1.Neuroplasticity Mechanisms of Exercise-induced Brain Protection
Li-Juan HOU ; Lan-Qun MAO ; Wei CHEN ; Ke LI ; Xu-Dong ZHAO ; Yin-Hao WANG ; Zi-Zheng YANG ; Tian-He WEI
Progress in Biochemistry and Biophysics 2025;52(6):1435-1452
Neuroscience is a significant frontier discipline within the natural sciences and has become an important interdisciplinary frontier scientific field. Brain is one of the most complex organs in the human body, and its structural and functional analysis is considered the “ultimate frontier” of human self-awareness and exploration of nature. Driven by the strategic layout of “China Brain Project”, Chinese scientists have conducted systematic research focusing on “understanding the brain, simulating the brain, and protecting the brain”. They have made breakthrough progress in areas such as the principles of brain cognition, mechanisms and interventions for brain diseases, brain-like computation, and applications of brain-machine intelligence technology, aiming to enhance brain health through biomedical technology and improve the quality of human life. Due to limited understanding and comprehension of neuroscience, there are still many important unresolved issues in the field of neuroscience, resulting in a lack of effective measures to prevent and protect brain health. Therefore, in addition to actively developing new generation drugs, exploring non pharmacological treatment strategies with better health benefits and higher safety is particularly important. Epidemiological data shows that, exercise is not only an indispensable part of daily life but also an important non-pharmacological approach for protecting brain health and preventing neurodegenerative diseases, forming an emerging research field known as motor neuroscience. Basic research in motor neuroscience primarily focuses on analyzing the dynamic coding mechanisms of neural circuits involved in motor control, breakthroughs in motor neuroscience research depend on the construction of dynamic monitoring systems across temporal and spatial scales. Therefore, high spatiotemporal resolution detection of movement processes and movement-induced changes in brain structure and neural activity signals is an important technical foundation for conducting motor neuroscience research and has developed a set of tools based on traditional neuroscience methods combined with novel motor behavior decoding technologies, providing an innovative technical platform for motor neuroscience research. The protective effect of exercise in neurodegenerative diseases provides broad application prospects for its clinical translation. Applied research in motor neuroscience centers on deciphering the regulatory networks of neuroprotective molecules mediated by exercise. From the perspectives of exercise promoting neurogenesis and regeneration, enhancing synaptic plasticity, modulating neuronal functional activity, and remodeling the molecular homeostasis of the neuronal microenvironment, it aims to improve cognitive function and reduce the incidence of Parkinson’s disease and Alzheimer’s disease. This has also advanced research into the molecular regulatory networks mediating exercise-induced neuroprotection and facilitated the clinical application and promotion of exercise rehabilitation strategies. Multidimensional analysis of exercise-regulated neural plasticity is the theoretical basis for elucidating the brain-protective mechanisms mediated by exercise and developing intervention strategies for neurological diseases. Thus,real-time analysis of different neural signals during active exercise is needed to study the health effects of exercise throughout the entire life cycle and enhance lifelong sports awareness. Therefore, this article will systematically summarize the innovative technological developments in motor neuroscience research, review the mechanisms of neural plasticity that exercise utilizes to protect the brain, and explore the role of exercise in the prevention and treatment of major neurodegenerative diseases. This aims to provide new ideas for future theoretical innovations and clinical applications in the field of exercise-induced brain protection.
2.CCTA based clinical value analysis of ΔCT-FFR in evaluating coronary artery function in patients with severe calcification
Kai WEI ; Xi WANG ; Bai HE ; Zi-Qiang ZHAO ; Wei ZHANG ; Jing JING ; Dong-Kai SHAN
Medical Journal of Chinese People's Liberation Army 2024;49(2):144-151
Objective To investigate the clinical value of coronary computed tomography angiography(CCTA)based CT derived fractional flow reserve(CT-FFR)and ΔCT-FFR in improving the diagnostic efficiency for coronary abnormal hemodynamics in patients with severe calcification.Methods We retrospectively analyzed the clinical data of coronary artery disease(CAD)patients who underwent CCTA,CT-FFR,invasive coronary angiography(ICA)and FFR during hospitalization from January 2018 to June 2019 in Chinese PLA General Hospital.Severe calcification was defined as coronary artery calcium score(CACS)≥100 on single vessel level.A total of 107 CAD patients with 149 coronary arteries were included in the present study.The enrolled coronary arteries were assigned to CACS≥100 group(n=56)and CACS<100 group(n=93).CT-FFR was performed on the deep FFR platform based on machine learning(ML)algorithms and ΔCT-FFR was defined as CT-FFR difference between proximal and distal to the coronary lesion.The correlation and consistency between CT-FFR and FFR values were analyzed by Pearson and Bland-Altman methods.We attempted to analyze the incremental value of ΔCT-FFR for coronary functional evaluation,especial for coronary arteries with severe calcification,regarding FFR≤0.8 as the diagnostic gold standard.Comparison of receiver operating characteristic curves(ROC)between different diagnostic methods was presented by Delong test.Results Pearson and Bland-Altman analyses showed appreciable correlation(CACS≥100 group,r=0.71,P<0.01;CACS<100 group,r=0.73,P<0.01)and consistency(CACS≥100 group,Mean=-0.01,P=0.25;CACS<100 group,Mean=0,P=0.96)between CT-FFR and FFR values in both groups.FFR(0.80±0.08 vs.0.84±0.09,P=0.004)and CT-FFR(0.81±0.06 vs.0.85±0.06,P<0.001)levels were significant lower in CACS≥100 group than those in CACS<100 group,while ΔCT-FFR(0.14±0.06 vs.0.09±0.06,P<0.001)levels were significant higher in CACS≥100 group.Moreover,the diagnostic efficiency of CT-FFR in CACS≥100 group was inferior to that in CACS<100 group[AUC=0.792(95%CI 0.663-0.889)vs.AUC=0.929(95%CI 0.856-0.972),P=0.04],while it achieved significant improvement after ΔCT-FFR adjustment[AUC=0.876(95%CI 0.760-0.949)vs.AUC=0.792(95%CI 0.663-0.889),P=0.02]and was similar to that in CACS<100 group(P=0.37).Conclusion For coronary arteries with severe calcification,CT-FFR demonstrated significant incremental value in improving the diagnostic efficiency of coronary abnormal hemodynamics after ΔCT-FFR adjustment.
3.Specific DNA barcodes screening, germplasm resource identification, and genetic diversity analysis of Platycodon grandiflorum
Xin WANG ; Yue SHI ; Jin-hui MAN ; Yu-ying HUANG ; Xiao-qin ZHANG ; Ke-lu AN ; Gao-jie HE ; Zi-qi LIU ; Fan-yuan GUAN ; Yu-yan ZHENG ; Xiao-hui WANG ; Sheng-li WEI
Acta Pharmaceutica Sinica 2024;59(1):243-252
Platycodonis Radix is the dry root of
4.Identification and quality evaluation of germplasm resources of commercial Acanthopanax senticosus based on DNA barcodes and HPLC
Shan-hu LIU ; Zhi-fei ZHANG ; Yu-ying HUANG ; Zi-qi LIU ; Wen-qin CHEN ; La-ha AMU ; Xin WANG ; Yue SHI ; Xiao-qin ZHANG ; Gao-jie HE ; Ke-lu AN ; Xiao-hui WANG ; Sheng-li WEI
Acta Pharmaceutica Sinica 2024;59(7):2171-2178
italic>Acanthopanax senticosus is one of the genuine regional herb in Northeast China. In this study, we identified the germplasm resources of commercial
5.Analysis of voriconazole-related hepatic dysfunction risk signals based on clinical application data
Ju-Ping YUN ; Zi-He WANG ; Wei LIU
The Chinese Journal of Clinical Pharmacology 2024;40(9):1350-1354
Objective To mine and conduct comparative analysis for hepatic dysfunction adverse events of voriconazole and other antifungal drugs,based on the Food and Drug Administration Adverse Event Reporting System(FAERS)database,and provide reference for clinical practice.Methods Data from January 2004 to March 2022 in FAERS were retrieved.We estimate the association between the hepatic dysfunction events and voriconazole using reporting odds ratio(ROR)for mining the adverse drug event report signals and compare voriconazole with the full database and other antifungal drugs.Results A total of 646 reports of hepatic dysfunction related to voriconazole as the primary suspect drug were collected totally.The median time to event of the hepatic dysfunction events was 8 d.The overall ROR 95%confidence interval(CI)for hepatic-related adverse drug events was 6.82(95%CI=6.26-7.42).Comparing to other antifungal drugs,voriconazole significantly increased the risk of hepatic dysfunction compared with fluconazole,isavuconazole and amphotericin B,with RORs of 2.19(95%CI=1.94-2.47),2.31(95%CI=1.66-3.22)and 1.26(95%CI=1.08-1.48).The top 10 adverse event signals are cholestasis,hepatic cytolysis,mixed liver injury,hepatitis cholestatic,blood alkaline phosphatase increased,γ-glutamyltransferase increased,hepatic function abnormal,hepatocellular injury,liver function test abnormal and hepatosplenomegaly,and all of them have great correlation with voriconazole(ROR>5).Conclusion Voriconazole is closely related to hepatic dysfunction,indicating that clinical attention should be paid to patients'hepatic function indicators during medication.Since the risk of hepatic dysfunction caused by voriconazole depends on several factors including the underlying disease of the patient and the exposure level of the drugs,close clinical and laboratory monitoring,including therapeutic drug monitoring,are essential to prevent or promptly recognize further deterioration of the hepatic function.
6.Au/Three-dimensional Graphene Hydrogel Modified Graphene Electrochemical Transistor for Highly Sensitive Detection of Dopamine
Ru-Ling WANG ; Zhi-Wei CAI ; Jun-Zi PAN ; Ru-Nan TAN ; Yun-Bin HE ; Gang CHANG
Chinese Journal of Analytical Chemistry 2024;52(9):1307-1315,中插5-中插10
Three-dimensional graphene hydrogel(3DGH)was successfully prepared through a hydrothermal method,followed by its composition with gold nanoparticles(AuNPs)to construct a highly sensitive Au/3DGH graphene electrochemical transistor(GECT)dopamine(DA)sensor.AuNPs are efficient electrocatalytic materials.However,their tendency to aggregate during electrodeposition hinds the practical application.The porous and interconnected network structure of 3DGH provided abundant attachment sites,effectively preventing AuNPs aggregation.By modifying the sensor's gate with Au/3DGH,the excellent electrocatalytic performance of Au/3DGH towards DA and the high sensitivity of GECT were utilized to achieve highly sensitive detection of DA.The sensor exhibited a low detection limit of 20 nmol/L and a linear range of 20 nmol/L to 2.5 mmol/L.Remarkably,the sensor showed high sensitivity,excellent selectivity and strong stability,and hold great potnetial in highly sensitive portable detection of DA in disease prevention and clinical monitoring.
7.Study on the Main Active Components and Network Pharmacological Mechanism of Bushen Huoxue Decoction in Promoting Osteoporotic Fracture Healing
Sheng-Hai LIU ; Zi-He WANG ; Meng-Wei WANG ; Bin WANG ; Ya-Mei LIU
Journal of Guangzhou University of Traditional Chinese Medicine 2024;41(7):1845-1850
Objective To investigate the main active components and pharmacological mechanism of Bushen Huoxue Decoction in the treatment of osteoporotic fractures by network pharmacology.Methods The chemical constituents of Bushen Huoxue Decoction were collected from the Traditional Chinese Medicine Systems Pharmacology Database and Analysis Platform(TCMSP).The disease targets of osteoporosis were collected through the DisGeNET database.The predictive targets of Bushen Huoxue Decoction in the treatment of osteoporosis were screened by Venn diagram.Through gene ontology(GO)function and Kyoto Encyclopedia of Genes and Genomes(KEGG)pathway enrichment analysis,the biological processes and signaling pathways of Bushen Huoxue Decoction in the treatment of osteoporotic fractures were preliminarily obtained.Cytoscape 3.9.1 software was used to construct the network diagram of Chinese medicinal components-disease targets-pathways.Through the analysis of topological parameters and the degree value as the investigation,the main active components of Bushen Huoxue Decoction in the treatment of osteoporotic fractures were obtained.The protein-protein interaction(PPI)network was constructed by online String 11.5 software,and the pharmacological mechanism of Bushen Huoxue Decoction in the treatment of osteoporotic fractures at the protein molecular level was obtained by topological parameter analysis.Results A total of 1 236 chemical components were screened out,including 72 predicted targets.It involves biological processes such as DNA transcription,translation,and even binding between enzymes,and intersects with KEGG signaling pathways such as diabetes,atherosclerosis and cancer.Conclusion Bushen Huoxue Decoction mainly through dehydrodiethylene glycol 4,Yangambin,Atropine,arachidonic acid,ellagic acid,stigmasterol,isorhamnetin and other major components acting on nuclear transcription factor p65,mitogen-activated protein kinase,estrogen receptor,tumor necrosis factor,cell tumor antigen and other protein molecules play a role in the promotion of osteoporotic fractures healing.
8.Application of optical genome mapping technology for the detection of chromosomal structural variations
Zhiqiang ZHANG ; Shujing HE ; Xiaolan LI ; Kuan CHENG ; Yue′e WEI ; Zi REN
Chinese Journal of Medical Genetics 2024;41(3):257-265
Objective:To assess the value of optical genome mapping (OGM) for the detection of chromosomal structural abnormalities including ring chromosomes, balanced translocations, and insertional translocations.Methods:Clinical data of four patients who underwent pre-implantation genetic testing concurrently with OGM and chromosomal microarray analysis at the Center of Reproductive Medicine of the Sixth Affiliated Hospital of Sun Yat-sen University from January to October 2022 due to chromosomal structural abnormalities were selected as the study subjects. Some of the results were verified by multi-color fluorescence in situ hybridization. Results:The OGM has successfully detected a balanced translocation and fine mapped the breakpoints in a patient. Among two patients with insertional translocations, OGM has provided more refined breakpoint locations than karyotyping analysis in a patient who had chromosome 3 inserted into chromosome 6 and determined the direction of the inserted fragment. However, OGM has failed to detect the chromosomal abnormalit in a patient with chromosome 8 inserted into the Y chromosome. It has also failed to detect circular signals in a patient with ring chromosome mosaicism.Conclusion:OGM has successfully detected chromosomal structural variations in the four patients and provided assistance for their diagnosis.
9.Performance test of high-flow nasal cannula oxygen therapy device at different altitudes
Chun-Wei HE ; Ya-Ting WANG ; Yi-Long ZHOU ; Hui WANG ; Zi-Yu FU ; De-Dong MA
Chinese Medical Equipment Journal 2024;45(6):49-58
Objective To investigate the performance of brands and types of high-flow nasal cnnula oxygen therapy(HFNC)devices at different altitudes.Methods Four different models of HFNC devices,including R-80S bi-level non-invasive ventilator integrated with HFNC device,HF-60A HFNC device,HFT-300 HFNC device and H-80A HFNC device,were connected with the gas flow meter,simularted head and QuickLung and then put into a low-pressure chamber.The flow rates of the HFNC devices were set to 10,15,20,25,30,35,40,45,50,55 and 60 L/min,and the simulated altitudes of the low-pressure chamber were set to 6 000,5 000,4 000,3 000,2 000,1 000 and 0 m.The actual output airway flow rates,airway pressure changes and trends of the four HFNC devices were recorded at different setting altitudes and flow rates.SPSS 25.0 software was used for statistical analysis.Results The actual output airway flow rates of the four HFNC devices showed an increasing trend as the altitude rose with the simulated altitude of 6 000 m and the setting flow rate kept constant,which increased slowly and even went to decrease when the altitude and flow rate exceeded some limits.The degree of changes in the flow rate with the increasing altitude varied,and there was no uniform pattern.With the rising of altitude,the actual output airway pressure of the four HFNC devices with the flow rate raning from 10 to 35 L/min also increased gradually,which showed a decreasing trend(turning point)after going up to some certain value when the flow rate exceeded 35 L/min,and the altitude where the turning point appeared was lowered as the flow rate increased.Conclusion The actual output airway flow rates and airway pressure during HFNC rise at a high-altitude environment,and generally considerations have to be taken on required airway pressure,patient comfort and the altitude of the patient's usual place of residence when setting the flow rates of the HFNC device.[Chinese Medical Equipment Journal,2024,45(6):49-58]
10.Effects of Compound Dihuang Granules on α-syn,VAPB,PTPIP51 on substantia nigra of 6-hydroxydopamine-induced Parkinson's disease model rats with Yin deficiency and wind syndrome
Guang-Jie SUN ; Xing-Ling WANG ; Zi-Wei LYU ; Jian-Cheng HE ; Jian-Qing LIANG
Chinese Pharmacological Bulletin 2024;40(6):1179-1186
Aim To observe the effects of Compound Dihuang Granules on α-syn,VAPB and PTPIP51 in the substantia nigra of Parkinson's disease(PD)rats with Yin deficiency and wind syndrome,and to explore the possible mechanisms of their actions.Methods The 6-hydroxydopamine-induced PD model of rats was constructed.The model rats were randomly divided into the model group,madopar group,CLD group,CMD group and CHD group,while the NC group did not re-ceive any treatment and the SO group was injected with ascorbic acid,with 13 rats in each group.The neurobe-havioral changes of the rats were observed,and the ex-pressions of α-syn,VAPB and PTPIP51 in the sub-stantia nigra were detected by Western blot,RT-PCR and Immunohistochemistry;the histopathological and morphological changes of the substantia nigra tissue were observed by HE staining,the changes of mito-chondrial ultrastructure in the substantia nigra cells were observed by transmission electron microscopy,and the changes of ATP content in substantia nigra tis-sue in each group were detected by ELISA.Results Compared with the NC and SO groups,rats in the model group showed that the number of rotational cir-cles and pole-climbing time increased,the expression of α-syn increased,the expression of VAPB and PTPIP 5 1 decreased,the number of neuronal cells decreased,the neuronal cells became crumpling,and mitochondrial swelling,disappearance of the mitochon-drial cristae,a larger distance between the ER-mito-chondrial contacts were observed;the ATP content de-creased.Compared with the model group,rats in Mado-par group and CLD group,CMD group and CHD group showed that the number of rotational circles and pole-climbing time decreased,the expression of α-syn de-creased,the expression of VAPB and PTPIP51 in-creased,the degree of neuronal damage was reduced,the morphology of mitochondria was improved and the content of ATP increased,showing the change of the difference in quantitative efficacy;the relative efficacy of Madopar group and CHD group was better,and there was no statistically significant difference.Con-clusions Compound Dihuang granules attenuate the behavioral symptoms in PD rats and may play a thera-peutic role in PD by down-regulating the expression ofα-syn,up-regulating the expression of PTPIP51 and VAPB and improving mitochondrial function.

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