School of Pharmacy, Queen's University Belfast, Belfast BT9 7BL, UK.
Department of Pharmacy, University of Copenhagen, 2100 Copenhagen, Denmark.
Int J Pharm. 2023 Jan 5;630:122426. doi: 10.1016/j.ijpharm.2022.122426. Epub 2022 Nov 23.
Microwave-induced in situ amorphization is a novel technology for preparing amorphous solid dispersions (ASDs) to address the challenges of their long-term physical stability and downstream processing. To date, only few types of dielectric materials have been reported for microwave-induced in situ amorphization, which restricted the extensive research of this technology. This study aimed to investigate the feasibility and mechanisms of utilizing the non-ionic surfactants, i.e. Kollisolv P124, Kolliphor RH40, D-ɑ-tocopheryl polyethylene glycol succinate (TPGS), Tween (T) 60 (T60), T65, T80 and T85, as plasticizers to facilitate microwave-induced in situ amorphization. It was found that the successful application of surfactants could be related with their low T, low M and high HLB. Kolliphor RH40 was selected as a typical surfactant due to its excellent dielectric heating ability, plasticizing effect and solubilizing effect when facilitating amorphization. Then, the dissolution-mediated in situ amorphization mechanism was investigated and intuitively demonstrated. For the most promising formulation, i.e. microwaved systems with Korlliphor RH40 at 1.5 (w/w) plasticizer/polymer ratio, a complete and fast in vitro dissolution was observed relative to the untreated systems. In conclusion, non-ionic surfactants had the potential to facilitate microwave-induced in situ amorphization, which provided a new direction in the formulation designation for microwave-able systems.
微波诱导原位无定形化是一种制备无定形固体分散体(ASD)的新技术,可解决其长期物理稳定性和下游加工的挑战。迄今为止,仅报道了几种介电材料可用于微波诱导原位无定形化,这限制了该技术的广泛研究。本研究旨在探讨利用非离子表面活性剂(如 Kollisolv P124、Kolliphor RH40、D-ɑ-生育酚聚乙二醇琥珀酸酯(TPGS)、Tween(T)60(T60)、T65、T80 和 T85)作为增塑剂促进微波诱导原位无定形化的可行性和机制。研究发现,成功应用表面活性剂与其低 T、低 M 和高 HLB 有关。由于其具有出色的介电加热能力、增塑作用和增溶作用,Kolliphor RH40 被选为典型的表面活性剂,以促进无定形化。然后,研究了溶解介导的原位无定形化机制,并直观地进行了演示。对于最有前途的配方,即增塑剂/聚合物比为 1.5(w/w)的微波系统中的 Korlliphor RH40,与未处理的系统相比,观察到完全且快速的体外溶解。总之,非离子表面活性剂有可能促进微波诱导的原位无定形化,为微波系统的配方设计提供了新的方向。