1.Analyses of human papilloma virus vaccination willingness and its influencing factors among adult women in Qinghai Province
Jin XU ; Xiaoqing LIU ; Guiyan MA ; Xiaolin LI ; Lei WANG ; Yan LIU ; Kezhong A
Shanghai Journal of Preventive Medicine 2025;37(10):865-870
ObjectiveTo analyze the willingness to receive human papilloma virus (HPV) vaccine and its influencing factors among adult women in Qinghai Province, so as to provide scientific basis for the formulation of targeted health intervention strategies. MethodsA multi-stage whole cluster random sampling method was used to conduct a questionnaire survey on the willingness to receive HPV vaccine in eight cities or states of Qinghai Province from December 2024 to January 2025. Hierarchical multiple regression analyses were used to identify the influencing factors associated with HPV vaccination willingness. ResultsThe results of the 923 participants participated the questionnaire survey revealed that adult women’s HPV vaccination willingness scores differed statistically significant by educational level (F=9.596, P<0.001) and occupation (F=8.494, P<0.001). The hierarchical multiple regression modeling showed that perception of susceptibility (β=0.078, P<0.05), cues to action(β=0.134, P<0.05), and subjective norms (β = 0.407, P<0.001) were positively associated with HPV vaccination willingness among adult women, while perceptual disorder (β =-0.113, P<0.001) was negatively associated with it. ConclusionThe willingness to receive HPV vaccine among adult women in Qinghai Province is influenced by perception of susceptibility, perceptual disorder, cues to action, and subjective norms. Policy makers and public health agencies should therefore adopt targeted strategies, such as optimizing health education, improving vaccine accessibility, lowering barriers to vaccination, and reinforcing supportive social networks, to increase HPV vaccine uptake and ultimately achieve the goal of effective prevention, control, and elimination of cervical cancer.
2.Study on the Mechanism of Yitangkang in Regulating Ectopic Lipid Deposition to Improve Renal Injury in db/db Mice through PPAR-α/PGC-1α Signaling Pathway
Shiyi WANG ; Guiyan SUN ; Hui ZHANG ; Yufeng YANG ; Yan SHI
Chinese Journal of Information on Traditional Chinese Medicine 2025;32(12):89-96
Objective To investigate the effects of Yitangkang on renal ectopic lipid deposition and the PPAR-α/PGC-1α signaling pathway in db/db mice;To explore its mechanism in improving renal injury.Methods Totally 30 db/db mice were divided into model group,Yitangkang group and losartan potassium group(10 mice in each group)using a random number table method.An additional 10 db/m mice were assigned as the blank group.The mice received corresponding interventions for 8 weeks.Body mass,fasting blood glucose(FBG),serum creatinine(SCr),blood urea nitrogen(BUN),and 24-hour urinary protein content were measured,renal morphology and injury were observed using HE,PAS and Masson staining,lipid deposition in renal tissue was observed by oil red O staining,renal ultrastructure was observed by transmission electron microscopy,immunofluorescence staining was used to detect the expressions of CPT1A and Nrf2 in renal tissue,RT-qPCR was performed to assess the mRNA expressions of PPAR-α and PGC-1α,Western blot was used to detect the protein expressions of PPAR-α,CPT1A,PGC-1α,Nrf2,NRF1 and TFAM.Results Compared with the blank group,the body mass and FBG significantly increased in the model group(P<0.05),and the contents of SCr,BUN and 24-hour urinary protein significantly increased(P<0.05);histopathology revealed glomerular hypertrophy,mesangial cell and matrix proliferation,thickened basement membrane,abnormal deposition of interstitial collagen fibers,increased lipid deposition in renal tissue,widespread foot process effacement,reduced foot process density(P<0.05),blurred mitochondrial outer membranes,swollen morphology,and indistinct cristae;mRNA expressions of PPAR-α and PGC-1α significantly decreased(P<0.05),and protein expressions of PPAR-α,CPT1A,PGC-1α,Nrf2,NRF1 and TFAM significantly decreased(P<0.05).Compared with the model group,the body mass and FBG of mice in Yitangkang group significantly decreased(P<0.05),but there was no significant difference in the above indexes in losartan potassium group(P>0.05);the contents of SCr,BUN and 24-hour urinary protein in Yitangkang group and losartan potassium group significantly decreased(P<0.05);the pathological damage and lipid deposition of renal tissue was alleviated,the ultrastructure of podocytes was improved,and the density of podocytes significantly increased(P<0.05);the mRNA expressions of PPAR-α and PGC-1α in renal tissue increased,and the protein expressions of PPAR-α,CPT1A,PGC-1α,Nrf2,NRF1 and TFAM increased,with statistical significance(P<0.05).Conclusion Yitangkang can effectively alleviate renal injury in diabetic nephropathy mice.The mechanism may be related to the activation of PPAR-α/PGC-1α signaling pathway and the reduction of renal lipid deposition and mitochondrial biogenesis.
3.Effect of NEP1-40/PLGA on facial nerve repair in rats
XUE Bing ; XI Hualei ; YAO Lihong ; XU Wanqiu ; XU Xiaohang ; LIN Song ; PIAO Guiyan ; WANG Xiumei
Journal of Prevention and Treatment for Stomatological Diseases 2025;33(2):110-119
Objective:
To investigate the effect of neurite outgrowth inhibitor extracellular peptide residues 1-40 (NEP1-40) combined with poly (lactic-co-glycolic acid) (PLGA) and gelatin electrospun fiber membrane on facial nerve repair in rats.
Methods:
According to the principle of random grouping, 108 male SD rats were divided into four groups (n = 27 in each group, approved by the ethics committee), namely, the sham group, control group, PLGA group, and NEP1-40 + PLGA group. A facial nerve fracture model was established for all of the groups except for the sham group. The control group received no further treatment, the PLGA group and the NEP1-40+PLGA group were supported by PLGA membrane, and the NEP1-40+PLGA group received one immediate local injection of NEP1-40 (5 μg/μL) at a dose of 10 μL. Facial nerve function analysis, electrophysiological examination, transmission electron microscope observation, HE staining, and immunohistochemical staining of myelin marker S100β and axonal marker β3-tubulin were used to evaluate the recovery of injured facial nerves of rats at 2, 4 and 8 weeks.
Results :
At 8 weeks, the facial nerve function score of the NEP1-40+PLGA group was better than that of the control group and PLGA group (P < 0.001), and facial nerve function was significantly restored. Electrophysiological examination of nerve action potentials at the injured facial nerve showed that the amplitude in the NEP1-40+PLGA group was higher than that of the control group and PLGA group (P < 0.001), but there was no significant difference in latency and conduction velocity results between the groups (P > 0.05). At 2, 4, and 8 weeks, transmission electron microscopy showed that the number of myelinated nerve fibers and myelin sheath thickness in the cross-section of the injured facial nerve in the NEP1-40+PLGA group were greater than those in the other groups (P < 0.05). At 8 weeks, HE staining showed that the facial nerves in the control group had partially recovered, but the overall cell distribution was uneven and the boundary with surrounding tissues was slightly blurred. In contrast, the NEP1-40+PLGA group had a relatively uniform cell distribution and a clearer boundary with surrounding tissues. At 2, 4, and 8 weeks, the immunohistochemical results showed that in the cross-section of the injuried facial nerve, NEP1-40 increased the expression of neural markers S100 β and β3-tubulin, especially β3-tubulin, which was close to normal levels (P > 0.05)
Conclusion
NEP1-40 is beneficial for the generation of new myelin sheaths and axons at the site of injury, and it can promote the repair and regeneration of injured facial nerves to a certain extent, thus accelerating the recovery of injured nerve function.
4.Effects of Yitangkang on Brown Fat in db/db Mice by Regulating PGC1α-NRF1/2-TFAM Pathway
Hui ZHANG ; Liya SUN ; Qingfeng WANG ; Guiyan SUN ; Xinhui SHEN ; Jinhao HU ; Yan SHI ; Yufeng YANG
Chinese Journal of Information on Traditional Chinese Medicine 2025;32(4):79-84
Objective To observe the effects of Yitangkang on brown fat thermogenesis and mitochondrial biogenesis of PGC1α-NRF1/2-TFAM pathway in db/db mice;To explore its mechanism of regulating glucose and lipid metabolism.Methods Totally 27 six-week-old db/db mice were randomly divided into model group,Yitangkang group(30 g/kg)and liraglutide group(200 μg/kg),another 9 db/m mice of the same age were set as normal group.All groups received intervention with drugs or saline for 6 weeks.The body mass and FBG were measured weekly.After intervention,oral glucose tolerance test(OGTT)was carried out,the contents of serum TC,TG,LDL-C and HDL-C were detected by biochemical analyzer,HE staining was used to observe the morphology of brown adipose tissue(BAT)in scapular region,RT-qPCR and Western blot were used to detect the expressions of UCP1,PRDM16,PGC1α related to BAT thermogenesis and NRF1,Nrf2,TFAM related to mitochondrial biogenesis.Results Compared with the normal group,the body mass,FBG,area under the curve of OGTT and serum TG,TC,LDL-C content of model group significantly increased(P<0.01),the content of HDL-C significantly decreased(P<0.01);the diameter of BAT cells in scapular region was larger,white vacuoles appeared,lipid droplets increased,and the mRNA and protein expressions of UCP1,PRDM16,PGC-1α,NRF1,NRF2 and TFAM in BAT decreased significantly(P<0.01).Compared with the model group,the body mass,FBG,area under the curve of OGTT and serum TG,TC,LDL-C contents of Yitangkang group and liraglutide group significantly decreased(P<0.01),the content of HDL-C increased(P<0.01);BAT cells were smaller in diameter,more closely arranged,more regular in shape,and more abundant in capillary,the mRNA and protein expressions of UCP1,PRDM16,PGC-1α,NRF1,NRF2 and TFAM in BAT increased significantly(P<0.01).Conclusion Yitangkang can regulate mitochondrial biogenesis through PGC1α-NRF1/2-TFAM pathway to activate brown fat in db/db mice and improve glucose and lipid metabolism in db/db mice.
5.Role of neutrophil extracellular traps in organ injury after hemorrhagic shock
Guiyan JIA ; Jing WANG ; Chunyu NIU ; Zigang ZHAO
Chinese Journal of Immunology 2025;41(10):2540-2547
Following hemorrhagic shock,locally released chemotactic molecules attract neutrophils to rapidly migrate to the damaged tissues,while effectively bind,engulf and kill microorganisms,along with chromatin releasing and forming a substance deco-rated with a meshwork of microbicidal proteins and enzymes,a DNA-protein structure named neutrophil extracellular traps(NETs).The formation and degradation of NETs are regulated by multiple factors,and an imbalance in the formation and degradation of NETs plays a role in cellular damage and the aggregation of inflammatory factors,which is one of the main mechanisms of uncontrolled in-flammatory response and further aggravates organ damage.Studies have shown that NETs are involved in the process of hemorrhagic shock-induced organ damage,but the relevant mechanisms have not been fully elucidated.In this paper,we review the role of NETs in organ damage after hemorrhagic shock and the related mechanisms,and in order to understand the role of NETs and provide a refer-ence for new targets for the prevention and treatment of hemorrhagic shock.
6.Effects of Yitangkang on Brown Fat in db/db Mice by Regulating PGC1α-NRF1/2-TFAM Pathway
Hui ZHANG ; Liya SUN ; Qingfeng WANG ; Guiyan SUN ; Xinhui SHEN ; Jinhao HU ; Yan SHI ; Yufeng YANG
Chinese Journal of Information on Traditional Chinese Medicine 2025;32(4):79-84
Objective To observe the effects of Yitangkang on brown fat thermogenesis and mitochondrial biogenesis of PGC1α-NRF1/2-TFAM pathway in db/db mice;To explore its mechanism of regulating glucose and lipid metabolism.Methods Totally 27 six-week-old db/db mice were randomly divided into model group,Yitangkang group(30 g/kg)and liraglutide group(200 μg/kg),another 9 db/m mice of the same age were set as normal group.All groups received intervention with drugs or saline for 6 weeks.The body mass and FBG were measured weekly.After intervention,oral glucose tolerance test(OGTT)was carried out,the contents of serum TC,TG,LDL-C and HDL-C were detected by biochemical analyzer,HE staining was used to observe the morphology of brown adipose tissue(BAT)in scapular region,RT-qPCR and Western blot were used to detect the expressions of UCP1,PRDM16,PGC1α related to BAT thermogenesis and NRF1,Nrf2,TFAM related to mitochondrial biogenesis.Results Compared with the normal group,the body mass,FBG,area under the curve of OGTT and serum TG,TC,LDL-C content of model group significantly increased(P<0.01),the content of HDL-C significantly decreased(P<0.01);the diameter of BAT cells in scapular region was larger,white vacuoles appeared,lipid droplets increased,and the mRNA and protein expressions of UCP1,PRDM16,PGC-1α,NRF1,NRF2 and TFAM in BAT decreased significantly(P<0.01).Compared with the model group,the body mass,FBG,area under the curve of OGTT and serum TG,TC,LDL-C contents of Yitangkang group and liraglutide group significantly decreased(P<0.01),the content of HDL-C increased(P<0.01);BAT cells were smaller in diameter,more closely arranged,more regular in shape,and more abundant in capillary,the mRNA and protein expressions of UCP1,PRDM16,PGC-1α,NRF1,NRF2 and TFAM in BAT increased significantly(P<0.01).Conclusion Yitangkang can regulate mitochondrial biogenesis through PGC1α-NRF1/2-TFAM pathway to activate brown fat in db/db mice and improve glucose and lipid metabolism in db/db mice.
7.Guideline for Adult Weight Management in China
Weiqing WANG ; Qin WAN ; Jianhua MA ; Guang WANG ; Yufan WANG ; Guixia WANG ; Yongquan SHI ; Tingjun YE ; Xiaoguang SHI ; Jian KUANG ; Bo FENG ; Xiuyan FENG ; Guang NING ; Yiming MU ; Hongyu KUANG ; Xiaoping XING ; Chunli PIAO ; Xingbo CHENG ; Zhifeng CHENG ; Yufang BI ; Yan BI ; Wenshan LYU ; Dalong ZHU ; Cuiyan ZHU ; Wei ZHU ; Fei HUA ; Fei XIANG ; Shuang YAN ; Zilin SUN ; Yadong SUN ; Liqin SUN ; Luying SUN ; Li YAN ; Yanbing LI ; Hong LI ; Shu LI ; Ling LI ; Yiming LI ; Chenzhong LI ; Hua YANG ; Jinkui YANG ; Ling YANG ; Ying YANG ; Tao YANG ; Xiao YANG ; Xinhua XIAO ; Dan WU ; Jinsong KUANG ; Lanjie HE ; Wei GU ; Jie SHEN ; Yongfeng SONG ; Qiao ZHANG ; Hong ZHANG ; Yuwei ZHANG ; Junqing ZHANG ; Xianfeng ZHANG ; Miao ZHANG ; Yifei ZHANG ; Yingli LU ; Hong CHEN ; Li CHEN ; Bing CHEN ; Shihong CHEN ; Guiyan CHEN ; Haibing CHEN ; Lei CHEN ; Yanyan CHEN ; Genben CHEN ; Yikun ZHOU ; Xianghai ZHOU ; Qiang ZHOU ; Jiaqiang ZHOU ; Hongting ZHENG ; Zhongyan SHAN ; Jiajun ZHAO ; Dong ZHAO ; Ji HU ; Jiang HU ; Xinguo HOU ; Bimin SHI ; Tianpei HONG ; Mingxia YUAN ; Weibo XIA ; Xuejiang GU ; Yong XU ; Shuguang PANG ; Tianshu GAO ; Zuhua GAO ; Xiaohui GUO ; Hongyi CAO ; Mingfeng CAO ; Xiaopei CAO ; Jing MA ; Bin LU ; Zhen LIANG ; Jun LIANG ; Min LONG ; Yongde PENG ; Jin LU ; Hongyun LU ; Yan LU ; Chunping ZENG ; Binhong WEN ; Xueyong LOU ; Qingbo GUAN ; Lin LIAO ; Xin LIAO ; Ping XIONG ; Yaoming XUE
Chinese Journal of Endocrinology and Metabolism 2025;41(11):891-907
Body weight abnormalities, including overweight, obesity, and underweight, have become a dual public health challenge in Chinese adults: overweight and obesity lead to a variety of chronic complications, while underweight increases the risks of malnutrition, sarcopenia, and organ dysfunction. To systematically address these issues, multidisciplinary experts in endocrinology, sports science, nutrition, and psychiatry from various regions have held multiple weight management seminars. Based on the latest epidemiological data and clinical evidence, they expanded the guideline to include assessment and intervention strategies for underweight, in addition to the core content of obesity management. This guideline outlines the etiological mechanisms, evaluation methods, and multidimensional management strategies for overweight and obesity, covering key areas such as diagnosis and assessment, medical nutrition therapy, exercise prescription, pharmacological intervention, and psychological support. It is intended to provide a scientific and standardized approach to weight management across the adult population, aiming to curb the rising prevalence of obesity, mitigate complications associated with abnormal body weight, and improve nutritional status and overall quality of life.
8.Role of neutrophil extracellular traps in organ injury after hemorrhagic shock
Guiyan JIA ; Jing WANG ; Chunyu NIU ; Zigang ZHAO
Chinese Journal of Immunology 2025;41(10):2540-2547
Following hemorrhagic shock,locally released chemotactic molecules attract neutrophils to rapidly migrate to the damaged tissues,while effectively bind,engulf and kill microorganisms,along with chromatin releasing and forming a substance deco-rated with a meshwork of microbicidal proteins and enzymes,a DNA-protein structure named neutrophil extracellular traps(NETs).The formation and degradation of NETs are regulated by multiple factors,and an imbalance in the formation and degradation of NETs plays a role in cellular damage and the aggregation of inflammatory factors,which is one of the main mechanisms of uncontrolled in-flammatory response and further aggravates organ damage.Studies have shown that NETs are involved in the process of hemorrhagic shock-induced organ damage,but the relevant mechanisms have not been fully elucidated.In this paper,we review the role of NETs in organ damage after hemorrhagic shock and the related mechanisms,and in order to understand the role of NETs and provide a refer-ence for new targets for the prevention and treatment of hemorrhagic shock.
9.Study on the Mechanism of Yitangkang in Regulating Ectopic Lipid Deposition to Improve Renal Injury in db/db Mice through PPAR-α/PGC-1α Signaling Pathway
Shiyi WANG ; Guiyan SUN ; Hui ZHANG ; Yufeng YANG ; Yan SHI
Chinese Journal of Information on Traditional Chinese Medicine 2025;32(12):89-96
Objective To investigate the effects of Yitangkang on renal ectopic lipid deposition and the PPAR-α/PGC-1α signaling pathway in db/db mice;To explore its mechanism in improving renal injury.Methods Totally 30 db/db mice were divided into model group,Yitangkang group and losartan potassium group(10 mice in each group)using a random number table method.An additional 10 db/m mice were assigned as the blank group.The mice received corresponding interventions for 8 weeks.Body mass,fasting blood glucose(FBG),serum creatinine(SCr),blood urea nitrogen(BUN),and 24-hour urinary protein content were measured,renal morphology and injury were observed using HE,PAS and Masson staining,lipid deposition in renal tissue was observed by oil red O staining,renal ultrastructure was observed by transmission electron microscopy,immunofluorescence staining was used to detect the expressions of CPT1A and Nrf2 in renal tissue,RT-qPCR was performed to assess the mRNA expressions of PPAR-α and PGC-1α,Western blot was used to detect the protein expressions of PPAR-α,CPT1A,PGC-1α,Nrf2,NRF1 and TFAM.Results Compared with the blank group,the body mass and FBG significantly increased in the model group(P<0.05),and the contents of SCr,BUN and 24-hour urinary protein significantly increased(P<0.05);histopathology revealed glomerular hypertrophy,mesangial cell and matrix proliferation,thickened basement membrane,abnormal deposition of interstitial collagen fibers,increased lipid deposition in renal tissue,widespread foot process effacement,reduced foot process density(P<0.05),blurred mitochondrial outer membranes,swollen morphology,and indistinct cristae;mRNA expressions of PPAR-α and PGC-1α significantly decreased(P<0.05),and protein expressions of PPAR-α,CPT1A,PGC-1α,Nrf2,NRF1 and TFAM significantly decreased(P<0.05).Compared with the model group,the body mass and FBG of mice in Yitangkang group significantly decreased(P<0.05),but there was no significant difference in the above indexes in losartan potassium group(P>0.05);the contents of SCr,BUN and 24-hour urinary protein in Yitangkang group and losartan potassium group significantly decreased(P<0.05);the pathological damage and lipid deposition of renal tissue was alleviated,the ultrastructure of podocytes was improved,and the density of podocytes significantly increased(P<0.05);the mRNA expressions of PPAR-α and PGC-1α in renal tissue increased,and the protein expressions of PPAR-α,CPT1A,PGC-1α,Nrf2,NRF1 and TFAM increased,with statistical significance(P<0.05).Conclusion Yitangkang can effectively alleviate renal injury in diabetic nephropathy mice.The mechanism may be related to the activation of PPAR-α/PGC-1α signaling pathway and the reduction of renal lipid deposition and mitochondrial biogenesis.
10.Guideline for Adult Weight Management in China
Weiqing WANG ; Qin WAN ; Jianhua MA ; Guang WANG ; Yufan WANG ; Guixia WANG ; Yongquan SHI ; Tingjun YE ; Xiaoguang SHI ; Jian KUANG ; Bo FENG ; Xiuyan FENG ; Guang NING ; Yiming MU ; Hongyu KUANG ; Xiaoping XING ; Chunli PIAO ; Xingbo CHENG ; Zhifeng CHENG ; Yufang BI ; Yan BI ; Wenshan LYU ; Dalong ZHU ; Cuiyan ZHU ; Wei ZHU ; Fei HUA ; Fei XIANG ; Shuang YAN ; Zilin SUN ; Yadong SUN ; Liqin SUN ; Luying SUN ; Li YAN ; Yanbing LI ; Hong LI ; Shu LI ; Ling LI ; Yiming LI ; Chenzhong LI ; Hua YANG ; Jinkui YANG ; Ling YANG ; Ying YANG ; Tao YANG ; Xiao YANG ; Xinhua XIAO ; Dan WU ; Jinsong KUANG ; Lanjie HE ; Wei GU ; Jie SHEN ; Yongfeng SONG ; Qiao ZHANG ; Hong ZHANG ; Yuwei ZHANG ; Junqing ZHANG ; Xianfeng ZHANG ; Miao ZHANG ; Yifei ZHANG ; Yingli LU ; Hong CHEN ; Li CHEN ; Bing CHEN ; Shihong CHEN ; Guiyan CHEN ; Haibing CHEN ; Lei CHEN ; Yanyan CHEN ; Genben CHEN ; Yikun ZHOU ; Xianghai ZHOU ; Qiang ZHOU ; Jiaqiang ZHOU ; Hongting ZHENG ; Zhongyan SHAN ; Jiajun ZHAO ; Dong ZHAO ; Ji HU ; Jiang HU ; Xinguo HOU ; Bimin SHI ; Tianpei HONG ; Mingxia YUAN ; Weibo XIA ; Xuejiang GU ; Yong XU ; Shuguang PANG ; Tianshu GAO ; Zuhua GAO ; Xiaohui GUO ; Hongyi CAO ; Mingfeng CAO ; Xiaopei CAO ; Jing MA ; Bin LU ; Zhen LIANG ; Jun LIANG ; Min LONG ; Yongde PENG ; Jin LU ; Hongyun LU ; Yan LU ; Chunping ZENG ; Binhong WEN ; Xueyong LOU ; Qingbo GUAN ; Lin LIAO ; Xin LIAO ; Ping XIONG ; Yaoming XUE
Chinese Journal of Endocrinology and Metabolism 2025;41(11):891-907
Body weight abnormalities, including overweight, obesity, and underweight, have become a dual public health challenge in Chinese adults: overweight and obesity lead to a variety of chronic complications, while underweight increases the risks of malnutrition, sarcopenia, and organ dysfunction. To systematically address these issues, multidisciplinary experts in endocrinology, sports science, nutrition, and psychiatry from various regions have held multiple weight management seminars. Based on the latest epidemiological data and clinical evidence, they expanded the guideline to include assessment and intervention strategies for underweight, in addition to the core content of obesity management. This guideline outlines the etiological mechanisms, evaluation methods, and multidimensional management strategies for overweight and obesity, covering key areas such as diagnosis and assessment, medical nutrition therapy, exercise prescription, pharmacological intervention, and psychological support. It is intended to provide a scientific and standardized approach to weight management across the adult population, aiming to curb the rising prevalence of obesity, mitigate complications associated with abnormal body weight, and improve nutritional status and overall quality of life.


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