Department of Pharmaceutics, Rajiv Academy for Pharmacy, National Highway #2, P.O.Chattikkara, Mathura, 281001, India.
Drug Deliv. 2012 Feb;19(2):102-11. doi: 10.3109/10717544.2011.649218. Epub 2012 Jan 13.
The project was aimed at synthesizing and characterizing amino acid conjugate of naproxen (categorically stated as Type II A prodrug) that is expected to enhance solubility without affecting permeability and is capable of delivering naproxen (NAP) to colon without significant reversion of prodrug in gastrointestinal conditions. Thus, naproxen-glycine conjugate (NAP-GLY) was prepared by conventional coupling method and the prodrug was characterized by FTIR, FTNMR, FAB mass and elemental analysis. The conjugate was then subjected to selected pharmaceutical preformulation studies like pH-solubility analysis, intrinsic dissolution rate and pH partition studies. These studies established 1.24 folds higher solubility of the (NAP-GLY) over NAP in phosphate buffer pH 7.4 without compromising its partitioning ability. The amino acid conjugate demonstrated superior intrinsic dissolution capabilities (30.9% enhancement) than NAP and in vitro reversion studies suggested its potential of safe transit to colon where the moiety is capable of reverting to 78.52% NAP after 72 hrs of the experiment. In vivo evaluation of NAP-GLY in experimentally induced colitis established its efficacy an anti-inflammatory prodrug moiety (ulcer index = 6.73 with respect to 42.5 for control) that was supported by histological studies. In addition to its ability to control colonic ulcers NAP-GLY demonstrated insignificant (P >0.05) gastric ulcerogenic potential. Conclusively, the conjugate when suitably formulated can be considered as therapeutically efficacious drug delivery system with fewer pharmaceutical limitations.
该项目旨在合成和表征萘普生的氨基酸缀合物(明确表示为 II 型 A 前药),预计可提高溶解度而不影响通透性,并能够将萘普生(NAP)递送到结肠而不会在胃肠道条件下使前药发生显著逆转。因此,通过常规偶联方法制备了萘普生-甘氨酸缀合物(NAP-GLY),并通过 FTIR、FTNMR、FAB 质量和元素分析对前药进行了表征。然后,将缀合物进行了一些药物预配方研究,如 pH-溶解度分析、内在溶解速率和 pH 分配研究。这些研究确定,在磷酸盐缓冲液 pH 7.4 中,(NAP-GLY)的溶解度比 NAP 高 1.24 倍,而不影响其分配能力。氨基酸缀合物表现出比 NAP 更高的内在溶解能力(提高了 30.9%),并且体外逆转研究表明,它有可能安全地递送到结肠,在该部位,该部分在实验 72 小时后能够转化为 78.52%的 NAP。在实验性结肠炎中对 NAP-GLY 的体内评价确立了其作为抗炎前药部分的功效(相对于对照的 42.5,溃疡指数为 6.73),这得到了组织学研究的支持。除了控制结肠溃疡的能力外,NAP-GLY 还表现出不显著的(P >0.05)胃溃疡形成潜力。总之,适当配方的缀合物可以被认为是具有较少药物限制的治疗有效药物递送系统。