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通过酯化增强氨甲环酸的皮肤递送:烷基酯衍生物的合成与评价

Enhancing skin delivery of tranexamic acid esterification: synthesis and evaluation of alkyl ester derivatives.

作者信息

Zeng Yutong, Ma Mengrui, Chen Yongfeng, Xie Huichao, Ding Pingtian, Zhang Keda

机构信息

College of Pharmacy, Shenzhen Technology University Shenzhen 518118 China

Qilu Pharmaceutical Co., Ltd Jinan 250100 China.

出版信息

RSC Adv. 2024 Nov 5;14(47):34996-35004. doi: 10.1039/d4ra06266c. eCollection 2024 Oct 29.

Abstract

Tranexamic acid (TA) is widely used clinically as a skin whitening agent for treating melasma and hyperpigmentation. However, oral administration of TA is often associated with adverse effects. Topical application could mitigate these issues, but the hydrophilic nature of TA limits its topical use. To overcome this limitation, we explored the design of TA alkyl ester prodrugs to enhance skin absorption. Our study specifically focused on the butyl and octyl ester derivatives of TA. The results demonstrated that TA4 and TA8 significantly improved skin penetration and deposition, by approximately 2-3 times compared to unmodified TA. Furthermore, these derivatives were rapidly hydrolyzed to release the parent drug within less than 2 h in both skin homogenates and blood. Safety assessments indicated no significant skin irritation in mice and revealed low cytotoxicity in HaCaT cells when exposed to the TA ester derivatives. We also developed a hydrogel formulation incorporating the TA derivatives, using hydroxyethyl cellulose, propylene glycol, Tween 80, and chlorobutanol. This formulation exhibited good skin absorption, stability, and user experience, making it a promising candidate for topical application. To sum up, the alkyl esterification prodrug design provides a promising approach for enhancing the skin delivery of TA.

摘要

氨甲环酸(TA)在临床上广泛用作治疗黄褐斑和色素沉着的皮肤美白剂。然而,口服TA常伴有不良反应。局部应用可缓解这些问题,但TA的亲水性限制了其局部使用。为克服这一局限性,我们探索了TA烷基酯前药的设计以增强皮肤吸收。我们的研究特别关注TA的丁酯和辛酯衍生物。结果表明,与未修饰的TA相比,TA4和TA8显著提高了皮肤渗透性和沉积量,约为2至3倍。此外,这些衍生物在皮肤匀浆和血液中均在不到2小时内迅速水解以释放母体药物。安全性评估表明,在小鼠中没有明显的皮肤刺激,并且在暴露于TA酯衍生物时,HaCaT细胞显示出低细胞毒性。我们还使用羟乙基纤维素、丙二醇、吐温80和氯丁醇开发了一种包含TA衍生物的水凝胶制剂。该制剂表现出良好的皮肤吸收性、稳定性和用户体验,使其成为局部应用的有前途的候选者。总之,烷基酯化前药设计为增强TA的皮肤递送提供了一种有前途的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92fb/11537257/3714f248c9d8/d4ra06266c-f1.jpg

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