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Ursolic Acid Protected Lung of Rats From Damage Induced by Cigarette Smoke Extract

机译:熊果酸保护大鼠的肺免受香烟烟雾提取物所致的伤害

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>Background: We found previously that ursolic acid (UA) administration could alleviate cigarette smoke-induced emphysema in rats partly through the unfolded protein response (UPR) PERK-CHOP and Nrf2 pathways, thus alleviating endoplasmic reticulum stress (ERS)-associated oxidative stress and cell apoptosis. We hypothesized that other UPR pathways may play similar roles in cigarette smoke extract (CSE)-induced emphysema. So, we sought to investigate the dynamic changes and effects of UPR and the downstream apoptotic pathways. Further, we investigated whether UA could alleviate CSE-induced emphysema and airway remodelling in rats, whether and when it exerts its effects through UPR pathways as well as Smads pathways. >Methods: One hundred eight Sprague Dawley (SD) rats were randomly divided into three groups: Sham group, CSE group, and UA group, and each group was further divided into three subgroups, administered CSE (vehicle) for 2, 3, or 4 weeks; each subgroup had 12 rats. We examined pathological changes, analyzed the three UPR signaling pathways and subsequent ERS, intrinsic and extrinsic apoptotic pathway indicators, as well as activation of Smad2,3 molecules in rat lungs. >Results: Exposure to CSE for 3 or 4 weeks could apparently induce emphysema and airway remodeling in rats, including gross and microscopic changes, alteration of mean alveolar number (MAN), mean linear intercept (MLI), and mean airway thickness in lung tissue sections. UA intervention could significantly alleviate CSE-induced emphysema and airway remodeling in rats. UA exerted its effects through ameliorating apoptosis by down regulating UPR signalling pathways and subsequent apoptosis pathways, as well as, downregulating p-Smad2 and p-Smad3 molecules. >Conclusions: UA attenuated CSE-induced emphysema and airway remodeling, exerting its effects partly through regulation of three UPR pathways, amelioration downstream apoptotic pathways, and alleviating activation of Smad2 and Smad3.
机译:>背景:我们以前发现,熊果酸(UA)可以部分通过未折叠的蛋白质反应(UPR)PERK-CHOP和Nrf2途径减轻香烟烟雾引起的肺气肿,从而减轻内质网应激( ERS)相关的氧化应激和细胞凋亡。我们假设其他UPR途径可能在香烟烟雾提取物(CSE)引起的肺气肿中起类似作用。因此,我们寻求研究UPR和下游凋亡途径的动态变化和影响。此外,我们研究了UA是否可以减轻大鼠CSE引起的气肿和气道重塑,是否以及何时通过UPR途径以及Smads途径发挥作用。 >方法:将110只Sprague Dawley(SD)大鼠随机分为三组:假手术组,CSE组和UA组,每组又分为三个亚组,进行CSE(车辆)治疗2、3或4周;每个亚组有12只大鼠。我们检查了病理变化,分析了三个UPR信号通路和随后的ERS,内在和外在的凋亡通路指示剂,以及大鼠肺中Smad2,3分子的活化。 >结果:暴露于CSE 3或4周显然可以诱导大鼠气肿和气道重塑,包括肉眼和显微镜改变,平均肺泡数(MAN),平均线性截距(MLI)和肺组织切片中的平均气道厚度。 UA干预可显着减轻CSE诱导的大鼠气肿和气道重塑。 UA通过下调UPR信号通路和随后的凋亡通路以及下调p-Smad2和p-Smad3分子来改善细胞凋亡,从而发挥其作用。 >结论:UA减弱了CSE诱导的肺气肿和气道重塑,部分通过调节三种UPR途径,改善下游的凋亡途径以及减轻Smad2和Smad3的激活来发挥其作用。

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