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Morphine pretreatment provides histologic protection against ischemia-reperfusion injury in rabbit retina.

机译:吗啡预处理为兔视网膜缺血再灌注损伤提供了组织学保护。

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PURPOSE: Pharmacologic preconditioning with morphine has been shown to protect several kinds of tissues against ischemia-reperfusion injury. The aim of the present study was to investigate whether intravitreal administration of morphine induces structural protection against ischemic damage in a rabbit model of ischemic retinopathy. METHODS: Twenty-eight male white New Zealand rabbits were used. Animals in saline control group received 0.1 mL of phosphate-buffered saline (PBS) intravitreally with no postinjection ischemia. In the saline-control ischemia group, 15 minutes after injection of PBS, retinal ischemia was induced by raising intraocular pressure to 150 mmHg for 60 minutes. In three treatment-ischemia groups, morphine (1, 5, and 10 micromol/L) was administered intravitreally 15 minutes before induction of ischemia. In another experiment, naloxone (40 micromol/L) was administered 5 minutes before intravitreal administration of morphine (10 micromol/L) followed by 60 minutes of ischemia to investigate the role of opioid receptors in mediating the possible protective effect of morphine. Toxicity controls were performed with morphine (10 micromol/L) and naloxone (40 micromol/L) without ischemia. Histologic evaluation was performed for all groups on the seventh postoperative day. RESULTS: Sixty minutes of ischemia led to severe cell loss in ganglion cell layer and thinning of the inner nuclear layer in saline-control ischemia compared to that of the nonischemia control group (P < 0.001). Thickness of the inner plexiform layer to the inner limiting membrane was significantly increased due to edema (P < 0.001). Administration of morphine in higher doses (5 and 10 micromol/L) significantly improved all of the above mentioned indices (P < 0.05). Administration of naloxone 15 minutes before morphine reversed most of the morphine protective effects. CONCLUSIONS: Morphine pretreatment provides significant histologic protection against ischemic injury in rabbit retina. Pharmacologic evidence suggests thatthis protective phenomenon may be mediated in part by opiate receptors.
机译:目的:用吗啡进行药理学预处理已显示出保护多种组织免受缺血再灌注损伤的作用。本研究的目的是研究在缺血性视网膜病的兔子模型中玻璃体内施用吗啡是否诱导针对缺血性损伤的结构保护。方法:使用28只雄性新西兰白兔。生理盐水对照组的动物玻璃体内接受0.1 mL磷酸盐缓冲盐水(PBS),注射后无局部缺血。在盐水对照缺血组中,注射PBS后15分钟,通过将眼压升高至150mmHg 60分钟来诱导视网膜缺血。在三个治疗缺血组中,在诱导缺血前15分钟玻璃体内给予吗啡(1、5和10 micromol / L)。在另一个实验中,在玻璃体内给予吗啡(10微摩尔/升)之前5分钟,给予纳洛酮(40微摩尔/升),然后缺血60分钟,以研究阿片受体在介导吗啡可能的保护作用中的作用。用吗啡(10微摩尔/升)和纳洛酮(40微摩尔/升)进行缺血性对照。术后第七天对所有组进行组织学评估。结果:与非缺血对照组相比,盐水对照组缺血60分钟导致神经节细胞层严重细胞丢失,内核层变薄(P <0.001)。由于水肿,内侧丛状层至内侧限制膜的厚度显着增加(P <0.001)。以更高剂量(5和10 micromol / L)施用吗啡可显着改善上述所有指标(P <0.05)。在吗啡给药前15分钟给予纳洛酮逆转了大多数吗啡保护作用。结论:吗啡预处理为兔视网膜缺血提供了重要的组织学保护。药理证据表明,这种保护现象可能部分由阿片受体介导。

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