School of Chemistry and Chemical Engineering , Shanghai Jiao Tong University , 800 Dongchuan Road , Shanghai 200240 , China.
Mol Pharm. 2019 Aug 5;16(8):3720-3725. doi: 10.1021/acs.molpharmaceut.9b00468. Epub 2019 Jul 8.
Polymers play a central role in controlling the crystallization of pharmaceuticals with effects as divergent as amorphous form stabilization and the acceleration of crystallization. Here, using pyrazinamide and hydrochlorothiazide as model pharmaceuticals, it is demonstrated that the same functional group interactions are responsible for these opposing behaviors and that whether a polymer speeds or slows a crystallization can be controlled by polymer solubility. This concept is applied for the discovery of polymers to maintain drug supersaturation in solution: the strength of functional group interactions between drug and polymer is assessed through polymer-induced heteronucleation, and soluble polymers containing the strongest-interacting functional groups with drug are shown to succeed as precipitation inhibitors.
聚合物在控制药物结晶方面起着核心作用,其影响范围广泛,包括无定形形式的稳定和结晶的加速。在这里,使用吡嗪酰胺和氢氯噻嗪作为模型药物,证明相同的官能团相互作用负责这些相反的行为,并且聚合物是加速还是减缓结晶可以通过聚合物的溶解度来控制。这一概念适用于发现聚合物以维持药物在溶液中的过饱和度:通过聚合物诱导的异核形成来评估药物与聚合物之间官能团相互作用的强度,并且显示出含有与药物相互作用最强的官能团的可溶性聚合物作为沉淀抑制剂是成功的。