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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Nanostructured liquid crystalline particles provide long duration sustained-release effect for a poorly water soluble drug after oral administration
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Nanostructured liquid crystalline particles provide long duration sustained-release effect for a poorly water soluble drug after oral administration

机译:纳米结构的液晶颗粒可在口服后为水溶性差的药物提供长效持续释放作用

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摘要

This study is the first to demonstrate the ability of nanostructured liquid crystal particles to sustain the absorption of a poorly water soluble drug after oral administration. Cubic (V_2) liquid crystalline nanostructured particles (cubosomes) formed from phytantriol (PHY) were shown to sustain the absorption of cinnarizine (CZ) beyond 48 h after oral administration to rats. Plasma concentrations were sustained within the range of 21.5 ± 1.5 ng/mL from 12 to 48 h. In stark contrast, cubosomes prepared using glyceryl monooleate (GMO) did not sustain the absorption of CZ and drug concentrations fell below quantifiable levels after 24 h. Sustained absorption of CZ from PHY cubosomes lead to a significant enhancement (p < 0.05) in oral bioavailability (F% = 21%) compared to a CZ suspension (9%) and oleic acid emulsion (12%). Analysis of the nanostructured particles in simulated gastric and intestinal fluids using small angle x-ray scattering (SAXS) revealed that the V_2Pn3m nanostructure of PHY cubosomes was maintained for extended periods of time, in contrast to GMO cubosomes where the V_2Im3m nanostructure was lost within 18 h after exposure, suggesting that degradation of the LC nanostructure may limit sustained drug release. In addition, PHY cubosomes were shown to be extensively retained in the stomach (> 24 h) leading to the conclusion that in the case of non-digestible PHY cubosomes, the stomach may act as a non-sink reservoir that facilitates the slow release of poorly water soluble drugs, highlighting the potential use of non-digestible LC nanostructured particles as novel sustained oral drug delivery systems.
机译:这项研究是第一个证明纳米结构液晶颗粒在口服后能够维持水溶性差的药物吸收的能力。由植物三醇(PHY)形成的立方(V_2)液晶纳米结构颗粒(cubosomes)被证明对大鼠口服后48 h可以维持肉桂酸(CZ)吸收。在12至48小时内,血浆浓度维持在21.5±1.5 ng / mL的范围内。与之形成鲜明对比的是,使用甘油单油酸酯(GMO)制备的立方脂质体无法维持CZ的吸收,并且24小时后药物浓度降至可量化的水平以下。与CZ悬浮液(9%)和油酸乳剂(12%)相比,从PHY cubosomes持续吸收CZ导致口服生物利用度显着提高(P <0.05)(F%= 21%)。使用小角度X射线散射(SAXS)对模拟的胃液和肠液中的纳米结构颗粒进行分析,结果表明PHY cubicsomes的V_2Pn3m纳米结构可以保持较长的时间,而GMO cubicsomes的V_2Im3m纳米结构会在18分钟内丢失暴露后h,表明LC纳米结构的降解可能会限制药物的持续释放。此外,PHY cubicsomes被证明在胃中广泛保留(> 24小时),从而得出结论,在非消化性PHY cubicsomes的情况下,胃可作为不吸收水的储库,从而促进缓慢释放水溶性差的药物,强调了不可消化的LC纳米结构颗粒作为新型持续口服药物输送系统的潜在用途。

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