1.Signaling pathways in the mechanism underlying active ingredients of Chinese medicine in the treatment of osteoarthritis
Luxing LIU ; Mingyuan DI ; Qiang YANG
Chinese Journal of Tissue Engineering Research 2024;28(4):609-614
BACKGROUND:Osteoarthritis is a chronic degenerative disease of skeletal muscle,and the incidence of osteoarthritis is increasing yearly,but its pathogenesis is not clear.The commonly used drugs for osteoarthritis include non-steroidal anti-inflammatory drugs and glucocorticoid.Adverse drug reactions to these drugs can reduce patient compliance and ultimately affect the efficacy of treatment.Active ingredients in Chinese medicine are closely scrutinized for their safety and other characteristics. OBJECTIVE:Through reviewing the research progress in the effect of active ingredients of traditional Chinese medicine on osteoarthritis-related signaling pathways,to provide ideas and theoretical basis for the research,development,and application of new drugs in the prevention and treatment of osteoarthritis. METHODS:CNKI,WanFang,VIP,PubMed,and GeenMedical were searched for relevant literature in the last 10 years.The key words were"OA,osteoarthritis,traditional Chinese medicine,active ingredients of traditional Chinese medicine,chondrocyte,inflammation,signal pathways,mechanism"in Chinese and English.We excluded the irrelevant repetitive and older literature,and finally included 63 articles for further review. RESULTS AND CONCLUSION:The active ingredients of traditional Chinese medicine regulate the levels of inflammatory factors,promote the proliferation and differentiation of chondrocytes,regulate the apoptosis of chondrocytes,and delay the degeneration of chondrocytes through Wnt/β-catenin,NK-ΚB,P38 MAPK,PI3K/AKT,JAK2/STAT3 and other signaling pathways,thus slowing the progression of osteoarthritis.
2.Analysis of Biomechanical Characteristics of Lower Limbs During Stair Descent in Patients with Hemiplegia
Luxing ZHOU ; Qinghua MENG ; Wenhong LIU ; Nan ZHANG ; Shuaiqi CUI ; Jiao LIU
Journal of Medical Biomechanics 2024;39(1):125-131
Objective To conduct a comparative analysis of the biomechanical characteristics of the lower limbs during stair descent in patients with hemiplegia using different method to provide theoretical references for reducing fall risk during stair descent.Methods Ten healthy subjects and 20 patients with hemiplegia were selected,and their kinematic and dynamic data during stair descent were collected using the Qualisys Motion capture system and the Kistler three-dimensional dynamometer.Their biomechanical characteristics and fall risks were also analyzed.Results Compared with that of healthy subjects and patients that step on the healthy side(SHS),the range of motion(ROM)of the affected side in the lower-limb joints of patients that step on the affected side(SAS)was smaller.SHS reduced the flexion and extension ranges of the healthy side of the knee joint,and the ROM of the affected side in the lower-limb joints of SHS patients was greater than that of SAS patients.The ground reaction force(GRF)curve changes of SAS patients in left and right directions during stair descent were relatively consistent with those of normal subjects.The maximum vertical GRF of the affected side in SAS patients at the moment of landing was 1.05 times the body weight,whereas that of the healthy side was 1.25 times the body weight,which was lower than that of normal subjects(1.5 times the body weight).The maximum vertical GRF of the healthy side in SHS patients at the moment of landing was 1.85 times the body weight,which was higher than that of SAS patients and normal subjects.Conclusions Compared with that of SAS patients,the affected limb side of SHS patients has a greater ROM and vertical GRF at the moment of landing during stair descent,making SHS difficult to master.SAS is most consistent with the biomechanical characteristics during stair descent of patients with hemiplegia.

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