1.Advances in the assessment of diabetic retinopathy severity in periarterial capillary-free zone by optical coherence tomography angiography
International Eye Science 2026;26(3):441-446
Diabetic retinopathy(DR), the most common microvascular complication of diabetes, has become a leading cause of visual impairment and blindness across all age groups. The early diagnosis and severity assessment of DR rely on the precise evaluation of retinal microvascular alterations. The periarterial capillary-free zone(paCFZ), a physiological avascular region surrounding retinal arteries, has recently been recognized as an important biomarker reflecting the status of retinal microcirculation. Advances in optical coherence tomography angiography(OCTA)have enabled noninvasive, high-resolution quantification of the paCFZ, offering a novel approach for the early detection and stratification of DR. This review systematically summarizes the definition and developmental mechanism of the paCFZ, as well as its morphological characteristics across different stages of DR, with a particular focus on the advantages of OCTA in visualizing and quantifying the paCFZ. We further discuss the differential manifestations of the paCFZ in nonproliferative DR and proliferative DR, and its associations with retinal ischemia and oxygenation status. In addition, the potential clinical value of paCFZ in evaluating responses to anti-vascular endothelial growth factor(VEGF)therapy and predicting disease progression is summarized. Finally, the challenges in clinical translation and future research directions are addressed, aiming to provide theoretical support and new perspectives for early screening, risk stratification, and personalized management of DR.
2.Pathogenic Mechanisms of Spleen Deficiency-Phlegm Dampness in Obesity and Traditional Chinese Medicine Prevention and Treatment Strategies:from the Perspective of Immune Inflammation
Yumei LI ; Peng XU ; Xiaowan WANG ; Shudong CHEN ; Le YANG ; Lihua HUANG ; Chuang LI ; Qinchi HE ; Xiangxi ZENG ; Juanjuan WANG ; Wei MAO ; Ruimin TIAN
Journal of Traditional Chinese Medicine 2026;67(1):31-37
Based on spleen deficiency-phlegm dampness as the core pathogenesis of obesity, and integrating recent advances in modern medicine regarding the key role of immune inflammation in obesity, this paper proposes a multidimensional pathogenic network of "obesity-spleen deficiency-phlegm dampness-immune imbalance". Various traditional Chinese medicine (TCM) herbs that strengthen the spleen, regulate qi, and resolve phlegm and dampness can treat obesity by improving spleen-stomach transport and transformation, promoting water-damp metabolism, and regulating immune homeostasis. This highlights immune inflammation as an important entry point to elucidate the TCM concepts of "spleen deficiency-phlegm dampness" and the therapeutic principle of "strengthening the spleen and eliminating dampness to treat obesity". By systematically analyzing the intrinsic connection between "spleen deficiency generating dampness, internal accumulation of phlegm dampness" and immune dysregulation in obesity, this paper aims to provide theoretical support for TCM treatment of obesity based on dampness.
3.Shear wave elastography to evaluate the effect of hemoperfusion on carotid artery e-lasticity in uremic patients undergoing hemodialysis
Xi YANG ; Yifan WANG ; Le MA ; Xu WANG ; Xinyu WANG ; Xuemeihui MA ; Yuanyuan LIU ; Guangsen LI
Chinese Journal of Arteriosclerosis 2025;33(9):795-802
Aim To evaluate the effect of hemoperfusion on carotid artery elasticity in patients undergoing hemo-dialysis using shear wave elastography(SWE).Methods Seventy-eight patients with uremia were included,and di-vided into two groups based on dialysis regimen:hemodialysis alone group and hemodialysis combined with hemoperfusion group,while 40 healthy subjects were selected as control group.Then general information,clinical data and biochemical indices were collected.The carotid intima-media thickness(IMT),carotid artery inner diameter at the end of systole(Ds),the carotid artery inner diameter at the end of diastole(Dd)and the peak systolic flow velocity(PSV)were meas-ured by conventional ultrasound.The degree of arterial wall motion(△D)and arterial stiffness coefficient(β)were cal-culated.Elasticity of intima-medial layer in the anterior carotid artery was measured by SWE,including the maximum modulus of elasticity(MEmax),mean modulus of elasticity(M Emean),minimum modulus of elasticity(MEmin).Re-sults There were no statistically significant differences in Ds,Dd,△D and PSV among the three groups(all P>0.05).Compared with control group,the IMT,β,SWE parameters were significantly increased in the hemodialysis combined with hemoperfusion group and the hemodialysis alone group.Compared with hemodialysis alone group,the SWE parameters were significantly decreased in the hemodialysis combined with hemoperfusion group(P<0.05),while there were no statis-tically significant differences in IMT and β(both P>0.05).In the three groups,SWE parameters were positively correla-ted with IMT,β and LDLC(r>0.37,all P<0.01)and negatively correlated with HDLC(|r|>0.24,all P<0.05).The areas under the ROC curves of the SWE parameters were all higher than those of the conventional ultrasound parameters(all P<0.05).Conclusion SWE can effectively assess the effect of hemoperfusion on the elasticity of carotid arteries in uremic patients undergoing hemodialysis.
4.Adaptive motion control method for bio-inspired hexapod robot based on hybrid gaits
Tingfeng MEN ; Le CAO ; Haoyang XU ; Shiwen XU
Chinese Journal of Medical Physics 2025;42(10):1374-1383
The adaptive motion control method for bio-inspired hexapod robot is explored based on bionics principles,as well as the limb structure and behavioral characteristics of tarantulas.Firstly,a bionic kinematic model for a single leg of the robot is established using the Denavit-Hartenberg method combined with mechanical parameters.The forward and inverse kinematic expressions are derived,and the triangular gait of the hexapod robot is implemented through composite cycloid trajectory planning.Subsequently,inspired by biological tactile sense and biological vestibular balance mechanisms,force sensors and inertial measurement unit are employed to acquire force control and posture information of the hexapod robot,followed by fusion processing,which enables the robot to perceive environmental changes and adjust its trajectory in real time.A motion control model integrating hybrid gaits is proposed to enhance the robot's environmental perception and adaptability.Finally,a semi-physical simulation experimental platform is constructed to verify the effectiveness and reliability of the proposed model.Experimental results demonstrate that this model can significantly improve the motion stability and traversal efficiency of the robot in complex and rugged terrains,providing robust support for the application of bio-inspired adaptive control methods in multi-legged robots.
5.A case of chronic total occlusion of coronary arteries opened by reverse guidewire technology with ipsilateral brachioradial artery combined approach
Zhao-kun MA ; Cheng-yi XU ; Ya-feng GUO ; Dong YI ; Zheng-le YANG ; Hua YAN
Chinese Journal of Interventional Cardiology 2025;33(10):597-600
Intra-aortic balloon pump(IABP),as the most commonly used percutaneous mechanical circulatory assist device,is routinely implanted through the femoral artery pathway.However,when implantation through the femoral artery pathway is difficult or contraindicated,other pathways including the brachial artery pathway,axillary artery pathway,etc.can be considered.IABP assisted interventional treatment for complex high-risk and indicated patients(CHIP)can reduce the risk of intraoperative complications,stabilize hemodynamics,increase the complete revascularization rate of CHIP,and improve long-term prognosis.The reverse guidewire technique can improve the success rate of percutaneous coronary intervention(PCI)for chronic total occlusion(CTO)of coronary arteries.In clinical practice,the reverse pathway is often chosen in addition to the forward pathway,such as the contralateral radial and brachial artery pathway,femoral artery pathway,etc.This article reports a case of bilateral femoral artery occlusion,in which IABP was implanted through the left brachial artery pathway,and then with the assistance of IABP,the right coronary artery CTO lesion was successfully opened through the right radial artery in the forward direction and the right brachial artery in the reverse direction,with the aim of providing reference for clinical PCI treatment for such special cases.
6.Effect of miR-22-3p regulation of NF-κB signaling pathway on palmitic acid-induced inflammation injury and apoptosis of hepatocytes
Yunchun XU ; Xinya YU ; Yuwei LI ; Le GUO
Chinese Journal of Immunology 2025;41(5):1035-1040
Objective:To investigate the role and potential regulation mechanism of miR-22-3p in lipotoxic hepatocyte inflam-matory injury and apoptosis caused by palmitic acid(PA).Methods:Human normal immortalized hepatocytes(LO2 cells)were treated with different concentrations of PA for 24 h.CCK-8 and qRT-PCR were used to detect cell proliferation and miR-22-3p expression.miR-22-3p mimics or inhibitors were transfected into LO2 cells and then treated with 0.32 mmol/L PA for 24 h,the expression level of miR-22-3p was determined by qRT-PCR;cell viability was determined by CCK-8;biochemical kits to determine the ALT and AST contents;the mRNA and protein expression levels of inflammatory cytokines TNF-α,IL-1β and IL-6 in intracellular and culture super-natants were determined by qRT-PCR and ELISA;the cell apoptosis rate in each group was determined by flow cytometry;the expres-sion levels of NF-κB signaling pathway-related proteins were detected by Western blot and immunofluorescence.Results:With the increaseing of PA concentration,the cell survival rate and the expression of miR-22-3p decreased in a dose-dependent manner.After PA treatment,the cell proliferation activity decreased significantly,the activities of ALT and AST enzymes were increased,the expressions of inflammatory cytokines TNF-α,IL-1β and IL-6 were increased,cell apoptosis was increased,and NF-κB signaling pathway was activated.Transfection of miR-22-3p mimics significantly increased the proliferation activity of LO2 cells,and decreased the levels of ATL,AST,TNF-α,IL-1β,IL-6 and apoptosis,and inhibited the activation of NF-κB signaling pathway.Transfection of miR-22-3p inhibitor further activated NF-κB signaling pathway,and promoted cell inflammatory injury and apoptosis(all P<0.05).Conclusion:Overexpression of miR-22-3p can alleviate PA-induced apoptosis and inflammation,and the mechanism is related to inhibit the activation of NF-κB signaling pathway.
7.The Effect of Different Heights of Salto Tibial Components on Stability of the Bone-Prosthesis Interface after Total Ankle Replacement Surgery
Shengyu PAN ; Da LU ; Yangyang XU ; Yong WU ; Le ZHANG ; Xueqing WU ; Hui DU ; Liangpeng LAI ; Baoqing PEI
Journal of Medical Biomechanics 2025;40(2):428-434
Objective To investigate the biomechanical characteristics of Salto Talaris tibial components with different heights at the bone-prosthesis interface during different gait support phases after total ankle replacement.Methods An ankle joint model was reconstructed using a weight-bearing CT from a 61-year-old female patient with ankle arthritis,and Salto Talaris tibial components with different heights(5,7,9,11 mm)were modelled to simulate the loading of the tibial-prosthesis during four gait support phases,and to analyse the micromotion and stresses at the bone-prosthesis interface.Results The 11 mm and 9 mm models had a poorer prosthesis stability,with the peak micromotion exceeding 50 μm and the peak internal tibial stresses of 30.75 MPa and 29.86 MPa,respectively,which exceeded the yield stress of the cancellous bone.The tibial stresses of the 7 mm and 5 mm models were within reasonable ranges and the average peak micromotions were only 42.66 μm and 40.32 μm.In contrast,the initial stability of the 5 mm model prosthesis was the best.Conclusions For total ankle replacement with Salto prosthesis,the height of the tibial component should be chosen appropriately,and the optimal height was about 5 mm.Excessive flexion and extension activities of the ankle joint should be avoided to maintain the stability of the prosthesis after surgery.This study provides a theoretical basis for the improvement of the structural parameters of the Salto prosthesis,which is valuable for the selection of clinical surgical prostheses and helps to improve the results of total ankle replacement.
8.The Effect of Different Heights of Salto Tibial Components on Stability of the Bone-Prosthesis Interface after Total Ankle Replacement Surgery
Shengyu PAN ; Da LU ; Yangyang XU ; Yong WU ; Le ZHANG ; Xueqing WU ; Hui DU ; Liangpeng LAI ; Baoqing PEI
Journal of Medical Biomechanics 2025;40(2):428-434
Objective To investigate the biomechanical characteristics of Salto Talaris tibial components with different heights at the bone-prosthesis interface during different gait support phases after total ankle replacement.Methods An ankle joint model was reconstructed using a weight-bearing CT from a 61-year-old female patient with ankle arthritis,and Salto Talaris tibial components with different heights(5,7,9,11 mm)were modelled to simulate the loading of the tibial-prosthesis during four gait support phases,and to analyse the micromotion and stresses at the bone-prosthesis interface.Results The 11 mm and 9 mm models had a poorer prosthesis stability,with the peak micromotion exceeding 50 μm and the peak internal tibial stresses of 30.75 MPa and 29.86 MPa,respectively,which exceeded the yield stress of the cancellous bone.The tibial stresses of the 7 mm and 5 mm models were within reasonable ranges and the average peak micromotions were only 42.66 μm and 40.32 μm.In contrast,the initial stability of the 5 mm model prosthesis was the best.Conclusions For total ankle replacement with Salto prosthesis,the height of the tibial component should be chosen appropriately,and the optimal height was about 5 mm.Excessive flexion and extension activities of the ankle joint should be avoided to maintain the stability of the prosthesis after surgery.This study provides a theoretical basis for the improvement of the structural parameters of the Salto prosthesis,which is valuable for the selection of clinical surgical prostheses and helps to improve the results of total ankle replacement.
9.Effects of Liangxue Heying Formula-medicated serum on the activation of LPS-induced human umbilical vein endothelial cells via JAK2/STAT3 signaling pathway
Chun-lan XIA ; Xia FENG ; Ye-min CAO ; Zhi-qiang LIANG ; Yi LE ; Hong-tao XU ; Fei QI ; Ji LI
Chinese Traditional Patent Medicine 2025;47(4):1150-1156
AIM To investigate the effects of Liangxue Heying Formula-medicated serum(LXHY-MS)on human umbilical vein endothelial cells(HUVECs)induced by lipopolysaccharide(LPS).METHODS CCK-8,DCFH-DA fluorescence probe and Western blot method were used to screen the LPS concentration in modeling and the serum LXHY concentration for treatment.The HUVECs divided into the normal group,the model group and the LXHY-MS group had their SOD activity detected by automatic biochemical analyzer;their MDA level detected by colorimetry;their protein expressions of ICAM-1,VCAM-1,IL-6,TNF-α,p-JAK2 and p-STAT3 detected by Western blot;and their mROS expression and recruitment effect on THP-1 photographed with high connotation.With the use of JAK2/STAT3 pathway inhibitor(AG490),the HUVECs divided into the normal group,the AG490 group,the LPS group,the LPS+AG490 group,the LPS+LXHY-MS group,and LPS+LXHY-MS+AG490 group were subjected to the corresponding treatment,followed by the detection of their protein expressions of ICAM-1,VCAM-1,IL-6,TNF-α,p-JAK2 and p-STAT3 by Western blot.RESULTS Compared with the normal group,the model group displayed decreased SOD activity(P<0.01),increased MDA level(P<0.05),increased ICAM-1,VCAM-1,IL-6,TNF-α,p-JAK2,p-STAT3 protein expressions(P<0.05,P<0.01),and increased mROS expression and THP-1 cells recruitment.Compared with the model group,the LXHY-MS group shared increased SOD activity(P<0.05),decreased MDA level(P<0.01),decreased ICAM-1,VCAM-1,IL-6,TNF-α,p-JAK2,p-STAT3 protein expressions(P<0.05,P<0.01),reduced mROS expression and THP-1 cells recruitment.Given the use of AG490,the model group displayed increased protein expressions of ICAM-1,VCAM-1,IL-6,TNF-α,p-JAK2 and p-STAT3 in contrast to the normal group(P<0.05,P<0.01);each intervened group showed decreased expressions of related proteins in contrast to the model group(P<0.05,P<0.01).CONCLUSION LXHY-MS may protect the injury due to the activation of HUVECs by inhibiting the JAK2/STAT3 signaling pathway.
10.Standardized treatment of gastroesophageal reflux disease in older adults
Chinese Journal of Geriatrics 2025;44(6):707-709
Gastroesophageal reflux disease(GERD)is a common and frequently occurred clinical disease, and its incidence rate increases with age.GERD in the elderly is characterized by relatively severe esophageal injury, more complications and co-morbidities, so standardized treatment is particularly important.The treatment of GERD in the elderly includes lifestyle intervention, dietary modification, medication therapy, and interventional therapy(mainly laparoscopy and endoscopy).It is especially important to pay attention to comprehensive treatment with full consideration of the systemic health status of older patients.

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