| Literature DB >> 25714622 |
Menglin Wang1, Jin Sun2, Yinglei Zhai3, He Lian3, Cong Luo1, Lin Li1, Yuqian Du1, Dong Zhang1, Wenya Ding1, Shuhong Qiu1, Yuhai Liu1, Longfa Kou1, Xiangfei Han1, Rongwu Xiang3, Yongjun Wang1, Zhonggui He1.
Abstract
To improve the bioavailability of orally administered drugs, we synthesized a pH-sensitive polymer (poly(ethylene glycol)-poly(2-methyl-2-carboxyl-propylene carbonate)-vitamin E, mPEG-PCC-VE) attempting to integrate the advantages of enteric coating and P-glycoprotein (P-gp) inhibition. The aliphatic polycarbonate chain was functionalized with carboxyl groups and vitamin E via postpolymerization modification. Optimized by comparison and central composite design, mPEG113-PCC32-VE4 exhibited low critical micelle concentration of 1.7 × 10(-6) mg/mL and high drug loading ability for tacrolimus (21.2% ± 2.7%, w/w). The pH-responsive profile was demonstrated by pH-dependent swelling and in vitro drug release. Less than 4.0% tacrolimus was released under simulated gastric fluid after 2.5 h, whereas an immediate release was observed under simulated intestinal fluid. The mPEG113-PCC32-VE4 micelles significantly increased the absorption of P-gp substrate tacrolimus in the whole intestine. The oral bioavailability of tacrolimus micelles was 6-fold higher than that of tacrolimus solution in rats. This enteric polymer therefore has the potential to become a useful nanoscale carrier for oral delivery of drugs.Entities:
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Year: 2015 PMID: 25714622 DOI: 10.1021/bm501847u
Source DB: PubMed Journal: Biomacromolecules ISSN: 1525-7797 Impact factor: 6.988