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首页> 外文期刊>Journal of immunotherapy >Mechanism of anticancer host response induced by OK-432, a streptococcal preparation, mediated by phagocytosis and Toll-like receptor 4 signaling.
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Mechanism of anticancer host response induced by OK-432, a streptococcal preparation, mediated by phagocytosis and Toll-like receptor 4 signaling.

机译:由吞噬作用和Toll样受体4信号介导的链球菌制剂OK-432诱导的抗癌宿主应答机制。

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摘要

It has previously been reported by our group that Toll-like receptor (TLR) 4 is involved in anticancer immunity induced by OK-432, a Streptococcus-derived immunotherapeutic agent. However the detailed mechanism of the OK-432-induced immune response via TLR4 remained uncertain, because it may not be possible for OK-432, which consists of whole bacterial bodies, to bind directly to TLR4. In the current study, we conducted in vitro and in vivo experiments to investigate the hypothesis that OK-432 may first be captured and dissolved by phagocytes and that the active components released by the cells may then induce host responses via TLR4. TS-2 monoclonal antibody, which recognizes an active component of OK-432 designated OK-PSA was used in the current study. First, it was observed that OK-432-induced cytokine production by dendritic cells (DCs) and macrophages was significantly inhibited in vitro by cytochalasin B, a phagocytosis inhibitor. Immunofluorescence staining using TS-2 demonstrated that OK-432 was captured and dissolved by phagocytes. OK-PSA was detected in the supernatants derived from OK-432-treated DC culture by enzyme-linked immunosorbent assay using TS-2. Supernatants from OK-432-treated DC culture increased nuclear factor (NF)-kappaB activity in TLR4-expressing cells, and the increased activity was inhibited by TS-2 antibody. OK-432 itself did not activate NF-kappaB in these cells. In in vivo experiments, the anticancer effect of OK-432 was significantly inhibited by suppression of phagocytosis activity by cytochalasin B. In this case, the amount of OK-PSA, an active component of OK-432, in the sera was also reduced by cytochalasin B. These findings elucidated the mechanism mediated by phagocytosis and TLR4 signaling in the immune effect of OK-432.
机译:我们的研究小组以前曾报道过,Toll样受体(TLR)4参与由链球菌衍生的免疫治疗药OK-432诱导的抗癌免疫。但是,OK-432通过TLR4诱导的免疫应答的详细机制仍然不确定,因为由完整细菌体组成的OK-432可能无法直接与TLR4结合。在当前的研究中,我们进行了体外和体内实验,以研究以下假设:OK-432可能首先被吞噬细胞捕获并溶解,然后细胞释放的活性成分可能随后通过TLR4诱导宿主反应。当前研究中使用了TS-2单克隆抗体,该抗体识别OK-432的活性成分,称为OK-PSA。首先,观察到,吞噬作用抑制剂cytochalasin B在体外显着抑制了树突状细胞(DC)和巨噬细胞对OK-432诱导的细胞因子的产生。使用TS-2进行的免疫荧光染色证明OK-432被吞噬细胞捕获并溶解。使用TS-2,通过酶联免疫吸附测定,在OK-432处理过的DC培养上清液中检测到OK-PSA。来自OK-432处理的DC培养液的上清液增加了TLR4表达细胞中的核因子(NF)-kappaB活性,而TS-2抗体则抑制了该活性的增加。 OK-432本身并未激活这些细胞中的NF-κB。在体内实验中,OK-432的抗癌作用被细胞松弛素B抑制吞噬活性而被显着抑制。在这种情况下,OK-PSA(OK-432的活性成分)在血清中的含量也降低了。这些发现阐明了吞噬作用和TLR4信号传导介导的OK-432免疫作用的机制。

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