Lysosome-Instructed Self-Assembly of Amino-Acid-Functionalized Perylene Diimide for Multidrug-Resistant Cancer Cells

  • Keum, Changjoon
  • Hong, Jiyoung
  • Kim, Doyeon
  • Lee, Sang-Yup
  • Kim, Hyuncheol
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35

초록

Multidrug resistance (MDR) of cancer cells reduces chemotherapeutic efficacy by preventing drug accumulation in the cells through a drug efflux pump and lysosomal sequestration/exocytosis. Herein, to overcome such anticancer resistance, lysosome-targeted self-assembly of perylene diimide (PDI) derivatives is presented as a powerful strategy for effective and selective anticancer therapy. Stimulated by the lysosomal low pH, the amphiphilic PDI derivatives functionalized with amino acids (PDI-AAs) construct fibrous self-assembled structures inside the lysosomes, causing cancer cell apoptosis by lysosomal rupture. In contrast, negligible apoptosis was observed from normal cells by PDI-AA. The agglomerated fibrous assemblies were not removed by lysosomal exocytosis, thereby displaying a 10.7-fold higher anticancer efficacy on MDR cancer cells compared to a doxorubicin chemotherapeutic agent. The MDR-circumventing capability, along with high selectivity toward cancer cells, supports PDI-AAs as potential candidates for the treatment of MDR cancer cells by lysosometargeted self-assembly.

키워드

lysosomecancerself-assemblyperylene diimidemultidrug resistanceDRUG-RESISTANCEAGGREGATIONDERIVATIVES
제목
Lysosome-Instructed Self-Assembly of Amino-Acid-Functionalized Perylene Diimide for Multidrug-Resistant Cancer Cells
저자
Keum, ChangjoonHong, JiyoungKim, DoyeonLee, Sang-YupKim, Hyuncheol
DOI
10.1021/acsami.0c20050
발행일
2021-04
유형
Article
저널명
ACS Applied Materials and Interfaces
13
13
페이지
14866 ~ 14874