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Antinociceptive and immunosuppressive effects of opiate drugs: a structure-related activity study

机译:阿片类药物的抗伤害感受和免疫抑制作用:与结构有关的活性研究

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class="enumerated" style="list-style-type:decimal">Although it is well known that morphine induces significant immunosuppression, the potential immunosuppressive activity of morphine derived drugs commonly used in the treatment of pain (codeine, hydromorphone, oxycodone) has never been evaluated.We evaluated in the mouse the effect of the natural opiates (morphine and codeine) and synthetic derivatives (hydromorphone, oxycodone, nalorphine, naloxone and naltrexone) on antinociceptive thresholds and immune parameters (splenocyte proliferation, Natural Killer (NK) cell activity and interleukin-2 (IL-2) production).Morphine displayed a potent immunosuppressive effect that was not dose-related to the antinociceptive effect, codeine possessed a weak antinociceptive effect and limited immunosuppressive activity; nalorphine, a μ-antagonist and κ-agonist, exerted a potent immunosuppressive effect, but had very weak antinociceptive activity. The pure κ-antagonist nor-BNI antagonized the antinociceptive, but not the immunosuppresive effect of nalorphine.Hydromorphone and oxycodone, potent antinociceptive drugs, were devoid of immunosuppressive effects.The pure antagonists naloxone and naltrexone potentiated immune responses.Our data indicate that the C6 carbonyl substitution, together with the presence of a C7-8 single bond potentiates the antinociceptive effect, but abolishes immunosuppression (hydromorphone and oxycodone).The single substitution of an allyl on the piperidinic ring resulted in a molecule that antagonized the antinociceptive effect but maintained the immunosuppressive effect.Molecules that carry modifications of C6, the C7-8 bond and C14, together with an allyl or caboxymethyl group on the piperidinic ring antagonized both the antinociceptive and the immunosuppressive effect of opiates and were themselves immunostimulants.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 尽管众所周知吗啡会诱导显着的免疫抑制,但从未评估过用于治疗疼痛的吗啡衍生药物(可待因,氢吗啡酮,羟考酮)的潜在免疫抑制活性。 我们在小鼠中进行了评估天然鸦片剂(吗啡和可待因)和合成衍生物(氢吗啡酮,羟考酮,纳洛啡,纳洛酮和纳曲酮)对抗伤害感受性阈值和免疫参数(脾细胞增殖,自然杀伤(NK)细胞活性和白介素2(IL-2)的影响 吗啡显示出强效的免疫抑制作用,与​​抗伤害感受性剂量无关,可待因具有较弱的抗伤害感受性和有限的免疫抑制活性;纳洛啡是一种μ拮抗剂和κ激动剂,具有强大的免疫抑制作用,但其抗伤害感受活性很弱。纯的κ拮抗剂nor-BNI可以拮抗纳洛啡的镇痛作用,但不能抑制其免疫抑制作用。 氢吗啡酮和羟考酮是有效的镇痛药,没有免疫抑制作用。 纯净的 我们的数据表明,C6羰基取代以及C7-8单键的存在增强了抗伤害感受的作用,但消除了免疫抑制作用(氢吗啡酮和羟考酮)。 / li> 哌啶环上烯丙基的单取代产生一个拮抗镇痛作用但保持免疫抑制作用的分子。 带有C6,C7-8键的修饰分子和C14以及哌啶环上的烯丙基或甲氧苄基甲基共同拮抗阿片类药物的镇痛作用和免疫抑制作用,它们本身就是免疫刺激剂。

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