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首页> 外文期刊>Journal of Pharmacy and Pharmacology >Improvement in dissolution rate and photodynamic efficacy of chlorin e6 by sucrose esters as drug carrier in nanosuspension formulation: optimisation and in vitro in vitro characterisation
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Improvement in dissolution rate and photodynamic efficacy of chlorin e6 by sucrose esters as drug carrier in nanosuspension formulation: optimisation and in vitro in vitro characterisation

机译:通过蔗糖酯作为载体酯丙烯E6作为纳米缺失制剂的药物载体的溶出速率和光动力学功效:优化和体外体外特征

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Abstract Objectives Chlorin e6 is a poorly water‐soluble photoactive drug. Its monomers form aggregates at the tumour physiological pH , which drastically reduces its photodynamic efficacy. This study aimed to improve the dissolution rate and photodynamic efficacy of chlorin e6 by nanosuspension formulation using biodegradable sucrose esters as drug carrier. Methods A modified emulsion‐solvent diffusion method was used to prepare the nanosuspension, where amount of Ce6, ratio of sucrose monopalmitate to sucrose monolaurate as carrier and ratio of dichloromethane to acetone as solvent, were varied using central composite design. Particle size, zeta potential, encapsulation efficiency and in vitro drug release characteristics of the nanosuspensions were evaluated. The formulation was optimised by response surface methodology and its photodynamic efficacy evaluated. Key findings The optimised nanosuspension had mean particle size of ~200 nm, 88% drug encapsulation efficiency and faster drug release compared to pure Ce6. Spectroscopic studies showed that Ce6 exists in monomeric form in the carrier, which facilitated a remarkable increase in cellular uptake, in vitro singlet oxygen generation and cytotoxicity to oral squamous carcinoma cells. Conclusions The dissolution rate and photodynamic efficacy of Ce6 were markedly improved by formulating the drug as a nanosuspension with sucrose esters as drug carrier.
机译:摘要目的氯e6是一种不良水溶性的光活性药物。其单体在肿瘤生理pH下形成聚集体,其大大降低了其光动力学功效。本研究旨在通过可生物降解的蔗糖酯作为药物载体来改善纳米溶液制剂的氯e6的溶出速率和光动力学效果。方法采用改性乳液 - 溶剂扩散法制备纳米溶液,其中Ce6的量,蔗糖单次单位酸盐作为载体和二氯甲烷与丙酮作为溶剂的比例,用中央复合设计变化。评价粒径,Zeta电位,封装效率和纳米皂甙的体外药物释放特性。通过响应面方法和其光动力学功效进行了优化了制剂。主要发现优化的纳米血清术的粒径为〜200nm,药物包封效率为88%,与纯CE6相比,药物释放更快。光谱研究表明,CE6存在于载体中的单体形式,其促进了蜂窝摄取,体外零次含氧和细胞毒性的显着增加,对口腔鳞状癌细胞。结论CE6的溶出速率和光动力学功效通过用蔗糖酯作为药物载体将药物作为纳米柱沉积而显着改善。

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