Seo Yoseph, Lim Hayeon, Park Hyunjun, Yu Jiyun, An Jeongyun, Yoo Hah Young, Lee Taek
Department of Chemical Engineering, Kwangwoon University, 20 Kwangwoon-Ro, Nowon-Gu, Seoul 01897, Republic of Korea.
Department of Biotechnology, Sangmyung University, 20, Hongjimun 2-Gil, Jongno-Gu, Seoul 03016, Republic of Korea.
Pharmaceutics. 2023 Feb 26;15(3):772. doi: 10.3390/pharmaceutics15030772.
Numerous drugs have emerged to treat various diseases, such as COVID-19, cancer, and protect human health. Approximately 40% of them are lipophilic and are used for treating diseases through various delivery routes, including skin absorption, oral administration, and injection. However, as lipophilic drugs have a low solubility in the human body, drug delivery systems (DDSs) are being actively developed to increase drug bioavailability. Liposomes, micro-sponges, and polymer-based nanoparticles have been proposed as DDS carriers for lipophilic drugs. However, their instability, cytotoxicity, and lack of targeting ability limit their commercialization. Lipid nanoparticles (LNPs) have fewer side effects, excellent biocompatibility, and high physical stability. LNPs are considered efficient vehicles of lipophilic drugs owing to their lipid-based internal structure. In addition, recent LNP studies suggest that the bioavailability of LNP can be increased through surface modifications, such as PEGylation, chitosan, and surfactant protein coating. Thus, their combinations have an abundant utilization potential in the fields of DDSs for carrying lipophilic drugs. In this review, the functions and efficiencies of various types of LNPs and surface modifications developed to optimize lipophilic drug delivery are discussed.
许多药物已出现用于治疗各种疾病,如新冠病毒病、癌症等,并保护人类健康。其中约40%是亲脂性的,可通过包括皮肤吸收、口服和注射在内的各种给药途径用于治疗疾病。然而,由于亲脂性药物在人体内的溶解度较低,人们正在积极开发药物递送系统(DDS)以提高药物的生物利用度。脂质体、微海绵和基于聚合物的纳米颗粒已被提议作为亲脂性药物的DDS载体。然而,它们的不稳定性、细胞毒性和缺乏靶向能力限制了它们的商业化。脂质纳米颗粒(LNP)副作用较少,具有优异的生物相容性和高物理稳定性。由于其基于脂质的内部结构,LNP被认为是亲脂性药物的有效载体。此外,最近的LNP研究表明,通过聚乙二醇化、壳聚糖和表面活性剂蛋白包被等表面修饰可以提高LNP的生物利用度。因此,它们的组合在用于携带亲脂性药物的DDS领域具有丰富的应用潜力。在这篇综述中,讨论了为优化亲脂性药物递送而开发的各种类型LNP及其表面修饰的功能和效率。
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