1.Analysis and prediction of global burden of stroke diseases from 1990 to 2049
Hujuan SHI ; Yihang XIA ; Yiran CHENG ; Mingmei CHENG ; Zhen LIANG ; Yanzhong WANG ; Wanqing XIE
China Medical Equipment 2024;21(11):141-150
Objective:To analyze the current status of the global burden of stroke disease from 1990 to 2019,to predict the development trend of stroke disease burden in the 30 years from 2020 to 2049,and to provide a basis for formulating national health policies on stroke diseases.Methods:The Global Burden of Disease Study 2019(GBD 2019)database was searched to extract global stroke disease incidence,prevalence,case fatality,and disability-adjusted life years(DALYs)disease burden indicators from 1990-2019,the trends over time were modeled using linear,Poisson,and exponential regressions,prediction and study of the relationship between stroke and sociodemographic index(SDI)based on per capita gross domestic product(GDP)were conducted.Results:The global burden of stroke disease increased significantly from 1990-2019 and is predicted to continue to rise over the next 30 years(2020-2049).In 2049,the global stroke incidence,prevalence,case fatality,and DALYs will increase by 8.53 million(63%),119.83 million(109%),7.79 million(118%)and 118.92 million person-years(79%),respectively,compared with 2019,with a significant increase in the burden of stroke in the elderly population.In the next 30 years,the age-standardized incidence rates of stroke in men and women will be similar,while the age-standardized rates of prevalence in women will be relatively higher,and age-standardized case fatality rates and DALYs in men will be relatively higher.The disease burden of stroke was negatively correlated with SDI.The burden of stroke disease was significantly higher in regions with a low SDI than in regions with a high SDI.Conclusion:The global burden of stroke will increase in the next 30 years,which may be related to the aging of population and closely related to the development of economy.It is necessary to strengthen the prevention of stroke and formulate targeted strategies targeted strategies according to different SDI regions.
2.Metabolic engineering of Escherichia coli for adipic acid production.
Jie LIU ; Cong GAO ; Xiulai CHEN ; Liang GUO ; Wei SONG ; Jing WU ; Wanqing WEI ; Jia LIU ; Liming LIU
Chinese Journal of Biotechnology 2023;39(6):2375-2389
Adipic acid is a high-value-added dicarboxylic acid which is primarily used in the production of nylon-66 for manufacturing polyurethane foam and polyester resins. At present, the biosynthesis of adipic acid is hampered by its low production efficiency. By introducing the key enzymes of adipic acid reverse degradation pathway into a succinic acid overproducing strain Escherichia coli FMME N-2, an engineered E. coli JL00 capable of producing 0.34 g/L adipic acid was constructed. Subsequently, the expression level of the rate-limiting enzyme was optimized and the adipic acid titer in shake-flask fermentation increased to 0.87 g/L. Moreover, the supply of precursors was balanced by a combinatorial strategy consisting of deletion of sucD, over-expression of acs, and mutation of lpd, and the adipic acid titer of the resulting E. coli JL12 increased to 1.51 g/L. Finally, the fermentation process was optimized in a 5 L fermenter. After 72 h fed-batch fermentation, adipic acid titer reached 22.3 g/L with a yield of 0.25 g/g and a productivity of 0.31 g/(L·h). This work may serve as a technical reference for the biosynthesis of various dicarboxylic acids.
Escherichia coli/metabolism*
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Metabolic Engineering
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Bioreactors
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Fermentation
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Adipates/metabolism*
3.Sex disparity of lung cancer risk in non-smokers: a multicenter population-based prospective study based on China National Lung Cancer Screening Program
Zheng WU ; Fengwei TAN ; Zhuoyu YANG ; Fei WANG ; Wei CAO ; Chao QIN ; Xuesi DONG ; Yadi ZHENG ; Zilin LUO ; Liang ZHAO ; Yiwen YU ; Yongjie XU ; Jiansong REN ; Jufang SHI ; Hongda CHEN ; Jiang LI ; Wei TANG ; Sipeng SHEN ; Ning WU ; Wanqing CHEN ; Ni LI ; Jie HE
Chinese Medical Journal 2022;135(11):1331-1339
Background::Non-smokers account for a large proportion of lung cancer patients, especially in Asia, but the attention paid to them is limited compared with smokers. In non-smokers, males display a risk for lung cancer incidence distinct from the females—even after excluding the influence of smoking; but the knowledge regarding the factors causing the difference is sparse. Based on a large multicenter prospective cancer screening cohort in China, we aimed to elucidate the interpretable sex differences caused by known factors and provide clues for primary and secondary prevention.Methods::Risk factors including demographic characteristics, lifestyle factors, family history of cancer, and baseline comorbidity were obtained from 796,283 Chinese non-smoking participants by the baseline risk assessment completed in 2013 to 2018. Cox regression analysis was performed to assess the sex difference in the risk of lung cancer, and the hazard ratios (HRs) that were adjusted for different known factors were calculated and compared to determine the proportion of excess risk and to explain the existing risk factors.Results::With a median follow-up of 4.80 years, 3351 subjects who were diagnosed with lung cancer were selected in the analysis. The lung cancer risk of males was significantly higher than that of females; the HRs in all male non-smokers were 1.29 (95% confidence interval [CI]: 1.20-1.38) after adjusting for the age and 1.38 (95% CI: 1.28-1.50) after adjusting for all factors, which suggested that known factors could not explain the sex difference in the risk of lung cancer in non-smokers. Known factors were 7% (|1.29-1.38|/1.29) more harmful in women than in men. For adenocarcinoma, women showed excess risk higher than men, contrary to squamous cell carcinoma; after adjusting for all factors, 47% ([1.30-1.16]/[1.30-1]) and 4% ([7.02-6.75]/[7.02-1])) of the excess risk was explainable in adenocarcinoma and squamous cell carcinoma. The main causes of gender differences in lung cancer risk were lifestyle factors, baseline comorbidity, and family history.Conclusions::Significant gender differences in the risk of lung cancer were discovered in China non-smokers. Existing risk factors did not explain the excess lung cancer risk of all non-smoking men, and the internal causes for the excess risk still need to be explored; most known risk factors were more harmful to non-smoking women; further exploring the causes of the sex difference would help to improve the prevention and screening programs and protect the non-smoking males from lung cancers.
4.Exploration on teaching reform of cancer epidemiology course
Yongjie XU ; Xueyan LI ; Xuesi DONG ; Wei CAO ; Chao QIN ; Jiang LI ; Liang ZHAO ; Fei WANG ; Changfa XIA ; Wanqing CHEN ; Ni LI
Chinese Journal of Preventive Medicine 2022;56(7):1027-1030
This study aims to explore optimized teaching mode of cancer epidemiology for undergraduates, and provide scientific ideas and basis for improving teaching quality. Non-randomized concurrent control study was used. Undergraduates, enrolled in 2018, from the department of preventive medicine in A and B medical universities were selected as research objects. Traditional teaching mode was used for cancer epidemiology course in A medical university, and innovative teaching mode named "one core, four dimensions" was adopted in B medical university. After the course, questionnaire method was used to investigate self-cognition of students, teaching satisfaction and class preparation time of teachers in B Medical University. The post-class test method was used to compare the students′ grades of cancer epidemiology in the two universities. The results indicated that among the 58 students of B medical university, 94.83% (55/58) students were familiar with common types of epidemiological studies and 86.21% (50/58) mastered the evaluation indicators of screening research. Among the nine teaching faculties from B medical university, seven reported that the new teaching plan helped students to learn frontier knowledge of cancer epidemiology, and eight reported the new teaching model was conducive to the interaction between teachers and students. The text score of students in B medical university was 50.34±4.90, significantly higher than that in A medical university (46.21±4.91, t=5.20, P<0.001). The optimized teaching mode of cancer epidemiology is highly praised by students and teachers, which has the potential to improve students′ grasp of cancer epidemiology, the ability to combine theory with practice, and the teaching effect of cancer epidemiology.
5.Exploration on teaching reform of cancer epidemiology course
Yongjie XU ; Xueyan LI ; Xuesi DONG ; Wei CAO ; Chao QIN ; Jiang LI ; Liang ZHAO ; Fei WANG ; Changfa XIA ; Wanqing CHEN ; Ni LI
Chinese Journal of Preventive Medicine 2022;56(7):1027-1030
This study aims to explore optimized teaching mode of cancer epidemiology for undergraduates, and provide scientific ideas and basis for improving teaching quality. Non-randomized concurrent control study was used. Undergraduates, enrolled in 2018, from the department of preventive medicine in A and B medical universities were selected as research objects. Traditional teaching mode was used for cancer epidemiology course in A medical university, and innovative teaching mode named "one core, four dimensions" was adopted in B medical university. After the course, questionnaire method was used to investigate self-cognition of students, teaching satisfaction and class preparation time of teachers in B Medical University. The post-class test method was used to compare the students′ grades of cancer epidemiology in the two universities. The results indicated that among the 58 students of B medical university, 94.83% (55/58) students were familiar with common types of epidemiological studies and 86.21% (50/58) mastered the evaluation indicators of screening research. Among the nine teaching faculties from B medical university, seven reported that the new teaching plan helped students to learn frontier knowledge of cancer epidemiology, and eight reported the new teaching model was conducive to the interaction between teachers and students. The text score of students in B medical university was 50.34±4.90, significantly higher than that in A medical university (46.21±4.91, t=5.20, P<0.001). The optimized teaching mode of cancer epidemiology is highly praised by students and teachers, which has the potential to improve students′ grasp of cancer epidemiology, the ability to combine theory with practice, and the teaching effect of cancer epidemiology.
6.Analysis of low-dose computed tomography compliance and related factors among high-risk population of lung cancer in three provinces participating in the cancer screening program in urban China
Yan WEN ; Lianzheng YU ; Lingbin DU ; Donghua WEI ; Yunyong LIU ; Zhuoyu YANG ; Yadi ZHENG ; Zheng WU ; Xinyang YU ; Liang ZHAO ; Yiwen YU ; Hongda CHEN ; Jiansong REN ; Chao QIN ; Yongjie XU ; Wei CAO ; Fei WANG ; Jiang LI ; Fengwei TAN ; Min DAI ; Wanqing CHEN ; Ni LI ; Jie HE
Chinese Journal of Preventive Medicine 2021;55(5):633-639
Objective:To analyze the compliance and related factors of low-dose computed tomography (LDCT) screening among the high-risk population of lung cancer in three provinces participating in the cancer early diagnosis and early treatment program in urban areas of China.Methods:From October 2017 to October 2018, 17 983 people aged between 40 and 74 years old at high risk of lung cancer were recruited from Zhejiang, Anhui and Liaoning provinces. The basic demographic characteristics, living habits, history of the disease and family history of cancer were collected by using a cancer risk assessment questionnaire, and the data of participants examined by LDCT were obtained from the hospitals participating in the program. The screening compliance was quantified by the screening participation rate, and it was calculated as the proportion of participants completing LDCT scan among high-risk population. The related factors of LDCT screening compliance were analyzed by using a multivariate logistic regression model.Results:The age of 17 983 participants was (56.52±8.22) years old. Males accounted for 51.9% (N=9 332), and 69.5% (N=12 495) had ever smoked, including former smokers and current smokers. A total of 6 269 participants were screened by LDCT, and the screening participation rate was 34.86%. The results of multivariate logistic regression analysis showed that the age group of 50 to 69 years old, female, passive smokers, alcohol consumption, family history of lung cancer and history of chronic respiratory diseases were more likely to be screened by LDCT, while the compliance of LDCT screening in current smokers was low.Conclusions:The LDCT screening compliance of the high-risk population of lung cancer in urban areas of China still needs to be improved. Age, sex, smoking, drinking, family history of lung cancer and history of chronic respiratory disease are associated with screening compliance.
7.CacyBP promotes the proliferation and invasion of non-small cell lung cancer
Yongjie XU ; Yumeng HU ; Chao QIN ; Fei WANG ; Wei CAO ; Yiwen YU ; Liang ZHAO ; Jiang LI ; Wanqing CHEN ; Ni LI ; Jie HE
Chinese Journal of Oncology 2021;43(9):924-931
Objective:To investigate the effects and the mechanism of Calcyclin-binding protein (CacyBP) on the proliferation and invasion of non-small cell lung cancer (NSCLC) cells.Methods:Six lung cancer tissues and paired normal lung tissues were collected from NSCLC patients who underwent surgical treatment in Jinan Central Hospital during 2016. The expression of CacyBP in these tissues was examined by western blot. The protein and mRNA expression of CacyBP in human bronchial epithelial cells (16HBE), NSCLC cell lines including A549, H1299, H460 and H1975 were examined by western blot and reverse transcription-polymerase chain reaction (RT-PCR), respectively. RNAi and shRNA against negative control (NC) or CacyBP were transfected into A549 cell which were denoted as siNC group, siCacyBP-1 group, sicacyBP-2 group, shNC group and shCacyBP group, respectively. Control and Flag-CacyBP plasmids were transfected into A549 cells which were denoted as NC group and Flag-CacyBP group, respectively. Cell counting kit-8 (CCK-8), plate clone formation assay and flow cytometry assay were used to assess cell proliferation ability and cycle of A549. Wound healing assay and transwell assay were used to assess abilities of A549 cells migration and invasion. The protein expressions of epithelial-mesenchymal transition (EMT) markers including E-cadherin, N-cadherin, Snail1, Vimentin, and phosphorylation of protein kinase B (p-Akt) were examined in CacyBP depleted or overexpressed A549 cells.Results:The CacyBP protein level in NSCLC tissues was 0.41±0.23, significantly higher than 0.11±0.04 in normal lung tissues ( P<0.05). The CacyBP protein expression levels in different NSCLC cell lines including A549, H1299, H460 and H1975 were 0.35±0.01, 0.38±0.01, 0.32±0.01 and 0.41±0.01, respectively, which were significantly higher than 0.03±0.01 in 16HBE cells ( P<0.05). The result of RT-PCR was consistent with that of western blot. Compared with siNC group (absorbance was 1.54±0.03), siCacyBP-1 group and siCacyBP-2 group showed decreased cell proliferation (absorbances were 1.38±0.04 and 1.34±0.03, P<0.05). The number of cell colony in shNC group was 41.33±3.21, significantly higher than 22.00±3.61 in shCacyBP group ( P<0.05). The proportion of G 1 phase in shCacyBP group was (61.35±5.45)%, higher than (49.61±1.54) % in shNC group ( P<0.05). The proportion of S phase was (25.41±3.21)%, which was lower than (38.68±0.46)% of shNC group ( P<0.05). The cell migration rate of shCacyBP group was (12.67±0.71)%, which was significantly lower than (35.50±2.07)% of shNC group ( P<0.05). The numbers of cell migration and invasion in shNC group were 406.33±7.37 and 92.33±8.50, respectively, which were significantly higher than 224.67±10.01 and 66.00±7.94 in shCacyBP group ( P<0.05). Compared with siNC group, the expression of epithelial marker E-cadherin was up-regulated, while the expressions of mesenchymal markers including N-cadherin, Vimentin, Snail1 and p-Akt were down-regulated in CacyBP depleted A549 cells. Compared with NC group, overexpression of CacyBP inhibited E-cadherin expression while promoted the expressions of N-cadherin, Snail1, Vimentin and p-Akt, which could be restored by LY294002. Conclusion:CacyBP may promote the proliferation and invasion of NSCLC cells by regulating Akt signal pathway.
8.Analysis of low-dose computed tomography compliance and related factors among high-risk population of lung cancer in three provinces participating in the cancer screening program in urban China
Yan WEN ; Lianzheng YU ; Lingbin DU ; Donghua WEI ; Yunyong LIU ; Zhuoyu YANG ; Yadi ZHENG ; Zheng WU ; Xinyang YU ; Liang ZHAO ; Yiwen YU ; Hongda CHEN ; Jiansong REN ; Chao QIN ; Yongjie XU ; Wei CAO ; Fei WANG ; Jiang LI ; Fengwei TAN ; Min DAI ; Wanqing CHEN ; Ni LI ; Jie HE
Chinese Journal of Preventive Medicine 2021;55(5):633-639
Objective:To analyze the compliance and related factors of low-dose computed tomography (LDCT) screening among the high-risk population of lung cancer in three provinces participating in the cancer early diagnosis and early treatment program in urban areas of China.Methods:From October 2017 to October 2018, 17 983 people aged between 40 and 74 years old at high risk of lung cancer were recruited from Zhejiang, Anhui and Liaoning provinces. The basic demographic characteristics, living habits, history of the disease and family history of cancer were collected by using a cancer risk assessment questionnaire, and the data of participants examined by LDCT were obtained from the hospitals participating in the program. The screening compliance was quantified by the screening participation rate, and it was calculated as the proportion of participants completing LDCT scan among high-risk population. The related factors of LDCT screening compliance were analyzed by using a multivariate logistic regression model.Results:The age of 17 983 participants was (56.52±8.22) years old. Males accounted for 51.9% (N=9 332), and 69.5% (N=12 495) had ever smoked, including former smokers and current smokers. A total of 6 269 participants were screened by LDCT, and the screening participation rate was 34.86%. The results of multivariate logistic regression analysis showed that the age group of 50 to 69 years old, female, passive smokers, alcohol consumption, family history of lung cancer and history of chronic respiratory diseases were more likely to be screened by LDCT, while the compliance of LDCT screening in current smokers was low.Conclusions:The LDCT screening compliance of the high-risk population of lung cancer in urban areas of China still needs to be improved. Age, sex, smoking, drinking, family history of lung cancer and history of chronic respiratory disease are associated with screening compliance.
9.CacyBP promotes the proliferation and invasion of non-small cell lung cancer
Yongjie XU ; Yumeng HU ; Chao QIN ; Fei WANG ; Wei CAO ; Yiwen YU ; Liang ZHAO ; Jiang LI ; Wanqing CHEN ; Ni LI ; Jie HE
Chinese Journal of Oncology 2021;43(9):924-931
Objective:To investigate the effects and the mechanism of Calcyclin-binding protein (CacyBP) on the proliferation and invasion of non-small cell lung cancer (NSCLC) cells.Methods:Six lung cancer tissues and paired normal lung tissues were collected from NSCLC patients who underwent surgical treatment in Jinan Central Hospital during 2016. The expression of CacyBP in these tissues was examined by western blot. The protein and mRNA expression of CacyBP in human bronchial epithelial cells (16HBE), NSCLC cell lines including A549, H1299, H460 and H1975 were examined by western blot and reverse transcription-polymerase chain reaction (RT-PCR), respectively. RNAi and shRNA against negative control (NC) or CacyBP were transfected into A549 cell which were denoted as siNC group, siCacyBP-1 group, sicacyBP-2 group, shNC group and shCacyBP group, respectively. Control and Flag-CacyBP plasmids were transfected into A549 cells which were denoted as NC group and Flag-CacyBP group, respectively. Cell counting kit-8 (CCK-8), plate clone formation assay and flow cytometry assay were used to assess cell proliferation ability and cycle of A549. Wound healing assay and transwell assay were used to assess abilities of A549 cells migration and invasion. The protein expressions of epithelial-mesenchymal transition (EMT) markers including E-cadherin, N-cadherin, Snail1, Vimentin, and phosphorylation of protein kinase B (p-Akt) were examined in CacyBP depleted or overexpressed A549 cells.Results:The CacyBP protein level in NSCLC tissues was 0.41±0.23, significantly higher than 0.11±0.04 in normal lung tissues ( P<0.05). The CacyBP protein expression levels in different NSCLC cell lines including A549, H1299, H460 and H1975 were 0.35±0.01, 0.38±0.01, 0.32±0.01 and 0.41±0.01, respectively, which were significantly higher than 0.03±0.01 in 16HBE cells ( P<0.05). The result of RT-PCR was consistent with that of western blot. Compared with siNC group (absorbance was 1.54±0.03), siCacyBP-1 group and siCacyBP-2 group showed decreased cell proliferation (absorbances were 1.38±0.04 and 1.34±0.03, P<0.05). The number of cell colony in shNC group was 41.33±3.21, significantly higher than 22.00±3.61 in shCacyBP group ( P<0.05). The proportion of G 1 phase in shCacyBP group was (61.35±5.45)%, higher than (49.61±1.54) % in shNC group ( P<0.05). The proportion of S phase was (25.41±3.21)%, which was lower than (38.68±0.46)% of shNC group ( P<0.05). The cell migration rate of shCacyBP group was (12.67±0.71)%, which was significantly lower than (35.50±2.07)% of shNC group ( P<0.05). The numbers of cell migration and invasion in shNC group were 406.33±7.37 and 92.33±8.50, respectively, which were significantly higher than 224.67±10.01 and 66.00±7.94 in shCacyBP group ( P<0.05). Compared with siNC group, the expression of epithelial marker E-cadherin was up-regulated, while the expressions of mesenchymal markers including N-cadherin, Vimentin, Snail1 and p-Akt were down-regulated in CacyBP depleted A549 cells. Compared with NC group, overexpression of CacyBP inhibited E-cadherin expression while promoted the expressions of N-cadherin, Snail1, Vimentin and p-Akt, which could be restored by LY294002. Conclusion:CacyBP may promote the proliferation and invasion of NSCLC cells by regulating Akt signal pathway.
10.Study of different teaching methods in directing graduated students in the department of hepatobiliary surgery
Chinese Journal of Hepatobiliary Surgery 2018;24(2):113-115
Objective To investigate the feasibility and realistic significance of different teaching methods in professional and scientific degree graduate students.Methods Twenty six graduate students (scientific 12,professional 14) were randomly selected as research object from Sep.2014 to Apr.2017,and the relationship between clinical or research outcome and type of degree,clinical or experiment time were analyzed.Results The experiment time of scientific degree graduate students was significantly longer than that of professional degree graduate students [(21.0 ± 1.6) vs.(11.0 ± 3.5) months],and professional degree graduate students paid more attention to clinical work,there was statistic difference between the two groups [(20.0 ±2.1) vs.(12.0 ±2.4) months,both P<0.05].The qualification rate of basic clinical manipulation in the professional group was higher than that in the scientific group (85.7% vs.75.0%,P < 0.05).Conclusion Different type of teaching methods based on the type of student degree were feasible and proper for graduate students in surgery,and the terminal object of our teaching should be focus on the resolution of clinical problems.

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