首页> 外文期刊>Journal of Drug Delivery and Therapeutics >INNOVATIVE GROWTH IN DEVELOPING NEW METHODS FOR FORMULATING SOLID LIPID NANOPARTICLES AND MICROPARTICLES
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INNOVATIVE GROWTH IN DEVELOPING NEW METHODS FOR FORMULATING SOLID LIPID NANOPARTICLES AND MICROPARTICLES

机译:开发创新的固体脂质纳米颗粒和微颗粒配方新方法

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The solid lipid nanopaticles are the colloidal drug delivery system which is spherical in shape and present in 10-1000nm particle sized range. The surfactant is used to stabilize the solid lipid nanoparticles to avoid aggregation. The Co-surfactant was used in addition to increase the micelles concentration. The optimization of surfactant concentration was used to stabilize the nanoparticles and microparticles formed and to decrease the particle size by decrease the aggregation. The manufacturing methods of the SLN are of four types, the high pressure homogenization which is further divides into two types hot homogenization method and cold homogenization method, Solvent-Diffusion evaporation method, ultrasonication method, and membrane contactor method. The non-uniform particles sizes were obtained from high pressure and ultra-sonication methods but the solvent-Diffusion Evaporation method and membrane contactor methods give uniform sized particles. But disadvantages of the later methods are the toxicity of organic solvent if not evaporates completely from the SLNs and the high cost of membrane contactor instrument is there in the formulation of SLNs. While the ultra-turrax and high pressure homogenization methods are the safest methods to use as compared to Solvent-Diffusion Evaporation method. The unpublished results have indicated that the drug release from the HPH and ultra-sonication gave highest drug release as compared to marketed conventional gel and formulation obtained by Solvent-Diffusion Evaporation method.
机译:固体脂质纳米颗粒是胶体药物递送系统,其是球形的并且存在于10-1000nm的粒径范围内。表面活性剂用于稳定固体脂质纳米颗粒以避免聚集。除了增加胶束浓度外,还使用了辅助表面活性剂。使用表面活性剂浓度的优化来稳定形成的纳米颗粒和微粒,并通过减少聚集来减小粒径。 SLN的制造方法有四种,高压均质法又分为热均质法和冷均质法,溶剂扩散蒸发法,超声法和膜接触器法两种。颗粒尺寸不均匀是通过高压和超声方法获得的,但溶剂扩散蒸发方法和膜接触器方法则可以得到均匀尺寸的颗粒。但是,后一种方法的缺点是,如果不能从SLN中完全蒸发掉,有机溶剂的毒性就很大,并且在SLN配方中膜接触器仪器的成本很高。与溶剂扩散蒸发法相比,超turrax和高压均质法是最安全的方法。未公开的结果表明,与市售的常规凝胶和通过溶剂扩散蒸发法获得的制剂相比,HPH和超声处理的药物释放具有最高的药物释放。

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