Bodratti Andrew M, Alexandridis Paschalis
Department of Chemical and Biological Engineering, University at Buffalo, The State University of New York (SUNY), Buffalo, NY 14260, USA.
J Funct Biomater. 2018 Jan 18;9(1):11. doi: 10.3390/jfb9010011.
Poloxamers, also known as Pluronics, are block copolymers of poly(ethylene oxide) (PEO) and poly(propylene oxide) (PPO), which have an amphiphilic character and useful association and adsorption properties emanating from this. Poloxamers find use in many applications that require solubilization or stabilization of compounds and also have notable physiological properties, including low toxicity. Accordingly, poloxamers serve well as excipients for pharmaceuticals. Current challenges facing nanomedicine revolve around the transport of typically water-insoluble drugs throughout the body, followed by targeted delivery. Judicious design of drug delivery systems leads to improved bioavailability, patient compliance and therapeutic outcomes. The rich phase behavior (micelles, hydrogels, lyotropic liquid crystals, etc.) of poloxamers makes them amenable to multiple types of processing and various product forms. In this review, we first present the general solution behavior of poloxamers, focusing on their self-assembly properties. This is followed by a discussion of how the self-assembly properties of poloxamers can be leveraged to encapsulate drugs using an array of processing techniques including direct solubilization, solvent displacement methods, emulsification and preparation of kinetically-frozen nanoparticles. Finally, we conclude with a summary and perspective.
泊洛沙姆,也被称为普朗尼克,是聚环氧乙烷(PEO)和聚环氧丙烷(PPO)的嵌段共聚物,具有两亲性,并由此具有有用的缔合和吸附特性。泊洛沙姆在许多需要增溶或稳定化合物的应用中得到应用,并且还具有显著的生理特性,包括低毒性。因此,泊洛沙姆作为药物辅料表现出色。纳米医学目前面临的挑战围绕着将通常不溶于水的药物输送到全身,然后进行靶向递送。药物递送系统的明智设计可提高生物利用度、患者依从性和治疗效果。泊洛沙姆丰富的相行为(胶束、水凝胶、溶致液晶等)使其适合多种类型的加工和各种产品形式。在本综述中,我们首先介绍泊洛沙姆的一般溶液行为,重点是它们的自组装特性。接下来讨论如何利用泊洛沙姆的自组装特性,通过一系列加工技术(包括直接增溶、溶剂置换法、乳化和制备动力学冷冻纳米颗粒)来包封药物。最后进行总结并展望。