Faculty of Pharmaceutical Sciences, University of Central Punjab, Lahore, Pakistan.
J Liposome Res. 2024 Jun;34(2):335-348. doi: 10.1080/08982104.2023.2268711. Epub 2023 Oct 15.
Solid Lipid Nanoparticles (SLN), the first type of lipid-based solid carrier systems in the nanometer range, were introduced as a replacement for liposomes. SLN are aqueous colloidal dispersions with solid biodegradable lipids as their matrix. SLN is produced using processes like solvent diffusion method and high-pressure homogenization, among others. Major benefits include regulated release, increased bioavailability, preservation of peptides and chemically labile compounds like retinol against degradation, cost-effective excipients, better drug integration, and a broad range of applications. Solid lipid nanoparticles can be administered via different routes, such as oral, parenteral, pulmonary, etc. SLN can be prepared by using high shear mixing as well as low shear mixing. The next generation of solid lipids, nanostructured lipid carriers (NLC), can reduce some of the drawbacks of SLN, such as its restricted capacity for drug loading and drug expulsion during storage. NLC are controlled nanostructured lipid particles that enhance drug loading. This review covers a brief introduction of solid lipid nanoparticles, manufacturing techniques, benefits, limitations, and their characterization tests.
固体脂质纳米粒(SLN),作为纳米级脂质载体系统的第一种类型,被引入以替代脂质体。SLN 是具有固体可生物降解脂质作为基质的水性胶体分散体。SLN 是通过溶剂扩散法和高压匀质等工艺生产的。主要优点包括控制释放、提高生物利用度、保护肽和视黄醇等化学不稳定化合物免受降解、经济有效的赋形剂、更好的药物整合以及广泛的应用。固体脂质纳米粒可以通过不同途径给药,如口服、肠胃外、肺部等。SLN 可以通过高剪切混合以及低剪切混合来制备。下一代固体脂质,即纳米结构化脂质载体(NLC),可以减少 SLN 的一些缺点,例如其在储存过程中药物负载和药物排出的受限能力。NLC 是增强药物负载的受控纳米结构化脂质颗粒。本文综述了固体脂质纳米粒的简要介绍、制造技术、优点、局限性及其特性测试。