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Sol-部分:发现一种水溶性前药技术,可提高难溶性治疗药物的口服生物利用度。

Sol-moiety: Discovery of a water-soluble prodrug technology for enhanced oral bioavailability of insoluble therapeutics.

机构信息

Sarafan ChEM-H, Stanford University, Stanford, CA, 94305, USA.

Division of Endocrinology, Stanford University School of Medicine, Stanford, CA, 94305, USA.

出版信息

Nat Commun. 2024 Oct 1;15(1):8487. doi: 10.1038/s41467-024-52793-6.

Abstract

Though conceptually attractive, the use of water-soluble prodrug technology to enhance oral bioavailability of highly insoluble small molecule therapeutics has not been widely adopted. In large part, this is due to the rapid enzymatic or chemical hydrolysis of prodrugs within the gastrointestinal tract, resulting in drug precipitation and no overall improvement in oral bioavailability relative to standard formulation strategies. We reasoned that an optimal water-soluble prodrug could be attained if the rate of prodrug hydrolysis were reduced to favor drug absorption rather than drug precipitation. In doing so, the rate of hydrolysis provides a pharmacokinetic control point for drug delivery. Herein, we report the discovery of a water-soluble promoiety (Sol-moiety) technology to optimize the oral bioavailability of highly insoluble small molecule therapeutics, possessing various functional groups, without the need for sophisticated, often toxic, lipid or organic solvent-based formulations. The power of the technology is demonstrated with marked pharmacokinetic improvement of the commercial drugs enzalutamide, vemurafenib, and paclitaxel. This led to a successful efficacy study of a water-soluble orally administered prodrug of paclitaxel in a mouse pancreatic tumor model.

摘要

尽管从概念上讲很有吸引力,但将水溶性前药技术用于提高高度不溶性小分子治疗剂的口服生物利用度尚未得到广泛采用。在很大程度上,这是由于前药在胃肠道内迅速酶解或化学水解,导致药物沉淀,与标准制剂策略相比,口服生物利用度没有整体提高。我们推断,如果前药水解的速度降低,有利于药物吸收而不是药物沉淀,就可以获得最佳的水溶性前药。这样,水解速度就为药物输送提供了一个药代动力学控制点。在此,我们报告了一种水溶性促进剂(Sol-部分)技术的发现,该技术可优化具有各种官能团的高度不溶性小分子治疗剂的口服生物利用度,而无需使用复杂的、通常有毒的脂质或有机溶剂制剂。该技术的强大功能通过商业药物恩扎鲁胺、vemurafenib 和紫杉醇的显著药代动力学改善得到了证明。这导致了在小鼠胰腺肿瘤模型中成功进行了紫杉醇水溶性口服前药的疗效研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cb4/11445516/fe2997efdbec/41467_2024_52793_Fig1_HTML.jpg

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