Department of Pharmacy, University of Copenhagen, Copenhagen, Denmark.
Department of Pharmacy, University of Copenhagen, Copenhagen, Denmark.
Int J Pharm. 2018 Jan 15;535(1-2):86-94. doi: 10.1016/j.ijpharm.2017.10.057. Epub 2017 Nov 2.
Co-amorphous drug delivery systems based on amino acids as co-formers have shown promising potential to improve the solubility and bioavailability of poorly water-soluble drugs. Potential salt formation is assumed to be a key molecular interaction responsible for amorphous stability and increased solubility. However, little is known about the importance of the overall structure of the co-former. In this study, the structurally related amino acids arginine (basic) and citrulline (neutral) were chosen together with four model drugs (acidic furosemide and nitrofurantoin; basic cimetidine and mebendazole) to investigate the importance of salt formation versus structural similarity of co-formers. Drug-amino acid mixtures were ball milled at a molar ratio of 1:1. Generally, arginine showed a higher tendency to successfully form co-amorphous systems with the model drugs compared with citrulline, irrespective of assumed salt formation. Salt forming mixtures showed much higher Ts, faster dissolution rates, higher solubility and physical stability compared to the corresponding non-salt forming mixtures. In conclusion, structural similarity of the co-formers does not lead to similar co-former performance for a given drug. Salt formation is not a prerequisite for the formation of a co-amorphous system, but if a co-amorphous salt system is formed, improved dissolution rate and physical stability are observed.
基于氨基酸作为共晶形成剂的共无定形药物递送系统已显示出改善低水溶性药物的溶解度和生物利用度的巨大潜力。潜在的盐形成被认为是负责无定形稳定性和增加溶解度的关键分子相互作用。然而,对于共晶形成剂的整体结构的重要性知之甚少。在这项研究中,选择了结构上相关的氨基酸精氨酸(碱性)和瓜氨酸(中性)以及四种模型药物(酸性呋塞米和呋喃妥因;碱性西咪替丁和甲苯咪唑),以研究盐形成与共晶形成剂结构相似性的重要性。将药物-氨基酸混合物以摩尔比 1:1 进行球磨。通常,与瓜氨酸相比,精氨酸与模型药物成功形成共无定形系统的趋势更高,而不管假定的盐形成如何。与相应的非盐形成混合物相比,形成盐的混合物表现出更高的 Ts、更快的溶解速率、更高的溶解度和物理稳定性。总之,共晶形成剂的结构相似性不会导致给定药物的共晶形成剂性能相似。盐形成不是形成共无定形系统的先决条件,但是如果形成共无定形盐系统,则观察到改善的溶解速率和物理稳定性。