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生物材料对树突状细胞成熟的差异功能影响。

Differential functional effects of biomaterials on dendritic cell maturation.

机构信息

Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology and Emory University, Atlanta, GA 30332, USA.

出版信息

Acta Biomater. 2012 Oct;8(10):3606-17. doi: 10.1016/j.actbio.2012.06.006. Epub 2012 Jun 12.

Abstract

The immunological outcome of dendritic cell (DC) treatment with different biomaterials was assessed to demonstrate the range of DC phenotypes induced by biomaterials commonly used in combination products. Immature DCs (iDCs) were derived from human peripheral blood monocytes, and treated with different biomaterial films of alginate, agarose, chitosan, hyaluronic acid (HA), or 75:25 poly(lactic-co-glycolic acid) (PLGA) and a comprehensive battery of phenotypic functional outcomes was assessed. Different levels of functional changes in DC phenotype were observed depending on the type of biomaterial films used to treat the DCs. Treatment of DCs with PLGA or chitosan films supported DC maturation, with higher levels of DC allostimulatory capacity, pro-inflammatory cytokine release, and expression of CD80, CD86, CD83, HLA-DQ and CD44 compared with iDCs, and lower endocytic ability compared with iDCs. Alginate film induced pro-inflammatory cytokine release from DCs at levels higher than from iDCs. Dendritic cells treated with HA film expressed lower levels of CD40, CD80, CD86 and HLA-DR compared with iDCs. They also exhibited lower endocytic ability and CD44 expression than iDCs, possibly due to an insolubilized (cross-linked) form of high molecular weight HA. Interestingly, treatment of DCs with agarose film maintained the DC functional phenotype at levels similar to iDCs except for CD44 expression, which was lower than that of iDCs. Taken together, these results can provide selection criteria for biomaterials to be used in immunomodulating applications and can inform potential outcomes of biomaterials within combination products on associated immune responses as desired by the application.

摘要

评估树突状细胞(DC)用不同生物材料处理的免疫结果,以证明通常在联合产品中使用的生物材料诱导的 DC 表型范围。从人外周血单核细胞中衍生出未成熟的 DC(iDCs),并用不同的生物材料膜(藻酸盐、琼脂糖、壳聚糖、透明质酸(HA)或 75:25 聚乳酸-共-羟基乙酸(PLGA))处理,并评估了全面的表型功能结果。观察到 DC 表型的功能变化水平取决于用于处理 DC 的生物材料膜的类型。用 PLGA 或壳聚糖膜处理 DC 支持 DC 成熟,具有更高水平的 DC 同种刺激能力、促炎细胞因子释放以及 CD80、CD86、CD83、HLA-DQ 和 CD44 的表达,与 iDCs 相比,内吞能力较低。藻酸盐膜诱导 DC 释放的促炎细胞因子水平高于 iDCs。与 iDCs 相比,HA 膜处理的 DC 表达的 CD40、CD80、CD86 和 HLA-DR 水平较低。它们的内吞能力和 CD44 表达也低于 iDCs,这可能是由于高分子量 HA 的不可溶(交联)形式。有趣的是,用琼脂糖膜处理 DC 可使 DC 功能表型保持与 iDCs 相似的水平,除了 CD44 表达低于 iDCs 之外。总之,这些结果可以为免疫调节应用中使用的生物材料提供选择标准,并可以根据应用所需告知组合产品中生物材料对相关免疫反应的潜在影响。

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