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首页> 外文期刊>Current Nanoscience >Formulation Development of Chitosan Coated Intra Nasal Ropinirole Nanoemulsion for Better Management Option of Parkinson: An In Vitro Ex Vivo Evaluation
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Formulation Development of Chitosan Coated Intra Nasal Ropinirole Nanoemulsion for Better Management Option of Parkinson: An In Vitro Ex Vivo Evaluation

机译:壳聚糖包衣的鼻内罗匹尼罗纳米乳剂的配方开发为帕金森氏症的更好管理选择:体外评价

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摘要

Intranasal administration is a non-invasive and effective way for the delivery of drugs to brain that circumvents the blood-brain barrier (BBB). Taking this into account it was planned to formulate a thermodynamically stable and infinite dilutable nanoemulsion (o/w) encapsulating Ropinirole (rop), an anti-Parkinson drug, using a surfactant in a minimum concentration that could improve its solubility, stability and intransnasal flux. Various surfactants, co-surfactants and their mixtures were screened for their ability to emulsify the selected oil. Ternary phase diagrams were constructed to locate the area of nanoemulsion for. The optimized formulation contained 2 mg of Ropinirole along with Sefsol 218 (10% v/v), tween 80 (18% v/v), Transcutol (18% v/v) and water (54% v/v) as matrix, surfactant, co-surfactant and aqueous phase respectively. The optimized formulation showed adequate drug release (72.23±9.56%), globule size (58.61±5.18), polydispersity (0.201), viscosity (31.42±6.97 mpas), and infinite dispersion capability. The ex vivo study showed significant high (p<0.005) drug translocation in different parts of Wister rat brain. From in vitro, ex vivo and in vivo results conclude the promising approach of intranasal Ropinirole nanoemulsion as a better management option for Parkinson's disease.
机译:鼻内给药是一种无创且有效的将药物输送到大脑的方法,可以绕过血脑屏障(BBB)。考虑到这一点,计划使用一种最低浓度的表面活性剂来配制一种热力学稳定且无限稀释的纳米胶囊(o / w),以封装一种抗帕金森氏症的罗匹尼罗(rop),以提高其溶解度,稳定性和经鼻通量。筛选各种表面活性剂,助表面活性剂及其混合物,以使其乳化所选油的能力。构造三元相图以定位纳米乳液的区域。优化的配方包含2 mg罗匹尼罗以及Sefsol 218(10%v / v),吐温80(18%v / v),Transcutol(18%v / v)和水(54%v / v)作为基质,表面活性剂,辅助表面活性剂和水相。优化的配方显示出足够的药物释放(72.23±9.56%),小球尺寸(58.61±5.18),多分散性(0.201),粘度(31.42±6.9​​7 mpas)和无限的分散能力。这项离体研究显示,在Wister大鼠大脑的不同部位,药物的转运明显较高(p <0.005)。从体外,离体和体内结果可以得出鼻内罗匹尼罗纳米乳作为帕金森氏病更好的治疗选择的有希望的方法。

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