Literature DB >> 23194396

Phytosomes loaded with mitomycin C-soybean phosphatidylcholine complex developed for drug delivery.

Zhenqing Hou1, Yang Li, Yuancan Huang, Chunxiao Zhou, Jinyan Lin, Yixiao Wang, Fei Cui, Shuifan Zhou, Mengmeng Jia, Shefang Ye, Qiqing Zhang.   

Abstract

A novel formulation system of phytosomes loaded with mitomycin C-soybean phosphatidylcholine (MMC-SPC) complex (MMC-loaded phytosomes) was prepared by a solvent evaporation method combined with a nanoprecipitation technique for the purpose of development of an MMC drug delivery system. The MMC-loaded phytosomes were evaluated by average particle size, zeta-potential, and residual drug-loading content as well as an in vitro drug release profile. Furthermore, in vitro stability tests and in vitro/vivo biological evaluations of the MMC-loaded phytosomes were performed. DSC, FTIR, and XRD demonstrated that MMC interacted physically with SPC within the phytosomes. DLS and ELS described a dispersion with an average particle size of 210.87 nm, a narrow size distribution (PDI 0.251), and a zeta-potential of -33.38 mV. SEM, TEM, and AFM images showed that the MMC-loaded phytosomes were spherical and intact vesicles. In vitro stability tests demonstrated that the average particle size and residual drug-loading content of the MMC-loaded phytosomes had no evident change at different storage conditions. In vitro drug release profiles indicated biphasic behavior with an initial burst release, followed by a subsequent prolonged sustained release. In vitro cytotoxicity assays with H(22) cells showed that the MMC-loaded phytosomes had remarkable cytotoxicity. In vivo antitumor effect of the MMC-loaded phytosomes also revealed a dose-dependent and superior curative inhibitory effect on tumor growth without loss of body weight compared to free MMC. Histopathological analysis of specimens taken from tumor tissues indicated that MMC-loaded phytosomes had lethal effect to hepatoma cell. These findings suggested that the MMC-loaded phytosomes can serve as a promising and effective formulation for drug delivery and cancer therapy.

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Year:  2012        PMID: 23194396     DOI: 10.1021/mp300489p

Source DB:  PubMed          Journal:  Mol Pharm        ISSN: 1543-8384            Impact factor:   4.939


  20 in total

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4.  Single-step assembly of polymer-lipid hybrid nanoparticles for mitomycin C delivery.

Authors:  Yunfeng Yi; Yang Li; Hongjie Wu; Mengmeng Jia; Xiangrui Yang; Heng Wei; Jinyan Lin; Shichao Wu; Yu Huang; Zhenqing Hou; Liya Xie
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7.  Phospholipid complex-loaded self-assembled phytosomal soft nanoparticles: evidence of enhanced solubility, dissolution rate, ex vivo permeability, oral bioavailability, and antioxidant potential of mangiferin.

Authors:  Darshan R Telange; Nazish K Sohail; Atul T Hemke; Prashant S Kharkar; Anil M Pethe
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8.  Design of a novel curcumin-soybean phosphatidylcholine complex-based targeted drug delivery systems.

Authors:  Jiajiang Xie; Yanxiu Li; Liang Song; Zhou Pan; Shefang Ye; Zhenqing Hou
Journal:  Drug Deliv       Date:  2017-11       Impact factor: 6.419

9.  Lyophilized phytosomal nanocarriers as platforms for enhanced diosmin delivery: optimization and ex vivo permeation.

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Journal:  Int J Nanomedicine       Date:  2013-07-03

10.  Phytosome-hyaluronic acid systems for ocular delivery of L-carnosine.

Authors:  Hamdy Abdelkader; Michael R Longman; Raid G Alany; Barbara Pierscionek
Journal:  Int J Nanomedicine       Date:  2016-06-14
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