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Solid lipid nanoparticles and nanostructured lipid carriers--innovative generations of solid lipid carriers.

机译:固体脂质纳米颗粒和纳米结构脂质载体-固体脂质载体的创新世代。

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The first generation of solid lipid carrier systems in nanometer range, Solid Lipid Nanoparticles (SLN), was introduced as an alternative to liposomes. SLN are aqueous colloidal dispersions, the matrix of which comprises of solid biodegradable lipids. SLN are manufactured by techniques like high pressure homogenization, solvent diffusion method etc. They exhibit major advantages such as modulated release, improved bioavailability, protection of chemically labile molecules like retinol, peptides from degradation, cost effective excipients, improved drug incorporation and wide application spectrum. However there are certain limitations associated with SLN, like limited drug loading capacity and drug expulsion during storage, which can be minimized by the next generation of solid lipids, Nanostructured lipid carriers (NLC). NLC are lipid particles with a controlled nanostructure that improves drug loading and firmly incorporates the drug during storage. Owing to their properties and advantages, SLN and NLC may find extensive application in topical drug delivery, oral and parenteral administration of cosmetic and pharmaceutical actives. Cosmeceuticals is emerging as the biggest application target of these carriers. Carrier systems like SLN and NLC were developed with a perspective to meet industrial needs like scale up, qualification and validation, simple technology, low cost etc. This paper reviews present status of SLN and NLC as carrier systems with special emphasis on their application in Cosmeceuticals; it also gives an overview about various manufacturing techniques of SLN and NLC.
机译:作为脂质体的替代品,引入了纳米级的第一代固体脂质载体系统,即固体脂质纳米颗粒(SLN)。 SLN是水性胶体分散体,其基质包含可生物降解的固体脂质。 SLN通过高压均质化,溶剂扩散法等技术制造。它们具有主要优势,例如调节释放,改善的生物利用度,保护视黄醇等化学不稳定分子,肽免于降解,成本有效的赋形剂,改善的药物掺入和广泛的应用范围。但是,SLN存在某些局限性,例如有限的药物装载能力和储存期间的药物排出,可以通过下一代固体脂质纳米结构脂质载体(NLC)来最小化。 NLC是具有受控纳米结构的脂质颗粒,可改善药物装载量并在储存过程中牢固地掺入药物。由于它们的特性和优点,SLN和NLC可能在局部药物递送,化妆品和药物活性成分的口服和肠胃外给药方面得到广泛应用。药妆正在成为这些载体的最大应用目标。像SLN和NLC这样的载体系统是为了满足工业需求而开发的,例如扩大规模,鉴定和验证,简单的技术,低成本等。本文回顾了SLN和NLC作为载体系统的现状,并特别强调了它们在药妆中的应用。 ;它还概述了SLN和NLC的各种制造技术。

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