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芬太尼及其3种类似物急性暴露于啮齿动物所引起的生化、氧化和生理变化。

Biochemical, Oxidative, and Physiological Changes Caused by Acute Exposure of Fentanyl and Its 3 Analogs in Rodents.

作者信息

Yadav Shiv Kumar, Kumar Deo, Kumar Pravin, Gupta Pradeep Kumar, Bhattacharya Rahul

机构信息

1 Pharmacology and Toxicology Division, Defence Research and Development Establishment, Gwalior, Madhya Pradesh, India.

2 Synthetic Chemistry Division, Defence Research and Development Establishment, Gwalior, Madhya Pradesh, India.

出版信息

Int J Toxicol. 2018 Jan/Feb;37(1):28-37. doi: 10.1177/1091581817750560. Epub 2018 Jan 22.

Abstract

Synthesis and bioefficacy of fentanyl and its 8 new 1-substituted analogs (1-8) were earlier reported by us. Of these 8 compounds, N-(1-(2-phenoxyethyl)-4-piperidinyl)propionanilide (2), N-isopropyl-3-(4-( N-phenylpropionamido)piperidin-1-yl)propanamide (5), and N- t-butyl-3-(4-( N-phenylpropionamido)piperidin-1-yl) propanamide (6) were found to be more effective and less toxic compared to fentanyl. The present study reports the acute effect of fentanyl (0.50 Median Lethal Dose (LD); intraperitoneal) and its 3 analogs (2, 5, and 6) on various biochemical and oxidative parameters in mice and various physiological parameters in rats. Blood alkaline phosphatase (1 hour and 7 days) and urea levels (1 hour) were significantly elevated by fentanyl, while alanine aminotransferase levels (1 hour) were increased by both fentanyl and analog 2 compared to the corresponding control. Increase in partial pressure of carbon dioxide and decrease in partial pressure of oxygen were also caused by fentanyl and analog 2 (1 hour). Analog 6 alone elevated malondialdehyde levels in the brain, liver, and kidney tissues (7 days). The LD of fentanyl and analogs 2, 5, and 6 were found to be 0.879, 87.88, 69.80, and 55.44 mg/kg, respectively, in rats. Significant decrease in heart rate, mean arterial pressure, respiratory rate (RR), and neuromuscular transmission was produced by fentanyl and analog 2, while analog 5 decreased the RR alone. The changes, particularly the respiratory depression, were found to be reversed by naloxone, a μ-receptor antagonist. Thereby, indicating involvement of μ-receptor mediated effects of the compounds. To conclude, all the analogs were found to be less toxic compared to fentanyl, suggesting their possible role in pain management.

摘要

我们之前报道过芬太尼及其8种新的1-取代类似物(1-8)的合成及生物活性。在这8种化合物中,发现N-(1-(2-苯氧基乙基)-4-哌啶基)丙酰苯胺(2)、N-异丙基-3-(4-(N-苯基丙酰胺基)哌啶-1-基)丙酰胺(5)和N-叔丁基-3-(4-(N-苯基丙酰胺基)哌啶-1-基)丙酰胺(6)比芬太尼更有效且毒性更小。本研究报道了芬太尼(0.50半数致死剂量(LD);腹腔注射)及其3种类似物(2、5和6)对小鼠各种生化和氧化参数以及大鼠各种生理参数的急性影响。芬太尼使血液碱性磷酸酶(1小时和7天)和尿素水平(1小时)显著升高,而与相应对照组相比,芬太尼和类似物2均使丙氨酸转氨酶水平(1小时)升高。芬太尼和类似物2(1小时)还导致二氧化碳分压升高和氧分压降低。单独的类似物6使脑、肝和肾组织中的丙二醛水平升高(7天)。在大鼠中,芬太尼以及类似物2、5和6的LD分别为0.879、87.88、69.80和55.44 mg/kg。芬太尼和类似物2使心率、平均动脉压、呼吸频率(RR)和神经肌肉传递显著降低,而类似物5单独降低RR。发现这些变化,尤其是呼吸抑制,可被μ-受体拮抗剂纳洛酮逆转。因此,表明这些化合物涉及μ-受体介导的效应。总之,发现所有类似物与芬太尼相比毒性更小,表明它们在疼痛管理中可能发挥的作用。

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