首页> 外文期刊>Journal of drug targeting >Synthesis, in vitro and in vivo characterization of glycosyl derivatives of ibuprofen as novel prodrugs for brain drug delivery.
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Synthesis, in vitro and in vivo characterization of glycosyl derivatives of ibuprofen as novel prodrugs for brain drug delivery.

机译:布洛芬糖基衍生物作为脑药物递送的新型前药的合成,体外和体内表征。

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摘要

New glycosyl derivatives of ibuprofen (I, II, III, and IV) were synthesized in order to overcome the ineffective delivery of ibuprofen across the blood-brain barrier owing to its low permeability, using d-glucose as a drug targeting agent. Ibuprofen was linked directly to the C-2, C-3, C-4, and C-6 positions of glucose via ester bonds. Furthermore, in vitro stabilities of the four ester derivatives were evaluated to determine both their stability in aqueous medium and their feasibility to undergo enzymatic cleavage by esterase in biological samples to regenerate the original drug. From the obtained results, compounds I-IV appeared to be moderately stable in pH 7.43 buffer solution, rat plasma, and brain tissue extracts. In vivo experiments showed that the AUC(0-)(t) of ibuprofen in plasma after the injection of prodrugs is several times higher than that of AUC(0-)(t) after the injection of ibuprofen. In addition, the maximal concentration of ibuprofen in brain after the administration of ester IV was three fold higher than that of the control group. Also, the concentration of ibuprofen was kept stable in brain for about 4 h for four esters, which was beneficial for the treatment of Alzheimer's disease and highlighted the possibility of brain drug delivery of ibuprofen using prodrug strategies.
机译:合成新的布洛芬糖基衍生物(I,II,III和IV)是为了克服布洛芬由于渗透性低而无法有效地穿过血脑屏障的作用,使用d-葡萄糖作为药物靶向剂。布洛芬通过酯键直接连接至葡萄糖的C-2,C-3,C-4和C-6位置。此外,评估了四种酯衍生物的体外稳定性,以确定它们在水性介质中的稳定性以及在生物样品中通过酯酶进行酶促裂解以再生原始药物的可行性。从获得的结果来看,化合物I-IV在pH 7.43缓冲溶液,大鼠血浆和脑组织提取物中似乎中等稳定。体内实验表明,注射前药后血浆中布洛芬的AUC(0-)(t)高于注射布洛芬后的AUC(0-)(t)。此外,给予酯IV后脑中布洛芬的最大浓度比对照组高三倍。此外,布洛芬的浓度在脑中对四种酯保持稳定约4小时,这对于阿尔茨海默氏病的治疗是有益的,并强调了使用前药策略将布洛芬脑部药物递送的可能性。

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