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化脓性链球菌M49血清型裂解物通过特异性和非特异性抗肿瘤免疫反应诱导胰腺肿瘤生长延迟。

Lysates of S. pyogenes serotype M49 induce pancreatic tumor growth delay by specific and unspecific antitumor immune responses.

作者信息

Linnebacher Michael, Maletzki Claudia, Emmrich Jörg, Kreikemeyer Bernd

机构信息

Section of Molecular Oncology and Immunotherapy, Department of General Surgery, University of Rostock, Schillingallee, Rostock, Germany.

出版信息

J Immunother. 2008 Oct;31(8):704-13. doi: 10.1097/CJI.0b013e3181829f62.

Abstract

Treatment of pancreatic cancer by active unspecific bacterial immunotherapy is a promising new strategy. Recently, we showed that a single intratumoral injection of wildtype Streptococcus pyogenes M49 results in complete regression of pancreatic carcinoma in mice mediated both by unspecific cytotoxicity and by specific immune reactions against tumor cells. As for potential clinical use, conditioning and especially inactivation of bacteria would abolish the risk of systemic bacterial infections; we here explored the potential of a streptococcal lysate prepared by bacteriophage lysine to affect pancreatic carcinoma growth in vivo. Application of the lysate into established Panc02 tumors resulted in pronounced growth cessation accompanied by raises in levels of circulating monocytes, granulocytes, and natural killer cells. Detailed analysis of splenocyte subsets revealed lysate-induced transient increases in pre-B cells followed by raised levels of activated T cells. Moreover, blood levels of proinflammatory, T helper-1-type cytokines were significantly elevated. These systemic immunologic effects were accompanied by massive infiltrations of cytotoxic T cells into the tumors. Concomitantly, lymphocytes obtained from treated mice specifically recognized Panc02 tumor cells in IFN-gamma-enzyme-linked immunosorbent spot and in cellular cytotoxicity assays. In rechallenge experiments, these immunologic effector cells were found to delay, but not completely prevent growth of secondary tumors. However, when considering the notoriously depressed immune status of individuals suffering from pancreatic carcinoma, the orchestrated antitumoral immune responses we analyzed here in detail significantly strengthen the potential usefulness of microbial compounds as active unspecific immunotherapeutic agent for treatment of pancreatic carcinoma.

摘要

通过活性非特异性细菌免疫疗法治疗胰腺癌是一种有前景的新策略。最近,我们发现瘤内单次注射野生型化脓性链球菌M49可使小鼠胰腺癌完全消退,这是由非特异性细胞毒性和针对肿瘤细胞的特异性免疫反应介导的。至于潜在的临床应用,细菌的预处理尤其是灭活将消除全身细菌感染的风险;我们在此探讨了由噬菌体溶菌酶制备的链球菌裂解物在体内影响胰腺癌生长的潜力。将裂解物应用于已形成的Panc02肿瘤中,导致肿瘤明显停止生长,同时循环单核细胞、粒细胞和自然杀伤细胞水平升高。对脾细胞亚群的详细分析显示,裂解物诱导前B细胞短暂增加,随后活化T细胞水平升高。此外,促炎的、辅助性T细胞1型细胞因子的血液水平显著升高。这些全身免疫效应伴随着细胞毒性T细胞大量浸润到肿瘤中。同时,从治疗小鼠获得的淋巴细胞在干扰素-γ酶联免疫斑点试验和细胞毒性试验中特异性识别Panc02肿瘤细胞。在再挑战实验中,发现这些免疫效应细胞会延迟但不能完全阻止继发性肿瘤的生长。然而,考虑到胰腺癌患者众所周知的免疫状态低下,我们在此详细分析的精心策划的抗肿瘤免疫反应显著增强了微生物化合物作为活性非特异性免疫治疗剂治疗胰腺癌的潜在效用。

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