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Colourimetric redox-polyaniline nanoindicator for in situ vesicular trafficking of intracellular transport

Authors
Choi, Eun BiChoi, JihyeBae, Seo RyungKim, Hyun-OukJang, EunjiKang, ByunghoonKim, Myeong-HoonKim, ByeongyoonSuh, Jin-SuckLee, KwangyeolHuh, Yong-MinHaam, Seungjoo
Issue Date
Apr-2015
Publisher
TSINGHUA UNIV PRESS
Keywords
redox; pH; intracellular compartments; organic quencher; conducting polymer; nanoindicator
Citation
NANO RESEARCH, v.8, no.4, pp.1169 - 1179
Indexed
SCIE
SCOPUS
Journal Title
NANO RESEARCH
Volume
8
Number
4
Start Page
1169
End Page
1179
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/93988
DOI
10.1007/s12274-014-0597-6
ISSN
1998-0124
Abstract
Vesicular pH modulates the function of many organelles and plays a pivotal role in cell metabolism processes such as proliferation and apoptosis. Here, we introduce a simple colorimetric redox-polyaniline nanoindicator, which can detect and quantify a broader biogenic pH range with superior sensitivity compared to pre-established trafficking agents employing one-dimensional turn-on of the fluorescence resonance-energy-transfer (FRET) signal. We fabricated polyaniline-based nanoprobes, which exhibited convertible transition states according to the proton levels, as an in situ indicator of vesicular transport pH. Silica-coated Fe3O4-MnO heterometal nanoparticles were synthesised and utilised as a metal oxidant to polymerise the aniline monomer. Finally, silica-coated polyaniline nanoparticles with adsorbed cyanine dye fluorophores Cy3 and Cy7 (FPSNICy3 and FPSNICy7) were fabricated as proton-sensitive nanoindicators. Owing to the selective quenching induced by the local pH variations of vesicular transport, FPSNICy3 and FPSNICy7 demonstrated excellent intracellular trafficking and provided sensitive optical indication of minute proton levels.
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