OPTIMIZATION OF THE METHOD FOR OBTAINING NANOCAPSULES, DEVELOPMENT OF THE METHODS OF DETERMINING THE DEGREE OF CINNARIZINE INCLUSION IN A PROLONGED DOSAGE FORM BASED ON POLY-D, L-LACTID-CO-GLICOLIDE, AND ITS VALIDATION

M. V. Sorokoumova, N. V. Blagorazumnaya, V. A. Kompantsev, L. I. Shcherbakova, N. S. Zyablitseva, Yu. G. Medvetskaya, T. M. Vasina, K. A. Miroshnichenko
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Abstract

Common pathologies of the cardiovascular system are cerebrovascular disorders, for which cinnarizine is prescribed. An innovative, prolonged nanocapsule dosage form based on poly-D, L-lactide-co-glycolide (PLGA) has been developed.The aim of the research was improvement of the technology and development of the methods for determining the level of cinnarizine inclusion in nanocapsules. The research problem consisted of a great number of drug encapsulation peculiarities, as well as various physicochemical properties of the substances that cannot be taken into account in the existing methods of determination.Materials and methods. In the study, the following substances were used: cinnarizine, PLGA (50:50), polyvinyl alcohol (PVA). The remaining reagents and solvents fitted into the category of chemically pure. For development of the methods for quantitative determination of cinnarizine and its validation, a spectrophotometric method of analysis was used. Model mixtures used as objects of the study, had been prepared. Validation assessment of the methods was carried out upon such indicators as specificity, linearity, detection limit, repeatability, reproducibility.Results. Methods for spectrophotometric determination of the degree of cinnarizine inclusion has been developed. It has been established that encapsulation reaches 63.74%. Validation testing methods has been carried out. The results of such tests as specificity, linearity, detection limit, repeatability, reproducibility correspond to the safe range of values regulated by Product specification file. Due to the impossibility of determining the degree of cinnarizine inclusion on the basis of standard methods of preparation, the technology of producing nanocapsules has been adjusted.Conclusion. The technology has been optimized and new techniques have been developed. Taking into account the characteristics of production and the physicochemical properties of the components, they make a reliable analysis of the degree of cinnarizine inclusion in nanocapsules possible. The relative error of the developed methods of determination does not exceed ± 2.67%. Based on the results of the validation assessment, this methods is valid for all indicators. 
优化了纳米胶囊的制备方法,建立了以聚d - l -乳酸- co - glicolide为基础的长剂型肉桂碱包合度测定方法,并对其进行了验证
常见的心血管疾病是脑血管疾病,肉桂碱是处方。一种创新的,长效纳米胶囊剂型的基础上,聚d, l -丙交酯-乙醇酸酯(PLGA)已经开发。研究的目的是改进纳米胶囊中肉桂碱包合量的测定技术和方法。研究问题包括大量的药物包封特性,以及物质的各种物理化学性质,这些性质在现有的测定方法中无法考虑到。材料和方法。在研究中,使用了以下物质:肉桂碱,PLGA(50:50),聚乙烯醇(PVA)。其余的试剂和溶剂属于化学纯的范畴。为建立肉桂碱的定量测定方法并对其进行验证,采用分光光度法。作为研究对象的模型混合物已经准备好。从特异性、线性度、检出限、重复性、重现性等指标对方法进行了验证性评价。建立了分光光度法测定肉桂碱包合度的方法。结果表明,包封率达63.74%。已经进行了验证测试方法。特异性、线性度、检出限、重复性、再现性等试验结果符合产品规范文件规定的安全范围。由于不能根据标准的制备方法测定肉桂碱包合度,对纳米胶囊的生产工艺进行了调整。对工艺进行了优化,开发了新的工艺。考虑到生产的特点和成分的物理化学性质,它们使得对纳米胶囊中肉桂碱包合程度的可靠分析成为可能。所建立的方法的相对误差不超过±2.67%。验证性评价结果表明,该方法对所有指标均有效。
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