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最小“自我”肽可抑制吞噬清除作用并增强纳米颗粒的递呈。

Minimal "Self" peptides that inhibit phagocytic clearance and enhance delivery of nanoparticles.

机构信息

Molecular and Cell Biophysics and NanoBioPolymers Laboratory, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

Science. 2013 Feb 22;339(6122):971-5. doi: 10.1126/science.1229568.

Abstract

Foreign particles and cells are cleared from the body by phagocytes that must also recognize and avoid clearance of "self" cells. The membrane protein CD47 is reportedly a "marker of self" in mice that impedes phagocytosis of self by signaling through the phagocyte receptor CD172a. Minimal "Self" peptides were computationally designed from human CD47 and then synthesized and attached to virus-size particles for intravenous injection into mice that express a CD172a variant compatible with hCD47. Self peptides delay macrophage-mediated clearance of nanoparticles, which promotes persistent circulation that enhances dye and drug delivery to tumors. Self-peptide affinity for CD172a is near the optimum measured for human CD172a variants, and Self peptide also potently inhibits nanoparticle uptake mediated by the contractile cytoskeleton. The reductionist approach reveals the importance of human Self peptides and their utility in enhancing drug delivery and imaging.

摘要

吞噬细胞可清除体内的外来颗粒和细胞,同时还必须识别并避免清除“自身”细胞。据报道,在小鼠中,膜蛋白 CD47 是一种“自身标志物”,通过与其吞噬细胞受体 CD172a 信号转导,阻止自身吞噬。从小鼠 CD47 计算设计了最小的“自身”肽,然后合成并连接到病毒大小的颗粒上,用于静脉注射到表达与 hCD47 兼容的 CD172a 变体的小鼠中。自身肽可延迟巨噬细胞介导的纳米颗粒清除,从而促进持久循环,增强染料和药物向肿瘤的输送。自身肽与 CD172a 的亲和力接近人类 CD172a 变体测量的最佳值,并且自身肽还可有效抑制由收缩细胞骨架介导的纳米颗粒摄取。这种简化方法揭示了人类自身肽的重要性及其在增强药物输送和成像中的应用。

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