1.Research on the construction of a maintenance management system based on TPM theory for large-scale medical equipment
Ze LIU ; Bo MOU ; Mao LI ; Chunpeng GAO
China Medical Equipment 2025;22(10):108-114
Objective:To construct a maintenance management system based on Total Productive Maintenance(TPM)theory for large-scale medical equipment,and explore its application effect in the management for large-scale medical equipment.Methods:By building TPM management team,predicting equipment's failures,planning TPM management pathway for equipment,and implementing quality control to construct TPM management system for the large-scale medical equipment.A total of 547 large-scale medical equipment that were used in clinical practice at the First Affiliated Hospital of Harbin Medical University from February 2022 to July 2024 were selected.They were divided into conventional management mode(272 equipment)and TPM management mode(275 equipment)by using random number table method.The TPM management mode conducted management on the basis of TPM management system for large-scale medical equipment.The equipment configuration,operational quality,effectiveness of equipment maintenance,and maintenance quality of the two kinds of management modes were compared.Using a self-made satisfaction questionnaire to evaluate the satisfaction of management personnel who used equipment for the service quality of maintenance management of two management modes for medical equipment.Results:The average configuration rate,utilization rate,and operation rate of equipment that using TPM management mode were(4.81±0.94)%,(97.98±0.67)%,and(89.15±4.78)%,respectively,all which were higher than those that using conventional management mode.However,the average failure rate was(1.72±0.12)%,which was lower than that of using conventional management mode.The differences of the above indicators were statistically significant(t=39.942,80.213,23.188,71.723,P<0.05).The average values of the efficiency of equipment maintenance,the standardization of usage,timeliness of maintenance,and pass rate of quality inspection of TPM management mode were all higher than those of conventional management mode,and the differences were statistically significant(t=36.893,22.913,17.948,21.553,P<0.05).The response time,average repair rate of failure,and delivery cycle of accessories of equipment maintenance of TPM management mode were all lower than those of conventional management mode,while the quality score of maintenance service was higher than that of conventional management mode,and the differences were statistically significant(t=37.332,25.116,53.265,55.988,P<0.05).The satisfactions of management personnel who used equipment for preventive maintenance,preventive repair,usage management,fault repair,quality inspection,and post maintenance of equipment that adopted TPM management mode were all higher than those that adopted conventional management mode,and the differences were statistically significant(t=24.218,21.408,19.706,27.141,38.149,46.434,P<0.05).Conclusion:The maintenance management system based on TPM theory for large-scale medical equipment can effectively improve operation efficiency and maintenance quality of equipment,and reduce equipment's failure rate,and enhance the timeliness of maintenance services for equipment,and increase the satisfaction of management personnel in using equipment.
2.ACOT11 Gene Knockout Aggravates Kidney Tissue Fibrosis in UUO Mice
Bo-liang KE ; Chu-jiang HE ; Qi-lin TANG ; Wei-ming MOU ; Yan ZHUANG ; Yi SHAO
Progress in Modern Biomedicine 2025;25(9):1441-1451
Objective:To explore the role and possible mechanism of ACOT11 in renal fibrosis model mice.Methods:A mouse model of renal fibrosis was established by unilateral ureteral obstruction(UUO)(Sham group and UUO7 group),and the expression of ACOT11 in the kidneys of UUO induced fibrosis mouse models was detected by protein immunoblotting and real-time fluorescence quantitative PCR(qRT-PCR).Subsequently,immunohistochemistry,Masson staining,H&E staining,PAS staining,and other experimental methods were used to detect the expression levels of fibrosis biomarkers fibronectin,α-SMA,and COL-1 in the kidneys of control and experimental group mice.In addition,by constructing ACOT11 gene knockout model mice and using the gene knockout model mice to construct a renal fibrosis model,the expression levels of fibrosis biomarkers such as fibronectin,α-SMA,COL-1,as well as fibrosis mechanism pathway related indicators TGF-β and Smad2 in the kidneys of each group of mice were further detected.Results:The results of WB and qRT-PCR experiments showed that the expression of ACOT11 in the kidney tissue of UUO model mice was significantly reduced compared to the Sham group.After knocking out the ACOT11 gene,H&E staining,PAS staining,and Masson staining showed that pathological inflammatory reactions such as abnormal glomerular and tubular structures,inflammatory cell infiltration and interstitial fibrous tissue proliferation in mice were significantly aggravated compared to the control group,and the expression of fibrosis markers Fibronectin,α-SMA,and COL-1 was significantly higher than that of the control group.Conclusion:ACOT11 plays a protective role in mice with unilateral ureteral obstruction model.After ACOT11 gene knockout,the fibrosis biomarkers of the mouse kidney increases and the degree of fibrosis worsens.
3.Research on the construction of a maintenance management system based on TPM theory for large-scale medical equipment
Ze LIU ; Bo MOU ; Mao LI ; Chunpeng GAO
China Medical Equipment 2025;22(10):108-114
Objective:To construct a maintenance management system based on Total Productive Maintenance(TPM)theory for large-scale medical equipment,and explore its application effect in the management for large-scale medical equipment.Methods:By building TPM management team,predicting equipment's failures,planning TPM management pathway for equipment,and implementing quality control to construct TPM management system for the large-scale medical equipment.A total of 547 large-scale medical equipment that were used in clinical practice at the First Affiliated Hospital of Harbin Medical University from February 2022 to July 2024 were selected.They were divided into conventional management mode(272 equipment)and TPM management mode(275 equipment)by using random number table method.The TPM management mode conducted management on the basis of TPM management system for large-scale medical equipment.The equipment configuration,operational quality,effectiveness of equipment maintenance,and maintenance quality of the two kinds of management modes were compared.Using a self-made satisfaction questionnaire to evaluate the satisfaction of management personnel who used equipment for the service quality of maintenance management of two management modes for medical equipment.Results:The average configuration rate,utilization rate,and operation rate of equipment that using TPM management mode were(4.81±0.94)%,(97.98±0.67)%,and(89.15±4.78)%,respectively,all which were higher than those that using conventional management mode.However,the average failure rate was(1.72±0.12)%,which was lower than that of using conventional management mode.The differences of the above indicators were statistically significant(t=39.942,80.213,23.188,71.723,P<0.05).The average values of the efficiency of equipment maintenance,the standardization of usage,timeliness of maintenance,and pass rate of quality inspection of TPM management mode were all higher than those of conventional management mode,and the differences were statistically significant(t=36.893,22.913,17.948,21.553,P<0.05).The response time,average repair rate of failure,and delivery cycle of accessories of equipment maintenance of TPM management mode were all lower than those of conventional management mode,while the quality score of maintenance service was higher than that of conventional management mode,and the differences were statistically significant(t=37.332,25.116,53.265,55.988,P<0.05).The satisfactions of management personnel who used equipment for preventive maintenance,preventive repair,usage management,fault repair,quality inspection,and post maintenance of equipment that adopted TPM management mode were all higher than those that adopted conventional management mode,and the differences were statistically significant(t=24.218,21.408,19.706,27.141,38.149,46.434,P<0.05).Conclusion:The maintenance management system based on TPM theory for large-scale medical equipment can effectively improve operation efficiency and maintenance quality of equipment,and reduce equipment's failure rate,and enhance the timeliness of maintenance services for equipment,and increase the satisfaction of management personnel in using equipment.
4.Protective effects of Shuangyi Qushi Tongluo Capsules on dexamethasone-induced osteoporosis in mice
Yi LI ; Jian-bin HE ; Jia-xiu XIE ; Quan-mou LUO ; Dong-mei LI ; Jun-hui HE ; Dong-mei WEI ; Chao WEI ; Hong-cong QIU ; Gui-ning WEI ; Bo WANG
Chinese Traditional Patent Medicine 2025;47(6):1834-1842
AIM To investigate the protective effects of Shuangyi Qushi Tongluo Capsules(Shuangyi Capsules)on Dexamethasone(Dex)induced osteoporosis in mice.METHODS The C57BL/6J mice were randomly divided into the control group,the model group,the Xianling Gubao Capsules group(1.5 g/kg),and the low-dose,moderate-dose,and high-dose Shuangyi Capsules groups(0.6,1.2,and 2.4 g/kg).The mouse model of osteoporosis was induced by 8-week intraperitoneal injection of Dex sodium phosphate injection(5 mg/kg).The mice had their femur osteogenesis observed with hematoxylin and eosin(HE)staining and tartrate-resistant acid phosphatase(TRAP)staining;their serum alkaline phosphatase(ALP)and osteocalcin(BGP)activities detected by ELISA;their femoral mRNA expressions of Col-Ⅰ,OCN,and OPN detected by RT-qPCR;and their femoral protein expressions of OPG and RANKL detected by Western blot.Upon the MC3T3-E1 cells exposed to Dex and Shuangyi Capsules,their viability was evaluated by CCK-8 assay;their mineralization determined by alkaline phosphatase staining and alizarin red staining(ARS);and their intracellular ROS level detected using DCFH-DA probe.RESULTS Compared with the model group,Shuangyi Capsules groups demonstrated improved fracture of femoral trabeculae and reduced number of osteoclasts;increased serum ALP and BGP activities(P<0.05,P<0.01);increased femoral expressions of Col-Ⅰ mRNA and OPG protein(P<0.05,P<0.01);and decreased RANKL protein expression(P<0.05).Compared with the MC3T3-E1 cells stimulated by Dex,those underwent further treatment of Shuangyi Capsules demonstrated increased cell viability and ALP activity(P<0.05,P<0.01);increased mineralization and calcium nodule formation;increased expressions of Col-Ⅰ,OCN,OPN mRNA and OPG protein(P<0.05,P<0.01);decreased RANKL protein expression(P<0.05,P<0.01);and reduced ROS levels.CONCLUSION Shuangyi Capsules ameliorate Dex-induced osteoporosis in mice by suppressing osteoclast overactivation,enhancing osteoblast activity,and stimulating bone formation through modulation of Col-Ⅰ,OCN,OPN mRNA and OPG/RANKL protein levels.
5.ACOT11 Gene Knockout Aggravates Kidney Tissue Fibrosis in UUO Mice
Bo-liang KE ; Chu-jiang HE ; Qi-lin TANG ; Wei-ming MOU ; Yan ZHUANG ; Yi SHAO
Progress in Modern Biomedicine 2025;25(9):1441-1451
Objective:To explore the role and possible mechanism of ACOT11 in renal fibrosis model mice.Methods:A mouse model of renal fibrosis was established by unilateral ureteral obstruction(UUO)(Sham group and UUO7 group),and the expression of ACOT11 in the kidneys of UUO induced fibrosis mouse models was detected by protein immunoblotting and real-time fluorescence quantitative PCR(qRT-PCR).Subsequently,immunohistochemistry,Masson staining,H&E staining,PAS staining,and other experimental methods were used to detect the expression levels of fibrosis biomarkers fibronectin,α-SMA,and COL-1 in the kidneys of control and experimental group mice.In addition,by constructing ACOT11 gene knockout model mice and using the gene knockout model mice to construct a renal fibrosis model,the expression levels of fibrosis biomarkers such as fibronectin,α-SMA,COL-1,as well as fibrosis mechanism pathway related indicators TGF-β and Smad2 in the kidneys of each group of mice were further detected.Results:The results of WB and qRT-PCR experiments showed that the expression of ACOT11 in the kidney tissue of UUO model mice was significantly reduced compared to the Sham group.After knocking out the ACOT11 gene,H&E staining,PAS staining,and Masson staining showed that pathological inflammatory reactions such as abnormal glomerular and tubular structures,inflammatory cell infiltration and interstitial fibrous tissue proliferation in mice were significantly aggravated compared to the control group,and the expression of fibrosis markers Fibronectin,α-SMA,and COL-1 was significantly higher than that of the control group.Conclusion:ACOT11 plays a protective role in mice with unilateral ureteral obstruction model.After ACOT11 gene knockout,the fibrosis biomarkers of the mouse kidney increases and the degree of fibrosis worsens.
6.Protective effects of Shuangyi Qushi Tongluo Capsules on dexamethasone-induced osteoporosis in mice
Yi LI ; Jian-bin HE ; Jia-xiu XIE ; Quan-mou LUO ; Dong-mei LI ; Jun-hui HE ; Dong-mei WEI ; Chao WEI ; Hong-cong QIU ; Gui-ning WEI ; Bo WANG
Chinese Traditional Patent Medicine 2025;47(6):1834-1842
AIM To investigate the protective effects of Shuangyi Qushi Tongluo Capsules(Shuangyi Capsules)on Dexamethasone(Dex)induced osteoporosis in mice.METHODS The C57BL/6J mice were randomly divided into the control group,the model group,the Xianling Gubao Capsules group(1.5 g/kg),and the low-dose,moderate-dose,and high-dose Shuangyi Capsules groups(0.6,1.2,and 2.4 g/kg).The mouse model of osteoporosis was induced by 8-week intraperitoneal injection of Dex sodium phosphate injection(5 mg/kg).The mice had their femur osteogenesis observed with hematoxylin and eosin(HE)staining and tartrate-resistant acid phosphatase(TRAP)staining;their serum alkaline phosphatase(ALP)and osteocalcin(BGP)activities detected by ELISA;their femoral mRNA expressions of Col-Ⅰ,OCN,and OPN detected by RT-qPCR;and their femoral protein expressions of OPG and RANKL detected by Western blot.Upon the MC3T3-E1 cells exposed to Dex and Shuangyi Capsules,their viability was evaluated by CCK-8 assay;their mineralization determined by alkaline phosphatase staining and alizarin red staining(ARS);and their intracellular ROS level detected using DCFH-DA probe.RESULTS Compared with the model group,Shuangyi Capsules groups demonstrated improved fracture of femoral trabeculae and reduced number of osteoclasts;increased serum ALP and BGP activities(P<0.05,P<0.01);increased femoral expressions of Col-Ⅰ mRNA and OPG protein(P<0.05,P<0.01);and decreased RANKL protein expression(P<0.05).Compared with the MC3T3-E1 cells stimulated by Dex,those underwent further treatment of Shuangyi Capsules demonstrated increased cell viability and ALP activity(P<0.05,P<0.01);increased mineralization and calcium nodule formation;increased expressions of Col-Ⅰ,OCN,OPN mRNA and OPG protein(P<0.05,P<0.01);decreased RANKL protein expression(P<0.05,P<0.01);and reduced ROS levels.CONCLUSION Shuangyi Capsules ameliorate Dex-induced osteoporosis in mice by suppressing osteoclast overactivation,enhancing osteoblast activity,and stimulating bone formation through modulation of Col-Ⅰ,OCN,OPN mRNA and OPG/RANKL protein levels.
7.Transcatheter endocardial alginate-hydrogel implantation for the treatment of a patient with non-responsive heart failure on cardiac resynchronization therapy defibrillator:a case report
Cun-Jun ZHU ; Bo WANG ; Chao GAO ; Min SHEN ; Tao SU ; Ru-Tao WANG ; Fang-Jun MOU ; Xiao-Na CHEN ; Fei LI ; Ling TAO
Chinese Journal of Interventional Cardiology 2024;32(8):468-471
Heart failure(HF)is the end stage of almost all cardiovascular diseases,including coronary heart disease and structural heart disease.For end-stage HF,medications and cardiac assist devices have limited therapeutic effects,and heart transplantation is associated with donor shortage and immune rejection.Alginate hydrogel has the ability to mechanically support and induce cardiac tissue regeneration and repair.In March 2021,we conducted the world's first transcatheter endocardial alginate-hydrogel implantation in patients with end-stage heart failure,and explored the safety and feasibility of the treatment.Given that patients with heart failure who had undergone cardiac resynchronization therapy defibrillator(CRT-D)were excluded from previous studies,this paper is the first to report a case of transcatheter endocardial alginate-hydrogel implantation in a patient with heart failure who did not respond to CRT-D,with a significant reduction in the number of visits to the doctor and a significant improvement in the quality of life during the post-procedure follow-up,which may expand the indications for the use of this technology.
8.Extracorporeal membrane oxygenation support during transcatheter aortic valve replacement in patients with reduced left ventricular ejection fraction
Cun-Jun ZHU ; Chao GAO ; Bo WANG ; Tao SU ; Ru-Tao WANG ; Yuan HE ; Fang-Jun MOU ; Xiao-Na CHEN ; Fei LI ; Ling TAO
Chinese Journal of Interventional Cardiology 2024;32(11):642-647
Objective To evaluate the efficacy of extracorporeal membrane oxygenation(ECMO)in patients with reduced left ventricular ejection fraction(LVEF)undergoing transcatheter aortic valve implantation(TAVR).Methods This was a single-center,retrospective study enrolling a total of 30 patients with reduced LVEF undergoing TAVR from January 2020 to January 2024.Of these,12 patients underwent TAVR with ECMO.Baseline clinical characteristics,preprocedural echocardiographic and computed tomographic(CT)measurements,TAVR procedural details,and follow-up data at 60-day and 6-month were collected.Results Among the 30 patients,there were 20 males with an average age of(67.0±10.4)years,an average STS score of(8.2±1.8)points,and an average LVEF of(21.2±5.3)%.This study included 11 AR patients,all of whom were in the group without ECMO implantation,and the difference between the two groups was statistically significant(P=0.027).During the operation,there were 0 cases of circulatory collapse in the ECMO group,and 5 cases(5/18)of circulatory collapse in the non ECMO group.All 5 patients underwent emergency ECMO placement.There were statistically significant differences(P<0.05)in the comparison of two groups with circulatory collapse and salvage ECMO implantation.The technical success rate of 30 patients was 76.7%(23/30),and the instrument success rate was 60.0%(18/30).Among them,the technical success rate and instrument success rate of the ECMO group were higher than those of the non ECMO group,but the differences were not statistically significant(both P>0.05).During a 30 day follow-up,there were 0 all-cause deaths in the ECMO group and 9 all-cause deaths(9/18)in the non ECMO group.Among them,7 cases(7/18)died from cardiovascular causes.The differences in all-cause and cardiovascular cause deaths between the two groups were statistically significant(both P<0.05).During a 6-month follow-up,one patient with ECMO died due to extensive cerebral infarction.The all-cause mortality rate during the 6-month follow-up was 1/12(8.3%),while the all-cause mortality rate without ECMO was 9/18(5.0%).The difference between the two groups was statistically significant(P=0.024).The incidence of stroke with ECMO was 1/12(8.3%),while without ECMO it was 0.There was no statistically significant difference between the two groups(P=0.978).Conclusions In patients with reduced LVEF undergoing TAVR,periprocedural ECMO support does seem to improve patient outcome.
9.Research progress on the roles and inhibitors of deubiquitinase USP28 in tumors
Xing LI ; Bo-ya ZHANG ; Li-ting LU ; Yan WANG ; Shuai WEN ; Yong-jun ZANG ; Xiang-ming XU ; Yi MOU
Acta Pharmaceutica Sinica 2024;59(11):2941-2952
The deubiquitinases (DUBs), as the crucial peptidohydrolases in the ubiquitin system, can reverse and strictly regulate ubiquitination and play key roles in various biological processes, including the regulation of protein stability, cell signal transduction. Ubiquitin-specific protease 28 (USP28) involves multiple cancer-related signaling pathways by enhancing the stability of various cancer-related proteins, and is closely associated with the progression of colorectal, breast cancer, lung carcinomas, and pancreatic cancer. USP28 has been considered as a promising drug target in anticancer therapy, and the development of USP28 inhibitors has made some progress. In this article, we review the structure of USP28 and its interaction with substrates, discuss the research progress of USP28 in cancers and summarize the development of USP28 inhibitors.
10.Application of precision-cut lung slice technology to study the role of DDR2 in pulmonary fibrosis.
Xi-Hui HUANG ; Tao CHENG ; Ling MOU ; Xin BO ; Xin-Ru WEI
Acta Physiologica Sinica 2023;75(4):515-520
Pulmonary fibrosis is a severe lung interstitial disease characterized by the destruction of lung tissue structure, excessive activation and proliferation of fibroblasts, secretion and accumulation of a large amount of extracellular matrix (ECM), and impaired lung function. Due to the complexity of the disease, a suitable animal model to mimic human pulmonary fibrosis has not yet been established. Precision-cut lung slice (PCLS) has been a widely used in vitro method to study lung physiology and pathogenesis in recent years. This method is an in vitro culture technology at the level between organs and cells, because it can preserve the lung tissue structure and various types of airway cells in the lung tissue, simulate the in vivo lung environment, and conduct the observation of various interactions between cells and ECM. Therefore, PCLS can compensate for the limitations of other models such as cell culture. In order to explore the role of discoidin domain receptor 2 (DDR2) in pulmonary fibrosis, Ddr2flox/flox mice were successfully constructed. The Cre-LoxP system and PCLS technology were used to verify the deletion or knockdown of DDR2 in mouse PCLS. Transforming growth factor β1 (TGF-β1) can induce fibrosis of mouse PCLS in vitro, which can simulate the in vivo environment of pulmonary fibrosis. In the DDR2 knock down-PCLS in vitro model, the expression of various fibrosis-related factors induced by TGF-β1 was significantly reduced, suggesting that knocking down DDR2 can inhibit the formation of pulmonary fibrosis. The results provide a new perspective for the clinical study of DDR2 as a therapeutic target in pulmonary fibrosis.
Animals
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Humans
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Mice
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Discoidin Domain Receptor 2/metabolism*
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Fibroblasts/pathology*
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Fibrosis
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Lung/pathology*
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Pulmonary Fibrosis/metabolism*
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Transforming Growth Factor beta1/metabolism*

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