Skotnicki Marcin, Jadach Barbara, Skotnicka Agnieszka, Milanowski Bartłomiej, Tajber Lidia, Pyda Marek, Kujawski Jacek
Chair and Department of Pharmaceutical Technology, Poznan University of Medical Sciences, 60-780 Poznan, Poland.
School of Pharmacy and Pharmaceutical Sciences, Trinity College Dublin, College Green, 2 Dublin, Ireland.
Pharmaceutics. 2021 Jan 18;13(1):118. doi: 10.3390/pharmaceutics13010118.
The aim of this study was to characterize a 1:1 molar ratio of a pharmacologically relevant co-amorphous atorvastatin-irbesartan (ATR-IRB) system obtained by quench cooling of the crystalline ATR/IRB physical mixture for potential use in the fixed-dose combination therapy. The system was characterized by employing standard differential scanning calorimetry (DSC), Fourier transform-infrared spectroscopy (FT-IR), and intrinsic dissolution rate studies. Quantum mechanical calculations were performed to obtain information regarding intermolecular interactions in the studied co-amorphous ATR-IRB system. The co-amorphous formulation showed a significant improvement in the intrinsic dissolution rate (IDR) of IRB over pure crystalline as well as its amorphous counterpart. An unusual behavior was observed for ATR, as the IDR of ATR in the co-amorphous formulation was slightly lower than that of amorphous ATR alone. Short-term physical aging studies of up to 8 h proved that the ATR-IRB co-amorphous system remained in the amorphous form. Furthermore, no physical aging occurred in the co-amorphous system. FT-IR, density functional theory calculations, and analysis of value of co-amorphous system using the Couchman-Karasz equation revealed the presence of molecular interactions between APIs, which may contribute to the increased physical stability.
本研究的目的是对通过将结晶性阿托伐他汀 - 厄贝沙坦(ATR - IRB)物理混合物骤冷获得的具有药理学相关性的1:1摩尔比共无定形阿托伐他汀 - 厄贝沙坦(ATR - IRB)体系进行表征,以用于固定剂量联合治疗。该体系通过采用标准差示扫描量热法(DSC)、傅里叶变换红外光谱法(FT - IR)和固有溶出速率研究进行表征。进行了量子力学计算以获取有关所研究的共无定形ATR - IRB体系中分子间相互作用的信息。与纯结晶态以及其无定形对应物相比,共无定形制剂的厄贝沙坦固有溶出速率(IDR)有显著提高。观察到阿托伐他汀有异常行为,因为共无定形制剂中阿托伐他汀的IDR略低于单独的无定形阿托伐他汀。长达8小时的短期物理老化研究证明,ATR - IRB共无定形体系保持无定形状态。此外,共无定形体系中未发生物理老化。FT - IR、密度泛函理论计算以及使用Couchman - Karasz方程对共无定形体系的 值分析表明,活性药物成分之间存在分子相互作用,这可能有助于提高物理稳定性。