Huang Yong, Cheng Jie, Zhou Yehua, Zhang Yanhui, Zhou Shuhui, Li Qingzhen, Peng Lin, Wang Maohong, Song Weiguo, Wu Guoqing
Department of Nephrology, Affiliated Hospital of Jiangxi University of Traditional Chinese Medicine, Nanchang, China.
Department of Nephrology, Jiangxi University of Traditional Chinese Medicine, Nanchang, China.
Ann Transl Med. 2021 Oct;9(20):1586. doi: 10.21037/atm-21-5152.
Podocytes play a pivotal role in the glomerular filtration barrier and contribute to proteinuria and glomerulosclerosis through abnormal apoptosis. Longitudinal studies have indicated the protective properties of hydrogen sulfide (HS) against neuronal cell apoptosis, whereas the biological function and the underlying molecular mechanism on glucose-induced podocyte apoptosis are largely unknown.
Herein, we conducted multifaceted biological analyses to verify the potential function of HS in glucose-induced podocyte apoptosis by examining apoptotic proteins and markers (e.g., caspase 3, Hoechst) and antioxidative effects [e.g., reactive oxygen species (ROS), lipid peroxidation, superoxide dismutase (SOD), catalase (CAT)]. Then, we took advantage of transcriptome sequencing and biological analyses to further determine the potential influence of HS as well as the accompanying molecular mechanism.
In this study, we found that glucose-induced podocyte apoptosis could be largely rescued by HS via antioxidative responses, which was further confirmed by transcriptome sequencing and bioinformatics analyses. According to apoptotic signaling analysis, the over-activated AMPK/mTOR signaling cascade in glucose-treated podocytes was effectively restrained.
For the first time, we indicated the protective effect and mechanism of HS in podocytes by restricting glucose-induced apoptosis and suppressing the abnormally activated AMPK/mTOR signaling cascade. Our findings provide new references for podocyte apoptosis-associated diseases and also indicate the potential of HS administration in clinical trials.
足细胞在肾小球滤过屏障中起关键作用,通过异常凋亡导致蛋白尿和肾小球硬化。纵向研究表明硫化氢(HS)对神经元细胞凋亡具有保护作用,而HS对葡萄糖诱导的足细胞凋亡的生物学功能及潜在分子机制尚不清楚。
在此,我们通过检测凋亡蛋白和标志物(如半胱天冬酶3、Hoechst)以及抗氧化作用[如活性氧(ROS)、脂质过氧化、超氧化物歧化酶(SOD)、过氧化氢酶(CAT)],进行多方面生物学分析以验证HS在葡萄糖诱导的足细胞凋亡中的潜在作用。然后,我们利用转录组测序和生物学分析进一步确定HS的潜在影响及相关分子机制。
在本研究中,我们发现HS可通过抗氧化反应在很大程度上挽救葡萄糖诱导的足细胞凋亡,转录组测序和生物信息学分析进一步证实了这一点。根据凋亡信号分析,葡萄糖处理的足细胞中过度激活的AMPK/mTOR信号级联被有效抑制。
我们首次表明HS通过限制葡萄糖诱导的凋亡和抑制异常激活的AMPK/mTOR信号级联对足细胞具有保护作用及机制。我们的研究结果为足细胞凋亡相关疾病提供了新的参考,也表明了HS在临床试验中的应用潜力。