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A more efficient ocular delivery system of triamcinolone acetonide as eye drop to the posterior segment of the eye

机译:曲安奈德作为眼药水到眼后段的更有效的眼部递送系统

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摘要

As a leading cause of vision impairment of the retina, macular edema (ME) has one of the highest clinical demands for treatment. Current treatment of ME relies heavily on invasive techniques resulting in complications and poor patient compliance. To enhance the efficiency of triamcinolone acetonide as eye drop to the posterior segment of the eye, we developed and characterized a novel formulation, namely, triamcinolone acetonide chitosan-coated liposomes (TA-CHL), prepared by the calcium acetate gradient method with some modifications. TA-CHL provided the mean particle size of 135.46 ± 4.49 nm and high entrapment efficiency (90.66 ± 3.21%), exhibited a sustained release profile, excellent physical stability, and no significant toxicity on cornea, conjunctiva, and retina. Optical coherence tomography system (OCT) was used to detect pharmacokinetics of CHL in vivo, indicating that CHL had good potency for drug delivery. Cellular uptake experiments showed CHL had the higher transduction efficiency into HCEC and ARPE-19 than liposomes. TA-CHL was shown to be potentially effective eye drop to contribute to the posterior segment of the eye.
机译:黄斑水肿(ME)是视网膜视力损害的主要原因,是治疗的最高临床需求之一。当前对ME的治疗严重依赖于侵入性技术,导致并发症和患者依从性差。为了提高醋酸曲安奈德滴眼液到眼后段的效率,我们开发并表征了一种新配方,即醋酸曲安奈德壳聚糖包衣的脂质体(TA-CHL),通过醋酸钙梯度法制备,并作了一些改进。 TA-CHL的平均粒径为135.46±4.49 nm,具有较高的包封率(90.66±3.21%),具有持续释放的特性,极好的物理稳定性,对角膜,结膜和视网膜无明显毒性。光学相干断层扫描系统(OCT)用于检测CHL在体内的药代动力学,表明CHL具有良好的药物递送效能。细胞摄取实验表明,CHL对HCEC和ARPE-19的转导效率高于脂质体。 TA-CHL被证明是潜在有效的滴眼剂,可促进眼后段。

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