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首页> 外文期刊>Pharmacology, Biochemistry and Behavior >Hesperidin produces antinociceptive response and synergistic interaction with ketorolac in an arthritic gout-type pain in rats.
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Hesperidin produces antinociceptive response and synergistic interaction with ketorolac in an arthritic gout-type pain in rats.

机译:橙皮苷可在关节炎痛风型大鼠中产生抗伤害感受的反应,并与酮咯酸产生协同作用。

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Hesperidin occurs in greatest concentration in plants from the Rutaceae and Lamiaceae families. In human nutrition it contributes to the integrity of blood vessels and its deficiency in the diet has been linked to abnormal capillary leakiness as well as pain. In this study, the bioflavonoid hesperidin was identified as an active compound in an ethanol extract of the Rosmarinus officinalis aerial parts tested in the pain-induced functional impairment model in the rat (PIFIR) as an assay of inflammatory and chronic nociception similar to that observed in clinical gout. Hesperidin produced a dose-dependent and significant response with an ED=1666.72 mg/kg in comparison to an ED=302.90 mg/kg for the extract or an ED=0.47 mg/kg for the reference drug ketorolac in the PIFIR model. Although the antinociceptive response of R. officinalis was reverted in presence of the opioid antagonist naloxone (10 mg/kg, s.c.) and the 5HT(1A) antagonist WAY100635 (0.12 mg/kg, s.c.), the hesperidin response was not modified by naloxone (10 mg/kg), WAY100635 (0.12 mg/kg), bicuculline (1 mg/kg, s.c.), flumazenil (10 mg/kg, i.p.) or caffeine (1 mg/kg, s.c.). Nevertheless, it was reduced in presence of capsazepine (10 or 20 mg/kg, s.c.) suggesting the participation of the TRPV1 receptor, which was reinforced when hesperidin significantly reduced the capsaicin-induced nociceptive response. A synergistic interaction was also observed when antinociceptive doses of hesperidin were combined with those of ketorolac producing 15 combinations mainly in additive and supra-additive responses. These results provide evidence for the antinociceptive activity of hesperidin and demonstrate synergistic response when combined with ketorolac, possibly by involvement of the TRPV1 receptor, suggesting their clinical potential in pain therapy.
机译:橙皮苷在芸香科和唇形科的植物中浓度最高。在人类营养中,它有助于血管的完整性,饮食中的缺乏与异常毛细血管渗漏以及疼痛有关。在这项研究中,生物类黄酮橙皮苷被鉴定为迷迭香药用植物空中提取物的乙醇提取物中的活性化合物,该提取物在大鼠疼痛诱导的功能障碍模型(PIFIR)中进行了测试,与炎性和慢性伤害感受的测定相似在临床痛风中。与PIFIR模型中提取物的ED = 302.90 mg / kg或参比药物酮咯酸的ED = 0.47 mg / kg相比,橙皮苷产生的剂量依赖性且显着的反应为ED = 1666.72 mg / kg。尽管在阿片样物质拮抗剂纳洛酮(10 mg / kg,sc)和5HT(1A)拮抗剂WAY100635(0.12 mg / kg,sc)存在的情况下,R. officinalis的抗伤害感受反应得以恢复,但纳洛酮并未改变橙皮苷的反应(10毫克/公斤),WAY100635(0.12毫克/公斤),比库林(1毫克/公斤,皮下),氟马西尼(10毫克/公斤,腹腔内)或咖啡因(1毫克/公斤,皮下)。然而,在辣椒碱(10或20 mg / kg,皮下注射)存在下,它的含量降低了,表明TRPV1受体的参与,当橙皮苷显着降低辣椒素诱导的伤害性反应时,TRPV1受体的作用增强了。当橙皮苷的抗伤害感受剂量与酮咯酸的抗伤害感受剂量组合产生15种组合时,主要在加性和超加性反应中,还观察到协同作用。这些结果为橙皮苷的抗伤害感受活性提供了证据,并证明与酮咯酸合用时可能通过TRPV1受体的参与而产生协同反应,表明其在疼痛治疗中的临床潜力。

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