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利用荧光碳点在3D微凝胶中进行细胞微环境pH传感

Cell Microenvironment pH Sensing in 3D Microgels Using Fluorescent Carbon Dots.

作者信息

Chandra Anil, Singh Neetu

机构信息

Centre for Biomedical Engineering, Indian Institute of Technology Delhi, Hauz Khas, New Delhi-110016, India.

Department of Biomedical Engineering, All India Institute of Medical Sciences, Ansari Nagar, New Delhi-110029, India.

出版信息

ACS Biomater Sci Eng. 2017 Dec 11;3(12):3620-3627. doi: 10.1021/acsbiomaterials.7b00740. Epub 2017 Nov 15.

DOI:10.1021/acsbiomaterials.7b00740
PMID:33445396
Abstract

We report here a 3D cell culture microgel-based system containing carbon dots capable of sensing the pH changes in the cellular microenvironment. We have utilized a simple droplet-based microfluidics methodology for encapsulating cells and fluorescent pH sensitive carbon dots in polyethylene glycol microgels. Since the microfluidics assembly is developed from simple components that can be modified easily to yield microgels of different size, composition, and architecture, it can be utilized to develop complex 3D cell culture scaffolds of desired composition along with spatial control on the polymer composition. The synthesized pH sensitive carbon dots possess green fluorescence emission, which increases as the pH is lowered from neutral to acidic. Since the probe sensitivity to pH change is well within the physiologically relevant range (pH 5.8-7.7), the probe can be used for detecting a lowering of pH as the cells proliferate or undergo various biological processes. We demonstrate that the nanoprobes as well as the process of forming the microgel beads with nanoprobes and mammalian cells is biocompatible, and the cells easily proliferate inside the microgels. The changes in pH as the mammalian cells grow in the microgels is easily monitored via fluorescence microscopy, suggesting that the platform can be used to study time dependent changes in cellular microenvironment pH and can be easily utilized to monitor cellular growth, disease progression, etc.

摘要

我们在此报告一种基于三维细胞培养微凝胶的系统,该系统包含能够感知细胞微环境中pH变化的碳点。我们利用了一种基于简单液滴的微流控方法,将细胞和对pH敏感的荧光碳点封装在聚乙二醇微凝胶中。由于微流控组件由简单的部件开发而成,这些部件可以轻松修改以产生不同尺寸、组成和结构的微凝胶,因此它可用于开发具有所需组成的复杂三维细胞培养支架,并对聚合物组成进行空间控制。合成的对pH敏感的碳点具有绿色荧光发射,随着pH从中性降低到酸性,荧光发射增强。由于该探针对pH变化的敏感性完全在生理相关范围内(pH 5.8 - 7.7),因此该探针可用于检测细胞增殖或经历各种生物过程时pH的降低。我们证明了纳米探针以及用纳米探针和哺乳动物细胞形成微凝胶珠的过程具有生物相容性,并且细胞能够在微凝胶内轻松增殖。通过荧光显微镜可以轻松监测哺乳动物细胞在微凝胶中生长时pH的变化,这表明该平台可用于研究细胞微环境pH随时间的变化,并且可以轻松用于监测细胞生长、疾病进展等。

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