OAK

Photosensitizer-peptoid conjugates for photoinactivation of Gram-negative bacteria: structure-activity relationship and mechanistic studies

Metadata Downloads
Abstract
Multitarget engagement is considered an effective strategy to overcome the threat of bacterial infection, and antimicrobials with multiple mechanisms of action have been successful as natural chemical weaponry. Here, we synthesized a library of photosensitizer-peptoid conjugates (PsPCs) as novel antimicrobial photodynamic therapy (aPDT) agents. The peptoids, linkers, and photosensitizers were varied, and their structure-antimicrobial activity relationships againstEscherichia coliwere evaluated; PsPC9was indicated to be the most promising photoresponsive antimicrobial agent among the synthesized PsPCs. Spectroscopic analyses indicated that9generated singlet oxygen upon absorption of visible light (420 nm) while maintaining the weakly helical conformation of the peptoid. Mechanistic studies suggested that damage to the bacterial membrane and cleavage of DNA upon light irradiation were the main causes of bactericidal activity, which was supported by flow cytometry and DNA gel electrophoresis experiments. We demonstrated that the optimal combination of membrane-active peptoids and photosensitizers can generate an efficient aPDT agent that targets multiple sites of bacterial components and kills bacteria by membrane disruption and reactive oxygen species generation.
Author(s)
Woojin YangYounggun YoonYunjee LeeHyeongyeol OhJieun ChoiSujin ShinSeongsoo LeeHohjai LeeYunho LeeJiwon Seo
Issued Date
2021-08
Type
Article
DOI
10.1039/d1ob00926e
URI
https://scholar.gist.ac.kr/handle/local/11379
Publisher
Royal Society of Chemistry
Citation
Organic and Biomolecular Chemistry, v.19, no.29, pp.6546 - 6557
ISSN
1477-0520
Appears in Collections:
Department of Chemistry > 1. Journal Articles
Department of Environment and Energy Engineering > 1. Journal Articles
공개 및 라이선스
  • 공개 구분공개
파일 목록
  • 관련 파일이 존재하지 않습니다.

Items in Repository are protected by copyright, with all rights reserved, unless otherwise indicated.