Jana Mayukh, Biswas Ujjwal Kumar, Patro Chandra Sekhar, Debnath Biplab, Sharma Suraj, Naskar Sweet
School of Pharmacy, Centurion University of Technology and Management, Centurion University, Bhubaneswar, Odisha, India.
School of Pharmaceutical Science (SPS), Siksha O Anusandhan (SOA) University, K.8, Kalinga Nagar, Ghatkia, Bhubaneswar-751003, Odisha, India.
Pharm Nanotechnol. 2024 May 23. doi: 10.2174/0122117385312175240502100018.
Solid lipid nanoparticles (SLNs) are gaining significant attention in the pharmaceutical industry due to their biocompatibility and biodegradability, making them a popular functional nanocarrier. SLNs are a popular nanocarrier due to their ability to bypass the spleen and liver, offer high drug stability, and improve bioavailability, sterilization, immobilization, targeted drug release, and biocompatible ingredients. This article discusses various SLN preparation techniques, including high shear homogenization, hot homogenization, cold homogenization, microemulsion-based, solvent evaporation, solvent emulsification-evaporation, supercritical fluid-based, spray drying, double emulsion, and precipitation techniques, focusing on methodological aspects. This review discusses the physicochemical behavior of SLNs, including drug loading, release, particle size, stability, cytotoxicity, and cellular uptake, and their major biomedical applications.
固体脂质纳米粒(SLNs)因其生物相容性和可生物降解性在制药行业备受关注,使其成为一种受欢迎的功能性纳米载体。SLNs是一种受欢迎的纳米载体,因为它们能够绕过脾脏和肝脏,具有高药物稳定性,并能提高生物利用度、灭菌效果、固定化、靶向药物释放以及生物相容性成分。本文讨论了各种SLN制备技术,包括高剪切均质化、热均质化、冷均质化、微乳液法、溶剂蒸发法、溶剂乳化蒸发法、超临界流体法、喷雾干燥法、双乳液法和沉淀技术,重点关注方法学方面。本综述讨论了SLNs的物理化学行为,包括药物负载、释放、粒径、稳定性、细胞毒性和细胞摄取,以及它们的主要生物医学应用。