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Ryu, Ja-Hyoung
Supramolecular Nanomaterials Lab.
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Cancer-Selective Supramolecular Chemotherapy by Disassembly-Assembly Approach

Author(s)
Jeena, M.T.Jin, SungeonJeong, KeunsooCho, YuriKim, Jin ChulLee, Jeong HyeonLee, SeokyoungHwang, Suk-WonKwak, Sang KyuKim, SehoonRyu, Ja-Hyoung
Issued Date
2022-12
DOI
10.1002/adfm.202208098
URI
https://scholarworks.unist.ac.kr/handle/201301/59755
Fulltext
https://onlinelibrary.wiley.com/doi/10.1002/adfm.202208098
Citation
ADVANCED FUNCTIONAL MATERIALS, v.32, no.52, pp.2208098
Abstract
Intramitochondrial supramolecular assembly can be a new therapeutic strategy for treating cancer because mitochondria are the key for virtually all facets of the tumorigenesis. However, the in vivo applications of mitochondria-targeting molecules are limited due to the positive charge and hydrophobicity that should be possessed by these molecules to penetrate the mitochondrial membrane, which may induce nonspecific serum protein interactions and normal cell accumulation. Herein, a stimuli-responsive mitochondria-targeting molecule, Mito-SA that forms nano-sized micelles under physiological conditions is presented. In the aggregated state, the succinic amide bonds in Mito-SA are cleaved in response to tumoral pH by stabilizing the transition state through the intermolecular interactions and the micelle disassembles into a mitochondria-targeting parent molecule, Mito-FF. The Mito-FF accumulate inside cancer mitochondria to induce cell death by intra-mitochondrial self-assembly into fiber structures. This tumoral stimuli-responsive disassembly–assembly approach will provide insight to develop mitochondria targeted supramolecular anticancer agent with high tumoral specificity.
Publisher
John Wiley & Sons Ltd.
ISSN
1616-301X
Keyword (Author)
assembly-disassemblycancer cell deathenhanced specificitiesintra-mitochondrial assembliespH stimuli
Keyword
MOLECULESMECHANISMPEPTIDESDYNAMICSCELLS

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