Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0042961 (volvulus)
4,305 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Nine of eighteen chimpanzees inoculated with infective third-stage larvae of Onchocerca volvulus developed patent infection with microfilariae in skin biopsies. In all infected chimpanzees the in vitro cellular reactivity to O. volvulus adult worm-derived Ag (OvAg) increased significantly after exposure to third-stage larvae. However, during prepatency the in vitro cellular responses to OvAg decreased gradually in subsequently mf positive (patent) animals, and returned with patency to values not different to those before infection. In non-patent chimpanzees cellular responses remained significantly higher than before infection. Stimulation of PBMC in vitro with bacterial Ag and mitogen did not show any differences between the experimental groups through 20 months p.i. The addition of exogenous IL-2 did not restore the impaired responses of PBMC to OvAg in patent animals. Exogenous IL-2 elicited an additive increase of the cellular response to OvAg in nonpatent, and a mitogenic effect to OvAg in patent animals. Selective depletion of adherent, suppressor/cytotoxic (CD8+), NK cells (CD16+) and the use of autologous serum had no effect on antigenic and mitogenic cellular responsiveness. OvAg-induced IL-2 production decreased after patency, whereas, IL-1 production was significantly greater in both patent and nonpatent than in control chimpanzees. In summary, these data demonstrate that experimental O. volvulus infection in chimpanzees stimulated a substantial cell-mediated immune response. In patent chimpanzees an OvAg-specific cellular hyporesponsiveness occurred before onset of patency, possibly due to decreased IL-2 production and responsiveness.
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PMID:Experimental onchocerciasis in chimpanzees. Cell-mediated immune responses, and production and effects of IL-1 and IL-2 with Onchocerca volvulus infection. 205 Oct 25

Mechanisms involved in modulation of the immune response in persons with chronic Onchocerca volvulus infection are poorly understood. In this study in vitro reactivity of PBMC to O. volvulus antigen (Ovag), streptolysin O (SL-O) and the mitogen PHA was tested in 62 infected individuals (INF), 17 persons living in the endemic area with exposure to the infection, but with no detectable infection (END), and 7 healthy controls (CTRL) in Liberia, West Africa. Mean blastogenic responses to Ovag were minimal and did not differ between the groups. There was, however, heterogenous reactivity to Ovag in the INF and END. For example, individuals with a history of therapy, and half of those less than 17 yr old who were tested, showed high responses. No significant differences in the response to SL-O or PHA were detected between the groups. IL-2 production in response to Ovag was minimal in the majority of infected subjects. Exogenous IL-2 was found to cause a significant increase in mean responses to Ovag and SL-O in INF and END only. Similarly, Ovag did not stimulate IL-1 production in most INF, whereas stimulation with LPS led to significantly greater production of IL-1. Depletion of plastic and nylon wool adherent cells did not increase responses to parasite-related antigen in INF, END or CTRL; however, responses to SL-O were augmented in INF, an effect that was also observed in CTRL. Finally, depletion of CD8 or CD16 cells in INF by C lysis did not increase blastogenic responses. These results indicate that cell-mediated immunity to parasite-related Ag as reflected in lymphocyte responses in vitro is diminished in infected individuals, and that this may be caused by defects in T cell activation.
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PMID:Cell-mediated immune responses in human infection with Onchocerca volvulus. 325 94

Toll-like receptor 2 (TLR2) is an essential mediator of corneal inflammation induced by the filarial nematode Onchocerca volvulus, which harbors endosymbiotic Wolbachia bacteria. TLR2 is also required for dendritic cell activation, gamma interferon (IFN-gamma) production, and neutrophil recruitment to the cornea. To examine the role of IFN-gamma in O. volvulus keratitis, C57BL/6 and IFN-gamma(-/-) mice were immunized subcutaneously, and a soluble antigen extract from O. volvulus adult worms (OvAg) was injected into the corneal stroma of each animal. We found that, in the absence of IFN-gamma, neutrophil recruitment to the cornea was significantly impaired, whereas there was no effect on eosinophil infiltration. Since the cornea contains resident macrophages and fibroblasts and our previous studies showed that CXC chemokines mediate neutrophil recruitment, we examined the role of recombinant IFN-gamma (rIFN-gamma) on each cell type. We found no effect of rIFN-gamma on CXC chemokine production by macrophages or corneal fibroblasts, either alone or with filarial extracts; in contrast, rIFN-gamma was found to enhance OvAg-induced tumor necrosis factor alpha (TNF-alpha), interleukin-6 (IL-6), IL-1alpha, and IL-1beta in macrophages. Furthermore, we found that rTNF-alpha, rIL-1alpha, or rIL-1beta induced CXC chemokine production by corneal fibroblasts but not by macrophages. To determine the relative contributions of endogenous cytokines, we injected OvAg into the corneal stroma of C57BL/6, IL-1 receptor 1(-/-) (IL-1R1(-/-)), and TNF-alphaR1/2(-/-) mice and examined neutrophil recruitment. We found that neutrophil infiltration was impaired in IL-1R1(-/-) mice but not in TNF-alphaR1/2(-/-) mice. IFN-gamma therefore appears to regulate neutrophil recruitment to the corneal stroma by enhancing TLR2 expression and OvAg-induced IL-1alpha and IL-1beta production by macrophages in the cornea, which then induce IL-1R1-dependent production of CXC chemokine by resident corneal fibroblasts.
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PMID:Gamma interferon and interleukin-1 receptor 1 regulate neutrophil recruitment to the corneal stroma in a murine model of Onchocerca volvulus keratitis. 1916 46