1.Genetic diversity analysis of Aedes albopictus populations in Shandong Province using mitochondrial mtDNA-COⅠ gene sequences
Fan-jin MENG ; Yong LIU ; Huan HUANG ; Wei-bo MA ; Yi-fan WU ; Wei-long TAN
Acta Parasitologica et Medica Entomologica Sinica 2026;33(1):31-39
Objective This study aimed to investigate the genetic diversity, differentiation, and population structure of Aedes albopictus across different geographical regions in Shandong Province, and to explore the relationship between genetic diversity and geographical distribution. Methods Between July and August 2024, ten Ae. albopictus populations were sampled from seven cities in Shandong Province. Genomic DNA was extracted from individual mosquitoes, and the mitochondrial cytochrome c oxidase subunit I(COⅠ)gene was amplified using PCR and sequenced. The obtained sequences were verified using BLAST and analyzed with MAFFT, MEGA 11, DnaSP v6.12, Arlequin 3.5, PopART 1.7, STRUCTURE 2.3.4 and the R packages adegenet and vegan to assess genetic diversity and population structure. Results A total of 229 COⅠ sequences(662 bp) was obtained, revealing ten variable sites with no insertions or deletions. The overall base composition showed an AT bias of 67.7%. Haplotype analysis identified 11 haplotypes, with Hap2 being the dominant and most widely distributed haplotype across all populations. Neutrality tests showed significant population expansion only in the Rizhao population. Mantel testing result revealed that geographical distance does not significantly impede gene flow. Overall, genetic differentiation among populations was low, indicating frequent gene flow. When combined with additional samples from Shanghai, Fujian, Guangdong, Yunnan, Hainan and Guangxi, STRUCTURE, UPGMA and DAPC analyses revealed two primary genetic clusters of Ae. albopictus. Conclusions Ae. albopictus populations in Shandong Province exhibit frequent gene flow, low genetic differentiation, and relatively low overall genetic diversity. However, the Rizhao population showed signs of recent expansion, highlighting the need for enhanced surveillance and targeted control measures in this area.
2.Exercise-induced Mitohormesis in Counteracting Age-related Sarcopenia
Zi-Yi ZHANG ; Mei MA ; Hai BO ; Tao LIU ; Yong ZHANG
Progress in Biochemistry and Biophysics 2025;52(6):1349-1361
Sarcopenia, an age-related degenerative skeletal muscle disorder characterized by progressive loss of muscle mass, diminished strength, and impaired physical function, poses substantial challenges to global healthy aging initiatives. The pathogenesis of this condition is fundamentally rooted in mitochondrial dysfunction, manifested through defective energy metabolism, disrupted redox equilibrium, imbalanced dynamics, and compromised organelle quality control. This comprehensive review elucidates the central role of exercise-induced mitochondrial hormesis as a critical adaptive mechanism counteracting sarcopenia. Mitohormesis represents an evolutionarily conserved stress response wherein sublethal mitochondrial perturbations, particularly transient low-dose reactive oxygen species (ROS) generated during muscle contraction, activate cytoprotective signaling cascades rather than inflicting macromolecular damage. The mechanistic foundation of this process involves ROS functioning as essential signaling molecules that activate the Keap1 nuclear factor erythroid 2 related factor 2 (Nrf2) antioxidant response element pathway. This activation drives transcriptional upregulation of phase II detoxifying enzymes including superoxide dismutase (SOD) and glutathione peroxidase (GPx), thereby enhancing cellular redox buffering capacity. Crucially, Nrf2 engages in bidirectional molecular crosstalk with peroxisome proliferator activated receptor gamma coactivator 1 alpha (PGC-1α), the principal regulator orchestrating mitochondrial biogenesis through coordinated induction of nuclear respiratory factors 1 and 2 (NRF1/2) along with mitochondrial transcription factor A (Tfam), collectively facilitating mitochondrial DNA replication and respiratory complex assembly. Concurrently, exercise-induced alterations in cellular energy status, specifically diminished ATP to AMP ratios, potently activate AMP activated protein kinase (AMPK). This energy-sensing kinase phosphorylates PGC-1α while concomitantly stimulating NAD dependent deacetylase sirtuin 1 (SIRT1) activity, which further potentiates PGC-1α function through post-translational deacetylation. The integrated AMPK/PGC-1α/SIRT1 axis coordinates mitochondrial biogenesis, optimizes network architecture through regulation of fusion proteins mitofusin 1 (Mfn1), mitofusin 2 (Mfn2) and optic atrophy protein 1 (OPA1), and enhances clearance of damaged organelles via selective activation of mitophagy receptors BCL2 interacting protein 3 (Bnip1) and FUN14 domain containing 1 (FNDC1). Exercise further stimulates the mitochondrial unfolded protein response (UPRmt), increasing molecular chaperones such as heat shock protein 60 (HSP60) and HSP10 to preserve proteostasis. Within the mitochondrial matrix, SIRT3 fine-tunes metabolic flux through deacetylation of electron transport chain components, improving phosphorylation efficiency while attenuating pathological ROS emission. Distinct exercise modalities differentially engage these pathways. Aerobic endurance training primarily activates AMPK/PGC-1α signaling and UPRmt to expand mitochondrial volume and oxidative capacity. Resistance training exploits mechanical tension to acutely stimulate mechanistic target of rapamycin complex 1 (mTORC1) mediated protein synthesis while modulating dynamin related protein 1 (Drp1) phosphorylation dynamics to support mitochondrial network reorganization. High intensity interval training generates potent metabolic oscillations that rapidly amplify AMPK/PGC-1α and Nrf2 activation, demonstrating particular efficacy in insulin-resistant phenotypes. Strategically designed concurrent training regimens synergistically integrate these adaptations. Mitochondrial-nuclear communication through tricarboxylic acid cycle metabolites and mitochondrially derived peptides such as mitochondrial open reading frame of 12s rRNA-c (MOTS-c) coordinates systemic metabolic reprogramming, with exercise-responsive myokines including fibroblast growth factor 21 (FGF-21) mediating inter-tissue signaling to reduce inflammation and enhance insulin sensitivity. This integrated framework provides the scientific foundation for precision exercise interventions targeting mitochondrial pathophysiology in sarcopenia, incorporating biomarker monitoring and exploring pharmacological potentiators including nicotinamide riboside and MOTS-c mimetics. Future investigations should delineate temporal dynamics of mitohormesis signaling and epigenetic regulation to optimize therapeutic approaches for age-related muscle decline.
3.Correlation of knee joint asymmetry with balance and walking ability in hemiplegic stroke patients
Zheng-Hua XIAO ; Jiang MA ; Hong LI ; Fang WANG ; Li-Ying GUO ; Xiao-Lin TAO ; Feng ZHANG ; Ya-Yong LI ; Xiao-Li YAN
Medical Journal of Chinese People's Liberation Army 2025;50(2):134-140
Objective To explore the correlation of bilateral knee joint strength asymmetry with balance,walking ability,and motor function in hemiplegic stroke patients,providing a reference for clinical assessment of stroke patients.Methods A total of 46 hemiplegic stroke patients admitted to the Rehabilitation Medicine Department of People's Hospital of Shijiazhuang from February to December 2023 were selected.According to the Berg Balance Scale(BBS)scores,patients were divided into Group A(BBS score≤20,n=23)and Group B(BBS score>20,n=23).The peak torque and differences of bilateral knee flexors and extensors were compared between two groups.Isokinetic technology was used to assess the differences in peak torque of bilateral knee joints at 60°/s and 120°/s.BBS,Functional Ambulation Classification(FAC),and Fugl-Meyer Assessment of Lower Extremity(FMA-LE)were used to evaluate patients'balance,walking ability,and lower limb motor function.The correlation between bilateral knee joint peak torque and its difference with the scores of three functional scales was analyzed.Results The peak torque of knee flexors and extensors at 60°/s in group A was significantly lower than that in group B(P<0.05).At both 60°/s and 120°/s the differences in peak torque between the healthy and affected sides of knee flexors and extensors were greater than those in group B(P<0.05).At 60°/s,the difference in peak torque of bilateral knee extensors in hemiplegic stroke patients was negatively correlated with the scores of BBS,FAC,and FMA-LE(r=-0.569,-0.582,-0.606,P<0.01),as did the knee flexors(r=-0.534,-0.386,-0.458,P<0.05).At 120°/s,similar negative correlations were observed for both knee extensors(r=-0.304,-0.304,-0.443,P<0.05)and flexors(r=-0.337,-0.349,-0.370,P<0.05).Conclusions Bilateral knee joint strength asymmetry in hemiplegic stroke patients is negatively correlated with balance and walking ability.The difference in strength between the two sides of knee joint may be one of the clinical indicators for evaluating the motor function of stroke patients.
4.Construction of a postoperative mortality risk model for patients with acute aortic dissection based on XGBoost-SHAP method
Xin ZHANG ; Min FANG ; Yi CAO ; Ting-Ting LI ; Xian-Kong LIU ; Jia-Yi DANG ; Xue-Sen ZHAO ; Hong-Qin REN ; Jia-Ze GENG ; Kai-Wen WANG ; Tie-Sheng HAN ; Yong-Bo ZHAO ; Dong MA
Medical Journal of Chinese People's Liberation Army 2025;50(10):1226-1234
Objective To develop a predictive model for postoperative mortality risk in patients with acute aortic dissection(AAD)using the Extreme Gradient Boosting(XGBoost)algorithm combined with Shapley Additive Explanation(SHAP),and to establish a prediction website to serve as a diagnostic and therapeutic support platform for clinicians and patients.Methods A retrospective cohort study design was adopted.Data from 782 AAD patients who underwent surgical treatment at the Fourth Hospital of Hebei Medical University from January 2013 to December 2023 were collected,including basic information and initial serum biomarker test results.Patients were randomly divided into training and test sets at a 7:3 ratio.An external validation set consisting of 313 AAD patients admitted to the Second Hospital of Hebei Medical University from January 2020 to December 2023 was also established for further model validation.Variables were screened using LASSO regression,and an XGBoost machine learning model was constructed and interpreted using SHAP.The predictive performance of the model was evaluated using receiver operating characteristic(ROC)curve analysis.Using the Shiny package,the XGBoost model was deployed to shinyapps.io to create a prediction website for postoperative mortality risk in AAD patients.One patient was selected by simple random sampling from the test set and the external validation set respectively for the prediction example on the Shiny webpage.Results The XGBoost model demonstrated high predictive performance for postoperative mortality in AAD patients,with area under the ROC curve(AUC)values of 0.928(95%CI 0.901-0.956)in the training set,0.919(95%CI 0.891-0.949)in the test set,and 0.941(95%CI 0.915-0.967)in the external validation set.SHAP values indicated the following order of variable importance in the model(from highest to lowest):"lactate dehydrogenase""blood chlorine""multiple organ injury""carbon dioxide combining power""prothrombin time""α-hydroxybutyric acid""creatine kinase isoenzyme""Stanford classification""combined use of bedside blood purification""gender""acute kidney injury""gastrointestinal bleeding""brain injury"and"shock".A risk prediction website for adverse postoperative outcomes in AAD patients was developed using XGBoost-SHAP method(https://dun-dunxiaolu.shinyapps.io/document/)and validated with examples.One randomly selected patient from each of the test and external validation sets was applied:the predicted mortality risk value for patient 1(who died postoperatively)was 0.9539,and that for patient 2(who survived postoperatively)was 0.0206.Conclusions The XGBoost-SHAP model demonstrates high accuracy in predicting postoperative mortality risk for AAD patients.The online prediction tool established based on this model enhances the identification efficiency of high-risk postoperative mortality patients.
5.Mechanism of P-bodies recruiting NANOS3 during early oogenesis
Jian-Wei GENG ; Fei HE ; Yi-Dan MA ; Yong-Rui ZHOU ; Xin-Yi MU
Acta Anatomica Sinica 2025;56(3):323-328
Objective To explore the relationship between NANOS3 and P-bodies in oocytes and the mechanism of their interaction during early oogenesis.Methods The co-localization of NANOS3 and dead box helicase 6(DDX6)in day post postnatal 1(1dpp)mouse oocytes was observed by immunofluorescence,and the interaction between NANOS3 and DDX6 was detected by immunoprecipitation.NANOS3 and DDX6 full-length plasmids were constructed to transfect HEK293T cells,and the mechanism of their interaction was investigated by immunofluorescence and immunoprecipitation.NANOS3 transfected HeLa cells to investigate whether NANOS3 had the ability of liquid-liquid phase separation(LLPS)by live-cell imaging.The proteins recruited by P-bodies in early oogenesis were identified by DDX6-immunoprecipitation-mass spectrometry(DDX6-IP-MS).Results NANOS3 and DDX6 colocalized and interacted with each other in 1dpp mouse oocytes.However,the co-localization of NANOS3 and DDX6 was not observed in HEK293T cells that had been transfected,but co-immunoprecipitation still demonstrated an interaction between these two proteins.Besides,live-cell imaging revealed that NANOS3 exhibited dynamic fluid-like properties within cells,which may promote the formation of P-bodies through LLPS.Finally,DDX6-IP-MS revealed that DDX6 might recruit NANOS3 into P-bodies by binding to the NANOS3 interacting protein Pumilio.Conclusion NANOS3 serves as a specific component of P-bodies in neonatal oocytes and may be involved in the regulation of early oogenesis.
6.Uterine artery embolization for adenomyosis:evaluation of efficacy and analysis of predictive factors
Hao ZHANG ; Jinlian MA ; Xingwei SUN ; Mingyao WANG ; Yong JIN
Journal of Interventional Radiology 2025;34(7):766-771
Objective To evaluate the efficacy of uterine artery embolization(UAE)for the treatment of adenomyosis(AM)and to discuss the factors predicting efficacy.Methods The clinical data of 44 patients with AM,who received UAE at The Second Affiliated Hospital of Soochow University from January 2020 to August 2022,were retrospectively analyzed.Based on the MRI findings,serum CA125 levels and follow-up dysmenorrhea scores,the efficacy of UAE and the factors predicting efficacy were analyzed.Results A single UAE treatment was performed in all 44 patients with AM.Follow-up check with MRI at 12 months after treatment showed that the mean uterine volume decreased from preoperative(299.60±182.42)cm3 to postoperative(173.14±104.00)cm3,with a volume reduction of 36.64%(P<0.05).The dysmenorrhea score decreased from preoperative(7.70±2.60)points to postoperative(2.20+2.37)points,with a relief rate of 88.64%(P<0.05),and no severe adverse reactions occurred.Enhanced MRI demonstrated that in 30 patients(68.18%)the AM lesions presented as complete necrosis foci.In the patients whose preoperative lesions were completely necrotic,the mean preoperative serum CA125 level was(101.97±60.30)U/mL,the mean ADC value was(1.012+0.271)mm2/s,which were obviously lower than those in the patients whose preoperative lesions were incompletely necrotic(P<0.05).The mean T2 signal ratio(T2SR)value in the patients whose preoperative lesions were completely necrotic was(0.582±0.198),which was significantly higher than that in the patients whose preoperative lesions were incompletely necrotic(P<0.05).The analysis of receiver operating characteristic(ROC)curve showed that the preoperative area under the curve(AUC),sensitivity,and specificity for preoperative CA125 were 0.844,60%and 80%respectively;the AUC,sensitivity,and specificity for preoperative ADC were 0.760,80%and 65%respectively;and the AUC,sensitivity,and specificity for preoperative T2SR were 0.760,80%and 70%respectively.ADC<1.116 × 10-3 mm2/s,T2SR>0.479,and CA125<109.10 U/mL could be used as the reliable predictive factors for the efficacy of UAE treatment for AM.Conclusion UAE can effectively alleviate dysmenorrhea symptoms in patients with AM,and it is clinically safe and effective.ADC,T2SR,and CA125 can be used as the reliable predictive factors for the efficacy of UAE treatment for AM,which are helpful in predicting the lesion response and selecting the reasonable therapeutic options for patients.
7.Application of Castor branching stent in treating Stanford type B aortic dissection:preliminary results
Jing GE ; Xiaojiao TANG ; Quan CHEN ; Yiwei HE ; Qiang ZHANG ; Yong ZHENG ; Rong MA ; Jianping LIU ; Yongheng ZHANG
Journal of Interventional Radiology 2025;34(10):1072-1077
Objective To investigate the efficacy of Castor branching stent in treating Stanford type B aortic dissection(TBAD)involving aortic arch.Methods The clinical data of 18 patients with Stanford TBAD,who were treated with Castor branching stent at the Suining Municipal Central Hospital of China from January 2020 to January 2022,were retrospectively analyzed.Results The main bracket and branch bracket of Castor branching stent were successfully released in all the 18 patients with a surgical success rate of 100%,and no internal leakage occurred during operation.During the perioperative period,there were neither aorta-related deaths nor serious complications such as stroke,upper limb ischemia,internal leakage,or stent displacement.The patients were followed up for(14.7±8.3)months,no aorta-related death,stroke,upper limb ischemia,internal leakage,or stent displacement was observed,the blood flow of the left subclavian artery(LSA)was unobstructed,but there was thrombosis formation within the false lumen of the covered stent segment.Conclusion The Castor branching stent has the advantages of reasonable release mode,accurate positioning,effective isolation of the first rupture of Stanford TBAD and reconstruction of LSA,with no serious short-term complications.However,further follow-up observation is needed before its long-term efficacy can be clarified.
8.Comparison of the prognostic predictive efficacy of three frailty screening scales in elderly patients in the emergency department
Huizhen LIU ; Guodong WANG ; Yong SHANG ; Na SHANG ; Junyu LI ; Na WANG ; Xiaomeng LIU ; Shubin GUO ; Suxia MA
Chinese Journal of Emergency Medicine 2025;34(1):55-61
Objective:To investigate the association between frailty and prognosis of elderly patients in the emergency department, and to validate frailty screening tools suitable for the emergency department.Methods:This was a prospective cohort study. Clinical data of elderly patients over 60 years old treated in the emergency department of Beijing Bo'Ai Hospital from January to December 2021 were collected. The Frailty Screening Questionnaire (FSQ), FRAIL Scale (FRAIL) and Clinical Frailty Scale (CFS) were used to score patients, and patients were divided into frail or non-frail group according to the criteria of the above three scales. Twelve-month all-cause mortality was the primary endpoint, dependence and re-admission to the emergency department within 12 months were secondary outcomes. Receiver operating characteristic curves were used to evaluate the ability of the FSQ, FRAIL and CFS scores to predict the primary and secondary endpoints, and the areas under the curve (AUC) were calculated and compared. Survival analysis was performed using Cox hazard proportional regression model, and relative risk was expressed as hazard ratio ( HR) and 95% CI. Results:A total of 406 patients were included in the study. The AUCs (95% CI) of FSQ, FRAIL and CFS scores for predicting 12-month all-cause mortality were 0.879 (0.844-0.909), 0.838 (0.798-0.872), 0.906 (0.873-0.933), respectively (all P<0.001). The AUCs of 3 scores for predicting secondary endpoints ranged from 0.820 to 0.889 (all P<0.001). Pairwise comparisons of the AUCs showed that the CFS was superior to one or both of the other frailty screening scales in predicting 12-month all-cause mortality and dependence except for re-admission to emergency room within 12 months after discharge (all P<0.05). Cox regression analysis revealed that, after adjusting for sex, age, body mass index and comorbidities, frailty as defined by the FSQ, FRAIL, and CFS scales was independently associated with 12-month all-cause mortality, with the HRadj of 3.267 (95% CI: 2.406-4.435), 2.465 (95% CI: 1.819-3.341), 3.523 (95% CI: 2.648-4.687), respectively (all P<0.001). Conclusions:FSQ, FRAIL and CFS scores can predict adverse outcomes, the CFS is a practical frailty screening tool in the emergency department, and frailty screening can improve the risk stratification of older patients.
9.The Mechanism of Glutamine activating autophagy exacerbates muscle loss in cancer-associated cachexia
Dufang Ma ; Yong Wang ; Zhihan Tian ; Xiaoyu Su ; Yuanfu Qi
Acta Universitatis Medicinalis Anhui 2025;60(11):2182-2186
Abstract
Cachexia is one of the serious complications in patients with end-stage cancer.Progressive depletion of skeletal muscle is an important feature of cachexia.Previous studies have found that excessive activation of autophagy accelerates skeletal muscle wasting in cachexia,and glutamine released from excessive catabolism of muscle tissue can trigger the autophagy.Mammalian target of rapamycin complex 1(mTORC1) and AMP-activated protein kinase(AMPK) signaling regulate autophagy genesis;moreover,glutamine regulates the mTORC1 and AMPK signaling pathways.Therefore,it is deduced that higher level of glutamine may result in abnormal autophagy by regulating mTORC1 and AMPK in cancer cachexia,which contributes to the development of skeletal muscle wasting.Here,this review discusses the following three perspectives:firstly,autophagy hyperactivation is involved in skeletal muscle wasting in cancer cachexia.Secondly,how mTORC1 and AMPK signaling pathways regulate autophagy.Finally,glutamine is involved in skeletal muscle wasting in cancer cachexia by induced autophagy hyperactivation via regulating mTORC1/AMPK signaling.Our study will provide a scientific basis for the development of potential therapeutic strategies.
10.BMP-2 gene-modified bone marrow mesenchymal stem cells combined with nano-hydroxyapatite / polyamide 66 implants improve atrophic nonunion of bone in rats
Yong Huang ; Jianwen Ma ; Yu Li ; Qingling Jing ; Qin Zhang ; Changshuai Li
Acta Universitatis Medicinalis Anhui 2025;60(9):1599-1605
Objective:
To investigate the therapeutic effect of bone marrow mesenchymal stem cells ( BMSCs) mod- ified by bone morphogenetic protein ( BMP) -2 gene combined with nano-hydroxyapatite ( nHA) / polyamide 66 ( PA66) on femoral nonunion in rats.
Methods :
Rat BMSCs were isolated and divided into the stent + BMSCs group,stent + BMSCs + rhBMP-2 group,and stent + BMSCs + Ad-BMP-2 group; human recombinant BMP-2 ( rh- BMP-2) or adenovirus-infected BMP-2 ( Ad-BMP-2) vector was transfected into BMSCs and loaded onto nHA / PA66 stent materials.Flow cytometry was used to detect that BMSCs expressed specific surface markers.Cell pro- liferation was detected by MTT assay,related bioactive factors[platelet-derived growth factor ( PDGF) ,transfor- ming growth factor-β ( TGF-β) ,vascular endothelial growth factor ( VEGF) ,fibroblast growth factor ( FGF) ,os- teocalcin ( OCN) ,osteonectin ( ON) ]were detected by ELISA,alkaline phosphatase ( ALP) activity was detec- ted,and cell growth and adhesion were observed by scanning electron microscopy ( SEM) .In the atrophic nonun- ion model of SD rats,the stent + BMSCs + rhBMP-2 or stent + BMSCs + Ad-BMP-2 complex was implanted into the defect area,which was divided into the rhBMP-2 group and the Ad-BMP-2 group,and the therapeutic effect was e- valuated by X-ray and MicroCT.
Results:
The surface of the nHA / PA66 stent was smooth and porous,and BMSCs adhered well.Flow cytometry showed high expression of CD29 and CD90 and low expression of CD45 and CD34 in BMSCs.MTT showed that the cells proliferated rapidly after 72 h.Compared with the stent + BMSCs group and the stent + BMSCs + rhBMP-2 group,the ALP activity,the expressions of PDGF,TGF-β , VEGF,FGF,OCN,and ON in the stent + BMSCs + Ad-BMP-2 group were significantly up-regulated ( P<0. 05) .12 weeks after surgery, the stent complex in the Ad-BMP-2 group of rats was completely wrapped by newly formed cortical bone,and the surface was smooth and intact.X-ray showed that the complex in the Ad-BMP-2 group was completely wrapped by newly formed cortical bone,and the recovery degree was better than that in the rhBMP-2 group.Micro-CT results showed that compared with the rhBMP-2 group,the bone volume fraction,trabecular thickness,trabecular num- ber,bone mineral density,and bone mineral content in the Ad-BMP-2 group all increased 12 weeks after surgery ( P<0. 05) ,and the trabecular separation level decreased ( P<0. 05) .
Conclusion
Ad-BMP-2-transfected BM- SCs combined with nHA / PA66 stent material can express bioactivity more effectively,provide a continuous and good microenvironment for the proliferation and differentiation of BMSCs,which is beneficial to promoting local os- teogenic activity and bone defect repair.


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