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Innovation in Drug Carriers: Supercooled Smectic Nanoparticles

机译:药物载体的创新:过冷的近晶纳米颗粒

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Supercooled smectic nanoparticles are under investigation as potential drag carrier systems. Lipid nanoemulsions have the disadvantage of insufficient stabilization whereas solid lipid nanoparticles suffer from disadvantages like low drug incorporation tendencies. Hence there was a need to develop new drug delivery systems which could overcome these disadvantages. Liquid crystalline state also called as mesophase, has macroscopic viscosity and a less orderly state than solids but greater than that of liquids. The liquid crystalline state is classified as nematic and smectic phase. In the smectic phase the molecules are aligned side by side forming a layer and this property of the smectic phase is made use in pharmaceuticals. The various components used include lipid matrices such as cholesteryl esters and stabilizer systems. High- pressure melt homogenization and solvent evaporation are the two widely used methods for their preparation. Drags, which can be incorporated, are mostly poorly water soluble drugs and drugs which possess very low recrystallization tendencies. In this review an attempt has been made to highlight composition, stabilizer systems, and matrix systems, method of preparation, characterization, applications and safety aspects of the supercooled smectic nanoparticles as drug carrier systems.
机译:正在研究过冷的近晶纳米颗粒作为潜在的阻力载体系统。脂质纳米乳剂具有稳定性不足的缺点,而固体脂质纳米颗粒具有诸如药物掺入趋势低的缺点。因此,需要开发可以克服这些缺点的新的药物输送系统。液晶态也称为中间相,具有宏观粘度,比固态的有序状态差,但比液态的状态大。液晶状态分为向列相和近晶相。在近晶相中,分子并排排列以形成层,并且近晶相的这种性质被用于药物中。所使用的各种成分包括脂质基质,例如胆固醇酯和稳定剂系统。高压熔体均质化和溶剂蒸发是制备它们的两种广泛使用的方法。可以掺入的药物主要是水溶性差的药物和具有非常低的重结晶趋势的药物。在本综述中,已经尝试强调过冷近晶纳米颗粒作为药物载体体系的组成,稳定剂体系和基质体系,制备方法,表征,应用和安全性。

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