1.Mesothelin-specific T-cell immune reconstitution after hematopoietic stem cell transplantation in acute myeloid leukemia
Xiaohua LUO ; Yuting CHEN ; Lan WANG ; Wen PENG ; Xiaoqin DUAN ; Liping SHUI
Chinese Journal of Immunology 2025;41(9):2237-2242
Objective:To investigate the pattern of Mesothelin(MSLN)-specific T-cell(CTLs)immune reconstitution after allogeneic hematopoietic stem cell transplantation.Methods:Two cases of Mesothelin-positive patients with acute myeloid leukemia(AML)were screened,and the number of MSLN-CTLs and its subpopulations,the expression of surface PD-1/CTLA-4/TIM-3 im-mune exhaustion molecules,and the functions of secreted cytokines TNF-α and IFN-γ were monitored by flow cytometry after trans-plantation.They were compared with WT1-CTLs and cytomegalovirus(CMV)CTLs.Meanwhile,the relationship between CTL recon-stitution and Minimal residual disease(MRD)and leukemia recurrence was analyzed.Results:After transplantation,MSLN-CTLs,WT1-CTLs and CMV-CTLs can be detected,and intracellular factors were secreted.The phenotypes of WT1 specific CD8+T cells,MSLN specific CD8+T cells and CMV specific CD8+T cells were mainly TEM subsets and TEMRA subsets,and the TEM subsets of CMV specific CD8+T cells were more obvious.Compared with CMV-CTLs,the proportions of T Naive,TCM and TEMRA subsets were relatively higher in MSLN-specific CD8+T cells and WT1-specific CD8+T cells,and the expression levels of PD-1,CTLA-4 and TIM-3 were higher in MSLN-CTLs and WT1-CTLs.The dynamic changes of MSLN-CTLs and WT1-CTLs after transplantation were related to leukemia load and the chimerism rate of donor and recipient.Conclusion:After allogeneic hematopoietic stem cell transplantation,im-mune recovery to MSLN is found,which is different from WT1-CTLs and CMV-CTLs.
2.Correlation analysis between weakness and readmission of elderly patients with chronic heart failure in vulnerable period
Lanqing HUANG ; Xiaoqin QIU ; Chunhan LAN ; Li ZHANG ; Xiaodong JIANG ; Jiemei ZHENG ; Fang LIU
China Modern Doctor 2025;63(30):26-29,81
Objective To investigate the relationship between frailty and readmission during vulnerable periods in elderly patients with chronic heart failure.Methods Using convenience sampling method,290 elderly patients with chronic heart failure admitted to Department of Cardiovascular,the People's Hospital of Guangxi Zhuang Autonomous Region from December 2022 to August 2023 were selected as the research subjects.They were followed up for three months and surveyed using general information questionnaire,frailty scale,and Barthel index.Results Spearman correlation analysis showed a positive correlation between readmission during the vulnerable period and frailty(r=0.266,P<0.05).The readmission rate during the vulnerable period was 28.6%,and the results of multivariate Logistic regression analysis showed that frailty(OR=2.561,95%CI:1.409-4.654),age(OR=1.113,95%CI:1.067-1.161),and renal dysfunction(OR=2.903,95%CI:1.559-5.406)were independent risk factors for unplanned readmission during the vulnerable period in elderly patients with chronic heart failure.Conclusion There is a positive correlation between frailty and readmission during the vulnerable period in elderly patients with chronic heart failure.Frailty,age,and renal dysfunction are independent risk factors for decompensated admission events in vulnerable elderly patients with chronic heart failure.
3.Guideline for the prevention of intraoperative acquired pressure injury in paraplegic patients with spinal cord injury (version 2025)
Aijun XU ; Shuixia LI ; Bo CHEN ; Mengyuan YE ; Lejiao LANG ; Ning NING ; Lin ZHANG ; Changqing LIU ; Zhonglan CHEN ; Weihu MA ; Weishi LI ; Xiaoning WANG ; Dongmei BIAN ; Jiancheng ZENG ; Xin WANG ; Yuan GAO ; Yaping CHEN ; Jiali CHEN ; Yun HAN ; Xiuting LI ; Yang ZHOU ; Xiaojing SU ; Qiong ZHANG ; Tianwen HUANG ; Ping ZHANG ; Hua LIN ; Xingling XIAO ; Ruifeng XU ; Fanghui DONG ; Bing HAN ; Luo FAN ; Yanling PEI ; Suyun LI ; Xiaoju TAN ; Rongchen GUO ; Yefang ZOU ; Xiaoyun HAN ; Junqin DING ; Yi WANG ; Shuhua DENG ; Jinli GUO ; Yinhua LIANG ; Yuan CEN ; Xiaoqin LIU ; Junru CHEN ; Haiyang YU ; Lunlan LI ; Ying REN ; Yunxia LI ; Jianli LU ; Ying YING ; Lan WEI ; Yin WANG ; Qinhong XU ; Yanqin ZHANG ; Yang LYU ; Shijun ZHANG ; Sui WENJIE ; Sanlian HU ; Shuhong YANG ; Guoqing LI ; Jingjing AN ; Baorong HE ; Leling FENG
Chinese Journal of Trauma 2025;41(6):530-541
Paraplegia caused by spinal cord injury is a serious neurological complication, for which surgery is currently the main treatment method. Due to different surgical approaches, patients are usually expected to maintain a passive prone position for a long time or switch between the supine and prone positions. Affected by multiple factors such as neurogenic sensory disorders, pathological changes in muscle tone and operative duration, the risk of intraoperative acquired pressure injury (IAPI) is significantly increased. Current clinical prevention strategies for IAPI in these patients predominantly focus on localized pressure relief during positioning, lacking systematic, standardized comprehensive prevention protocols or evidence-based guidelines. To address it, Department of Nursing, Orthopedics Branch, China International Exchange and Promotive Association for Medical and Health Care, Spinal Trauma Professional Committee, Orthopedics Branch, Chinese Medical Doctor Association, Nursing Group of Spine and Spinal Cord Professional Committee of Chinese Association of Rehabilitation Medicine organized experts in relevant fields to formulate Guideline for the prevention of intraoperative acquired pressure injury in paraplegic patients with spinal cord injury ( version 2025), based on evidence-based medical evidence and latest research results and clinical practice at home and abroad. Eleven recommendations were put forward from the aspects of preoperative risk assessment, intraoperative prevention strategies, postoperative handover and monitoring, and supportive mechanisms for IAPI prevention, aiming to standardize the prevention measures and management strategies of IAPI in paraplegic patients with spinal cord injury and accelerate the recovery of patients and improve the therapeutic effect.
4.Correlation analysis between weakness and readmission of elderly patients with chronic heart failure in vulnerable period
Lanqing HUANG ; Xiaoqin QIU ; Chunhan LAN ; Li ZHANG ; Xiaodong JIANG ; Jiemei ZHENG ; Fang LIU
China Modern Doctor 2025;63(30):26-29,81
Objective To investigate the relationship between frailty and readmission during vulnerable periods in elderly patients with chronic heart failure.Methods Using convenience sampling method,290 elderly patients with chronic heart failure admitted to Department of Cardiovascular,the People's Hospital of Guangxi Zhuang Autonomous Region from December 2022 to August 2023 were selected as the research subjects.They were followed up for three months and surveyed using general information questionnaire,frailty scale,and Barthel index.Results Spearman correlation analysis showed a positive correlation between readmission during the vulnerable period and frailty(r=0.266,P<0.05).The readmission rate during the vulnerable period was 28.6%,and the results of multivariate Logistic regression analysis showed that frailty(OR=2.561,95%CI:1.409-4.654),age(OR=1.113,95%CI:1.067-1.161),and renal dysfunction(OR=2.903,95%CI:1.559-5.406)were independent risk factors for unplanned readmission during the vulnerable period in elderly patients with chronic heart failure.Conclusion There is a positive correlation between frailty and readmission during the vulnerable period in elderly patients with chronic heart failure.Frailty,age,and renal dysfunction are independent risk factors for decompensated admission events in vulnerable elderly patients with chronic heart failure.
5.Erratum: Author correction to "Up-regulation of glyclipid transfer protein by bicyclol causes spontaneous restriction of hepatitis C virus replication" Acta Pharm Sin B 9 (2019) 769-781.
Menghao HUANG ; Hu LI ; Rong XUE ; Jianrui LI ; Lihua WANG ; Junjun CHENG ; Zhouyi WU ; Wenjing LI ; Jinhua CHEN ; Xiaoqin LV ; Qiang LI ; Pei LAN ; Limin ZHAO ; Yongfeng YANG ; Zonggen PENG ; Jiandong JIANG
Acta Pharmaceutica Sinica B 2025;15(3):1721-1721
[This corrects the article DOI: 10.1016/j.apsb.2019.01.013.].
6.Mesothelin-specific T-cell immune reconstitution after hematopoietic stem cell transplantation in acute myeloid leukemia
Xiaohua LUO ; Yuting CHEN ; Lan WANG ; Wen PENG ; Xiaoqin DUAN ; Liping SHUI
Chinese Journal of Immunology 2025;41(9):2237-2242
Objective:To investigate the pattern of Mesothelin(MSLN)-specific T-cell(CTLs)immune reconstitution after allogeneic hematopoietic stem cell transplantation.Methods:Two cases of Mesothelin-positive patients with acute myeloid leukemia(AML)were screened,and the number of MSLN-CTLs and its subpopulations,the expression of surface PD-1/CTLA-4/TIM-3 im-mune exhaustion molecules,and the functions of secreted cytokines TNF-α and IFN-γ were monitored by flow cytometry after trans-plantation.They were compared with WT1-CTLs and cytomegalovirus(CMV)CTLs.Meanwhile,the relationship between CTL recon-stitution and Minimal residual disease(MRD)and leukemia recurrence was analyzed.Results:After transplantation,MSLN-CTLs,WT1-CTLs and CMV-CTLs can be detected,and intracellular factors were secreted.The phenotypes of WT1 specific CD8+T cells,MSLN specific CD8+T cells and CMV specific CD8+T cells were mainly TEM subsets and TEMRA subsets,and the TEM subsets of CMV specific CD8+T cells were more obvious.Compared with CMV-CTLs,the proportions of T Naive,TCM and TEMRA subsets were relatively higher in MSLN-specific CD8+T cells and WT1-specific CD8+T cells,and the expression levels of PD-1,CTLA-4 and TIM-3 were higher in MSLN-CTLs and WT1-CTLs.The dynamic changes of MSLN-CTLs and WT1-CTLs after transplantation were related to leukemia load and the chimerism rate of donor and recipient.Conclusion:After allogeneic hematopoietic stem cell transplantation,im-mune recovery to MSLN is found,which is different from WT1-CTLs and CMV-CTLs.
7.Guideline for the prevention of intraoperative acquired pressure injury in paraplegic patients with spinal cord injury (version 2025)
Aijun XU ; Shuixia LI ; Bo CHEN ; Mengyuan YE ; Lejiao LANG ; Ning NING ; Lin ZHANG ; Changqing LIU ; Zhonglan CHEN ; Weihu MA ; Weishi LI ; Xiaoning WANG ; Dongmei BIAN ; Jiancheng ZENG ; Xin WANG ; Yuan GAO ; Yaping CHEN ; Jiali CHEN ; Yun HAN ; Xiuting LI ; Yang ZHOU ; Xiaojing SU ; Qiong ZHANG ; Tianwen HUANG ; Ping ZHANG ; Hua LIN ; Xingling XIAO ; Ruifeng XU ; Fanghui DONG ; Bing HAN ; Luo FAN ; Yanling PEI ; Suyun LI ; Xiaoju TAN ; Rongchen GUO ; Yefang ZOU ; Xiaoyun HAN ; Junqin DING ; Yi WANG ; Shuhua DENG ; Jinli GUO ; Yinhua LIANG ; Yuan CEN ; Xiaoqin LIU ; Junru CHEN ; Haiyang YU ; Lunlan LI ; Ying REN ; Yunxia LI ; Jianli LU ; Ying YING ; Lan WEI ; Yin WANG ; Qinhong XU ; Yanqin ZHANG ; Yang LYU ; Shijun ZHANG ; Sui WENJIE ; Sanlian HU ; Shuhong YANG ; Guoqing LI ; Jingjing AN ; Baorong HE ; Leling FENG
Chinese Journal of Trauma 2025;41(6):530-541
Paraplegia caused by spinal cord injury is a serious neurological complication, for which surgery is currently the main treatment method. Due to different surgical approaches, patients are usually expected to maintain a passive prone position for a long time or switch between the supine and prone positions. Affected by multiple factors such as neurogenic sensory disorders, pathological changes in muscle tone and operative duration, the risk of intraoperative acquired pressure injury (IAPI) is significantly increased. Current clinical prevention strategies for IAPI in these patients predominantly focus on localized pressure relief during positioning, lacking systematic, standardized comprehensive prevention protocols or evidence-based guidelines. To address it, Department of Nursing, Orthopedics Branch, China International Exchange and Promotive Association for Medical and Health Care, Spinal Trauma Professional Committee, Orthopedics Branch, Chinese Medical Doctor Association, Nursing Group of Spine and Spinal Cord Professional Committee of Chinese Association of Rehabilitation Medicine organized experts in relevant fields to formulate Guideline for the prevention of intraoperative acquired pressure injury in paraplegic patients with spinal cord injury ( version 2025), based on evidence-based medical evidence and latest research results and clinical practice at home and abroad. Eleven recommendations were put forward from the aspects of preoperative risk assessment, intraoperative prevention strategies, postoperative handover and monitoring, and supportive mechanisms for IAPI prevention, aiming to standardize the prevention measures and management strategies of IAPI in paraplegic patients with spinal cord injury and accelerate the recovery of patients and improve the therapeutic effect.
8.Differential expression and bioinformatics analysis of microRNAs in exosomes of sheep poxvirus-infected cells
Xiaoqin MA ; Beibei ZHANG ; Hongyu WANG ; Yun GAO ; Lan WANG ; Mingyu HE ; Zhongzheng ZHU ; Xiaoshan CHAO ; Ying WANG ; Juntao DING
Korean Journal of Veterinary Research 2024;64(4):e23-
Sheep pox is widespread worldwide and is the most severe animal pox virus infection. This study aimed to identify the key microRNAs (miRNAs) differentially expressed in the exosomes of sheep poxvirus-infected cells and their target genes and related pathways and provide a theoretical basis for an in-depth understanding of the molecular mechanisms of sheep poxvirus-infected cells. In this study, the differentially expressed miRNAs were verified by quantitative polymerase chain reaction (qPCR), and the target genes of miRNAs were predicted and analyzed by bioinformatics. The qPCR results showed that the expression trends of oar-miR-21, oar-miR-10b, oar-let-7f, oar-let-7b, and oar-miR-221 were consistent with the sequencing results. The Gene Ontology and Kyoto Encyclopedia of Genes and Genomes results showed that differentially expressed miRNAs were mainly involved in the immune system processes of the Arf6 downstream pathway. The target genes Reactome pathways were mainly enriched in the RAC1 GTPase cycle, CDC42 GTPase cycle, RHO GTPase cycle, RHOV GTPase cycle, and post-transcriptional silencing of small RNAs. The transcription factors SP4, NKX6-1, MEF2A, SP1, EGR1, and POU2F1 that may be connected to sheep pox virus (SPPV)-infected cells were discovered by transcription factor annotation screening. In conclusion, this study screened for differentially expressed miRNAs in SPPV-infected cells and performed a series of bioinformatic analyses of their target genes to provide a theoretical basis for the molecular mechanism of sheep pox virus infections of cells. The data can be used as basic information in future studies on the defense mechanisms against poxvirus infections.
9.Differential expression and bioinformatics analysis of microRNAs in exosomes of sheep poxvirus-infected cells
Xiaoqin MA ; Beibei ZHANG ; Hongyu WANG ; Yun GAO ; Lan WANG ; Mingyu HE ; Zhongzheng ZHU ; Xiaoshan CHAO ; Ying WANG ; Juntao DING
Korean Journal of Veterinary Research 2024;64(4):e23-
Sheep pox is widespread worldwide and is the most severe animal pox virus infection. This study aimed to identify the key microRNAs (miRNAs) differentially expressed in the exosomes of sheep poxvirus-infected cells and their target genes and related pathways and provide a theoretical basis for an in-depth understanding of the molecular mechanisms of sheep poxvirus-infected cells. In this study, the differentially expressed miRNAs were verified by quantitative polymerase chain reaction (qPCR), and the target genes of miRNAs were predicted and analyzed by bioinformatics. The qPCR results showed that the expression trends of oar-miR-21, oar-miR-10b, oar-let-7f, oar-let-7b, and oar-miR-221 were consistent with the sequencing results. The Gene Ontology and Kyoto Encyclopedia of Genes and Genomes results showed that differentially expressed miRNAs were mainly involved in the immune system processes of the Arf6 downstream pathway. The target genes Reactome pathways were mainly enriched in the RAC1 GTPase cycle, CDC42 GTPase cycle, RHO GTPase cycle, RHOV GTPase cycle, and post-transcriptional silencing of small RNAs. The transcription factors SP4, NKX6-1, MEF2A, SP1, EGR1, and POU2F1 that may be connected to sheep pox virus (SPPV)-infected cells were discovered by transcription factor annotation screening. In conclusion, this study screened for differentially expressed miRNAs in SPPV-infected cells and performed a series of bioinformatic analyses of their target genes to provide a theoretical basis for the molecular mechanism of sheep pox virus infections of cells. The data can be used as basic information in future studies on the defense mechanisms against poxvirus infections.
10.Differential expression and bioinformatics analysis of microRNAs in exosomes of sheep poxvirus-infected cells
Xiaoqin MA ; Beibei ZHANG ; Hongyu WANG ; Yun GAO ; Lan WANG ; Mingyu HE ; Zhongzheng ZHU ; Xiaoshan CHAO ; Ying WANG ; Juntao DING
Korean Journal of Veterinary Research 2024;64(4):e23-
Sheep pox is widespread worldwide and is the most severe animal pox virus infection. This study aimed to identify the key microRNAs (miRNAs) differentially expressed in the exosomes of sheep poxvirus-infected cells and their target genes and related pathways and provide a theoretical basis for an in-depth understanding of the molecular mechanisms of sheep poxvirus-infected cells. In this study, the differentially expressed miRNAs were verified by quantitative polymerase chain reaction (qPCR), and the target genes of miRNAs were predicted and analyzed by bioinformatics. The qPCR results showed that the expression trends of oar-miR-21, oar-miR-10b, oar-let-7f, oar-let-7b, and oar-miR-221 were consistent with the sequencing results. The Gene Ontology and Kyoto Encyclopedia of Genes and Genomes results showed that differentially expressed miRNAs were mainly involved in the immune system processes of the Arf6 downstream pathway. The target genes Reactome pathways were mainly enriched in the RAC1 GTPase cycle, CDC42 GTPase cycle, RHO GTPase cycle, RHOV GTPase cycle, and post-transcriptional silencing of small RNAs. The transcription factors SP4, NKX6-1, MEF2A, SP1, EGR1, and POU2F1 that may be connected to sheep pox virus (SPPV)-infected cells were discovered by transcription factor annotation screening. In conclusion, this study screened for differentially expressed miRNAs in SPPV-infected cells and performed a series of bioinformatic analyses of their target genes to provide a theoretical basis for the molecular mechanism of sheep pox virus infections of cells. The data can be used as basic information in future studies on the defense mechanisms against poxvirus infections.

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