Pilot-Scale Technology for Obtaining a Substance of Lipid-Stabilized Nanoparticles Containing a Complex of Biologically Active Substances Isolated from Gland Secretion of Musk Deer with Specified Stability Parameters

S. L. Lyublinskiy, I. N. Lyublinskaya, E. Koloskova, L. F. Keremetskaya, A. Azizov, V. Karkischenko, M. Nesterov, A. V. Kaptsov, A. V. Sharabanov, R. Ageldinov, V. N. Gerasimov
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Abstract

In the course of improving the pilot-scale technology for manufacturing a liposomal substance of biologically active substances (BAS) isolated from the gland secretion of musk deer, the authors established operations and modes to ensure the production of liposomes with the specified stability parameters (shape, hydrodynamic diameter, charge, and polydispersity index) in full compliance with GMP requirements and the maximum inclusion of BAS from deer musk into liposomes with the preservation of the initial biological activity of its most important components. The established modes provide for a two-fold reduction in the technological cycle duration with the substance yield of more than 90%. The improved technology ensures the production of at least 80% of liposomes with the main liposome fraction in experimental samples in the range of 200+50 nm and 250+100 nm for the final substance (before lyophilization) and after its recovery (rehydration), respectively, which is considered optimal for transmucosal drug administration. The polydispersity index was less than 0.3, and the zeta (Z)-potential was less than -35 mV. The quality indicators characterizing the dispersity of the resulting liposomal substance were studied by conventional analytical methods (dynamic light scattering, electron microscopy). On the basis of the obtained results, a draft specification for a liposomal substance (powder) containing a complex of BAS isolated from deer musk was finalized.
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从麝腺体分泌物中提取含有生物活性物质复合物的脂质稳定纳米颗粒的中试技术,具有特定的稳定性参数
在对麝鹿腺分泌物生物活性物质(BAS)脂质体的中试生产工艺进行改进的过程中,建立了保证脂质体的生产具有规定的稳定性参数(形状、流体动力学直径、电荷、和多分散性指数)完全符合GMP要求,并最大限度地将鹿香中的BAS包含到脂质体中,同时保留了其最重要成分的初始生物活性。所建立的模式可将技术周期缩短两倍,物质收率超过90%。改进后的技术可确保在200+50 nm和250+100 nm范围内生产至少80%的脂质体,其中实验样品中的主要脂质体部分分别用于最终物质(冻干前)和回收后(再水化),这被认为是经黏膜给药的最佳选择。多分散性指数小于0.3,zeta (Z)电位小于-35 mV。采用常规分析方法(动态光散射、电子显微镜)对表征所得脂质体物质分散性的质量指标进行了研究。在所得结果的基础上,确定了从麝麝香中分离出的含有BAS复合物的脂质体物质(粉末)的规范草案。
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