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首页> 外文期刊>Organic & biomolecular chemistry >Synthesis, radiosynthesis and biological evaluation of 1,4-dihydroquinoline derivatives as new carriers for specific brain delivery
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Synthesis, radiosynthesis and biological evaluation of 1,4-dihydroquinoline derivatives as new carriers for specific brain delivery

机译:1,4-二氢喹啉衍生物作为特定脑传递新载体的合成,放射合成和生物学评估

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摘要

In spite of numerous reports dealing with the use of 1,4-dihydropyndines as carriers to deliver biological active compounds to the brain, this chemical delivery system (CDS) suffers from poor stability of the 1,4-dihydropyridine derivatives towards oxidation and hydration reactions seriously limiting further investigations in vivo. In an attempt to overcome these limitations, we report herein the first biological evaluation of more stable annel1ated NADH models in the quinoline series as relevant neuroactive drug-carrier candidates. The radio1abeled 1,4-dihydroquinoline [~(11)C]1a was prepared to be subsequently peripherally injected in rats. The injected animals were sacrificed and brains were collected. The radioactivity measured in rat brain indicated a rapid penetration of the carrier [~(11)C]1a into the CNS. HPLC analysis of brain homogenates showed that oxidation of [~(11)C]1a into the corresponding quinolinium salt [~(11)C]4a was completed in less than 5 min. An in vivo evaluation in mice is also reported to illustrate the potential of such 1,4-dihydroquinoline derivatives to transport a neuroactive drug in the CNS. For this purpose, γ-aminobutyric acid (GABA). well known to poorly cross the brain blood barrier (BBB) was connected to this 1,4-dihydroquinoline-type carrier. After i.p. injection of 1,4-dihydroquinoline-GABA derivative 1b in mice, a significant alteration of locomotor activity (LMA) was observed presumably resulting from an enhancement of central GAB Aergic activity. These encouraging results give strong evidence for the capacity of carrier-GABA derivative 1b to cross the BBB and exert a pharmacological effect on the CNS. This study paves the way for further progress in designing new redox chemical delivery systems.
机译:尽管有许多关于使用1,4-二氢吡啶作为载体将生物活性化合物输送到大脑的报道,但该化学输送系统(CDS)的1,4-二氢吡啶衍生物对氧化和水合反应的稳定性差。严重限制了体内的进一步研究。为了克服这些局限性,我们在此报告了喹啉系列中作为相关神经活性药物载体候选物的更稳定的去核NADH模型的首次生物学评估。制备有放射性的1,4-二氢喹啉[〜(11)C] 1a,随后将其周边注射到大鼠中。处死被注射的动物并收集大脑。在大鼠大脑中测得的放射性表明载体[〜(11)C] 1a迅速渗入CNS。对脑匀浆的HPLC分析表明,[〜(11)C] 1a氧化为相应的喹啉盐[〜(11)C] 4a不到5分钟即可完成。还报道了在小鼠中的体内评估以说明这种1,4-二氢喹啉衍生物在CNS中转运神经活性药物的潜力。为此,γ-氨基丁酸(GABA)。众所周知,它很难穿过脑血屏障(BBB)与此1,4-二氢喹啉型载体相连。在i.p.之后在小鼠体内注射1,4-二氢喹啉-GABA衍生物1b后,据观察到运动活性(LMA)发生了显着变化,这可能是由于中央GAB能动性增强所致。这些令人鼓舞的结果为载体-GABA衍生物1b穿过BBB并对CNS发挥药理作用的能力提供了有力证据。这项研究为设计新的氧化还原化学物质输送系统的进一步发展铺平了道路。

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  • 来源
    《Organic & biomolecular chemistry》 |2009年第18期|3666-3673|共8页
  • 作者单位

    Laboratoire de Clnmie Organique Fine el Heterocyclique, UMR 6014, IRC0F, CNRS, Universite el INSA de Rouen, B,P 08 F-76131, Mont- Saint-Aignan Cedex, (France);

    Groupe de Developpements Methodologiques en Tomographie par Emis-sion de Positons, CEA/DSV/I2BM/CI-NAPS UMR6232, Universile de Caen Basse Normandie, Caen, (France);

    Groupe de Developpements Methodologiques en Tomographie par Emis-sion de Positons, CEA/DSV/I2BM/CI-NAPS UMR6232, Universile de Caen Basse Normandie, Caen, (France);

    Laboratoire de Clnmie Organique Fine el Heterocyclique, UMR 6014, IRC0F, CNRS, Universite el INSA de Rouen, B,P 08 F-76131, Mont- Saint-Aignan Cedex, (France) Laboraloire de Neuropharmacologie Experimen1ale associe an CNRS (FRE-2735), Faculte de Medecine et de pharmacie, Universite de Rouen, F-76000. (France);

    Laboratoire de Clnmie Organique Fine el Heterocyclique, UMR 6014, IRC0F, CNRS, Universite el INSA de Rouen, B,P 08 F-76131, Mont- Saint-Aignan Cedex, (France);

    Laboraloire de Neuropharmacologie Experimen1ale associe an CNRS (FRE-2735), Faculte de Medecine et de pharmacie, Universite de Rouen, F-76000. (France);

    Inserm-EPHE-Universite de Caen Basse-Normandie, Unite U923, GIP Cyceron, CHU Cote de Nacre, Caen, (France);

    Laboratoire de Clnmie Organique Fine el Heterocyclique, UMR 6014, IRC0F, CNRS, Universite el INSA de Rouen, B,P 08 F-76131, Mont- Saint-Aignan Cedex, (France);

    Groupe de Developpements Methodologiques en Tomographie par Emis-sion de Positons, CEA/DSV/I2BM/CI-NAPS UMR6232, Universile de Caen Basse Normandie, Caen, (France);

    Laboratoire de Clnmie Organique Fine el Heterocyclique, UMR 6014, IRC0F, CNRS, Universite el INSA de Rouen, B,P 08 F-76131, Mont- Saint-Aignan Cedex, (France);

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