상세 보기
Self-Activating Therapeutic Nanoparticle: A Targeted Tumor Therapy Using Reactive Oxygen Species Self-Generation and Switch-on Drug Release
- Kang, Rae Hyung;
- Kim, Yumi;
- Kim, Ji Hyeon;
- Kim, Na Hee;
- Ko, Hyun Min;
- ... Kim, Jong Seung;
- 외 4명
WEB OF SCIENCE
20SCOPUS
21초록
One of the recent advances in nanotechnology within the medical field is the development of a nanoformulation of anticancer drugs or photosensitizers. Cancer cell-specific drug delivery and upregulation of the endogenous level of reactive oxygen species (ROS) are important in precision anticancer treatment. Within our article, we report a new therapeutic nanoformulation of cancer cell targeting using endogenous ROS self-generation without an external initiator and a switch-on drug release (ROS-induced cascade nanoparticle degradation and anticancer drug generation). We found a substantial cellular ROS generation by treating an isothiocyanate-containing chemical and functionalizing it onto the surface of porous silicon nanoparticles ( pSiNPs) that are biodegradable and ROS-responsive nanocarriers. Simultaneously, we loaded an ROS-responsive prodrug (JS-11) that could be converted to the original anticancer drug, SN-38, and conducted further surface functionalization with a cancer-targeting peptide, CGKRK. We demonstrated the feasibility as a cancer-targeting and self-activating therapeutic nanoparticle in a pancreatic cancer xenograft mouse model, and it showed a superior therapeutic efficacy through ROS-induced therapy and drug-induced cell death. The work presented is a new concept of a nanotherapeutic and provides a more feasible clinical translational pathway.
키워드
- 제목
- Self-Activating Therapeutic Nanoparticle: A Targeted Tumor Therapy Using Reactive Oxygen Species Self-Generation and Switch-on Drug Release
- 저자
- Kang, Rae Hyung; Kim, Yumi; Kim, Ji Hyeon; Kim, Na Hee; Ko, Hyun Min; Lee, Seung-Hyeon; Shim, Inseob; Kim, Jong Seung; Jang, Hyeung-Jin; Kim, Dokyoung
- 발행일
- 2021-07-07
- 유형
- Article
- 권
- 13
- 호
- 26
- 페이지
- 30359 ~ 30372