Department of Biomedical Engineering , Duke University , Durham , North Carolina 27708 , United States.
Swiss Nanoscience Institute , University of Basel , Basel 4056 , Switzerland.
Nano Lett. 2019 Sep 11;19(9):6124-6132. doi: 10.1021/acs.nanolett.9b02095. Epub 2019 Aug 12.
We describe a genetically encoded micelle for targeted delivery consisting of a diblock polypeptide with segments derived from repetitive protein motifs inspired by Rec-1 resilin and human tropoelastin with a C-terminal fusion of an integrin-targeting fibronectin type III domain. By systematically varying the weight fraction of the hydrophilic elastin-like polypeptide (ELP) block and molecular weight of the diblock polypeptide, we designed micelles of different morphologies that modulate the binding avidity of the human wild-type 10th fibronectin domain (Fn3) as a function of shape. We show that wormlike micelles that present the Fn3 domain have a 1000-fold greater avidity for the αβ receptor compared to the monomer ligand and an avidity that is greater than a clinically relevant antibody that is driven by their multivalency. The amplified avidity of these micelles leads to significantly increased cellular internalization, a feature that may have utility for the intracellular delivery of drugs that are loaded into the core of these micelles.
我们描述了一种由嵌段多肽组成的基因编码胶束,用于靶向递送,该嵌段多肽由重复蛋白基序衍生而来,灵感来自 Rec-1 弹性蛋白和人原弹性蛋白,其 C 末端融合了整合素靶向纤维连接蛋白 III 结构域。通过系统地改变亲水性弹性蛋白样多肽(ELP)嵌段的重量分数和嵌段多肽的分子量,我们设计了具有不同形态的胶束,可调节人野生型第 10 个纤维连接蛋白结构域(Fn3)的结合亲和力,作为形状的函数。我们表明,呈现 Fn3 结构域的线状胶束与单体配体相比,对 αβ 受体的亲和力高 1000 倍,并且这种亲和力大于由其多价性驱动的临床相关抗体。这些胶束的亲和力增强导致细胞内化显著增加,这一特性可能对将药物加载到这些胶束的核心内用于细胞内递送具有实用价值。