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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >The in vitro and in vivo evaluation of new synthesized prodrugs of 5-OH-DPAT for iontophoretic delivery
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The in vitro and in vivo evaluation of new synthesized prodrugs of 5-OH-DPAT for iontophoretic delivery

机译:用于离子电渗疗法的5-OH-DPAT新合成前药的体外和体内评价

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The feasibility of transdermal iontophoretic transport of 4 novel ester prodrugs of 5-OH-DPAT (glycine-, proline-, valine- and Β-alanine-5-OH-DPAT) was investigated in vitro and in vivo. Based on the chemical stability of the prodrugs, the best candidates were selected for in vitro transport studies across human skin. The pharmacokinetics and pharmacodynamic effects of the prodrug with highest transport efficiency, were investigated in a rat model. The in vitro transport, plasma profile and pharmacological response were analyzed with compartmental modeling. Valine- and Β-alanine-5-OH-DPAT were acceptably stable in the donor phase and showed a 4-fold and 14-fold increase in solubility compared to 5-OH-DPAT. Compared to 5-OH-DPAT, valine- and Β-alanine-5-OH-DPAT were transported less and more efficiently across human skin, respectively. Despite a higher in vitro transport, lower plasma concentration was observed following 1.5h current application (250μAcm~2) of Β-alanine-S-5-OH-DPAT in comparison to S-5-OH-DPAT. However the prodrug showed higher plasma concentrations post-iontophoresis, explained by a delayed release due to hydrolysis and skin depot formation. This resulted in a pharmacological effect with the same maximum as 5-OH-DPAT, but the effect lasted for a longer time. The current findings suggest that Β-alanine-5-OH-DPAT is a promising prodrug, with a good balance between stability, transport efficiency and enzymatic conversion.
机译:在体外和体内研究了4-OH-DPAT的4种新型酯前药(甘氨酸,脯氨酸,缬氨酸和γ-丙氨酸-5-OH-DPAT)的透皮离子电渗转运的可行性。基于前药的化学稳定性,选择了最佳候选物进行人体皮肤的体外运输研究。在大鼠模型中研究了具有最高转运效率的前药的药代动力学和药效学作用。用区室模型分析了体外转运,血浆分布和药理反应。缬氨酸和β-丙氨酸-5-OH-DPAT在供体相中是可接受的稳定的,与5-OH-DPAT相比,其溶解度增加了4倍和14倍。与5-OH-DPAT相比,缬氨酸和γ-丙氨酸-5-OH-DPAT分别在人类皮肤上的转运更少且效率更高。尽管体外转运较高,但与S-5-OH-DPAT相比,电流施加1.5h(250μAcm〜2)的β-丙氨酸-S-5-OH-DPAT血浆浓度较低。然而,前药在离子电渗疗法后显示出更高的血浆浓度,这可以解释为由于水解和皮肤贮库形成而导致的延迟释放。这导致了与5-OH-DPAT相同的最大药理作用,但作用时间更长。目前的发现表明,β-丙氨酸-5-OH-DPAT是有前途的前药,在稳定性,转运效率和酶促转化之间具有良好的平衡。

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