Frontiers of Medicine

ISSN 2095-0217

ISSN 2095-0225(Online)

CN 11-5983/R

邮发代号 80-967

2019 Impact Factor: 3.421

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Targeting deubiquitinase OTUB1 protects vascular smooth muscle cells in atherosclerosis by modulating PDGFRβ
Fei Xu, Han Chen, Changyi Zhou, Tongtong Zang, Rui Wang, Shutong Shen, Chaofu Li, Yue Yu, Zhiqiang Pei, Li Shen, Juying Qian, Junbo Ge
Frontiers of Medicine    https://doi.org/10.1007/s11684-024-1056-8
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Atherosclerosis is a chronic artery disease that causes various types of cardiovascular dysfunction. Vascular smooth muscle cells (VSMCs), the main components of atherosclerotic plaque, switch from contractile to synthetic phenotypes during atherogenesis. Ubiquitylation is crucial in regulating VSMC phenotypes in atherosclerosis, and it can be reversely regulated by deubiquitinases. However, the specific effects of deubiquitinases on atherosclerosis have not been thoroughly elucidated. In this study, RNAi screening in human aortic smooth muscle cells was performed to explore the effects of OTU family deubiquitinases, which revealed that silencing OTUB1 inhibited PDGF-BB-stimulated VSMC phenotype switch. Further in vivo studies using Apoe−/− mice revealed that knockdown of OTUB1 in VSMCs alleviated atherosclerosis plaque burden in the advanced stage and led to a stable plaque phenotype. Moreover, VSMC proliferation and migration upon PDGF-BB stimulation could be inhibited by silencing OTUB1 in vitro. Unbiased RNA-sequencing data indicated that knocking down OTUB1 influenced VSMC differentiation, adhesion, and proliferation. Mass spectrometry of ubiquitinated protein confirmed that proteins related to cell growth and migration were differentially ubiquitylated. Mechanistically, we found that OTUB1 recognized the K707 residue ubiquitylation of PDGFRβ with its catalytic triad, thereby reducing the K48-linked ubiquitylation of PDGFRβ. Inhibiting OTUB1 in VSMCs could promote PDGFRβ degradation via the ubiquitin–proteasome pathway, so it was beneficial in preventing VSMCs’ phenotype switch. These findings revealed that knocking down OTUB1 ameliorated VSMCs’ phenotype switch and atherosclerosis progression, indicating that OTUB1 could be a valuable translational therapeutic target in the future.

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Pathological progression of osteoarthritis: a perspective on subchondral bone
Xuefei Li, Wenhua Chen, Dan Liu, Pinghua Chen, Shiyun Wang, Fangfang Li, Qian Chen, Shunyi Lv, Fangyu Li, Chen Chen, Suxia Guo, Weina Yuan, Pan Li, Zhijun Hu
Frontiers of Medicine    https://doi.org/10.1007/s11684-024-1061-y
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Osteoarthritis (OA) is a degenerative bone disease associated with aging. The rising global aging population has led to a surge in OA cases, thereby imposing a significant socioeconomic burden. Researchers have been keenly investigating the mechanisms underlying OA. Previous studies have suggested that the disease starts with synovial inflammation and hyperplasia, advancing toward cartilage degradation. Ultimately, subchondral-bone collapse, sclerosis, and osteophyte formation occur. This progression is deemed as “top to bottom.” However, recent research is challenging this perspective by indicating that initial changes occur in subchondral bone, precipitating cartilage breakdown. In this review, we elucidate the epidemiology of OA and present an in-depth overview of the subchondral bone’s physiological state, functions, and the varied pathological shifts during OA progression. We also introduce the role of multifunctional signal pathways (including osteoprotegerin (OPG)/receptor activator of nuclear factor-kappa B ligand (RANKL)/receptor activator of nuclear factor-kappa B (RANK), and chemokine (CXC motif) ligand 12 (CXCL12)/CXC motif chemokine receptor 4 (CXCR4)) in the pathology of subchondral bone and their role in the “bottom-up” progression of OA. Using vivid pattern maps and clinical images, this review highlights the crucial role of subchondral bone in driving OA progression, illuminating its interplay with the condition.

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Autophagy in hepatic progenitor cells modulates exosomal miRNAs to inhibit liver fibrosis in schistosomiasis
Yue Yuan, Jiaxuan Li, Xun Lu, Min Chen, Huifang Liang, Xiao-ping Chen, Xin Long, Bixiang Zhang, Song Gong, Xiaowei Huang, Jianping Zhao, Qian Chen
Frontiers of Medicine    https://doi.org/10.1007/s11684-024-1079-1
Assessment of HER2 status in extramammary Paget disease and its implication for disitamab vedotin, a novel humanized anti-HER2 antibody-drug conjugate therapy
Jia Jia, Lili Mao, Jing Lin, Wenyu Li, Pei Yuan, Lei Guo, Jie Dai, Caili Li, Xue Bai, Zhongwu Li, Yu Chen, Jun Guo, Jianming Ying, Lu Si
Frontiers of Medicine    https://doi.org/10.1007/s11684-023-1046-2
Echocardiographic Measurements in Normal Chinese Adults (EMINCA) II focusing on left ventricular and left atrial size and function by three-dimensional echocardiography
Yingbin Wang, Yu Zhang, Guihua Yao, Hong Tang, Lixin Chen, Lixue Yin, Tiangang Zhu, Jianjun Yuan, Wei Han, Jun Yang, Xianhong Shu, Ya Yang, Yulin Wei, Yanli Guo, Weidong Ren, Dongmei Gao, Guilin Lu, Ji Wu, Hongning Yin, Yuming Mu, Jiawei Tian, Lijun Yuan, Xiaojing Ma, Hongyan Dai, Yunchuan Ding, Mingyan Ding, Qing Zhou, Hao Wang, Di Xu, Mei Zhang, Yun Zhang
Frontiers of Medicine    https://doi.org/10.1007/s11684-023-1045-3
Cancer stem cell-immune cell crosstalk in the tumor microenvironment for liver cancer progression
Yue Ma, Hongwei Lv, Fuxue Xing, Wei Xiang, Zixin Wu, Qiyu Feng, Hongyang Wang, Wen Yang
Frontiers of Medicine    https://doi.org/10.1007/s11684-023-1049-z
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Crosstalk between cancer cells and the immune microenvironment is determinant for liver cancer progression. A tumor subpopulation called liver cancer stem cells (CSCs) significantly accounts for the initiation, metastasis, therapeutic resistance, and recurrence of liver cancer. Emerging evidence demonstrates that the interaction between liver CSCs and immune cells plays a crucial role in shaping an immunosuppressive microenvironment and determining immunotherapy responses. This review sheds light on the bidirectional crosstalk between liver CSCs and immune cells for liver cancer progression, as well as the underlying molecular mechanisms after presenting an overview of liver CSCs characteristic and their microenvironment. Finally, we discuss the potential application of liver CSCs-targeted immunotherapy for liver cancer treatment.

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Identification of a novel MYO1D variant associated with laterality defects, congenital heart diseases, and sperm defects in humans
Zhuangzhuang Yuan, Xin Zhu, Xiaohui Xie, Chenyu Wang, Heng Gu, Junlin Yang, Liangliang Fan, Rong Xiang, Yifeng Yang, Zhiping Tan
Frontiers of Medicine    https://doi.org/10.1007/s11684-023-1042-6
lncRNA ZNF593-AS inhibits cardiac hypertrophy and myocardial remodeling by upregulating Mfn2 expression
Xiang Nie, Jiahui Fan, Yanwen Wang, Rong Xie, Chen Chen, Huaping Li, Dao Wen Wang
Frontiers of Medicine    https://doi.org/10.1007/s11684-023-1036-4
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