1.Application and prospects of orthopedic robots
Zeyu SHAO ; Wenfeng XU ; Xiaoling LIAO ; Wenyue XIE
Military Medical Sciences 2016;40(12):1003-1008
Orthopedic robotics is an emerging industry in the area of healthcare , mainly used for minimally invasive treatment and accurate treatment .It can provide accurate surgical navigation and planning .Orthopedic robots can be mainly used for articular surgery , osteopathy surgery , spine surgery and traumatic orthopedics .This paper outlines the development and characteristics of orthopedic robots at home and abroad , analyzes the developments of orthopedic robots by combining medical imaging technology with clinical feedback , and predicts the future of this field .
2.Isoliquiritigenin induces HMOX1 and GPX4-mediated ferroptosis in gallbladder cancer cells.
Zeyu WANG ; Weijian LI ; Xue WANG ; Qin ZHU ; Liguo LIU ; Shimei QIU ; Lu ZOU ; Ke LIU ; Guoqiang LI ; Huijie MIAO ; Yang YANG ; Chengkai JIANG ; Yong LIU ; Rong SHAO ; Xu'an WANG ; Yingbin LIU
Chinese Medical Journal 2023;136(18):2210-2220
BACKGROUND:
Gallbladder cancer (GBC) is the most common malignant tumor of biliary tract. Isoliquiritigenin (ISL) is a natural compound with chalcone structure extracted from the roots of licorice and other plants. Relevant studies have shown that ISL has a strong anti-tumor ability in various types of tumors. However, the research of ISL against GBC has not been reported, which needs to be further investigated.
METHODS:
The effects of ISL against GBC cells in vitro and in vivo were characterized by cytotoxicity test, RNA-sequencing, quantitative real-time polymerase chain reaction, reactive oxygen species (ROS) detection, lipid peroxidation detection, ferrous ion detection, glutathione disulphide/glutathione (GSSG/GSH) detection, lentivirus transfection, nude mice tumorigenesis experiment and immunohistochemistry.
RESULTS:
ISL significantly inhibited the proliferation of GBC cells in vitro . The results of transcriptome sequencing and bioinformatics analysis showed that ferroptosis was the main pathway of ISL inhibiting the proliferation of GBC, and HMOX1 and GPX4 were the key molecules of ISL-induced ferroptosis. Knockdown of HMOX1 or overexpression of GPX4 can reduce the sensitivity of GBC cells to ISL-induced ferroptosis and significantly restore the viability of GBC cells. Moreover, ISL significantly reversed the iron content, ROS level, lipid peroxidation level and GSSG/GSH ratio of GBC cells. Finally, ISL significantly inhibited the growth of GBC in vivo and regulated the ferroptosis of GBC by mediating HMOX1 and GPX4 .
CONCLUSION
ISL induced ferroptosis in GBC mainly by activating p62-Keap1-Nrf2-HMOX1 signaling pathway and down-regulating GPX4 in vitro and in vivo . This evidence may provide a new direction for the treatment of GBC.
Animals
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Mice
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Carcinoma in Situ
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Chalcones/pharmacology*
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Ferroptosis
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Gallbladder Neoplasms/genetics*
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Glutathione Disulfide
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Kelch-Like ECH-Associated Protein 1
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Mice, Nude
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NF-E2-Related Factor 2/genetics*
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Reactive Oxygen Species
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Humans