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Broccoli sprout extract prevents diabetic cardiomyopathy via Nrf2 activation in db/db T2DM mice

机译:花椰菜芽提取物防止糖尿病性心肌病的Nrf2通过激活在db / db小鼠T2DM

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To develop a clinic-relevant protocol for systemic up-regulation of NFE2-related factor 2 (Nrf2) to prevent diabetic cardiomyopathy (DCM), male db/db and age-matched wild-type (WT) mice were given sulforaphane (SFN, an Nrf2 activator) and its natural source, broccoli sprout extract (BSE) by gavage every other day for 3 months, with four groups: vehicle (0.1?ml/10?g), BSE-low dose (estimated SFN availability at 0.5?mg/kg), BSE-high dose (estimated SFN availability at 1.0?mg/kg), and SFN (0.5?mg/kg). Cardiac function and pathological changes (hypertrophy, fibrosis, inflammation and oxidative damage) were assessed by echocardiography and histopathological examination along with Western blot and real-time PCR, respectively. Both BSE and SFN significantly prevented diabetes-induced cardiac dysfunction, hypertrophy and fibrosis. Mechanistically, BSE, like SFN, significantly up-regulated Nrf2 transcriptional activity, evidenced by the increased Nrf2 nuclear accumulation and its downstream gene expression. This resulted in a significant prevention of cardiac oxidative damage and inflammation. For all these preventive effects, BSE at high dose provided a similar effect as did SFN. These results indicated that BSE at high dose prevents DCM in a manner congruent with SFN treatment. Therefore, it suggests that BSE could potentially be used as a natural and safe treatment against DCM via Nrf2 activation.
机译:为了开发NFE2相关因子2(NRF2)的系统上调的临床相关方案,以防止糖尿病心肌病(DCM),雄性DB / DB和年龄匹配的野生型(WT)小鼠被氟林素(SFN, NRF2活化剂)及其天然来源,每隔一天的饲料,西兰甘蓝豆芽提取物(BSE)3个月,四组:车辆(0.1?ml / 10?g),BSE低剂量(估计SFN可用性为0.5? Mg / kg),BSE高剂量(估计的SFN可用性为1.0×mg / kg),和SFN(0.5?mg / kg)。通过超声心动图和组织病理学检查和蛋白质印迹和实时PCR评估心脏功能和病理变化(肥大,纤维化,炎症和氧化损伤)。 BSE和SFN均显着防止糖尿病诱导的心脏功能障碍,肥大和纤维化。机械地,BSE,如SFN,显着上调的NRF2转录活动,通过增加的NRF2核积累及其下游基因表达来证明。这导致了心脏氧化损伤和炎症的显着预防。对于所有这些预防效果,高剂量的BSE提供了与SFN一样类似的效果。这些结果表明,高剂量的BSE以与SFN治疗一致的方式可防止DCM。因此,它表明BSE可能被用作通过NRF2激活对抗DCM的自然和安全处理。

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