Drug Delivery | |
Sericin nanomicelles with enhanced cellular uptake and pH-triggered release of doxorubicin reverse cancer drug resistance | |
Tian Lin1  Weihong Guo1  Hao Chen1  Zhaoyu Chen1  Guoxin Li1  Jiang Yu1  Hao Liu1  Mingli Zhao1  Yanfeng Hu1  Tuanjie Li1  Yanghee Woo2  Lizhi Deng3  Liming Zhang3  | |
[1] Department of General Surgery, Nanfang Hospital, Southern Medical University, Guangzhou, PR China;Department of Surgery, City of Hope National Medical Center, Duarte, CA, US;PCFM Lab and GDHPPC Laboratory, School of Materials Science and Engineering, Sun Yat-sen University, Guangzhou, PR China; | |
关键词: Sericin; pH-responsive; micelle; drug resistance; doxorubicin; | |
DOI : 10.1080/10717544.2018.1469686 | |
来源: publisher | |
【 摘 要 】
Drug resistance is the major challenge facing cancer chemotherapy and nanoscale delivery systems based on natural materials, such as sericin, are a promising means of overcoming drug resistance. Yet, no attempt of introducing synthetic poly(γ-benzyl-L-glutamate) (PBLG) onto sericin polypeptide to fabricate a facile biocompatible and biodegradable micelle has been tried. Here, we prepared a polypeptide-based amphiphilic polymer containing hydrophilic sericin polypeptide backbone and PBLG side chains via ring-opening polymerization (ROP) strategy. The introduction of PBLG side chains remarkably enhances the stability of sericin micelles in water. Meanwhile, the micelles exhibited a high loading capacity and pH-responsive release ability for antitumor drug doxorubicin (DOX), called sericin-PBLG-DOX. Owing to the excellent cell membrane penetration of sericin-PBLG, the cellular uptake of DOX when loaded into micelles was improved. Subsequently, sericin-PBLG-DOX was transferred into perinuclear lysosomes, where the release rate of DOX was accelerated. Compared to the same dose of DOX, sericin-PBLG-DOX could induce a more efficient anti-tumor effect both in vitro and in vivo, and these micelles have promise for future clinical applications in overcoming cancer drug resistance with good biosafety, enhanced cellular uptake, pH-triggered drug release, efficient anti-tumor effects, and minimized systemic toxicity.
【 授权许可】
CC BY
【 预 览 】
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RO202004231077394ZK.pdf | 2369KB | download |