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Probing the pharmacokinetics of cucurbit[7, 8 and 10]uril: and a dinuclear ruthenium antimicrobial complex encapsulated in cucurbit[10]uril

机译:探讨葫芦[7,8和10]脲的药代动力学:和葫芦[10]脲包裹的双核钌抗菌复合物

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摘要

The relatively non-toxic family of cucurbit[n]uril, Q[n], have shown considerable potential in vitro as drug delivery agents, with only a few examples of pharmacokinetic (PK) studies for drug⊂Q[n]. Drug-free Q[n] PK studies are the next step in determining the pharmacological applicability in their drug delivery potential. The results for the first PK and bio-distribution of drug-free ¹⁴C-Q[7] are described for administration via intravenous (i.v.) and intraperitoneal (i.p.) dosing. A study of oral administration of drug-free ¹⁴C-Q[8] has also been undertaken to determine the time course for the gastrointestinal tract (GIT), absorption and subsequent bio-distribution. Q[10], a potential drug carrier for larger drugs, was evaluated for its effect on the PK profile of a dinuclear ruthenium complex (Rubb₁₂), a potential antimicrobial agent. The Rubb₁₂⊂Q[10] complex and free Rubb₁₂ were administered by i.v. to determine differences in Rubb₁₂ plasma concentrations and organ accumulation. Interestingly, the PK profiles and bio-distribution observed for Q[7] showed similarities to those of Rubb₁₂⊂Q[10]. Drug-free Q[7] has a relatively fast plasma clearance and a generally low organ accumulation except for the kidneys. Drug-free Q[8] showed a low absorption from the GIT into the blood stream but the small percentage absorbed reflected the organ accumulation of Q[7]. These results provide a better understanding of the probable PK profile and bio-distribution for a drug⊂Q[n] through the influence of the drug delivery vehicle and the positive clearance of drug-free Q[n] via the kidneys supports its potential value in future drug delivery applications.
机译:相对无毒的葫芦科[n]尿嘧啶,Q [n],在体外已显示出作为药物递送剂的巨大潜力,仅针对药物Q [n]进行药代动力学(PK)研究的几个例子。无药物Q [n] PK研究是确定其药物输送潜力的药理学适用性的下一步。描述了通过静脉内(i.v.)和腹膜内(i.p.)给药的无药¹C-Q [7]的第一个PK和生物分布的结果。还进行了口服无药物¹C-Q[8]的研究,以确定胃肠道(GIT),吸收和随后的生物分布的时程。评估了Q [10](一种用于较大药物的潜在药物载体)对潜在的抗菌剂双核钌配合物(Rubb 12)的PK分布的影响。静脉内施用Rubb 12⊂Q[10]络合物和游离的Rubb 12。确定Rubb 12血浆浓度和器官蓄积的差异。有趣的是,Q [7]观察到的PK分布和生物分布与Rubb 12⊂Q [10]相似。无毒Q [7]除肾脏外,血浆清除率相对较高,器官蓄积通常较低。无毒Q [8]从GIT吸收到血液中的吸收很低,但是吸收的百分比很小反映了Q [7]的器官积累。这些结果通过药物输送媒介的影响提供了对药物⊂Q[n]可能的PK分布和生物分布的更好理解,并且无毒Q [n]通过肾脏的积极清除支持了其潜在价值。在未来的药物输送应用中。

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