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Thiodipeptides targeting the intestinal oligopeptide transporter as a general approach to improving oral drug delivery

机译:靶向肠寡肽转运蛋白的硫肽作为改善口服药物递送的一般方法

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摘要

The broad substrate capacity of the intestinal oligopeptide transporter, PepT1, has made it a key target of research into drug delivery. Whilst the substrate capacity of this transporter is broad, studies have largely been limited to small peptides and peptide-like drugs. Here, we demonstrate for the first time that a diverse range of drugs can be targeted towards transport by PepT1 using a hydrolysis resistant carrier. Eleven prodrugs were synthesized by conjugating modified dipeptides containing a thioamide bond to the approved drugs ibuprofen, gabapentin, propofol, aspirin, acyclovir, nabumetone, atenolol, zanamivir, baclofen and mycophenolate. Except for the aspirin and acyclovir prodrugs, which were unstable in the assay conditions and were not further studied, the prodrugs were tested for affinity and transport by PepT1 expressed in Xenopus laevis oocytes: binding affinities ranged from approximately 0.1 to 2 mM. Compounds which showed robust transport in an oocyte trans-stimulation assay were then tested for transcellular transport in Caco-2 cell monolayers: all five tested prodrugs showed significant PepT1-mediated transcellular uptake. Finally, the ibuprofen and propofol prodrugs were tested for absorption in rats: following oral dosing the intact prodrugs and free ibuprofen were measured in the plasma. This provides proof-of-concept for the idea of targeting poorly bioavailable drugs towards PepT1 transport as a general means of improving oral permeability.
机译:肠道寡肽转运蛋白PepT1具有广泛的底物能力,使其成为药物输送研究的主要目标。尽管该转运蛋白的底物容量广泛,但研究很大程度上限于小肽和类肽药物。在这里,我们首次证明使用抗水解载体可以将多种药物靶向PepT1转运。通过将含有硫酰胺键的修饰二肽与批准的药物布洛芬,加巴喷丁,丙泊酚,阿司匹林,阿昔洛韦,萘丁美酮,阿替洛尔,扎那米韦,巴氯芬和霉酚酸酯缀合,可合成11种前药。除阿司匹林和无环鸟苷前药在测定条件下不稳定且未作进一步研究外,均通过非洲爪蟾卵母细胞中表达的PepT1检测了前药的亲和力和转运:结合亲和力范围约为0.1至2μmmM。然后对在卵母细胞转刺激试验中显示出稳定转运的化合物在Caco-2 +细胞单层中进行了细胞间转运的测试:所有五个被测前药均显示出显着的PepT1介导的细胞吸收。最后,测试了布洛芬和丙泊酚前药在大鼠中的吸收:口服给药后,测定了血浆中完整的前药和游离的布洛芬。这为将不良生物利用度药物靶向PepT1转运作为改善口服通透性的一般手段提供了概念验证。

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