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血红素加氧酶 1 在热量限制对糖尿病心肌病的保护作用中的作用。

The Role of Heme Oxygenase 1 in the Protective Effect of Caloric Restriction against Diabetic Cardiomyopathy.

机构信息

Cardiac Research Laboratory, Felsenstein Medical Research Institute Petah-Tikva, Sackler Faculty of Medicine, Tel Aviv University, Tel Aviv 49100, Israel.

Levied Heart Center, Sheba Medical Center, Tel Hashomer and Sackler School of Medicine, Tel Aviv University, Ramat Gan 52621, Israel.

出版信息

Int J Mol Sci. 2019 May 16;20(10):2427. doi: 10.3390/ijms20102427.

Abstract

UNLABELLED

Type 2 diabetes mellitus (DM2) leads to cardiomyopathy characterized by cardiomyocyte hypertrophy, followed by mitochondrial dysfunction and interstitial fibrosis, all of which are exacerbated by angiotensin II (AT). SIRT1 and its transcriptional coactivator target PGC-1α (peroxisome proliferator-activated receptor-γ coactivator), and heme oxygenase-1 (HO-1) modulates mitochondrial biogenesis and antioxidant protection. We have previously shown the beneficial effect of caloric restriction (CR) on diabetic cardiomyopathy through intracellular signaling pathways involving the SIRT1-PGC-1α axis. In the current study, we examined the role of HO-1 in diabetic cardiomyopathy in mice subjected to CR.

METHODS

Cardiomyopathy was induced in obese diabetic () mice by AT infusion. Mice were either fed ad libitum or subjected to CR. In an in vitro study, the reactive oxygen species (ROS) level was determined in cardiomyocytes exposed to different glucose levels (7.5-33 mM). We examined the effects of Sn(tin)-mesoporphyrin (SnMP), which is an inhibitor of HO activity, the HO-1 inducer cobalt protoporphyrin (CoPP), and the SIRT1 inhibitor (EX-527) on diabetic cardiomyopathy.

RESULTS

Diabetic mice had low levels of HO-1 and elevated levels of the oxidative marker malondialdehyde (MDA). CR attenuated left ventricular hypertrophy (LVH), increased HO-1 levels, and decreased MDA levels. SnMP abolished the protective effects of CR and caused pronounced LVH and cardiac metabolic dysfunction represented by suppressed levels of adiponectin, SIRT1, PPARγ, PGC-1α, and increased MDA. High glucose (33 mM) increased ROS in cultured cardiomyocytes, while SnMP reduced SIRT1, PGC-1α levels, and HO activity. Similarly, SIRT1 inhibition led to a reduction in PGC-1α and HO-1 levels. CoPP increased HO-1 protein levels and activity, SIRT1, and PGC-1α levels, and decreased ROS production, suggesting a positive feedback between SIRT1 and HO-1.

CONCLUSION

These results establish a link between SIRT1, PGC-1α, and HO-1 signaling that leads to the attenuation of ROS production and diabetic cardiomyopathy. CoPP mimicked the beneficial effect of CR, while SnMP increased oxidative stress, aggravating cardiac hypertrophy. The data suggest that increasing HO-1 levels constitutes a novel therapeutic approach to protect the diabetic heart. Brief Summary: CR attenuates cardiomyopathy, and increases HO-1, SIRT activity, and PGC-1α protein levels in diabetic mice. High glucose reduces adiponectin, SIRT1, PGC1-1α, and HO-1 levels in cardiomyocytes, resulting in oxidative stress. The pharmacological activation of HO-1 activity mimics the effect of CR, while SnMP increased oxidative stress and cardiac hypertrophy. These data suggest the critical role of HO-1 in protecting the diabetic heart.

摘要

目的

研究 HO-1 在肥胖型糖尿病(db/db)小鼠限制热量摄入(CR)后心肌病变中的作用。

方法

通过血管紧张素 II(AT)输注诱导肥胖型糖尿病(db/db)小鼠发生心肌病。将小鼠分为正常饮食组和 CR 组。在体外实验中,观察不同葡萄糖浓度(7.5-33 mM)对心肌细胞活性氧(ROS)水平的影响。用 HO-1 抑制剂 Sn(tin)-mesoporphyrin(SnMP)、HO-1 诱导剂钴原卟啉(CoPP)和 SIRT1 抑制剂(EX-527)干预糖尿病心肌病变。

结果

db/db 小鼠的 HO-1 水平降低,氧化标记物丙二醛(MDA)升高。CR 减轻左心室肥厚(LVH),增加 HO-1 水平,降低 MDA 水平。SnMP 消除了 CR 的保护作用,并导致明显的 LVH 和心脏代谢功能障碍,表现为脂联素、SIRT1、PPARγ、PGC-1α 水平降低,MDA 水平升高。高葡萄糖(33 mM)增加培养的心肌细胞 ROS,而 SnMP 降低 SIRT1、PGC-1α 水平和 HO 活性。同样,SIRT1 抑制导致 PGC-1α 和 HO-1 水平降低。CoPP 增加 HO-1 蛋白水平和活性、SIRT1 和 PGC-1α 水平,减少 ROS 生成,提示 SIRT1 和 HO-1 之间存在正反馈。

结论

这些结果建立了 SIRT1、PGC-1α 和 HO-1 信号之间的联系,导致 ROS 生成减少和糖尿病心肌病减轻。CoPP 模拟了 CR 的有益作用,而 SnMP 增加了氧化应激,加重了心脏肥大。数据表明,增加 HO-1 水平是保护糖尿病心脏的一种新的治疗方法。

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