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Biocompatible Nanoplatform Based on Mussel Adhesive Chemistry: Effective Assembly, Dual Mode Sensing, and Cellular Imaging Performance
Author(s) -
Wu Nengtao,
Yu Aiwen,
Zhang Lingbo,
Liu Wanqiang,
Gao Jinwei,
Zhang Chengcheng,
Zheng Yuhui
Publication year - 2019
Publication title -
advanced materials interfaces
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.671
H-Index - 65
ISSN - 2196-7350
DOI - 10.1002/admi.201900732
Subject(s) - sodium borohydride , ethylenediamine , materials science , fluorescence , nanoparticle , luminescence , thiourea , hela , nanotechnology , nuclear chemistry , photochemistry , combinatorial chemistry , chemistry , inorganic chemistry , organic chemistry , in vitro , catalysis , biochemistry , physics , optoelectronics , quantum mechanics
The condensation reaction between methyldopa sesquihydrate and ethylenediamine is reported and the assembled nanoplatform possesses green luminescence at 520 nm with excitation‐independent feature. The employment of sodium borohydride during synthesis has stabilized the nanoparticle (NP) size and suppressed uncontrolled autoxidation processes. It is appealing to observe that the fluorescence as well as colorimetric titration demonstrates trace level monitoring of silver ions, and the detection limits are determined to be 68 × 10 −9 m (fluorometric) and 71 × 10 −9 m (colorimetric), respectively. The optical response to Ag + ions is assigned to a static quenching process and the corresponding redox reaction including particle aggregation may cause the “on‐off” change. During in vitro studies, two living cell lines (HeLa cells and T‐cells) are used and the negligible cytotoxicity of such NP is verified via flow cytometry and 3‐(4,5‐dimethythiazol‐. 2‐yl)‐2,5‐diphenyl tetrazolium bromide assays. More importantly, the visualization of silver recognition in two cells is realized and the availability of polydopamine‐type NPs for the purpose of bio‐medical evaluation can generate considerable interests in future studies.

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