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首页> 外文期刊>British Journal of Cancer >Potentiation of photodynamic therapy of cancer by complement: the effect of |[gamma]|-inulin
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Potentiation of photodynamic therapy of cancer by complement: the effect of |[gamma]|-inulin

机译:补体增强癌症的光动力治疗:|γ|-菊粉的作用

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摘要

Host response elicited by photodynamic therapy (PDT) of cancerous lesions is a critical contributor to the clinical outcome, and complement system has emerged as its important element. Amplification of complement action was shown to improve tumour PDT response. In search of a clinically relevant complement activator for use as a PDT adjuvant, this study focused on γ-inulin and examined its effects on PDT response of mouse tumours. Intralesional γ-inulin (0.1?mg?mouse?1) delivered immediately after PDT rivaled zymosan (potent classical complement activator) in delaying the recurrence of B16BL6 melanomas. This effect of γ-inulin was further enhanced by IFN-γ pretreatment. Tumour C3 protein levels, already elevated after individual PDT or γ-inulin treatments, increased much higher after their combination. With fibrosarcomas MCA205 and FsaR, adjuvant γ-inulin proved highly effective in reducing recurrence rates following PDT using four different photosensitisers (BPD, ce6, Photofrin, and mTHPC). At 3 days after PDT plus γ-inulin treatment, over 50% of cells found at the tumour site were CTLs engaged in killing specific targets via perforin–granzyme pathway. This study demonstrates that γ-inulin is highly effective PDT adjuvant and suggests that by amplifying the activation of complement system, this agent potentiates the development of CTL-mediated immunity against PDT-treated tumours.
机译:光动力疗法(PDT)对癌性病变引起的宿主反应是临床结果的关键因素,补体系统已成为其重要组成部分。补体作用的放大显示改善了肿瘤PDT反应。为了寻找与临床相关的补体激活剂作为PDT佐剂,本研究集中于γ-菊粉,并研究了其对小鼠肿瘤PDT反应的影响。在PDT与zymosan(强力经典补体激活剂)竞争延迟延迟B16BL6黑色素瘤的复发之后,立即递送鼻内γ-菊粉(0.1?mg?小鼠?1)。 IFN-γ预处理可进一步增强γ-菊粉的这种作用。在单独的PDT或γ-菊粉治疗后,已经升高的肿瘤C3蛋白水平在组合后更高。对于纤维肉瘤MCA205和FsaR,佐剂γ-菊粉被证明在使用四种不同的光敏剂(BPD,ce6,Photofrin和mTHPC)降低PDT后降低复发率方面非常有效。在PDT加γ-菊粉处理后的第3天,在肿瘤部位发现的细胞中有50%以上是通过穿孔素-颗粒酶途径杀死特定靶标的CTL。这项研究表明,γ-菊粉是高效的PDT佐剂,并表明通过放大补体系统的激活,这种药物可增强CTL介导的抗PDT治疗的肿瘤免疫力的发展。

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