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以异烟酸和烟酸(烟酰胺)为配体的钌配合物的抗炎和抗伤害感受活性

Anti-inflammatory and Anti-nociceptive Activity of Ruthenium Complexes with Isonicotinic and Nicotinic Acids (Niacin) as Ligands.

作者信息

Freitas Cristina S, Roveda Antonio C, Truzzi Daniela R, Garcia André C, Cunha Thiago M, Cunha Fernando Q, Franco Douglas W

机构信息

†Departamento de Farmacologia, Faculdade de Medicina de Ribeirão Preto, Universidade de São Paulo, CEP 14049-900, Ribeirão Preto, SP, Brazil.

‡Instituto de Química de São Carlos, Universidade de São Paulo-USP, P.O. Box 780, CEP 13566-590, São Carlos, SP, Brazil.

出版信息

J Med Chem. 2015 Jun 11;58(11):4439-48. doi: 10.1021/acs.jmedchem.5b00133. Epub 2015 May 28.

Abstract

This work evaluated the analgesic and anti-inflammatory activity of ruthenium(II) complexes trans-Ru(NO(+))(NH3)4(L)3 and Ru(NH3)5(L)3 containing the nonsteroidal anti-inflammatory drugs nicotinic acid (Hnic) and its isomer isonicotinic acid (ina) as ligands (L). The anti-nociceptive potential of these complexes and the free ligands (noncoordinated to ruthenium) was tested in different models with doses ranging from 1 to 100 μmol/kg. The ligands themselves were inactive; however, the ruthenium complexes containing Hnic and ina inhibited mechanical hyperalgesia induced by prostaglandin E2, carrageenan-induced hyperalgesia, and antigen-induced arthritis. Moreover, the ruthenium complexes inhibited overt nociception induced by formalin, acetic acid, capsaicin, and cinnamaldehyde. The mechanism involved in the anti-nociceptive effects of the ruthenium complexes suggested that ATP-sensitive K(+) channel pathways were not involved because glibenclamide did not affect their anti-nociceptive activities. However, the anti-nociceptive effect appears to be a consequence of the reduction in neutrophil migration and inhibition of the protein kinase C pathway.

摘要

本研究评估了含非甾体抗炎药烟酸(Hnic)及其异构体异烟酸(ina)作为配体(L)的钌(II)配合物反式-Ru(NO(+))(NH3)4(L)3和Ru(NH3)5(L)3的镇痛和抗炎活性。在不同模型中测试了这些配合物及游离配体(未与钌配位)的抗伤害感受潜力,剂量范围为1至100 μmol/kg。配体本身无活性;然而,含Hnic和ina的钌配合物抑制了前列腺素E2诱导的机械性痛觉过敏、角叉菜胶诱导的痛觉过敏以及抗原诱导的关节炎。此外,钌配合物抑制了福尔马林、乙酸、辣椒素和肉桂醛诱导的明显伤害感受。钌配合物抗伤害感受作用的机制表明,其不涉及ATP敏感性钾(K(+))通道途径,因为格列本脲不影响它们的抗伤害感受活性。然而,抗伤害感受作用似乎是中性粒细胞迁移减少和蛋白激酶C途径受抑制的结果。

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