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首页> 外文期刊>International Journal of Pharmaceutics >Characterization and cytotoxicity evaluation of biocompatible amino acid esters used to convert salicylic acid into ionic liquids
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Characterization and cytotoxicity evaluation of biocompatible amino acid esters used to convert salicylic acid into ionic liquids

机译:用于将水杨酸转化成离子液体的生物相容性氨基酸酯的表征和细胞毒性评价

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摘要

The technological utility of active pharmaceutical ingredients (APIs) is greatly enhanced when they are transformed into ionic liquids (ILs). API ILs have better solubility, thermal stability, and the efficacy in topical delivery than solid or crystalline drugs. However, toxicological issue of API ILs is the main challenge for their application in drug delivery. To address this issue, 11 amino acid esters (AAEs) were synthesized and investigated as biocompatible counter cations for the poorly water-soluble drug salicylic acid (Sal) to form Sal-ILs. The AAEs were characterized using H-1 and C-13 NMR, FTIR, elemental, and thermogravimetric analyses. The cytotoxicities of the AAE cations, Sal-ILs, and free Sal were investigated using mammalian cell lines (L929 and HeLa). The toxicities of the AAE cations greatly increased with inclusion of long alkyl chains, sulfur, and aromatic rings in the side groups of the cations. Ethyl esters of alanine, aspartic acid, and proline were selected as a low cytotoxic AAE. The cytotoxicities of the Sal-ILs drastically increased compared with the AAEs on incorporation of Sal into the cations, and were comparable to that of free Sal. Interestingly, the water miscibilities of the Sal-ILs were higher than that of free Sal, and the Sal-ILs were miscible with water at any ratio. A skin permeation study showed that the Sal-ILs penetrated through skin faster than the Sal sodium salt. These results suggest that AAEs could be used in biomedical applications to eliminate the use of traditional toxic solvents for transdermal delivery of poorly water-soluble drugs.
机译:当它们转化为离子液体(ILS)时,有活性药物成分(API)的技术效用大大提高。 API ILS具有比固体或结晶药物更好的溶解性,热稳定性和局部递送的功效。然而,API ILS的毒理学问题是他们在药物递送中申请的主要挑战。为了解决这个问题,合成11个氨基酸酯(AAES),并作为生物相容性的抗衡阳离子,用于形成差的水溶性药物水杨酸(SAL)以形成Sal-ILS。使用H-1和C-13 NMR,FTIR,元素和热重分析来表征AAE。使用哺乳动物细胞系(L929和HELA)研究AAE阳离子,SAL-IL和游离SAL的细胞毒性。在阳离子的侧面组中包含长长的烷基链,硫和芳环的毒性大大增加了大大增加。选择丙氨酸,天冬氨酸和脯氨酸的乙酯作为低细胞毒性AAE。与AAES掺入阳离子的AAE相比,SAL-ILS的细胞毒性大大增加,并且与游离含硅相当。有趣的是,SAL-ILS的水分性高于游离SAL的水分,并且SAL-ILS以任何比例与水混溶。皮肤渗透性研究表明,SAL-ILS通过SAL钠盐快速穿透皮肤。这些结果表明AAE可以用于生物医学应用中,以消除传统毒性溶剂的使用,用于透皮递送不良水溶性药物。

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