| Literature DB >> 31389705 |
Michael Dzuricky1, Sinan Xiong1, Patrick Weber1,2, Ashutosh Chilkoti1.
Abstract
We describe a genetically encoded micelle for targeted delivery consisting of a diblock polypeptide with segments derived from repetitive protein motifs inspired by Drosophila melanogaster 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 αvβ3 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.Entities:
Keywords: Self-assembly; elastin-like polypeptide; fibronectin type III (Fn3) domain; micelle; resilin-like polypeptide; valency
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Year: 2019 PMID: 31389705 DOI: 10.1021/acs.nanolett.9b02095
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189