it allowed a better clearance of BCG than injection of mice with the control antibody. In contrast, injection of anti-TNF-alpha did not affect the UVB-induced suppression of DTH or impaired bacterial clearance. Similarly, the ability of macrophages to phagocytose BCG and kill the intracellular organisms was restored to almost normal levels after injecting UV-irradiated mice with antibodies specific for IL-10 or TGF-beta. Injection of mice with either recombinant IL-10 or TGF-beta mimicked the effect of whole-body UV irradiation on immune function. These results suggest that IL-10 has a major role in UV-induced suppression of both DTH to BCG and impairment in the clearance of bacteria and that TGF-beta has a more significant role in blocking bacterial clearance. Furthermore, these cytokines seem to modulate immune responses by altering macrophage functions in UVB-irradiated mice.

Animals

Effect of IL-12 on immune suppression and suppressor cell induction by ultraviolet radiation.

The carcinogenic potential of UV radiation (the primary cause of nonmelanoma skin cancer) is associated with its ability to suppress cell-mediated immune responses. Previous studies have shown that this UV-induced immune suppression is caused by the secretion of immunosuppressive cytokines such as IL-10. Because the effects of IL-10 on the immune response are countered by IL-12, we injected irradiated mice with IL-12 to determine whether it could overcome UV-induced immune suppression. Administration of IL-12 blocked the suppression of delayed-in-time hypersensitivity reactions observed in UV-irradiated animals. Moreover, IL-12 prevented the induction of suppressor T cells, in that adoptive transfer of spleen cells from UV-irradiated mice treated with IL-12 had no effect on the immune response of the recipient mice, whereas transfer of spleen cells from UV-irradiated mice treated with the vehicle inhibited the immune response. In addition, IL-12 neutralized the activity of UV-induced suppressor T cells. Although the adoptive transfer of UV-induced suppressor T cells from irradiated mice suppressed the immune response of the recipient mice, treatment of the recipient mice with IL-12 following the adoptive transfer overcame the immune suppression. The results of these experiments demonstrate that IL-12 can overcome UV-induced immune suppression by preventing the induction of, as well as neutralizing the activity of pre-formed suppressor T cells.

Animals

Modulation of immunity to Borrelia burgdorferi by ultraviolet irradiation: differential effect on Th1 and Th2 immune responses.

Ultraviolet B (UVB) radiation suppresses the delayed-type hypersensitivity (DTH) response to alloantigen by a mechanism involving interleukin (IL)-10. It has been hypothesized, based on this result, that UV irradiation shifts the immune response from a Th1 to a Th2 response. We tested this hypothesis using Borrelia burgdorferi (Bb) as an antigen under conditions where both DTH and antibody responses could be assessed. Mice were irradiated with a single dose of UV and then immunized with Bb in complete Freund's adjuvant (CFA). DTH was assessed by footpad challenge. At various time points thereafter, mice were bled, and the serum antibodies to Bb were quantitated. Only IgG1, IgG2a, and IgG2b were produced in response to Bb. The IgG2a and IgG2b antibody responses, as well as the DTH response to Bb, showed UV dose-dependent reductions after UV irradiation. The primary IgG1 response to Bb was very low and was unaffected by UV irradiation; however, the IgG1 secondary response was elevated in UV-irradiated mice. Injection of anti-IL-10 antibody into UV-irradiated mice within 24 h after UV exposure restored the DTH response, as well as the IgG2a and IgG2b antibody responses. In addition, injecting recombinant murine IL-10 mimicked some of the effects of UV radiation. Our results support the hypothesis that in vivo, UV irradiation down-regulates Th1 immune responses, while leaving Th2 responses intact, and suggest that IL-10 is an important mediator of this effect.

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

Immunotoxicology of regional lymphoid tissue: the respiratory and gastrointestinal tracts and skin.

The area of immunotoxicology has grown significantly over the past decade. Most of the research on methods development and validation and mechanisms of action have focused on the systemic immune system (i.e, spleen, thymus). However, since the regional/mucosal immune system plays an important role in host resistance and is also potentially exposed to significant levels of chemicals, it should also be considered a potential target. The objective of this symposium was to increase the awareness and importance of examining the effects of xenobiotics on the regional/mucosal immune response. The speakers presented an overview of the rapidly growing field of regional immunology with emphasis on the respiratory tract, gut, and skin. The complex intercellular distribution and limited number of immune cells within the various regional lymphoid tissue have resulted in the use of a variety of methods to study the immune response of these tissues. These methods and results of studies which examined the effects and mechanisms of action of chemicals and uv light on the regional immune response were discussed.

Animals

Prenatal alcohol exposure selectively suppresses cell-mediated but not humoral immune responsiveness.

The present study examined effects of fetal alcohol exposure (FAE) on the ability of peripubertal male and female rats to mount a humoral immune response against T-cell-dependent as well as independent antigens. The appropriate pair-fed (PF) and control (C) cohort rats were included. Serum immunoglobulins (Ig) levels were determined following a primary or secondary immune response. In addition, plasma corticosterone levels were measured in conscious, freely moving FAE, PF and C rats following sensitization with the T-cell-dependent antigen sheep red blood cells (SRBC). The study demonstrates that, in response to primary or secondary immunization, serum Ig levels in FAE rats were not significantly different from those in the PF or C cohorts. On the other hand, a marked reduction in mitogen-induced T-cell proliferative response was observed in FAE male rats in the same age group. Plasma corticosterone concentrations were increased almost four-fold 7 days after the primary immunization with SRBC, but there were no significant differences among the FAE, PF or C groups. Taken together, evidence from in vivo and in vitro studies indicates that FAE is associated with a selective impairment of cell-mediated immune function, including mitogen-induced T-cell proliferation, graft versus host as well as contact sensitization responses, but not of humoral immune function.

Animals

Cytokine-containing liposomes as adjuvants for HIV subunit vaccines.

Dehydration-rehydration liposome vesicles (DRVs) containing various cytokines were evaluated for their ability to induce delayed-type hypersensitivity (DTH) and humoral immunity to the recombinant envelope protein rgp120 of the MN strain of human immunodeficiency virus type 1 (HIV-1). The DRVs trapped approximately 25% of the radiolabeled cytokines and approximately 17% of the radiolabeled rgp120 that were added. The level of trapping was greater than the aqueous volume of the DRVs, indicating association of the proteins with the lipid bilayer. Flow cytometric analysis using antibody to rgp120 or the V3 loop of rgp120 showed the diameter of the DRVs to be 2-7.5 microns. Transmission electron microscopy confirmed the heterogeneity in size of the DRVs and revealed morphological heterogeneity. Transmission electron microscopy with immunogold labeling also revealed the presence of rgp120 on the surface of the DRVs. In vitro bioassays demonstrated slow leakage of biologically active cytokines from DRVs soaked in tissue culture medium containing serum. Mice injected subcutaneously three times at 14-day intervals with DRVs containing 15 micrograms of rgp120 plus interleukin 6 (IL-6) or interferon gamma (IFN-gamma) produced significantly greater DTH responses than mice injected with DRVs containing rgp120 alone. Soluble rgp120 plus soluble IFN-gamma produced DTH in some experiments, but of lower magnitude than the comparable DRVs. Interleukin 6, but not IFN-gamma, increased the antibody titer to rgp120 when included in the DRVs. The mice did not develop antibodies to IFN-gamma or IL-6. Induction of DTH by vaccines may increase protection from viral pathogens such as HIV. Cytokine-containing liposomes may be an effective adjuvant for the induction of a DTH response to envelope-antigen subunit vaccines.

Adjuvants, Pharmaceutic

Modulation of immunity by ultraviolet radiation: key effects on antigen presentation.

In addition to being the major cause of non-melanoma skin cancer, the ultraviolet radiation (UVR) present in sunlight is a potent immunosuppressive agent. Indeed, studies with mice and humans have indicated that the immune suppression induced by UVR is a risk factor for skin cancer development. These observations gave rise to the discipline of photoimmunology, which studies the interaction of electromagnetic radiation, primarily UVB (280-320 nm) light, with the immune system. The focus of this paper will be to review recent studies designed to unravel the mechanisms through which UVR suppresses immune reactivity. Particular emphasis is placed on the effects of UVR on antigen presentation.

Animals