Shati Ali A
Department of Biology, Science College, King Khalid University (KKU), Abha, Kingdom of Saudi Arabia.
J Food Biochem. 2020 Apr;44(4):e13158. doi: 10.1111/jfbc.13158. Epub 2020 Feb 6.
This study investigated if the nephroprotective effect of Salidroside T1DM rats involves activation of AMPK/SIRT1. Rats were divided into control or T1DM and treated with vehicle or Salidroside (100 mg/kg) for 56 days. Mesangial cells were cultured in LG or HG media with or without Salidroside (100 µM/L) for 24 hr. Also, HG + Salidroside-treated cells were pre-incubated with EX-527 or compound C (CC) for 1 hr. With reducing glucose levels, Salidroside improved kidney structure/function in the T1DM rat. It also increased GSH and Bcl-2 levels in control and T1DM rats and inhibited ROS, increased activation of AMPK and nuclear SIRT1, and lowered acetylation of P53 and FOXO-1 in control and T1DM rats and in LG and HG-treated cells. These effects were abolished by EX-527 and CC. Also, CC decreased the nuclear levels of SIRT1. In conclusion, Salidroside attenuates DN in T1DM rats by activation of AMPK and subsequently, SIRT1. PRACTICAL APPLICATIONS: This animal and pre-clinical study shows that Salidroside is able to ameliorate DN in T1DM-induced rats and showed that it mainly acts by a hypoglycemic effect and activation of renal AMPK/SIRT1 axis. Given the wide tissue stimulatory effect of AMPK on peripheral glucose utilization, lipogenesis, and other cell signaling pathways, these data are encouraging to investigate the anti-diabetic effect of glycoside in more clinical trials.
本研究调查了红景天苷对1型糖尿病(T1DM)大鼠的肾保护作用是否涉及AMPK/SIRT1的激活。将大鼠分为对照组或T1DM组,并用赋形剂或红景天苷(100mg/kg)处理56天。将系膜细胞在含或不含红景天苷(100µM/L)的低葡萄糖(LG)或高葡萄糖(HG)培养基中培养24小时。此外,用HG + 红景天苷处理的细胞先用EX - 527或化合物C(CC)预孵育1小时。随着血糖水平降低,红景天苷改善了T1DM大鼠的肾脏结构/功能。它还增加了对照组和T1DM大鼠的谷胱甘肽(GSH)和Bcl - 2水平,抑制了活性氧(ROS),增加了AMPK和核SIRT1的激活,并降低了对照组和T1DM大鼠以及LG和HG处理细胞中P53和FOXO - 1的乙酰化水平。这些作用被EX - 527和CC消除。此外,CC降低了SIRT1的核水平。总之,红景天苷通过激活AMPK以及随后的SIRT1减轻T1DM大鼠的糖尿病肾病(DN)。实际应用:这项动物和临床前研究表明,红景天苷能够改善T1DM诱导大鼠的DN,并表明其主要通过降血糖作用和激活肾脏AMPK/SIRT1轴发挥作用。鉴于AMPK对外周葡萄糖利用、脂肪生成和其他细胞信号通路具有广泛的组织刺激作用,这些数据鼓励在更多临床试验中研究该糖苷的抗糖尿病作用。