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低分子量聚乙二醇与双氢埃托啡的缀合增强了镇痛效果。

Conjugation of low molecular weight poly(ethylene glycol) to biphalin enhances antinociceptive profile.

作者信息

Huber Jason D, Campos Chris R, Egleton Richard D, Witt Ken, Guo Lihong, Roberts Michael J, Bentley Michael D, Davis Thomas P

机构信息

Department of Pharmacology, The University of Arizona College of Medicine, 1501 N. Campbell Avenue, P.O. Box 24-5050, Tucson, AZ 85724, USA.

出版信息

J Pharm Sci. 2003 Jul;92(7):1377-85. doi: 10.1002/jps.10406.

Abstract

The objectives of this study were to examine the effect of poly(ethylene glycol) (PEG) conjugation on the tyrosine residues of biphalin to determine the proper size PEG for optimal efficacy and investigate the antinociceptive profile of PEG-biphalin against biphalin via three routes of administration. All antinociception evaluations were made using a radiant-heat tail flick analgesia meter. (2 kDa)(2) PEG-biphalin was identified as the optimal size of PEG to enhance the antinociceptive profile following intravenous administration of 685 nmol kg(-1) of biphalin or PEG-biphalin [(1 kDa)(2), (2 kDa)(2), (5 kDa)(2), (12 kDa)(2), (20 kDa)(2)]. (2 kDa)(2) PEG-biphalin displayed an area under the curve (AUC) approximately 2.5 times that of biphalin with enhanced analgesia up to 300 min postinjection. (2 kDa)(2) PEG-biphalin was equipotent to biphalin following intracerebroventricular administration (0.4 nmol kg(-1)). Both biphalin and (2 kDa)(2) PEG-biphalin were effectively antagonized with naloxone (10 mg kg(-1)) and a partial antagonistic effect was seen following pretreatment with naltrindole (20 mg kg(-1)). (2 kDa)(2) PEG-biphalin showed significantly increased potency (A(50)) when administered intravenously and subcutaneously. Additionally, (2 kDa)(2) PEG-biphalin demonstrated a significantly enhanced antinociceptive profile (AUC) via all routes of administration tested. These findings indicate that PEG conjugation to biphalin retains opioid-mediated effects observed with biphalin and is a valuable tool for eliciting potent, sustained analgesia via parenteral routes of administration.

摘要

本研究的目的是检测聚乙二醇(PEG)偶联对双氢脑啡肽酪氨酸残基的影响,以确定实现最佳疗效的合适PEG大小,并通过三种给药途径研究PEG - 双氢脑啡肽相对于双氢脑啡肽的抗伤害感受情况。所有抗伤害感受评估均使用辐射热甩尾镇痛仪进行。(2 kDa)(2)PEG - 双氢脑啡肽被确定为在静脉注射685 nmol kg(-1)双氢脑啡肽或PEG - 双氢脑啡肽[(1 kDa)(2)、(2 kDa)(2)、(5 kDa)(2)、(12 kDa)(2)、(20 kDa)(2)]后增强抗伤害感受效果的最佳PEG大小。(2 kDa)(2)PEG - 双氢脑啡肽的曲线下面积(AUC)约为双氢脑啡肽的2.5倍,注射后长达300分钟镇痛作用增强。脑室内给药(0.4 nmol kg(-1))时,(2 kDa)(2)PEG - 双氢脑啡肽与双氢脑啡肽等效。双氢脑啡肽和(2 kDa)(2)PEG - 双氢脑啡肽均能被纳洛酮(10 mg kg(-1))有效拮抗,用纳曲吲哚(20 mg kg(-1))预处理后可见部分拮抗作用。静脉注射和皮下注射时,(2 kDa)(2)PEG - 双氢脑啡肽的效价(A(50))显著增加。此外,(2 kDa)(2)PEG - 双氢脑啡肽通过所有测试给药途径均显示出显著增强的抗伤害感受情况(AUC)。这些发现表明,PEG与双氢脑啡肽偶联保留了双氢脑啡肽观察到的阿片类介导的作用,并且是通过胃肠外给药途径引发强效、持续镇痛的有价值工具。

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