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臭氧预处理效应在体内是否与Nrf2/EpRE激活途径相关?初步结果。

Is ozone pre-conditioning effect linked to Nrf2/EpRE activation pathway in vivo? A preliminary result.

作者信息

Re Lamberto, Martínez-Sánchez Gregorio, Bordicchia Marica, Malcangi Giuseppe, Pocognoli Antonella, Morales-Segura Miguel Angel, Rothchild John, Rojas Armando

机构信息

Clinical Pharmacology & Toxicology Department, Medinat SAS, Via Fazioli 22, 60021 Camerano, Ancona, Italy.

Medical Center Beauty Benefit - San Biagio di Osimo, Via Mons. Oscar Romero, 31, 60027 Osimo, Ancona, Italy.

出版信息

Eur J Pharmacol. 2014 Nov 5;742:158-62. doi: 10.1016/j.ejphar.2014.08.029. Epub 2014 Sep 16.

DOI:10.1016/j.ejphar.2014.08.029
PMID:25218903
Abstract

The present preliminary study has been focused on verifying whether ozone preconditioning may be linked to Nrf2/EpRE (nuclear factor erythroid 2/electrophile-responsive element) activation pathway in vivo. Healthy volunteers received a total of three Major Auto-Hemotherapy (MAH) treatments, with treatments administered every second day. The amount of blood used for each subject was standardized to the value obtained multiplying the subject׳s body weight by 1.3 in order to ensure the same ozone concentrations for each subject. A parallel group (n=50) age and gender matched was used as reference for the experimental variables related to the oxidative stress parameters. Levels of Nrf2 and oxidative stress index were measured throughout the study. Levels of Nrf2 (P<0.01) in peripheral blood mononuclear cells (PBMC) were found to increase immediately after ozone/oxygen exposure (35µg/ml, prior to reinfusion). This effect was still detected (P<0.05) in total circulating PBMC when measured 30min following reinfusion. After a series of 3 MAH, Nrf2 returned back to the basal level. At the end of the experiment the activities of superoxide dismutase and catalase were increased (P<0.05). These data demonstrate for the first time in vivo the activation of the Nrf2 pathway by a low dose of ozone and the promotion of the feedback mechanism that induces the synthesis of proteins which collectively favors cell survival.

摘要

目前的初步研究聚焦于验证臭氧预处理是否可能在体内与Nrf2/EpRE(核因子红细胞2/亲电反应元件)激活途径相关联。健康志愿者总共接受了三次大自血疗法(MAH)治疗,每隔一天进行一次治疗。为确保每个受试者的臭氧浓度相同,将每个受试者使用的血液量标准化为通过将受试者体重乘以1.3获得的值。一个年龄和性别匹配的平行组(n = 50)用作与氧化应激参数相关的实验变量的对照。在整个研究过程中测量Nrf2水平和氧化应激指数。发现外周血单核细胞(PBMC)中的Nrf2水平(P<0.0

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