CAS Center for Excellence in Nanoscience, CAS Key Laboratory for Biological Effects of Nanomaterials and Nanosafety, National Center for Nanoscience and Technology (NCNST) , Beijing 100190, P.R. China.
University of Chinese Academy of Sciences (UCAS) , Beijing 100049, P.R. China.
ACS Nano. 2017 Jul 25;11(7):7301-7311. doi: 10.1021/acsnano.7b03375. Epub 2017 Jun 22.
Intracellular construction of nanoaggregates from synthetic molecules to mimic natural ordered superstructures has gained increasing attention recently. Here, we develop an endogenous stimuli-induced aggregation (eSIA) approach to construct functional nanoaggregates for sensing and monitoring cellular physiological processes in situ. We design a series of thermosensitive polymer-peptide conjugates (PPCs), which are capable of constructing nanoaggregates in cells based on their isothermal phase transition property. The PPCs are composed of three moieties (i.e., a thermoresponsive polymer backbone, a grafted peptide, and a signal-molecule label). The bioenvironment-associated phase transition behavior of PPCs are carefully studied by consideration of various crucial parameters such as chain length, hydrophilicity, ratio of grafted peptides, and concentration. Intriguingly, under the specific intracellular stimulus, the PPCs are tailored and simultaneously form nanoaggregates exhibiting long-term retention effect, which enables specific identification and quantification of endogenous factors. This general approach is expected for high-performance in situ sensing and dynamic monitoring of disease progression in living subjects.
近年来,人们越来越关注从合成分子构建模拟天然有序超结构的纳米聚集体。在这里,我们开发了一种内源性刺激诱导聚集(eSIA)方法,用于构建功能性纳米聚集体,以原位检测和监测细胞生理过程。我们设计了一系列温敏聚合物-肽缀合物(PPCs),它们可以基于其等温相变特性在细胞内构建纳米聚集体。PPCs 由三个部分组成(即热响应聚合物主链、接枝肽和信号分子标记)。通过考虑各种关键参数,如链长、亲水性、接枝肽的比例和浓度,仔细研究了 PPCs 的与生物环境相关的相变行为。有趣的是,在特定的细胞内刺激下,PPCs 被定制并同时形成具有长期保留效应的纳米聚集体,这使得能够对内源性因子进行特异性识别和定量。这种通用方法有望用于在活体中进行高性能的原位传感和疾病进展的动态监测。