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Improving Plasma Stability and Bioavailability In Vivo of Gemcitabine Via Nanoparticles of mPEG-PLG-GEM Complexed with Calcium Phosphate.

Wei ChuPengqian TianNing DingQing CaiJinlong LiXuezhi ZhuoZhaohui TangJingxin GouTian YinYu ZhangHaibing HeYanjiao Wang
Published in: Pharmaceutical research (2018)
The amide bond linked gemcitabine polymers was able to protect GEM from cytidine deaminase degradation in vivo, and the skeleton formed by the calcium phosphate enhanced the stability and prolonged the half-life of GEM. Importantly, mPEG-PLG-GEM/CaP nanoparticles elevated the GEM plasma concentration in an animal model.
Keyphrases
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  • walled carbon nanotubes