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Folic acid-targeted disulfide-based cross-linking micelle for enhanced drug encapsulation stability and site-specific drug delivery against tumors

delete2016-01-01
delete34
PRE
AI
Z
Zhang, Yumin
Z
Zhou, Junhui
Y
Yang, CH
王威威 cover
王威威 (Weiwei Wang)
C
Chu, Liping
F
Fan Huang
刘强 cover
刘强 (Qiang Liu)
D
Deng, Liandong
K
Kong, Deling
刘鉴峰 (Liu, Jianfeng)
L
Liu, Jinjian *
DOI:10.2147/UN.S101649delete
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Abstract

Abstract

En 中文
Although the shortcomings of small molecular antitumor drugs were efficiently improved by being entrapped into nanosized vehicles, premature drug release and insufficient tumor targeting demand innovative approaches that boost the stability and tumor responsiveness of drug-loaded nanocarriers. Here, we show the use of the core cross-linking method to generate a micelle with enhanced drug encapsulation ability and sensitivity of drug release in tumor. This kind of micelle could increase curcumin (Cur) delivery to HeLa cells in vitro and improve tumor accumulation in vivo. We designed and synthesized the core cross-linked micelle (CCM) with polyethylene glycol and folic acid-polyethylene glycol as the hydrophilic units, pyridyldisulfide as the cross-linkable and hydrophobic unit, and disulfide bond as the cross-linker. CCM showed spherical shape with a diameter of 91.2 nm by the characterization of dynamic light scattering and transmission electron microscope. Attributed to the core cross-linking, drug-loaded CCM displayed higher Nile Red or Cur-encapsulated stability and better sensitivity to glutathione than noncross-linked micelle (NCM). Cellular uptake and in vitro antitumor studies proved the enhanced endocytosis and better cytotoxicity of CCM-Cur against HeLa cells, which had a high level of glutathione. Meanwhile, the folate receptor-mediated drug delivery (FA-CCM-Cur) further enhanced the endocytosis and cytotoxicity. Ex vivo imaging studies showed that CCM-Cur and FA-CCM-Cur possessed higher tumor accumulation until 24 hours after injection. Concretely, FA-CCM-Cur exhibited the highest tumor accumulation with 1.7-fold of noncross-linked micelle Cur and 2.8-fold of free Cur. By combining cross-linking of the core with active tumor targeting of FA, we demonstrated a new and effective way to design nanocarriers for enhanced drug encapsulation, smart tumor responsiveness, and elevated tumor accumulation.
Keywords:
core cross-linking
folic acid targeting
self-assembling
curcumin
drug delivery
micelles

Journal

International Journal of Nanomedicine cover
International Journal of Nanomedicine
IF:
6.5
Papers:
8.5K
Citations:
4.2W

Organization

I
institute of radiation medicine - cams
Scholars:
253
Papers: 191
Citations: 0
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