Moammeri Ali, Chegeni Masoumeh Mirzaei, Sahrayi Hamidreza, Ghafelehbashi Robabehbeygom, Memarzadeh Farkhondeh, Mansouri Afsoun, Akbarzadeh Iman, Abtahi Maryam Sadat, Hejabi Faranak, Ren Qun
School of Chemical Engineering, College of Engineering, University of Tehran, Tehran, Iran.
Department of Biology, Science and Research Branch, Islamic Azad University, Tehran, Iran.
Mater Today Bio. 2023 Oct 21;23:100837. doi: 10.1016/j.mtbio.2023.100837. eCollection 2023 Dec.
The advent of nanotechnology has led to an increased interest in nanocarriers as a drug delivery system that is efficient and safe. There have been many studies addressing nano-scale vesicular systems such as liposomes and niosome is a newer generation of vesicular nanocarriers. The niosomes provide a multilamellar carrier for lipophilic and hydrophilic bioactive substances in the self-assembled vesicle, which are composed of non-ionic surfactants in conjunction with cholesterol or other amphiphilic molecules. These non-ionic surfactant vesicles, simply known as niosomes, can be utilized in a wide variety of technological applications. As an alternative to liposomes, niosomes are considered more chemically and physically stable. The methods for preparing niosomes are more economic. Many reports have discussed niosomes in terms of their physicochemical properties and applications as drug delivery systems. As drug carriers, nano-sized niosomes expand the horizons of pharmacokinetics, decreasing toxicity, enhancing drug solvability and bioavailability. In this review, we review the components and fabrication methods of niosomes, as well as their functionalization, characterization, administration routes, and applications in cancer gene delivery, and natural product delivery. We also discuss the limitations and challenges in the development of niosomes, and provide the future perspective of niosomes.
纳米技术的出现引发了人们对纳米载体作为一种高效且安全的药物递送系统的更大兴趣。已经有许多研究涉及纳米级囊泡系统,如脂质体,而非离子型表面活性剂泡囊是新一代的囊泡纳米载体。非离子型表面活性剂泡囊在自组装囊泡中为亲脂性和亲水性生物活性物质提供了一种多层载体,它由非离子表面活性剂与胆固醇或其他两亲性分子组成。这些简单称为非离子型表面活性剂泡囊的囊泡可用于各种各样的技术应用。作为脂质体的替代物,非离子型表面活性剂泡囊被认为在化学和物理性质上更稳定。制备非离子型表面活性剂泡囊的方法更经济。许多报告已经从其物理化学性质以及作为药物递送系统的应用方面讨论了非离子型表面活性剂泡囊。作为药物载体,纳米尺寸的非离子型表面活性剂泡囊拓展了药代动力学的视野,降低了毒性,提高了药物的溶解性和生物利用度。在这篇综述中,我们回顾了非离子型表面活性剂泡囊的组成和制备方法,以及它们的功能化、表征、给药途径,以及在癌症基因递送和天然产物递送中的应用。我们还讨论了非离子型表面活性剂泡囊开发中的局限性和挑战,并提供了非离子型表面活性剂泡囊的未来展望。