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  • × Yan Li
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Scientific Reports,2017年

Hui Peng, Yu Chen, Zhonglin Lv, Guojiang Chen, He Xiao, Chunmei Hou, Jiannan Feng, Yaqiong Chen, Beifen Shen, Gencheng Han, Renxi Wang, Yan Li, Renfeng Guo, Zhi Zhao, Xin Ding

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Scientific Reports,2017年

Yan Li, Wenyang Wu, Huitian Wang, Zhenlin Wang, Zhuo Chen, Mingjie Wan, Jiawei Chen

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Scientific Reports,2017年

Xue-ying Liu, Ai-ai Zhu, You-ming Tian, Xiao-mei Fang, De-xin Liu, Ya-qiong Xu, Zhao-yun Tan, Zheng-sheng Zhang, Rui Tian, Jiang Yao, Da-jun Liu, Jian Zhang, Wen-wen Wang, Yan Li, Zhong-hua Teng, Fang Liu, Hai-hong Shang

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Scientific Reports,2017年

Feixue Fu, David A. Hutchins, Kunshan Gao, Yaping Wu, Bangqin Huang, Xin Liu, Minhan Dai, Yan Li

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Scientific Reports,2017年

Long Jia, Mingkun Ma, Yinghui Ren, Dongmei Zhou, Yurong Da, Qi Zhang, Hongkun Liu, Huipeng Yang, Lijuan Zhang, Zhenyi Xue, Yan Li, Zimu Zhang, Rongxin Zhang, Shuqin Mu, Jun Yan

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Abstract Adiponectin (APN), also known as apM1, Acrp30, GBP28 and adipoQ, is a circulating hormone that is predominantly produced by adipose tissue. Many pharmacological studies have demonstrated that this protein possesses potent anti-diabetic, anti-atherogenic and anti-inflammatory properties. Although several studies have demonstrated the antioxidative activity of this protein, the regulatory mechanisms have not yet been defined in skeletal muscles. The aim of the present study was to examine the cytoprotective effects of APN against damage induced by oxidative stress in mouse-derived C2C12 myoblasts. APN attenuated H2O2-induced growth inhibition and exhibited scavenging activity against intracellular reactive oxygen species that were induced by H2O2. Furthermore, treating C2C12 cells with APN significantly induced heme oxygenase-1 (HO-1) and nuclear factor-erythroid 2 related factor 2 (Nrf2). APN also suppressed H2O2-induced mitophagy and partially inhibited the colocalization of mitochondria with autophagosomes/lysosomes, correlating with the expression of Pink1 and Parkin and mtDNA. Moreover, APN protected C2C12 myoblasts against oxidative stress-induced apoptosis. Furthermore, APN significantly reduced the mRNA and protein expression levels of Bax. These data suggest that APN has a moderate regulatory role in oxidative stress-induced mitophagy and suppresses apoptosis. These findings demonstrate the antioxidant potential of APN in oxidative stress-associated skeletal muscle diseases.

    Scientific Reports,2017年

    Shuping Nie, Wenbo Wang, Pengxiang Chen, Jie Han, Benkang Shi, Xigao Liu, Shiyu Wang, Hu Guo, Gang Yin, Jianfeng Cui, Yaofeng Zhu, Yong Wang, Yan Li, Shouzhen Chen

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    Abstract Radical prostatectomy (RP) is the gold standard for the treatment of localized PCa. A meta-analysis was conducted to evaluate the effect of different techniques of pelvic floor reconstruction on urinary continence. A comprehensive search was made for trials that evaluated the efficacy of pelvic floor reconstruction. Relevant databases included PubMed, Embase, Cochrane, Ovid, Web of Science databases and relevant trials from the references. Random-effects model was used to estimate risk ratios (RRs) statistics. Pooled results of patients treated with posterior reconstruction (PR) demonstrated complete urinary continence improved at 1–4, 28–42, 90, 180 and 360 days following catheter removal. Anterior suspension (AS) was associated with improvement only at 28–42 days. The anterior reconstruction (AR) + PR was associated with urinary continence at 1–4, 90 and 180 days. AS + PR was not associated with any benefit. And PR improved social urinary continence at 7–14 and 28–42 days. No benefit was associated with AS. AR + PR had better outcomes at 90 and 180 days. AS + PR was significant improved at 28–42 and 90 days. Patients who underwent RP and PR had the least urinary incontinence. No significant benefit was observed after AS. AR + PR and AS + PR had little benefit in the post-operative period.