首页> 美国卫生研究院文献>Immunology >Presentation of cryptococcal capsular polysaccharide (GXM) on activated antigen-presenting cells inhibits the T-suppressor response and enhances delayed-type hypersensitivity and survival.
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Presentation of cryptococcal capsular polysaccharide (GXM) on activated antigen-presenting cells inhibits the T-suppressor response and enhances delayed-type hypersensitivity and survival.

机译:隐球菌荚膜多糖(GXM)在活化的抗原呈递细胞上的呈递抑制了T抑制剂的反应并增强了迟发型超敏反应和存活。

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摘要

A hallmark of infection with Cryptococcus neoformans is depression of the immune system characterized by poor inflammatory responses and loss of delayed-type hypersensitivity (DTH) and antibody responses. T-suppressor cell (Ts) responses, elicited by the capsular polysaccharide (GXM) of the organism, are known to develop during infection. This study was undertaken to develop a method to inhibit the anti-GXM Ts response and thereby study the influence of the Ts response on immune responsiveness and survival in cryptococcosis. Antigen-presenting cells (APC), elicited with complete Freund's adjuvant (CFA), were treated in vitro with GXM (GXM-APC). The GXM-APC were injected intravenously into normal mice. These mice were resistant to induction of anti-GXM Ts cells when soluble GXM was administered in tolerogenic doses or when animals were infected with C. neoformans. Inhibition of the anti-GXM Ts response was specific to GXM as levan-APC did not inhibit induction of anti-GXM Ts cells. Inhibition of the anti-GXM Ts response could not be attributed to increased clearance of GXM due to induction of anti-GXM antibodies or other mechanisms. Anti-cryptococcal DTH responses were lost in mice by the second week of infection. However, treatment with GXM-APC, but not levan-APC, allowed mice to maintain their DTH response. GXM-APC pretreatment enhanced survival of infected mice compared with mice pretreated with levan-APC. These results show that GXM-APC induces immune responses that inhibit the induction of Ts responses and enhances DTH responses in infected mice. These responses correlate with enhanced survival after cryptococcal infection.
机译:新型隐球菌感染的标志是免疫系统下降,其特征是炎症反应差,迟发型超敏反应(DTH)和抗体反应降低。已知由生物体的荚膜多糖(GXM)引起的T抑制细胞(Ts)反应在感染过程中发展。进行这项研究以开发一种抑制抗GXM Ts反应的方法,从而研究Ts反应对隐球菌免疫反应和生存的影响。用GXM(GXM-APC)在体外处理完全弗氏佐剂(CFA)引发的抗原呈递细胞(APC)。将GXM-APC静脉内注射到正常小鼠中。当以致耐受剂量施用可溶性GXM或当动物感染新孢梭菌时,这些小鼠对抗GXM Ts细胞的诱导具有抗性。抗GXM Ts反应的抑制是GXM特有的,因为levan-APC不能抑制抗GXM Ts细胞的诱导。抗GXM Ts反应的抑制不能归因于由于诱导抗GXM抗体或其他机制而导致的GXM清除率的提高。感染的第二周,抗隐球菌DTH反应在小鼠中消失。但是,用GXM-APC而不是levan-APC进行的治疗可以使小鼠维持其DTH反应。与用levan-APC预处理的小鼠相比,GXM-APC预处理增强了感染小鼠的存活率。这些结果表明,GXM-APC可以诱导免疫反应,从而抑制受感染小鼠中Ts反应的诱导并增强DTH反应。这些反应与隐球菌感染后存活率提高有关。

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