1.Morin inhibits ubiquitination degradation of BCL-2 associated agonist of cell death and synergizes with BCL-2 inhibitor in gastric cancer cells.
Yi WANG ; Xiao-Yu SUN ; Fang-Qi MA ; Ming-Ming REN ; Ruo-Han ZHAO ; Meng-Meng QIN ; Xiao-Hong ZHU ; Yan XU ; Ni-da CAO ; Yuan-Yuan CHEN ; Tian-Geng DONG ; Yong-Fu PAN ; Ai-Guang ZHAO
Journal of Integrative Medicine 2025;23(3):320-332
OBJECTIVE:
Gastric cancer (GC) is one of the most common malignancies seen in clinic and requires novel treatment options. Morin is a natural flavonoid extracted from the flower stalk of a highly valuable medicinal plant Prunella vulgaris L., which exhibits an anti-cancer effect in multiple types of tumors. However, the therapeutic effect and underlying mechanism of morin in treating GC remains elusive. The study aims to explore the therapeutic effect and underlying molecular mechanisms of morin in GC.
METHODS:
For in vitro experiments, the proliferation inhibition of morin was measured by cell counting kit-8 assay and colony formation assay in human GC cell line MKN45, human gastric adenocarcinoma cell line AGS, and human gastric epithelial cell line GES-1; for apoptosis analysis, microscopic photography, Western blotting, ubiquitination analysis, quantitative polymerase chain reaction analysis, flow cytometry, and RNA interference technology were employed. For in vivo studies, immunohistochemistry, biomedical analysis, and Western blotting were used to assess the efficacy and safety of morin in a xenograft mouse model of GC.
RESULTS:
Morin significantly inhibited the proliferation of GC cells MKN45 and AGS in a dose- and time-dependent manner, but did not inhibit human gastric epithelial cells GES-1. Only the caspase inhibitor Z-VAD-FMK was able to significantly reverse the inhibition of proliferation by morin in both GC cells, suggesting that apoptosis was the main type of cell death during the treatment. Morin induced intrinsic apoptosis in a dose-dependent manner in GC cells, which mainly relied on B cell leukemia/lymphoma 2 (BCL-2) associated agonist of cell death (BAD) but not phorbol-12-myristate-13-acetate-induced protein 1. The upregulation of BAD by morin was due to blocking the ubiquitination degradation of BAD, rather than the transcription regulation and the phosphorylation of BAD. Furthermore, the combination of morin and BCL-2 inhibitor navitoclax (also known as ABT-737) produced a synergistic inhibitory effect in GC cells through amplifying apoptotic signals. In addition, morin treatment significantly suppressed the growth of GC in vivo by upregulating BAD and the subsequent activation of its downstream apoptosis pathway.
CONCLUSION
Morin suppressed GC by inducing apoptosis, which was mainly due to blocking the ubiquitination-based degradation of the pro-apoptotic protein BAD. The combination of morin and the BCL-2 inhibitor ABT-737 synergistically amplified apoptotic signals in GC cells, which may overcome the drug resistance of the BCL-2 inhibitor. These findings indicated that morin was a potent and promising agent for GC treatment. Please cite this article as: Wang Y, Sun XY, Ma FQ, Ren MM, Zhao RH, Qin MM, Zhu XH, Xu Y, Cao ND, Chen YY, Dong TG, Pan YF, Zhao AG. Morin inhibits ubiquitination degradation of BCL-2 associated agonist of cell death and synergizes with BCL-2 inhibitor in gastric cancer cells. J Integr Med. 2025; 23(3): 320-332.
Humans
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Flavonoids/therapeutic use*
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Stomach Neoplasms/pathology*
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Animals
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Proto-Oncogene Proteins c-bcl-2/metabolism*
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Cell Line, Tumor
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Apoptosis/drug effects*
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Cell Proliferation/drug effects*
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Ubiquitination/drug effects*
;
Mice
;
Drug Synergism
;
Mice, Inbred BALB C
;
Mice, Nude
;
Xenograft Model Antitumor Assays
;
Flavones
2.The current situation and challenges of liver resection for hepatocellular cancinoma
Xin YANG ; Da XU ; Lunxiu QIN
Journal of Clinical Surgery 2025;33(10):1048-1052
Surgical resection remains the primary option for achieving radical cure and long-term survival in the treatment of liver cancer.In recent years,profound changes have taken place in the field of liver surgery:the surgical concept of liver resection for liver cancer has been constantly updated;Significant progress has also been made in many aspects such as liver imaging technology,liver resection techniques and equipment,and perioperative management.Liver resection for liver cancer has gradually developed into a more precise,minimally invasive and safer treatment model.However,liver resection for liver cancer still faces many new challenges up to now:the prevention strategies for recurrence and metastasis are limited;There is a lack of predictive indicators for the efficacy of targeted immunotherapy.Insufficient precision in individualized treatment,etc.
3.Spatial-temporal distribution characteristics of an animal plague epidemic in marmot foci in the Qilian-Altun Mountains of Gansu Province,2014-2023
Ding-sheng WANG ; Xiao-jie ZHOU ; Wen-jing AN ; Jin-xiao XI ; Da-qin XU ; Li-min GUO
Chinese Journal of Zoonoses 2025;41(6):668-674
This study was analyzed the spatial-temporal distribution and aggregation characteristics of Yersinia pestispositive host animals and vector pathogens in marmot natural foci in the Qilian-Altun mountains,Gansu Province,to provide a scientific basis for precise plague prevention and control.Y.pestissurveillance data for marmot natural foci in Qilian-Altun Mountains of Gansu Province from 2014 to 2023 were obtained from the Disease Control and Prevention Center of Gansu Province.Origin 2024 software was used for data visualization and presentation.Global and local spatial autocorrelation analyses and trend analyses were conducted in ArcGIS 10.8 software,with townships as the spatial scale.Cumulatively,440 strains of Y.pestis were isolated from the natural marmot foci in the Qilian-Altun mountainsof Gansu Province from 2014 to 2023.Most strains was isolated from marmots(345 strains,78.41%),and the remainder were isolated from vectors.Temporal distribution analysis indicated that the highest number of detected bacteria was reported in July and August(both 121 strains,27.50%).Regional distribution analysis revealed that Aksai County reported the highest number of detected bacteria(255 strains,57.95%).Global spatial autocorrelation analysis showed a spatially clustered distribution of the number of bacteria detected annually in the townships containing natural foci,except in2014,2016,and 2021-2023.The strongest spatial clustering was observed in 2020(Moran's I=0.521 2,Z=14.397 0,P<0.001).Local spatial autocorrelation analysis indicated a"high-high"aggregation area in the natural foci every year from 2014 to 2023,primarily in Hongliuwan Town of Aksai County and Dangchengwan Town of Subei County.The distribution of the"low-low"aggregation area was essentially consistent with the low activity area of the Yersinia pestisepidemic.The trend in annual total bacterial count gradually increased from east to west,and peaked in the western part of the epidemic focus.Clear spatial aggregation characteristics of the number of Y.pestis were detected in the marmot natural foci in the Qilian-Altun mountains at the townshiplevel as a whole in Gansu Province from 2014 to 2023.The aggregation area was mainly in the western section of Qilian Mountain to the Altun mountain section of the epidemic source area.Monitoring and prevention and control efforts should be focused in this key area,with prevention and control measures tailored to the local conditions,and classified guidance to decrease the risk of plague occurrence and spread.
4.Spatial-temporal distribution characteristics of an animal plague epidemic in marmot foci in the Qilian-Altun Mountains of Gansu Province,2014-2023
Ding-sheng WANG ; Xiao-jie ZHOU ; Wen-jing AN ; Jin-xiao XI ; Da-qin XU ; Li-min GUO
Chinese Journal of Zoonoses 2025;41(6):668-674
This study was analyzed the spatial-temporal distribution and aggregation characteristics of Yersinia pestispositive host animals and vector pathogens in marmot natural foci in the Qilian-Altun mountains,Gansu Province,to provide a scientific basis for precise plague prevention and control.Y.pestissurveillance data for marmot natural foci in Qilian-Altun Mountains of Gansu Province from 2014 to 2023 were obtained from the Disease Control and Prevention Center of Gansu Province.Origin 2024 software was used for data visualization and presentation.Global and local spatial autocorrelation analyses and trend analyses were conducted in ArcGIS 10.8 software,with townships as the spatial scale.Cumulatively,440 strains of Y.pestis were isolated from the natural marmot foci in the Qilian-Altun mountainsof Gansu Province from 2014 to 2023.Most strains was isolated from marmots(345 strains,78.41%),and the remainder were isolated from vectors.Temporal distribution analysis indicated that the highest number of detected bacteria was reported in July and August(both 121 strains,27.50%).Regional distribution analysis revealed that Aksai County reported the highest number of detected bacteria(255 strains,57.95%).Global spatial autocorrelation analysis showed a spatially clustered distribution of the number of bacteria detected annually in the townships containing natural foci,except in2014,2016,and 2021-2023.The strongest spatial clustering was observed in 2020(Moran's I=0.521 2,Z=14.397 0,P<0.001).Local spatial autocorrelation analysis indicated a"high-high"aggregation area in the natural foci every year from 2014 to 2023,primarily in Hongliuwan Town of Aksai County and Dangchengwan Town of Subei County.The distribution of the"low-low"aggregation area was essentially consistent with the low activity area of the Yersinia pestisepidemic.The trend in annual total bacterial count gradually increased from east to west,and peaked in the western part of the epidemic focus.Clear spatial aggregation characteristics of the number of Y.pestis were detected in the marmot natural foci in the Qilian-Altun mountains at the townshiplevel as a whole in Gansu Province from 2014 to 2023.The aggregation area was mainly in the western section of Qilian Mountain to the Altun mountain section of the epidemic source area.Monitoring and prevention and control efforts should be focused in this key area,with prevention and control measures tailored to the local conditions,and classified guidance to decrease the risk of plague occurrence and spread.
5.The current situation and challenges of liver resection for hepatocellular cancinoma
Xin YANG ; Da XU ; Lunxiu QIN
Journal of Clinical Surgery 2025;33(10):1048-1052
Surgical resection remains the primary option for achieving radical cure and long-term survival in the treatment of liver cancer.In recent years,profound changes have taken place in the field of liver surgery:the surgical concept of liver resection for liver cancer has been constantly updated;Significant progress has also been made in many aspects such as liver imaging technology,liver resection techniques and equipment,and perioperative management.Liver resection for liver cancer has gradually developed into a more precise,minimally invasive and safer treatment model.However,liver resection for liver cancer still faces many new challenges up to now:the prevention strategies for recurrence and metastasis are limited;There is a lack of predictive indicators for the efficacy of targeted immunotherapy.Insufficient precision in individualized treatment,etc.
6.Chinese expert consensus on blood support mode and blood transfusion strategies for emergency treatment of severe trauma patients (version 2024)
Yao LU ; Yang LI ; Leiying ZHANG ; Hao TANG ; Huidan JING ; Yaoli WANG ; Xiangzhi JIA ; Li BA ; Maohong BIAN ; Dan CAI ; Hui CAI ; Xiaohong CAI ; Zhanshan ZHA ; Bingyu CHEN ; Daqing CHEN ; Feng CHEN ; Guoan CHEN ; Haiming CHEN ; Jing CHEN ; Min CHEN ; Qing CHEN ; Shu CHEN ; Xi CHEN ; Jinfeng CHENG ; Xiaoling CHU ; Hongwang CUI ; Xin CUI ; Zhen DA ; Ying DAI ; Surong DENG ; Weiqun DONG ; Weimin FAN ; Ke FENG ; Danhui FU ; Yongshui FU ; Qi FU ; Xuemei FU ; Jia GAN ; Xinyu GAN ; Wei GAO ; Huaizheng GONG ; Rong GUI ; Geng GUO ; Ning HAN ; Yiwen HAO ; Wubing HE ; Qiang HONG ; Ruiqin HOU ; Wei HOU ; Jie HU ; Peiyang HU ; Xi HU ; Xiaoyu HU ; Guangbin HUANG ; Jie HUANG ; Xiangyan HUANG ; Yuanshuai HUANG ; Shouyong HUN ; Xuebing JIANG ; Ping JIN ; Dong LAI ; Aiping LE ; Hongmei LI ; Bijuan LI ; Cuiying LI ; Daihong LI ; Haihong LI ; He LI ; Hui LI ; Jianping LI ; Ning LI ; Xiying LI ; Xiangmin LI ; Xiaofei LI ; Xiaojuan LI ; Zhiqiang LI ; Zhongjun LI ; Zunyan LI ; Huaqin LIANG ; Xiaohua LIANG ; Dongfa LIAO ; Qun LIAO ; Yan LIAO ; Jiajin LIN ; Chunxia LIU ; Fenghua LIU ; Peixian LIU ; Tiemei LIU ; Xiaoxin LIU ; Zhiwei LIU ; Zhongdi LIU ; Hua LU ; Jianfeng LUAN ; Jianjun LUO ; Qun LUO ; Dingfeng LYU ; Qi LYU ; Xianping LYU ; Aijun MA ; Liqiang MA ; Shuxuan MA ; Xainjun MA ; Xiaogang MA ; Xiaoli MA ; Guoqing MAO ; Shijie MU ; Shaolin NIE ; Shujuan OUYANG ; Xilin OUYANG ; Chunqiu PAN ; Jian PAN ; Xiaohua PAN ; Lei PENG ; Tao PENG ; Baohua QIAN ; Shu QIAO ; Li QIN ; Ying REN ; Zhaoqi REN ; Ruiming RONG ; Changshan SU ; Mingwei SUN ; Wenwu SUN ; Zhenwei SUN ; Haiping TANG ; Xiaofeng TANG ; Changjiu TANG ; Cuihua TAO ; Zhibin TIAN ; Juan WANG ; Baoyan WANG ; Chunyan WANG ; Gefei WANG ; Haiyan WANG ; Hongjie WANG ; Peng WANG ; Pengli WANG ; Qiushi WANG ; Xiaoning WANG ; Xinhua WANG ; Xuefeng WANG ; Yong WANG ; Yongjun WANG ; Yuanjie WANG ; Zhihua WANG ; Shaojun WEI ; Yaming WEI ; Jianbo WEN ; Jun WEN ; Jiang WU ; Jufeng WU ; Aijun XIA ; Fei XIA ; Rong XIA ; Jue XIE ; Yanchao XING ; Yan XIONG ; Feng XU ; Yongzhu XU ; Yongan XU ; Yonghe YAN ; Beizhan YAN ; Jiang YANG ; Jiangcun YANG ; Jun YANG ; Xinwen YANG ; Yongyi YANG ; Chunyan YAO ; Mingliang YE ; Changlin YIN ; Ming YIN ; Wen YIN ; Lianling YU ; Shuhong YU ; Zebo YU ; Yigang YU ; Anyong YU ; Hong YUAN ; Yi YUAN ; Chan ZHANG ; Jinjun ZHANG ; Jun ZHANG ; Kai ZHANG ; Leibing ZHANG ; Quan ZHANG ; Rongjiang ZHANG ; Sanming ZHANG ; Shengji ZHANG ; Shuo ZHANG ; Wei ZHANG ; Weidong ZHANG ; Xi ZHANG ; Xingwen ZHANG ; Guixi ZHANG ; Xiaojun ZHANG ; Guoqing ZHAO ; Jianpeng ZHAO ; Shuming ZHAO ; Beibei ZHENG ; Shangen ZHENG ; Huayou ZHOU ; Jicheng ZHOU ; Lihong ZHOU ; Mou ZHOU ; Xiaoyu ZHOU ; Xuelian ZHOU ; Yuan ZHOU ; Zheng ZHOU ; Zuhuang ZHOU ; Haiyan ZHU ; Peiyuan ZHU ; Changju ZHU ; Lili ZHU ; Zhengguo WANG ; Jianxin JIANG ; Deqing WANG ; Jiongcai LAN ; Quanli WANG ; Yang YU ; Lianyang ZHANG ; Aiqing WEN
Chinese Journal of Trauma 2024;40(10):865-881
Patients with severe trauma require an extremely timely treatment and transfusion plays an irreplaceable role in the emergency treatment of such patients. An increasing number of evidence-based medicinal evidences and clinical practices suggest that patients with severe traumatic bleeding benefit from early transfusion of low-titer group O whole blood or hemostatic resuscitation with red blood cells, plasma and platelet of a balanced ratio. However, the current domestic mode of blood supply cannot fully meet the requirements of timely and effective blood transfusion for emergency treatment of patients with severe trauma in clinical practice. In order to solve the key problems in blood supply and blood transfusion strategies for emergency treatment of severe trauma, Branch of Clinical Transfusion Medicine of Chinese Medical Association, Group for Trauma Emergency Care and Multiple Injuries of Trauma Branch of Chinese Medical Association, Young Scholar Group of Disaster Medicine Branch of Chinese Medical Association organized domestic experts of blood transfusion medicine and trauma treatment to jointly formulate Chinese expert consensus on blood support mode and blood transfusion strategies for emergency treatment of severe trauma patients ( version 2024). Based on the evidence-based medical evidence and Delphi method of expert consultation and voting, 10 recommendations were put forward from two aspects of blood support mode and transfusion strategies, aiming to provide a reference for transfusion resuscitation in the emergency treatment of severe trauma and further improve the success rate of treatment of patients with severe trauma.
7.Distribution range of Himalayan marmots and plague risk analysis in Gaotai County,Gansu Province
Wen-jing AN ; Jin-xiao XI ; Ai-wei HE ; Ding-sheng WANG ; Da-qin XU ; Xiu-hua PU ; Huan YANG ; Bin-guo RONG
Chinese Journal of Zoonoses 2024;40(12):1194-1198
This study was aimed at surveying the distribution of Himalayan marmots in Gaotai County,Zhangye City,Gan-su Province,and analyzing the risk of plague occurrence,to provide a scientific basis for plague prevention and control in the area.On the basis of preliminary evidence,we used a combined approach of on-site investigation and Global Positioning System(GPS)positioning to survey the distribution and natural geographical landscape characteristics of the Himalayan marmot in Gaotai County.Population information and customs in the marmot distribution area were investigated through methods such as data retrieval and household visits.Himalayan marmots were captured through bow-shaped trapping,and blood,liver,spleen,heart,lung,kidney,femur,and surface-intermediate host samples were collected.Pathological and serological tests were conducted according to the Plague Diagnosis Criteria(WS279-2008).In Xinba Town,Gaotai County,Himalayan marmots were found in 16 villages(53.33%).Heping Village had the largest distribution area(100%),and was followed by Zhaoyi Village(79.17%)and Xishang Village(55.32%),whereas the other areas had values below 50%.Regarding the direct threats posed by marmots,Heping Village,Dongda Vil-lage,and Zhaoyi Village had values of 100%,Xishang Village had a value of 90.59%,and the other areas had values below 50%.The flea infestation rate on marmots'bodies was 59.62%,and the flea index was 1.48%(77/52).The main surface-in-termediate hosts were steppe ticks,body lice,Xenopsylla siberica,and Nosopsyllus laeviceps,accounting for 72.31%(517/715),16.92%(121/715),6.43%(46/715),and 4.20%(30/715),respectively,with steppe ticks being the dominant species.A total of 52 liver and spleen tissue samples from marmots,and 715 surface-intermediate hosts samples,were collected for bacterial culture.No Yersinia pestis was found.RIHA testing for plague F1 antigen was negative in all samples.Additionally,52 blood serum samples from marmots were collected,and IHA testing for plague-specific F1 antibodies was negative in all samples.The natural plague foci of marmots in the Qilian Mountains and Altyn Mountains is affected by factors including con-tinuing increases in temperature and grassland degradation.As a result,the marmot plague hosts continually migrate to sur-rounding non-epidemic areas,particularly in Gaotai County,Zhangye City.Local residents often hunt wild rabbits and mar-mots,thus posing a risk of human plague outbreaks if animal plague occurs.This county is recommended to be included in the province's plague surveillance and epidemic source investigation.Additionally,efforts should be strengthened in health educa-tion,medical personnel training,and management of key individuals and emergency reserves.If necessary,protective measures should be taken in marmot and flea control,to prevent the occurrence and spread of plague.
8.Distribution range of Himalayan marmots and plague risk analysis in Gaotai County,Gansu Province
Wen-jing AN ; Jin-xiao XI ; Ai-wei HE ; Ding-sheng WANG ; Da-qin XU ; Xiu-hua PU ; Huan YANG ; Bin-guo RONG
Chinese Journal of Zoonoses 2024;40(12):1194-1198
This study was aimed at surveying the distribution of Himalayan marmots in Gaotai County,Zhangye City,Gan-su Province,and analyzing the risk of plague occurrence,to provide a scientific basis for plague prevention and control in the area.On the basis of preliminary evidence,we used a combined approach of on-site investigation and Global Positioning System(GPS)positioning to survey the distribution and natural geographical landscape characteristics of the Himalayan marmot in Gaotai County.Population information and customs in the marmot distribution area were investigated through methods such as data retrieval and household visits.Himalayan marmots were captured through bow-shaped trapping,and blood,liver,spleen,heart,lung,kidney,femur,and surface-intermediate host samples were collected.Pathological and serological tests were conducted according to the Plague Diagnosis Criteria(WS279-2008).In Xinba Town,Gaotai County,Himalayan marmots were found in 16 villages(53.33%).Heping Village had the largest distribution area(100%),and was followed by Zhaoyi Village(79.17%)and Xishang Village(55.32%),whereas the other areas had values below 50%.Regarding the direct threats posed by marmots,Heping Village,Dongda Vil-lage,and Zhaoyi Village had values of 100%,Xishang Village had a value of 90.59%,and the other areas had values below 50%.The flea infestation rate on marmots'bodies was 59.62%,and the flea index was 1.48%(77/52).The main surface-in-termediate hosts were steppe ticks,body lice,Xenopsylla siberica,and Nosopsyllus laeviceps,accounting for 72.31%(517/715),16.92%(121/715),6.43%(46/715),and 4.20%(30/715),respectively,with steppe ticks being the dominant species.A total of 52 liver and spleen tissue samples from marmots,and 715 surface-intermediate hosts samples,were collected for bacterial culture.No Yersinia pestis was found.RIHA testing for plague F1 antigen was negative in all samples.Additionally,52 blood serum samples from marmots were collected,and IHA testing for plague-specific F1 antibodies was negative in all samples.The natural plague foci of marmots in the Qilian Mountains and Altyn Mountains is affected by factors including con-tinuing increases in temperature and grassland degradation.As a result,the marmot plague hosts continually migrate to sur-rounding non-epidemic areas,particularly in Gaotai County,Zhangye City.Local residents often hunt wild rabbits and mar-mots,thus posing a risk of human plague outbreaks if animal plague occurs.This county is recommended to be included in the province's plague surveillance and epidemic source investigation.Additionally,efforts should be strengthened in health educa-tion,medical personnel training,and management of key individuals and emergency reserves.If necessary,protective measures should be taken in marmot and flea control,to prevent the occurrence and spread of plague.
9.Design and practice of general population cohort study in northeastern China
Hehua ZHANG ; Qing CHANG ; Qijun WU ; Yang XIA ; Shanyan GAO ; Yixiao ZHANG ; Yuan YUAN ; Jing JIANG ; Hongbin QIU ; Jing LI ; Chunming LU ; Chao JI ; Xin XU ; Donghui HUANG ; Huixu DAI ; Zhiying ZHAO ; Xing LI ; Xiaoying LI ; Xiaosong QIN ; Caigang LIU ; Xiaoyu MA ; Xinrui XU ; Da YAO ; Huixin YU ; Yuhong ZHAO
Chinese Journal of Epidemiology 2023;44(1):21-27
In 2016, a national one million general population cohort project was set up in China for the first time in "Precision Medicine Research" Key Project, National Key Research and Development Program of China, which consists of general population cohorts in seven areas in China. As one of the seven major areas in China, northeastern China has unique climate and specific dietary patterns, and population aging is serious in this area. And the burden of chronic and non-communicable diseases ranks tops in China. Therefore, it is of great significance to establish a large general population cohort in northeastern China to explore the area specific exposure factors related to pathogenesis and prognosis of chronic and non-communicable diseases, develop new prevention strategies to reduce the burden of the diseases and improve the population health in northeastern China. In July 2018, the general population cohort study in northeastern China was launched, the study includes questionnaire survey, health examination and blood, urine and stool sample collection and detection in recruited participants. By now, the cohort has covered all age groups, and the baseline data of 115 414 persons have been collected. This paper summarizes the design and practice of the general population cohort study in northeastern China to provide reference for related research in China.
10.HIV-1 Subtype Diversity and Factors Affecting Drug Resistance among Patients with Virologic Failure in Antiretroviral Therapy in Hainan Province, China, 2014-2020.
De E YU ; Yu Jun XU ; Mu LI ; Yuan YANG ; Hua Yue LIANG ; Shan Mei ZHONG ; Cai QIN ; Ya Nan LAN ; Da Wei LI ; Ji Peng YU ; Yuan PANG ; Xue Qiu QIN ; Hao LIANG ; Kao Kao ZHU ; Li YE ; Bing Yu LIANG
Biomedical and Environmental Sciences 2023;36(9):800-813
OBJECTIVE:
This study aimed to determine the HIV-1 subtype distribution and HIV drug resistance (HIVDR) in patients with ART failure from 2014 to 2020 in Hainan, China.
METHODS:
A 7-year cross-sectional study was conducted among HIV/AIDS patients with ART failure in Hainan. We used online subtyping tools and the maximum likelihood phylogenetic tree to confirm the HIV subtypes with pol sequences. Drug resistance mutations (DRMs) were analyzed using the Stanford University HIV Drug Resistance Database.
RESULTS:
A total of 307 HIV-infected patients with ART failure were included, and 241 available pol sequences were obtained. Among 241 patients, CRF01_AE accounted for 68.88%, followed by CRF07_BC (17.00%) and eight other subtypes (14.12%). The overall prevalence of HIVDR was 61.41%, and the HIVDR against non-nucleoside reverse transcriptase inhibitors (NNRTIs), nucleotide reverse transcriptase inhibitors (NRTIs), and protease inhibitors (PIs) were 59.75%, 45.64%, and 2.49%, respectively. Unemployed patients, hypoimmunity or opportunistic infections in individuals, and samples from 2017 to 2020 increased the odd ratios of HIVDR. Also, HIVDR was less likely to affect female patients. The common DRMs to NNRTIs were K103N (21.99%) and Y181C (20.33%), and M184V (28.21%) and K65R (19.09%) were the main DRMs against NRTIs.
CONCLUSION
The present study highlights the HIV-1 subtype diversity in Hainan and the importance of HIVDR surveillance over a long period.
Humans
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Reverse Transcriptase Inhibitors/therapeutic use*
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HIV-1/genetics*
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Cross-Sectional Studies
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Phylogeny
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Anti-HIV Agents/therapeutic use*
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Drug Resistance, Viral/genetics*
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HIV Infections/epidemiology*
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Mutation
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China/epidemiology*
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Prevalence
;
Genotype

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