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1.
目的:观察心肌成纤维细胞是否存在线粒体乙醛脱氢酶2(ALDH2)的表达,探讨ALDH2在高糖诱导的心肌成纤维细胞引起纤维化发生中的作用。方法:原代培养心肌成纤维细胞,分为正常对照组(5.5 mmol/L)、正常+ALDH2激动剂Alda-1(20μmol/L)组、高糖组(30 mmol/L)、高糖+ Alda-1组。免疫荧光鉴定心肌成纤维细胞。各组细胞分别培养48 h后应用MTT法检测成纤维细胞增殖活力,RT-PCR和Western blot检测ALDH2 mRNA及蛋白的表达。结果:RT-PCR和Western blot结果显示心肌成纤维细胞ALDH2 mRNA和蛋白均有表达。与正常对照组相比,高糖组心肌成纤维细胞增殖能力提高(P < 0.01),ALDH2蛋白表达下降(P < 0.05);与高糖组相比,高糖+ Alda-1组心肌成纤维细胞增殖能力降低(P < 0.01),ALDH2的蛋白表达增加(P < 0.05)。结论:心肌成纤维细胞存在ALDH2的表达,ALDH2激动剂Alda-1提高ALDH2的表达后可以抑制高糖引起的心肌成纤维细胞的增殖。  相似文献   

2.
谷氧还蛋白1(glutaredoxin 1,Grx1)作为一种重要的抗氧化剂,通过响应多种重要蛋白质的活动和功能调节细胞的关键过程.了解Grx1功能,对寻求糖尿病和心肌病等,以凋亡失调和氧化还原稳态改变为发病机制的疾病的新颖治疗策略至关重要.为研究Grx1对高糖诱导的大鼠心肌细胞凋亡的抑制作用及相关信号机制,本研究以高糖诱导大鼠心肌细胞H9c2建立高糖损伤模型,采用免疫印迹实验检测caspase-3、8、9蛋白活性片段的表达和凋亡信号蛋白JNK/c-Jun的磷酸化水平.结果显示,与正常对照组相比,高糖组caspase家族中,剪切的caspase-3、caspase-8、caspase-9相对含量均显著增多,JNK和c-Jun蛋白的磷酸化水平均显著上调. 但给予外源性Grx1保护后,剪切的caspase-3和caspase-8相对含量均显著降低,JNK和c-Jun蛋白的磷酸化水平均显著下调.上述结果表明,高糖通过介导caspase-8/3和caspase-9/3凋亡通路,并激活凋亡相关信号通路JNK/c-Jun诱导H9c2心肌细胞凋亡.给予外源性Grx1保护后,可通过抑制caspase-8/3凋亡通路和JNK /c-Jun信号通路的激活,拮抗高糖诱导的心肌细胞凋亡.  相似文献   

3.
目的:研究紫铆花素对心肌缺血再灌注损伤的保护作用及其机制。方法:体外建立H9c2心肌细胞缺血再灌注模型,分为正常组、模型组、紫铆花素低、中和高剂量组(10,20和40μM)。检测细胞存活率,LDH释放水平,试剂盒检测MDA、SOD、IL-1和IL-6水平,蛋白印迹法检测Bax,Bcl-2蛋白的表达以及AMPK和GSK-3β磷酸化水平。结果:与模型组比较,紫铆花素能够提高细胞存活率,减少LDH水平,降低MDA、IL-1和IL-6,增加SOD水平。减少Bax,Caspase-3蛋白的表达,增加Bcl-2蛋白的表达,提高Bcl-2/Bax的比值(P0.05)。同时,紫铆花素能够剂量依赖性的促进AMPK和GSK-3β磷酸化。进一步研究发现,紫铆花素的保护作用以及对GSK-3β的促磷酸化被AMPK抑制剂Compound C抵消。结论:紫铆花素能减轻心肌缺血再灌注损伤,抑制心肌细胞凋亡,其作用机制可能通过激活AMPK/GSK-3β信号通路,减轻氧化应激水平有关。  相似文献   

4.
目的:观察促凋亡蛋白p53上调凋亡调控因子(PUMA)在高糖所致H9C2心肌细胞凋亡中的作用及机制。方法:H9C2心肌细胞随机分为对照组(使用5.5mmol/L葡萄糖作用于细胞)和高糖组(使用35 mmol/L葡萄糖作用于细胞,HG组)分别刺激6 h, 12 h, 24 h和48 h,每组设复孔5个,TUNEL染色检测细胞凋亡率;RT-PCR及Western blot法分别测定PUMA mRNA及蛋白表达情况;JC-1法检测线粒体膜电位;Western blot测定caspase-3表达和细胞色素c(Cyt C)释放。H9C2细胞随机分为四组,对照组、高糖(35 mmol/L)、HG+si-scramble组(使用si-scramble转染心肌细胞24 h,使用35mmol/L葡萄糖作用于细胞)和Si-PUMA组(使用si-PUMA转染心肌细胞24 h,使用35mmol/L葡萄糖作用于细胞),观察抑制PUMA表达对高糖诱导细胞凋亡率、线粒体膜电位、Cyt C的影响。结果:与对照组相比,高糖刺激心肌细胞组TUNEL染色阳性率、活化caspase-3和PUMA表达明显升高(P<0.0...  相似文献   

5.
目的:研究PARP-1对高糖诱导的心肌细胞增殖的影响及可能机制。方法:用高糖处理H9C2细胞,qRT-PCR和Western blot检测细胞中PARP-1 m RNA和蛋白水平。H9C2细胞转染PARP-1 si RNA和si RNA control,q RT-PCR和Western blot检测细胞中PARP-1 m RNA和蛋白水平。用高糖处理转染PARP-1 si RNA后的H9C2细胞,CCK-8检测细胞增殖情况,硫代巴比妥酸法检测丙二醛(MDA)水平,黄嘌呤氧化酶法检测超氧化物歧化酶(SOD)水平,Western blot检测增殖细胞核抗原(PCNA)、p38丝裂原活化蛋白激酶(p38MAPK)、磷酸化的p38MAPK(p-p38MAPK)蛋白的表达。结果:高糖诱导的H9C2细胞中PARP-1 m RNA和蛋白水平明显高于正常培养的H9C2细胞(P0.05)。PARP-1 si RNA能够明显下调H9C2细胞中PARP-1 m RNA和蛋白水平。高糖处理后H9C2细胞存活率明显降低,细胞中MDA水平升高,细胞中SOD水平降低,细胞内的PCNA水平降低,p38MAPK磷酸化水平升高,与正常培养的H9C2细胞相比,差异均具有统计学意义(P0.05)。用高糖培养下调PARP-1的H9C2细胞,细胞存活率有所升高,细胞中MDA水平降低,细胞中SOD水平也升高,细胞中PCNA水平升高,细胞中p38MAPK磷酸化水平降低,与单纯高糖培养的细胞相比,差异均具有统计学意义(P0.05)。结论:PARP-1在高糖诱导的心肌细胞中表达上调,可能通过激活p38MAPK信号途径,增加细胞脂质氧化应激抑制心肌细胞增殖。  相似文献   

6.
该文探讨了抗氧化肽SS-31对高糖诱导的大鼠心肌细胞凋亡的影响,体外培养大鼠心肌细胞(H9C2),给予高糖(30 mmol/L)进行刺激,并利用抗氧化肽SS-31进行治疗后,采用Western blot检测Bax、Bcl-2、Cleaved caspase-3、Nox1、Nox4和Txnip的表达;利用荧光实时定量PCR(Real-time PCR)检测Bax、Bcl-2、Nox1、Nox4和Txnip mRNA的表达;采用原位缺口末端标记法(TUNEL)观察H9C2细胞凋亡情况;应用MitoSOX~(TM )Red染色检测H9C2细胞线粒体ROS产生情况。结果显示,与正常对照组相比,高糖组H9C2细胞凋亡明显增加,Bax、 Cleaved caspase-3、Nox1、Nox4和Txnip蛋白表达明显上调,Bcl-2蛋白表达减少,线粒体ROS产生增加;SS-31治疗后能够抑制高糖诱导的H9C2细胞的凋亡,下调Bax、Cleaved caspase-3、Nox1、Nox4、Txnip表达,上调Bcl-2表达并减少线粒体ROS的产生。以上研究结果提示,抗氧化肽SS-31抑制高糖诱导的大鼠心肌细胞凋亡的同时抑制Txnip/ROS产生,表明抗氧化肽SS-31可能对糖尿病心肌病变具有一定的改善作用。  相似文献   

7.
乙醛脱氢酶2 (aldehyde dehydrogenase 2, ALDH2)是线粒体特异性酶,已被证明参与氧化应激诱导的细胞凋亡,而在心肌细胞中的作用知之甚少。本研究旨在通过用特异性ALDH2抑制剂大豆苷抑制ALDH2活性来研究ALDH2在抗霉素A诱导的心肌细胞凋亡中的作用。应用抗霉素A和大豆苷诱导小鼠心肌细胞,然后测定ALDH2酶活性、细胞内活性氧(reactive oxy gen species, ROS)含量和细胞凋亡,应用RT-PCR和蛋白质印迹法(Western blotting)检测ALDH2 m RNA和蛋白表达。结果表明,抗霉素A (40μg/mL)可诱导新生心肌细胞凋亡,而大豆苷(50μmol/L)能有效地抑制ALDH2活性而对细胞凋亡没有影响,并且可显著增强抗霉素A诱导的心肌细胞凋亡(53.72%~71.33%, p<0.05)。与单独用抗霉素A处理的细胞相比,抗霉素A和大豆苷共处理的心肌细胞中活化的丝裂原活化蛋白激酶(mitogen-activated protein kinase, MAPK)信号传导途径(p38-MAPK)的磷酸化也显著增加。本研究初步表明,改变线粒体ALDH2活性可能是减少氧化损伤诱导的心肌细胞凋亡的潜在选择。  相似文献   

8.
目的:研究髓样分化蛋白2(MD2)基因沉默对高糖(HG)诱导的大鼠心肌细胞增殖抑制、凋亡及炎症反应的影响及其机制。方法:体外大鼠心肌细胞系H9C2细胞随机分为4组(n=3):LG组、HG组、HG + NC组、HG + si-MD2组,分别转染MD2基因小干扰RNA(si-MD2)或阴性对照24 h后进行低糖或高糖处理48 h。RT-qPCR检测MD2及细胞内炎症细胞因子TNF-α、IL-1β、IL-6的表达水平,MTS法、流式细胞术检测细胞增殖能力、细胞周期和细胞凋亡率,Western blot法检测细胞内相关蛋白的表达水平及磷酸化水平。结果:转染si-MD2后,H9C2细胞中MD2的表达水平明显下降(P<0.01)。与低糖(LG)组比较,高糖处理后的H9C2细胞中TNF-α、IL-1β、IL-6的mRNA水平显著升高,细胞增殖能力下降并发生G1期阻滞,细胞凋亡率和Cleaved Caspase-3蛋白水平升高(P< 0.01)。而MD2基因沉默可拮抗高糖对H9C2细胞增殖、细胞周期、凋亡及细胞中TNF-α、IL-1β、IL-6 mRNA水平的影响(P<0.05)。Western blot测定结果表明高糖处理后的H9C2细胞中细胞外信号调节激酶(ERK1/2)、P38丝裂原活化蛋白激酶(P38 MAPK)和C-Jun氨基末端激酶(JNK)蛋白的磷酸化水平明显升高,而MD2基因沉默可抑制高糖诱导下的ERK1/2、P38 MAPK和JNK蛋白激活(P<0.01)。结论:MD2基因沉默可能通过抑制ERK、P38 MAPK和JNK信号通路的激活来减少高糖诱导的大鼠心肌细胞炎症细胞因子表达,减少心肌细胞凋亡,促进细胞增殖。  相似文献   

9.
高血糖症是糖尿病并发心血管疾病的重要危险因素. 高血糖诱导产生的活性氧(ROS)能够引起糖尿病心肌病.我们的前期工作已经证实,肌肽对高糖环境下细胞凋亡具有保护作用,但其机制尚未明确.为研究肌肽对高糖诱导的大鼠心肌细胞凋亡的抑制作用及相关信号机制,以高糖诱导心肌细胞H9c2为模型,采用Brdu-ELISA法检测细胞增殖过程中DNA合成情况,流式细胞术检测细胞凋亡率,免疫印迹实验检测JNK/c-Jun、NF-κB的磷酸化水平,RT-PCR检测TNF-α的mRNA表达. 实验结果显示,肌肽能够提高高糖损伤的H9c2细胞增殖能力,降低心肌细胞凋亡,抑制高糖激活的JNK、c-Jun和NF-κB磷酸化水平及TNFα的mRNA表达. 上述结果表明,肌肽拮抗高糖诱导的心肌细胞凋亡机制与抑制p-JNK /p-c-Jun、p-NF-κB水平和TNF-α表达有关.  相似文献   

10.
谷氧还蛋白1(Grx1)在体内具有广泛的抗氧化、抗凋亡作用,与氧化应激损伤导致的糖尿病和心肌病等多种疾病的发病机制密切相关. 研究表明,糖尿病心血管病与自噬调节异常密切相关,但糖尿病心血管病变时自噬水平如何调节才能够保护受损的心肌还尚未定论.为研究自噬在高糖诱导心肌细胞凋亡中的作用及其与Grx1的关系,以明确Grx1对高糖诱导的心肌细胞凋亡的抑制作用及相关机制,本研究以高糖诱导大鼠心肌细胞H9c2建立高糖损伤模型,采用氧化还原蛋白免疫印迹法检测蛋白质的氧化水平.免疫印迹检测活性caspase 3蛋白和自噬蛋白Beclin1和LC3以及抗凋亡蛋白Bcl 2的表达水平.研究发现,高糖可诱导蛋白质的氧化水平增加,而Grx1可拮抗高糖诱导的H9c2细胞中蛋白质的氧化.并且含血清的高糖(25和50 mmol/L)作用H9c2心肌细胞后,自噬蛋白Beclin 1表达水平在6~48 h显著上调.同时发现,活性caspase 3水平也呈时间依赖性表达上调,caspase 3和自噬蛋白表达水平的同趋势增加,说明升高的自噬水平与心肌细胞凋亡的调节有关.Grx1保护组的自噬蛋白及活性caspase 3表达水平均显著下调,Grx1抑制剂镉组可拮抗Grx1调节的自噬蛋白和凋亡蛋白水平,说明Grx 1通过抑制自噬及caspase 3水平抑制高糖诱导的心肌细胞凋亡.以上研究结果提示,通过提高Grx1/GSH抗氧化系统功能,调节氧化还原稳态,可以有效减少高糖诱导的心肌损伤,保护糖尿病心脏功能.  相似文献   

11.
Mitochondrial aldehyde dehydrogenase-2 (ALDH2) alleviates ethanol toxicity although the precise mechanism is unclear. This study was designed to evaluate the effect of ALDH2 on ethanol-induced myocardial damage with a focus on autophagy. Wild-type FVB and transgenic mice overexpressing ALDH2 were challenged with ethanol (3 g/kg/day, ip) for 3 days and cardiac mechanical function was assessed using the echocardiographic and IonOptix systems. Western blot analysis was used to evaluate essential autophagy markers, Akt and AMPK, and the downstream signal mTOR. Ethanol challenge altered cardiac geometry and function as evidenced by enlarged ventricular end systolic and diastolic diameters, decreased cell shortening and intracellular Ca2+ rise, prolonged relengthening and intracellular Ca2+ decay, as well as reduced SERCA Ca2+ uptake, which effects were mitigated by ALDH2. Ethanol challenge facilitated myocardial autophagy as evidenced by enhanced expression of Beclin, ATG7, and LC3B II, as well as mTOR dephosphorylation, which was alleviated by ALDH2. Ethanol challenge-induced cardiac defect and apoptosis were reversed by the ALDH2 agonist Alda-1, the autophagy inhibitor 3-MA, and the AMPK inhibitor compound C, whereas the autophagy inducer rapamycin and the AMPK activator AICAR mimicked or exacerbated ethanol-induced cell injury. Ethanol promoted or suppressed phosphorylation of AMPK and Akt, respectively, in FVB but not ALDH2 murine hearts. Moreover, AICAR nullified Alda-1-induced protection against ethanol-triggered autophagic and functional changes. Ethanol increased GFP-LC3 puncta in H9c2 cells, the effect of which was ablated by Alda-1 and 3-MA. Lysosomal inhibition using bafilomycin A1, E64D, and pepstatin A obliterated Alda-1- but not ethanol-induced responses in GFP-LC3 puncta. Our results suggest that ALDH2 protects against ethanol toxicity through altered Akt and AMPK signaling and regulation of autophagic flux.  相似文献   

12.
Lipopolysaccharide (LPS), an essential component of outer membrane of the Gram-negative bacteria, plays a pivotal role in myocardial anomalies in sepsis. Recent evidence depicted an essential role for mitochondrial aldehyde dehydrogenase (ALDH2) in cardiac homeostasis. This study examined the effect of ALDH2 on endotoxemia-induced cardiac anomalies. Echocardiographic, cardiac contractile and intracellular Ca2+ properties were examined. Our results indicated that LPS impaired cardiac contractile function (reduced fractional shortening, LV end systolic diameter, peak shortening, maximal velocity of shortening/relengthening, prolonged relengthening duration, oxidation of SERCA, and intracellular Ca2+ mishandling), associated with ER stress, inflammation, O2 production, increased autophagy, CAMKKβ, phosphorylated AMPK and suppressed phosphorylation of mTOR, the effects of which were significantly attenuated or negated by ALDH2. LPS promoted early endosomal formation (as evidenced by RAB4 and RAB5a), apoptosis and necrosis (MTT and LDH) while decreasing late endosomal formation (RAB7 and RAB 9), the effects were reversed by ALDH2. In vitro study revealed that LPS-induced SERCA oxidation, autophagy and cardiac dysfunction were abrogated by ALDH2 activator Alda-1, the ER chaperone TUDCA, the autophagy inhibitor 3-MA, or the AMPK inhibitor Compound C. The beneficial effect of Alda-1 against LPS was nullified by AMPK activator AICAR or rapamycin. CAMKKβ inhibition failed to rescue LPS-induced ER stress. Tunicamycin–induced cardiomyocyte dysfunction was ameliorated by Alda-1 and autophagy inhibition, the effect of which was abolished by rapamycin. These data suggested that ALDH2 protected against LPS-induced cardiac anomalies via suppression of ER stress, autophagy in a CAMKKβ/AMPK/mTOR-dependent manner.  相似文献   

13.
Previous studies have proved that activation of aldehyde dehydrogenase two (ALDH2) can attenuate oxidative stress through clearance of cytotoxic aldehydes, and can protect against cardiac, cerebral, and lung ischemia/reperfusion (I/R) injuries. In this study, we investigated the effects of the ALDH2 activator Alda-1 on hepatic I/R injury. Partial warm ischemia was performed in the left and middle hepatic lobes of Sprague-Dawley rats for 1?h, followed by 6?h of reperfusion. Rats received either Alda-1 or vehicle by intravenous injection 30?min before ischemia. Blood and tissue samples of the rats were collected after 6-h reperfusion. Histological injury, proinflammatory cytokines, reactive oxygen species (ROS), cellular apoptosis, ALDH2 expression and activity, 4-hydroxy-trans-2-nonenal (4-HNE) and malondialdehyde (MDA) were measured. BRL-3A hepatocytes were subjected to hypoxia/reoxygenation (H/R). Cell viability, ROS, and mitochondrial membrane potential were determined. Pretreatment with Alda-1 significantly alleviated I/R-induced elevations of alanine aminotransferase and aspartate amino transferase, and significantly blunted the pathological injury of the liver. Moreover, Alda-1 significantly inhibited ROS and proinflammatory cytokines production, 4-HNE and MDA accumulation, and apoptosis. Increased ALDH2 activity was found after Alda-1 administration. No significant changes in ALDH2 expression were observed after I/R. ROS was also higher in H/R cells than in control cells, which was aggravated upon treatment with 4-HNE, and reduced by Alda-1 treatment. Cell viability and mitochondrial membrane potential were inhibited in H/R cells, which was attenuated upon Alda-1 treatment. Activation of ALDH2 by Alda-1 attenuates hepatic I/R injury via clearance of cytotoxic aldehydes.  相似文献   

14.
Myocardial ischemia/reperfusion injury (MIRI) is a clinically familiar disease, which possesses a great negative impact on human health. But, the effective treatment is still absent. MicroRNAs (miRNAs) have been testified to play a momentous role in MIRI. The purpose of the study aimed to probe the functions of miR-132 in oxygen and glucose deprivation (OGD)-evoked injury in H9c2 cells. miR-132 expression in H9c2 cells accompanied by OGD disposition was evaluated via real-time quantitative polymerase chain reaction. After miR-132 mimic and inhibitor transfections, the impacts of miR-132 on OGD-affected H9c2 cell viability, apoptosis, cell cycle, and the interrelated factors were appraised by exploiting cell counting kit-8, flow cytometry, and western blot analysis. FOXO3A expression was estimated in above-transfected cells, meanwhile, the correlation between miR-132 and FOXO3A was probed by dual-luciferase report assay. Ultimately, above mentioned cell processes were reassessed in H9c2 cells after preprocessing OGD administration and transfection with si-FOXO3A and si-NC plasmids. We got that OGD disposition obviously enhanced miR-132 expression in H9c2 cells. Overexpressed miR-132 evidently reversed OGD-evoked cell viability repression and apoptosis induction in H9c2 cells. In addition, overexpressed miR-132 mitigated OGD-evoked G0/G1 cell arrest by mediating p21, p27, and cyclin D1 expression. Repression of FOXO3A was observed in miR-132 mimic-transfected cells, which was also predicated as a direct gene of miR-132. We discovered that silenced FOXO3A alleviated OGD-evoked cell injury in H9c2 cells via facilitating cell viability, hindering apoptosis and restraining cell arrest at G0/G1 phase. In conclusion, these investigations corroborated that miR-132 exhibited the protective impacts on H9c2 cells against OGD-evoked injury via targeting FOXO3A.  相似文献   

15.
目的球状脂联素在波动性高血糖诱导人脐静脉内皮细胞凋亡中的作用。方法在不同条件下体外培养人脐静脉内皮细胞,分别或联合加入球状脂联素(gAD)、单磷酸腺苷激活蛋白激酶(AMPK)的激活剂AICAR和AMPK的阻滞剂araA。采用MTT比色法测定细胞活性,流式细胞仪检测细胞凋亡率,Western blot检测AMPKα和磷酸化AMPKα蛋白表达。结果分别与对照组和恒定高血糖组比较,波动性高血糖显著抑制细胞活性和增加细胞凋亡率。gAD明显抑制波动性高血糖诱导的细胞凋亡。AICAR和gAD可明显激活AMPK的表达。araA可明显抑制gAD诱导的AMPK蛋白表达。结论波动性高血糖比恒定性高血糖更易促进内皮细胞凋亡,gAD明显抑制波动性高血糖诱导内皮细胞凋亡,其机制可能与激活AMPK有关。  相似文献   

16.
陈旭光  唐俊明  张蕾  郭凌郧  杨建业  郑飞  王露 《生物磁学》2013,(34):6615-6618,6656
目的:活性氧介导的氧化损伤是缺血再灌注损伤的重要机制,本研究通过观察H2O2预处理对氧化损伤的H9c2心肌细胞存活率和细胞凋亡的影响,探讨其保护H9c2心肌细胞的作用机制。方法:体外培养H9c2心肌细胞,取对数生长期细胞用于实验研究。建立H2O2预处理抵抗高浓度H:O:诱导的细胞氧化损伤模型,实验分组如下:(1)正常对照组(CTL);(2)损伤组(INJURY);(3)预处理组十损伤组(PC)。应用CCK8法检测细胞存活率;试剂盒检测胞内MDA水平和T.sOD活性;Hoechst33258染色观察凋亡形态;Annexin-V/PI双染与流式细胞术检测细胞凋亡率。结果:25vLmol/L的H202预处理90rain能明显地保护H9c2心肌细胞抵抗400μmol/LH2O2诱导的氧化损伤,提高细胞存活率,下调MDA水平,上调SOD活性,抑制细胞凋亡,降低细胞凋亡率。结论:低浓度H2O2预处理能减轻H9c2心肌细胞的氧化损伤,抑制氧化损伤诱导的心肌细胞凋亡,具有很好的抗氧化损伤和抗心肌细胞凋亡的保护作用,其作用机制可能与细胞SOD活性上调有关。H2O2预处理为临床治疗心肌缺血/再灌注损伤提供了一项新策略。  相似文献   

17.
Cardiac aging is associated with compromised myocardial function and morphology although the underlying mechanism remains elusive. Aldehyde dehydrogenase 2 (ALDH2), an essential mitochondrial enzyme governing cardiac function, displays polymorphism in humans. This study was designed to examine the role of ALDH2 in aging-induced myocardial anomalies. Myocardial mechanical and intracellular Ca2+ properties were examined in young (4–5 months) and old (26–28 months) wild-type and ALDH2 transgenic mice. Cardiac histology, mitochondrial integrity, O2 generation, apoptosis, and signaling cascades, including AMPK activation and Sirt1 level were evaluated. Myocardial function and intracellular Ca2+ handling were compromised with advanced aging; the effects were accentuated by ALDH2. Hematoxylin and eosin and Masson trichrome staining revealed cardiac hypertrophy and interstitial fibrosis associated with greater left-ventricular mass and wall thickness in aged mice. ALDH2 accentuated aging-induced cardiac hypertrophy but not fibrosis. Aging promoted O2 release, apoptosis, and mitochondrial injury (mitochondrial membrane potential, levels of UCP-2 and PGC-1α), and the effects were also exacerbated by ALDH2. Aging dampened AMPK phosphorylation and Sirt1, the effects of which were exaggerated by ALDH2. Treatment with the ALDH2 activator Alda-1 accentuated aging-induced O2 generation and mechanical dysfunction in cardiomyocytes, the effects of which were mitigated by cotreatment with activators of AMPK and Sirt1, AICAR, resveratrol, and SRT1720. Examination of human longevity revealed a positive correlation between life span and ALDH2 gene mutation. Taken together, our data revealed that ALDH2 enzyme may accentuate myocardial remodeling and contractile dysfunction in aging, possibly through AMPK/Sirt1-mediated mitochondrial injury.  相似文献   

18.
目的:研究黄芪苷Ⅳ(AST)是否通过细胞外信号调节激酶1/2(ERK1/2)通路发挥对H2O2诱导的H9c2细胞氧化损伤的保护作用。方法:用200μmoL/L的H2O2处理细胞6h,采用MTT法检测细胞存活率,建立H2O2诱导的H9c2细胞氧化损伤模型;比色法测定细胞培养液中乳酸脱氢酶(LDH)活性、总超氧化物歧化酶(T—SOD)和锰超氧化物歧化酶(Mn—SOD)活力以及丙二醛(MDA)含量;Western blot检测H9c2细胞ERK1/2蛋白的磷酸化水平。结果:在H2O2浓度为200μmol/L作用6h条件下,细胞存活率降低程度适中,实验结果重复性好,确定后续实验采用200μmol/L H2O2作用6h建立模型。与H2O2组比较,10mg/L及20mg/L AST均显著提高细胞存活率(P〈0.01),使细胞培养液中LDH活性显著降低(P〈0.01),T—SOD及Mn—SOD活力显著提高(P〈0.01),MDA含量显著降低(P〈0.01)。10mg/L及20mg/L AST均显著增加H2O2损伤的H9c2细胞p—ERK1/2蛋白的表达(P〈0.01),当用PD98059(ERK1/2的抑制剂)预处理后,AST的作用则被取消。结论:黄芪苷Ⅳ可以通过ERK1/2通路发挥对H2O2诱导的H9c2细胞氧化损伤的保护作用。  相似文献   

19.
目的:观察乙醇激动乙醛脱氢酶2(ALDH2)对糖尿病大鼠肾脏c-Jun氨基末端激酶(JNK)表达的影响。方法:18只健康雄性SD大鼠随机分为正常对照组、糖尿病组、乙醇+糖尿病组(n=6)。造模8周后,测定血糖、糖化血红蛋白、肾功能、24h尿蛋白含量等指标,测定肾重指数,观察肾脏病理结构改变,检测肾脏组织ALDH2、p-JNK及JNK蛋白表达。结果:与正常对照组相比,糖尿病组血糖、糖化血红蛋白、尿素氮、肌酐、24h尿蛋白量及肾重指数均明显升高。病理切片显示:肾小球系膜基质增多、基底膜增厚、毛细血管腔变窄。肾脏组织ALDH2蛋白表达下降,p-JNK、JNK蛋白表达增加,p-JNK/JNK显著增高。给予乙醇干预后,肾功能损伤降低,病理改变减轻,肾脏组织ALDH2增高,p-JNK、JNK表达下降,p-JNK/JNK降低。结论:增加ALDH2表达可能通过抑制JNK信号通路的活性减轻糖尿病大鼠肾脏损伤。  相似文献   

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