1.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.
2. Influence of quercetin on aging of bone marrow mesenchymal stem cells induced by microgravity
Yu-Tian YANG ; Ying-Ying XUAN ; Yu-Tian YANG ; Ying-Ying XUAN ; Yu-Hai GAO ; Long-Fei WANG ; Han-Qin TANG ; Zhi-Hui MA ; Liang LI ; Yi WU ; Ke-Ming CHEN ; Yu-Tian YANG ; Ying-Ying XUAN ; Yu-Hai GAO ; Long-Fei WANG ; Han-Qin TANG ; Zhi-Hui MA ; Liang LI ; Yi WU ; Ke-Ming CHEN
Chinese Pharmacological Bulletin 2024;40(1):38-45
Aim To investigate the effect of quercetin on the aging model of bone marrow mesenchymal stem cells established under microgravity. Methods Using 3D gyroscope, a aging model of bone marrow mesenchymal stem cells was constructed, and after receiving quercetin and microgravity treatment, the anti-aging effect of the quercetin was evaluated by detecting related proteins and oxidation indexes. Results Compared to the control group, the expressions of age-related proteins p21, pi6, p53 and RB in the microgravity group significantly increased, while the expressions of cyclin D1 and lamin B1 significantly decreased, with statistical significance (P<0.05). In the microgravity group, mitochondrial membrane potential significantly decreased (P<0.05), ROS accumulation significantly increased (P <0.05), SOD content significantly decreased and MDA content significantly increased (P<0.05). Compared to the microgravity group, the expressions of age-related proteins p21, pi6, p53 and RB in the quercetin group significantly decreased, while the expressions of cyclin D1 and lamin B1 significantly increased, with statistical significance (P<0.05). In the quercetin group, mitochondrial membrane potential significantly increased (P<0.05), ROS accumulation significantly decreased (P<0.05), SOD content significantly increased and MDA content significantly decreased (P<0.05). Conclusions Quercetin can resist oxidation, protect mitochondrial function and normal cell cycle, thus delaying the aging of bone marrow mesenchymal stem cells induced by microgravity.
3.Study advances in analgesic management in severe patients after neurosurgery
Qingjing MA ; Yan RAO ; Xiwen ZHU ; Hai CHEN ; Guoqing ZENG ; Guangyou DUAN ; Jie CHEN
Chongqing Medicine 2024;53(1):145-148
Analgesia is an important link in the treatment of severe patients after neurosurgery and plays a vital role in improving the prognosis of the patients.Understanding the status quo and influencing fac-tors of pain in severe patients after neurosurgery helps to predict the occurrence of pain,which is crucial for determining the new pain assessment methods and auxiliary analgesic methods and developing novel analgesic drugs.This paper reviews the pain status,pain evaluation and analgesic methods of severe patients after neuro-surgery in recent years so as to understand the pain management current status of the patients with severe neurological conditions and provide reference for the medical staff to implement the analgesic programs.
4.Oxymatrine hydrogel promotes wound healing by activating Nrf2/HO-1 pathway in keratinocytes
Lu LIU ; Shudan LIU ; Xiaodan LIU ; Li YANG ; Chen LING ; Xiaoming HAI ; Huiming MA ; Dongmei CHEN
Chinese Journal of Tissue Engineering Research 2024;28(29):4620-4627
BACKGROUND:Inflammation and oxidative stress contribute to the barriers of regeneration in chronic wound.Oxymatrine has various biological activities,such as anti-oxidation,anti-inflammation and so on,which may have the potential effect of promoting wound healing. OBJECTIVE:To investigate the effect of oxymatrine on wound healing and the protective effect on H2O2-induced oxidative stress injury in human keratinoid cell line HaCaT cells. METHODS:(1)In vivo experiment:Hyaluronic acid methacryloyl hydrogels containing 0,0.05,0.1,0.2 g/L oxymatrine were prepared.A full-layer skin defect model with a diameter of 12 mm was made in the back of 75 diabetic mice and randomly divided into five groups for intervention,with 15 mice in each group.The wounds of the model group were bandaged and fixed.The wounds of the hydrogel group were covered with hyaluronic acid methacryloyl hydrogel.The wounds of the low-dose,moderate-dose and high-dose oxymatrine groups were covered with hyaluronic acid methacryloyl hydrogel containing 0.05,0.1,and 0.2 g/L oxymatrine,respectively,and then bandaged and fixed after light curing.Relevant indicators were detected within 14 days.(2)In vitro experiment:Human keratinocyte line HaCaT was divided into five groups.The normal group was cultured conventionally.H2O2 group and low-,moderate-and high-concentration oxymatrine groups were treated with H2O2 for 4 hours,and then the medium was replaced with medium containing 0,0.05,0.1,and 0.2 g/L oxymatrine,respectively,and the relevant indexes were detected after 24 hours of culture. RESULTS AND CONCLUSION:(1)In vivo experiment:Compared with the model group,the wound healing rate of mice in the hydrogel group had no significant change.The wound healing rate of mice in the low-,moderate-and high-dose oxymatrine group was increased at 7 and 14 days after treatment(P<0.05).Pathological observation of wound section 14 days after treatment showed that compared with the model group,the thickness of regenerated epidermal layer,the number of microvessels,and collagen deposition in the moderate-and high-dose oxymatrine groups were increased(P<0.05).Western blot assay analysis of wound samples 7 days after surgery showed that compared with the model group,the protein expressions of tumor necrosis factor α and interleukin 6 in the moderate-and high-dose oxymatrine groups were decreased(P<0.05).(2)In vitro experiment:CCK8 assay,EdU and Ki67 staining showed that compared with the H2O2 group,the cell proliferation ability of the moderate-and high-concentration oxymatrine groups was significantly increased(P<0.05).Compared with the H2O2 group,mitochondrial membrane potential was increased(P<0.05)and reactive oxygen species content was decreased(P<0.05)in the moderate-and high-concentration oxymatrine groups.Western blot assay results showed that compared with the H2O2 group,the expression levels of Nrf2 nuclear protein,Nrf2 total protein,HO-1 protein,and superoxide dismutase 1 protein were increased in the high-concentration oxymatrine group(P<0.05).(3)These findings confirm that oxymatrine can alleviate oxidative stress damage in HaCat cells and accelerate wound healing by upregulating the levels of Nrf2 and HO-1 protein.
5. Role of inhibiting lncRNA TUG1 to down⁃regulate nucleotide binding oligomerization domain like receptor protein 1 inflammasome in delaying the progression of Alzheimer’s disease
Ting-Ting MA ; Jian-Hong CHEN ; Ai-Cui LIU ; Hai-Ning LI
Acta Anatomica Sinica 2024;55(1):32-42
Objective To investigate the relieving effects of knockdown of long non-coding RNA(lncRNA)taurine up-regulated gene 1 (TUG1) on inhibiting nucleotide binding oligomerization domain like receptor protein 1 (NLRP1) inflammasome and the progression of Alzheimer’ s disease. Methods Wild-type (WT group, 10 mice) or amyloid precursor protein (APP) / presenilin-1 (PS1) transgenic mice (30 mice) with a genetic background of C57 / BL6 aged 9-10 weeks were used in this study. APP / PS1 transgenic mice were randomly divided into model group, model+lncRNA TUG1 short hairpin RNA (shRNA) group and model + shRNA non target (NT) group (n = 10) . Blood samples, cerebral cortex tissues, primary microglial cells and primary astrocytes were collected from mice 12 weeks of age on day 1 (3-month-old) and 32 weeks of age on day 1 (8-month-old), with 5 mice per group at each time point. Real-time PCR analysis was used to detect the expression levels of lncRNA TUG1 and macrophage migration inhibitory factor (MIF) mRNA in cerebral cortex tissues and primary microglial cells, and C1r and C1s mRNA levels in primary astrocytes of 3-month-old and 8-month-old mice in the above 4 groups, respectively. ELISA was used to determine the MIF in plasma samples of the above 4 groups of mice. Primary microglia and astrocytes from the cerebral cortex of 3-month-old and 8-month-old mice were co-cultured. CCK-8 method was used to determine the proliferation ability of the above cells. Western blotting was used to determine the expression levels of MIF, pro interleukin-1β (pro-IL-1β), apoptosis associated speck-like protein containing a caspase recrult domain(ASC), Caspase-1 (p20), Caspase-1 (full), NLRP1 and NLRP3 in cerebral cortex tissues of 3-month-old and 8-month-old mice. Immunofluorescent staining was used to determine amyloid beta(Aβ) in cerebral cortex of 8-month-old mice. Results At the age of 3-month-old and 8-month-old, compared with the WT group, the relative expression level of lncRNA TUG1 and MIF in cerebral cortex tissues and primary microglia of model group mice was significantly up-regulated, with primary microglial cells and astrocytes proliferation ability enhanced (P<0. 05) . Compared with the model group, the relative expression level of lncRNA TUG1 and MIF cerebral cortex tissues and primary microglia of model + lncRNA TUG1 shRNA group were significantly down-regulated, with primary microglial cells and astrocytes proliferation ability decreased (P<0. 05) . Compared with the WT group, MIF factor in the peripheral plasma of model group increased significantly, with pro-IL-1β,ASC,Caspase-1 (p20),Caspase-1 (full), NLRP1 and NLRP3 expression level up-regulated in the model group mice cerebral cortex tissues, with increased Aβ immunofluorescent indensity (P<0. 05) . Compared with the model group, MIF factor in the peripheral plasma, and pro-IL-1β, ASC, Caspase-1 (p20), Caspase-1 (full) and NLRP1 expression in the model + lncRNA TUG1 shRNA group mice cerebral cortex tissues were down-regulated, and Aβ immunofluorescent indensity decreased (P<0. 05), while NLRP3 expression level were not changed (P>0. 05) . There was no significant difference between the model group and the model+shRNA NT group mice of all the above factors (P>0. 05) . Conclusion In APP / PS1 transgenic mice, up-regulation of lncRNA TUG1 and MIF are positively associated with the activation of NLRP1 inflammasome in mice cerebral cortex tissues and primary microglia. Knock-down of lncRNA TUG1 can ameliorate the progression of Alzheimer’ s disease.
6.The expression of System Xc-/ GSH / GPX4 ferroptosis pathway in peripheral blood mononuclear cells of rheumatoid arthritis patients and its effect on the secretion of inflammatory factors
Can Liu ; Wukai Ma ; Changming Chen ; Yang An ; Zong Jiang ; Hai Huang
Acta Universitatis Medicinalis Anhui 2024;59(1):64-70
Objective :
To investigate the expression of genes and proteins in the peripheral blood mononuclear cell ( PBMC) cystine / glutamate antiporter system (System Xc-) / glutathione ( GSH) / glutathione peroxidase 4 ( GPX4) ferroptosis pathway and its influence on inflammatory factors in patients with rheumatoid arthritis ( RA) .
Methods :
30 patients with RA and 30 healthy participants were enrolled.PBMCs were isolated using Ficoll-hypaque density gradient centrifugation.The cells were categorized into the healthy control,RA,ferroptosis inhibitor,ferroptosis in- ducer group.The cell viability was checked using the cell counting kit-8 ( CCK-8) method.Intracellular Fe2 + rela- tive fluorescence intensity and reactive oxygen species (ROS) levels were detected using the FerroOrange and Di- hydroethidium (DHE) fluorescent probes,respectively.Western blot and real-time quantitative PCR (qPCR) de- tected the expression of nuclear factor erythroid 2-related factor 2 ( Nrf2 ) ,solute carrier family 7 member 11 (SLC7A11) ,GPX4 proteins and mRNA.And the flow cytometry quantified the levels of tumor necrosis factor α (TNF-α) ,Interleukin (IL) -1,and IL-6 in the supernatant of each cell group.
Results :
Compared to the healthy control group,the RA group showed a significantly increased Fe2 + concentration and elevated ROS levels,reduced expression of Nrf2,SLC7A11 and GPX4 proteins and mRNA,and increased contents of TNF-α , IL-1 and IL-6 in PBMC supernatant,and the differences were statistically significant.The concentration of Fe2 + and ROS levels in the inhibitor group were lower than those in the RA group,the proteins expressions of Nrf2,SLC7A11 and GPX4 increased,the mRNA expressions of SLC7A11 and GPX4 increased,the content of IL-6 in the PBMC supernatant decreased but the content of TNF-α increased,and the differences were statistically significant.In contrast,the in- ducer group,when compared to the RA group,displayed increased ROS levels,reduced expression of SLC7A11 protein and mRNA and decreased expression of Nrf2 protein,and the contents of TNF-α and IL-1 in the PBMC su- pernatant increased,but the expression of GPX4 protein increased ,and the differences were statistically signifi- cant.The inducer group,compared to the RA group,showed increased cell viability,and the difference was statis-
tically significant (P<0. 000 1) .
Conclusion
The presence of ferroptosis in PBMC in RA patients,inhibiting or inducing PBMC ferroptosis in RA patients,will inhibit or promote the secretion of inflammatory factors.Inhibition of PBMC ferroptosis in RA patients may be helpful in the treatment of RA.
7.Efficacy and safety of nicorandil and ticagrelor de-escalation after percutaneous coronary intervention for elderly patients with acute coronary syndrome
Xiang SHAO ; Ning BIAN ; Hong-Yan WANG ; Hai-Tao TIAN ; Can HUA ; Chao-Lian WU ; Bei-Xing ZHU ; Rui CHEN ; Jun-Xia LI ; Tian-Chang LI ; Lu MA
Medical Journal of Chinese People's Liberation Army 2024;49(1):75-81
Objective To explore the efficacy and safety of ticagrelor de-escalation and nicorandil therapy in elderly patients with acute coronary syndrome(ACS)after percutaneous coronary intervention(PCI).Methods A total of 300 elderly patients with ACS were selected from the Sixth and Seventh Medical Center of Chinese PLA General Hospital and Beijing Chaoyang Integrative Medicine Emergency Rescue and First Aid Hospital from November 2016 to June 2019,including 153 males and 147 females,aged>65 years old.All the patients received PCI,and all had double antiplatelet therapy(DAPT)scores≥2 and a new DAPT(PRECISE-DAPT)score of≥25.All patients were divided into two groups by random number table method before operation:ticagrelor group(n=146,ticagrelor 180 mg load dose followed by PCI,and ticagrelor 90 mg bid after surgery)and ticagrelor de-escalation + nicorandil group(n=154,ticagrelor 180 mg load dose followed by PCI,ticagrelor 90 mg bid+nicorandil 5 mg tid after surgery,changed to ticagrelor 60 mg bid+ nicorandil 5 mg tid 6 months later).Follow-up was 12 months.The composite end points of cardiovascular death,myocardial infarction and stroke,the composite end points of mild hemorrhage,minor hemorrhage,other major hemorrhage and major fatal/life-threatening hemorrhage as defined by the PLATO study,and the composite end points of cardiovascular death,myocardial infarction,stroke and bleeding within 12 months in the two groups were observed.Results The comparison of general baseline data between the two groups showed no statistically significant difference(P>0.05).There was also no significant difference in the composite end points of cardiovascular death,myocardial infarction and stroke between the two groups(P>0.05).The cumulative incidence of bleeding events in ticagrelor de-escalation + nicorandil group was significantly lower than that in ticagrelor group(P<0.05),while the composite end points of cardiovascular death,myocardial infarction,stroke and bleeding were also significantly lower than those in tecagrelor group(P<0.05).Conclusion In elderly patients with ACS,the treatment of ticagrelor de-escalation + nicorandil after PCI may not increase the incidence of ischemic events such as cardiovascular death,myocardial infarction or stroke,and it may reduce the incidence of hemorrhagic events.
8.The Application of Bacterial Outer Membrane Vesicles in Tumor Treatment
Yun-Feng WANG ; Wan-Ru ZHUANG ; Xian-Bin MA ; Wei-Dong NIE ; Hai-Yan XIE
Progress in Biochemistry and Biophysics 2024;51(2):309-327
Outer membrane vesicles (OMVs) are nanoscale vesicles secreted by Gram-negative bacteria. As a unique bacterial secretion, OMV secretion can help bacteria maintain the outer membrane stability or remove harmful substances. Studies have shown that local separation of outer membrane and peptidoglycan layers led by abnormalities in outer membrane protein function, abnormal structure or excessive accumulation of LPS, and erroneous accumulation of phospholipids in the outer leaflet, which can all lead to bacterial outer membrane protrusion and eventually bud formation of OMVs. Since OMVs are mainly composed of bacterial outer membrane and periplasmic components, the pathogen associated molecular patterns (PAMPs) on their surface can trigger strong immune responses. For example, OMVs can recruit and activate neutrophils, polarize macrophages to secrete large amounts of inflammatory factors. More importantly, OMVs can act as adjuvants to induce dendritic cell (DC) maturation to enhance adaptive immune response in the body. At the same time, OMVs are derived from bacteria, which make it easy to modify. The methods by genetic engineering and others can improve their tumor targeting, give them new functions, or reduce their immunotoxicity, which is conducive to their application in tumor therapy. OMVs not only induce apoptosis or pyroptosis of tumor cells, but also regulate the host immune system, which makes OMVs themselves have a certain killing effect on tumors. In addition, the tendency of neutrophils to inflammatory tumor sites and the formation of neutrophil extracellular traps enable OMVs to target tumor sites, and the suitable size and the characteristic that they are easily taken up by DCs give OMVs a certain lymphatic targeting ability. Therefore, OMVs are often employed as excellent drug or vaccine carriers in tumor therapy. This review mainly discusses the biological mechanism of OMVs, the regulatory effects of OMVs on immune cells, the functional modification strategies of OMVs, and their research progress in tumor therapy.
9.Application status and research progress of tranexamic acid in the perioperative period of joint replacement and arthroscopic surgery
Bao-Hua YUAN ; Hai-Ping LIU ; Xing-Yong LI ; Xiao-Ting LIU ; Ji-Hai MA ; Xu-Sheng ZHANG ; Hao-Fei YANG ; Jin-Sheng LI ; Sheng-Long HAN
The Chinese Journal of Clinical Pharmacology 2024;40(7):1080-1084
Tranexamic acid is widely used in joint orthopedic surgery.At the same time,it has high safety and few adverse drug reactions.It can effectively improve intraoperative bleeding and promote early functional recovery of patients.This article reviews the mode of administration,safe dose,administration time and adverse drug reactions of tranexamic acid in the perioperative period of joint replacement and arthroscopic surgery,in order to provide reference for the clinical application of tranexamic acid.
10.Clinical application and determination of nine sedative-hypnotics in human plasma by HPLC-MS/MS
Chun-Ling MA ; Bin-Bin CHEN ; Xiang-Zhen XU ; Shun TU ; Hai-Yan LU
The Chinese Journal of Clinical Pharmacology 2024;40(8):1208-1212
Objective To establish and validate a method for simultaneous determination of 9 sedative-hypnotics in human plasma,and to explore the preliminary clinical application.Methods Plasma samples were precipitated with acetonitrile and determined by high performance liquid chromatography tandem mass spectrometry.The column was Agilent Poroshell 120 EC-C18(2.1 mm × 50.0 mm,2.7μm)and eluted with acetonitrile water containing 0.1%formic acid in an equal degree program at a flow rate of 0.3 mL·min-1.The column temperature was 20 ℃ and injection volume was 5 μL.The deprotonated ions of analytes were ionized by positive ion,electron spray ionization and multiple reaction monitoring mode.The specificity,standard curve and lower limit of quantification,precision and recovery,matrix effect,stability and dilution effect of the method were investigated.Results Excellent linear relationship with correlation coefficient of r2 ≥ 0.997 7 was obtained.The linear of esazolam,alprazolam,oxazepam,clonazepam,lorazepam,triazolam,midazolam,diazepam and zolpidem were 18-1 800,4.5-450,25-2 500,3.5-350,25-2 500,1.5-150,5.5-550,35-3 500,4-400 ng·mL-1,respectively.The lower limit of quantification were 18,4.5,25,3.5,25,1.5,5.5,35,4 ng·mL-1.The method was accurate and precise with acceptable intra-day and inter-day precisions(relative standard deviations were less than 20%for a lower limit of quantification and less than 15%for other quality control samples)and an accuracy of 86.21%-112.38%.The extraction recovery rate were 93.07%-110.50%.The matrix factors normalized by internal standard were 86.61%-108.41%,relative standard deviations were less than 15%.Plasma samples remained stable under various storage conditions.The precision and accuracy of plasma samples were acceptable after dilution.Conclusion The method is simple,rapid,sensitive and specific,and it can be used for simultaneous detection of the 9 sedative-hypnotics in human plasma.


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