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盐酸青藤碱-多酚共无定形药物系统:增溶、缓释和改善物理稳定性。

Sinomenine-phenolic acid coamorphous drug systems: Solubilization, sustained release, and improved physical stability.

机构信息

Xiangya International Academy of Translational Medicine, Central South University, Changsha, Hunan 410013, PR China.

Laboratory of Magnetic Resonance Spectroscopy and Imaging, Suzhou Institute of Nano-Tech and Nano-Bionics, Chinese Academy of Sciences, Suzhou 215123, PR China.

出版信息

Int J Pharm. 2021 Apr 1;598:120389. doi: 10.1016/j.ijpharm.2021.120389. Epub 2021 Feb 18.

Abstract

Sinomenine (SIN), isolated from Caulis sinomenii, is a benzyltetrahydroisoquinoline-type alkaloid with potent anti-inflammatory and analgesic effects. SIN-HCl has been used in the forms of tablets or enteric-coated tablets in the treatment of rheumatoid arthritis in China for years, while its short half-life leads to attenuated therapeutic effects and serious side effects. In the current study, three phenolic acids, including salicylic acid (SAA), 2,3-dihydroxybenzoic acid (23DHB), and 2,4-dihydroxybenzoic acid (24DHB), were firstly employed as coamorphous coformers to prepare three binary SIN-phenolic acid coamorphous systems. These new coamorphous systems were characterized by powder X-ray diffraction (PXRD), modulated temperature differential scanning calorimetry (mDSC), and Fourier transform infrared spectroscopy (FTIR). The formation of SIN-phenolic acid coamorphous systems are supported by the absence of diffraction peaks in their PXRD spectra, as well as the single Ts of three samples (i.e., SIN-SAA, SIN-23DHB, and SIN-24DHB) at 109.5 °C, 124.9 °C, and 135.3 °C. Importantly, the salt formation between SIN and phenolic acids was observed in FTIR. In three coamorphous systems, coamorphous SIN-24DHB shows superior physicochemical stability under both low humidity and accelerated storage conditions. They were also more soluble than crystalline SIN, while were released slower than the commercial SIN-HCl in dissolution experiments. Therefore, our study suggests that phenolic acids may be used as a new type of coformers in the preparation of coamorphous systems for active pharmaceutical ingredients.

摘要

青藤碱(SIN)是从青风藤中提取的一种苯并四氢异喹啉型生物碱,具有很强的抗炎和镇痛作用。SIN-HCl 已在中国以片剂或肠溶片剂的形式用于治疗类风湿关节炎多年,但其半衰期短导致治疗效果减弱和严重的副作用。在本研究中,首次将三种酚酸(包括水杨酸(SAA)、2,3-二羟基苯甲酸(23DHB)和 2,4-二羟基苯甲酸(24DHB))用作共无定形共晶形成剂,制备了三种二元 SIN-酚酸共无定形系统。这些新的共无定形系统通过粉末 X 射线衍射(PXRD)、调制温度差示扫描量热法(mDSC)和傅里叶变换红外光谱(FTIR)进行了表征。由于它们的 PXRD 图谱中没有衍射峰,以及三个样品(即 SIN-SAA、SIN-23DHB 和 SIN-24DHB)的单个 Ts 在 109.5°C、124.9°C 和 135.3°C,表明 SIN-酚酸共无定形系统的形成。重要的是,在 FTIR 中观察到 SIN 与酚酸之间的盐形成。在三种共无定形系统中,共无定形 SIN-24DHB 在低湿度和加速储存条件下表现出优异的物理化学稳定性。它们的溶解度也高于结晶 SIN,而在溶解实验中释放速度比商业 SIN-HCl 慢。因此,我们的研究表明,酚酸可用作活性药物成分共无定形系统制备的新型共晶形成剂。

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