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负载 HSP70 表达的热灭活黑素瘤细胞的未成熟树突状细胞增强 T 细胞的激活。

Enhanced T-cell activation by immature dendritic cells loaded with HSP70-expressing heat-killed melanoma cells.

机构信息

Department of Dermatology and Venereology, Georg August University, Göttingen, Germany.

出版信息

Exp Dermatol. 2010 Feb;19(2):108-16. doi: 10.1111/j.1600-0625.2009.00962.x. Epub 2009 Sep 15.

Abstract

Vaccination protocols that utilize dendritic cells (DCs) to elicit therapeutic immunity against tumors are the subject of intense research. Given that the capacity of DCs to cross-present antigens is physiologically low, there is considerable interest to develop strategies that enhance that pathway. In order to best exploit the enhanced cross-presentation of antigens bound to heat shock protein 70 (HSP70), we analysed melanoma cell preparations for their HSP70 expression. Western blotting revealed strong upregulation of HSP70 after heat-killing in contrast to UV-B irradiation. When the uptake of heat-killed necrotic cells by DCs at various levels of maturation was assessed, 61 +/- 7% of immature DCs (iDCs) internalized fluorescence-labelled necrotic material. Apoptotic material from UV-B-irradiated cells was internalized by only 48 +/- 5% of iDCs. Maturation-inducing cytokines did not affect the uptake when added simultaneously with the tumor cell preparations. Loading DCs with heat-necrotic or apoptotic melanoma cells slightly reduced CD83 expression while leaving CD208 (DC-LAMP) expression unchanged. As determined by IFN-gamma-detecting enzyme-linked-immunospot assays, iDCs loaded with heat-killed melanoma cells activated autologous T cells most effectively when used without any further maturation, whereas DCs loaded with apoptotic material required maturation. In conclusion, HSP70-expressing melanoma cells could be generated by heat-killing. Loading iDCs with heat-killed melanoma cells resulted in a superior priming of autologous T cells in vitro.

摘要

利用树突状细胞(DCs)引发针对肿瘤的治疗性免疫的疫苗接种方案是当前研究的热点。鉴于 DCs 交叉呈递抗原的能力在生理上较低,因此人们非常有兴趣开发增强该途径的策略。为了最好地利用与热休克蛋白 70(HSP70)结合的抗原的增强交叉呈递,我们分析了黑色素瘤细胞制剂的 HSP70 表达。Western blot 显示,与 UV-B 照射相比,热杀伤后 HSP70 的表达明显上调。当评估各种成熟水平的 DCs 摄取热杀伤的坏死细胞时,61 +/- 7%的未成熟 DCs(iDCs)内化了荧光标记的坏死物质。仅 48 +/- 5%的 iDCs 内化了来自 UV-B 照射细胞的凋亡物质。在同时添加肿瘤细胞制剂时,成熟诱导细胞因子不会影响摄取。用热坏死或凋亡黑色素瘤细胞负载 DCs 略微降低了 CD83 的表达,而 CD208(DC-LAMP)的表达保持不变。通过 IFN-γ检测酶联免疫斑点分析确定,未经进一步成熟即可最有效地激活自体 T 细胞,而负载凋亡物质的 DCs则需要成熟。总之,热杀伤可以产生表达 HSP70 的黑色素瘤细胞。用热杀伤的黑色素瘤细胞负载 iDCs 可在体外有效诱导自体 T 细胞的初始激活。

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