College of Pharmacy, Nanjing University of Chinese Medicine, Nanjing 210023, China; Jiangsu Provincial TCM Engineering Technology Research Center of High Efficient Drug Delivery System (DDS), Nanjing 210023, China.
College of Pharmacy, Nanjing University of Chinese Medicine, Nanjing 210023, China.
Int J Pharm. 2019 Apr 20;561:9-18. doi: 10.1016/j.ijpharm.2019.02.027. Epub 2019 Feb 25.
Curcumin (CUR) has gained increasing interest worldwide due to multiple biological activities. However, the therapeutic application remains limited because of its low aqueous solubility, intestinal metabolism and poor membrane permeability. In present study, an excipient-free CUR solid dispersion co-formed with piperine (PIP), the absorption enhancer involving metabolism-permeability, was successfully prepared by melting and quench cooling (co-amorphous CUR-PIP). The co-amorphous CUR-PIP exhibited superior performance in non-sink dissolution compared with crystalline and amorphous CUR, and showed physically stable at least 3 months, attributing to the strong molecular interactions between CUR and PIP as evaluated by FTIR spectra. Furthermore, the combination of PIP with CUR in the co-amorphous formulation could inhibit the glucuronidation of CUR, as exhibited in the in vitro assay of rat intestinal microsomes. The co-amorphous CUR-PIP would also exhibit higher gastrointestinal membrane permeability of CUR, as confirmed by P of CUR in Caco-2 model. After administration of co-amorphous CUR-PIP, the AUC of CUR significantly increased by 2.16- and 1.92-fold those in crystalline and amorphous CUR, respectively. This study demonstrates that the developed co-amorphous CUR-PIP can enhance the bioavailability of CUR by increasing its dissolution, inhibiting metabolic processes, and facilitating membrane permeability.
姜黄素(CUR)由于具有多种生物学活性,在世界范围内受到越来越多的关注。然而,由于其低水溶性、肠道代谢和较差的膜通透性,其治疗应用仍然受到限制。在本研究中,通过熔融和淬火冷却(共无定形 CUR-PIP)成功制备了一种无赋形剂的 CUR 固体分散体,与吸收增强剂胡椒碱(PIP)共形成,涉及代谢-通透性。与结晶和无定形 CUR 相比,共无定形 CUR-PIP 在非溶出介质中表现出优异的性能,并且至少在 3 个月内表现出物理稳定性,这归因于通过 FTIR 光谱评估的 CUR 和 PIP 之间的强分子相互作用。此外,在大鼠肠微粒体的体外试验中,PIP 与共无定形制剂中的 CUR 结合可以抑制 CUR 的葡萄糖醛酸化。共无定形 CUR-PIP 还可以提高 CUR 的胃肠道膜通透性,这在 Caco-2 模型中得到了证实。给予共无定形 CUR-PIP 后,CUR 的 AUC 分别显著增加了 2.16 倍和 1.92 倍,高于结晶和无定形 CUR。本研究表明,开发的共无定形 CUR-PIP 可以通过增加其溶解度、抑制代谢过程和促进膜通透性来提高 CUR 的生物利用度。