1.The Role and Mechanism of Lactate Produced by Exercise in The Nervous System
Jing MA ; Shu-Min BO ; Yang CHENG
Progress in Biochemistry and Biophysics 2025;52(2):348-357
Lactate, with a chemical formula of C3H6O3, is an intermediate product of glucose metabolism in the body and a raw material for hepatic gluconeogenesis. Under physiological resting conditions, the body mainly relies on aerobic oxidation of sugar and fat for energy supply, so the blood lactate concentration is lower. However, during exercise, the enhanced glycolysis in skeletal muscles leads to the significant release of lactate into the bloodstream, causing a marked increase in blood lactate concentration. Traditionally, lactate has been regarded as a metabolic waste product of glycolysis and a contributor to exercise-induced fatigue. Nevertheless, recent studies have revealed that, in humans, lactate is a major vehicle for carbohydrate carbon distribution and metabolism, serving not only as an energy substance alongside glucose but also as a vital component in various biological pathways involved in cardiac energetics, muscle adaptation, brain function, growth and development, and inflammation therapy. Two primary pathways can elevate lactate levels in neurons during exercise. One is peripheral skeletal muscle-derived lactate, which can enter the bloodstream and cross the blood-brain barrier into the brain with the assistance of monocarboxylate transporters (MCTs) from the solute carrier family 16 (SLC16). The other is the central brain-derived pathway. During exercise, neuronal activity is enhanced, promoting the secretion of neuroactive substances such as glutamate, norepinephrine, and serotonin in the brain. This activates astrocytes to break down glycogen into lactate and stimulates glutamate from the presynaptic terminal into the synaptic cleft. It upregulates the glucose transport protein-1 (GLUT-1) expression, allowing astrocytes to convert glucose into lactate through glycolysis. The lactate is produced via peripheral pathways and central pathways during exercise are transported by astrocyte membrane monocarboxylate transporters MCT1 and MCT4 to the extracellular space, where neurons take it up through neuronal cell membrane MCT2. The lactate in neurons can serve as an alternative energy source of glucose for neuronal functional activities, meeting the increased energy demands of synaptic activity during exercise, and maintaining energy balance and normal physiological function in the brain. Additionally, acting as a signaling molecule lactate can enhance synaptic plasticity through the SIRT1/PGC-1α/FNDC5 and ERK1/2 signaling pathways, lactate can promote angiogenesis by upregulating VEGF-A expression through the PI3K/Akt and ERK1/2 signaling pathways, stimulate neurogenesis via the Akt/PKB signaling pathway, and reduce neuroinflammation through activation of the “lactate timer”. Overall, lactate contributes to the protection of neurons, the promotion of learning and memory, the enhancement of synaptic plasticity, and the reduction of neuroinflammation in the nervous system. While lactate may serve as a potential mediator for information exchange between the peripheral and central nervous systems during exercise, further experimental research is needed to elucidate its action mechanisms in the nervous system. In addition, future studies should utilize advanced neurophysiological and molecular biology techniques to uncover the importance of lactate in maintaining brain function and preventing neurological diseases. Accordingly, this article first reviews the historical research on lactate, then summarizes the metabolic characteristics and neuronal sources of lactate, and finally explores the role and mechanisms of exercise-induced lactate in the nervous system, aiming to provide new perspectives and targets for understanding the mechanisms underlying exercise promotion of brain health.
2.Manufacture and mechanical property on zirconia abutments with a titanium base in dental implant restoration
Huan WANG ; Jing LU ; Ying LI ; Maohua MENG ; Jiayu SHU ; Yuncai LUO ; Wenjie LI ; Qiang DONG
Chinese Journal of Tissue Engineering Research 2025;29(10):2171-2177
BACKGROUND:With the development of computer-aided design and computer-aided manufacturing technology,zirconia abutments with a titanium base are widely used in clinic due to its good application advantages,but there are still some problems and a lack of consensus design standards. OBJECTIVE:To review the fabrication methods of Ti-base zirconia abutment,and the effect of abutment connection,emergence design,abutment angle,and bonding on mechanical properties of Ti-base zirconia abutment. METHODS:Relevant literature published from 2010 to 2023 was searched in CNKI and PubMed databases with the search terms"zirconia abutment,titanium base"in Chinese and English,respectively.The search time limit was extended for some classical literature.The relevant literature was obtained through inclusion and exclusion criteria,and 57 eligible documents were included for review. RESULTS AND CONCLUSION:It is recommended that clinicians try to select antirotational titanium bases or rotational titanium bases with a Morse taper connection.Implants should be placed in the correct axial angulation of not more than 15° or with an inclination to the palatal side when using angled zirconia abutments.When a≥30° labial inclination is followed for implant placement,the bite force must be decreased effectively to reduce the risk of mechanical and biological complications of implants,abutments,and prostheses.Ti-base zirconia abutments with a higher gingival height should be selected,and its restorative angle should not exceed 40°.Multilink Hybrid Abutment could be the first choice for extraoral bonding of zirconia abutment to titanium bases.
3.The effect of rutaecarpine on improving fatty liver and osteoporosis in MAFLD mice
Yu-hao ZHANG ; Yi-ning LI ; Xin-hai JIANG ; Wei-zhi WANG ; Shun-wang LI ; Ren SHENG ; Li-juan LEI ; Yu-yan ZHANG ; Jing-rui WANG ; Xin-wei WEI ; Yan-ni XU ; Yan LIN ; Lin TANG ; Shu-yi SI
Acta Pharmaceutica Sinica 2025;60(1):141-149
Metabolic-associated fatty liver disease (MAFLD) and osteoporosis (OP) are two very common metabolic diseases. A growing body of experimental evidence supports a pathophysiological link between MAFLD and OP. MAFLD is often associated with the development of OP. Rutaecarpine (RUT) is one of the main active components of Chinese medicine Euodiae Fructus. Our previous studies have demonstrated that RUT has lipid-lowering, anti-inflammatory and anti-atherosclerotic effects, and can improve the OP of rats. However, whether RUT can improve both fatty liver and OP symptoms of MAFLD mice at the same time remains to be investigated. In this study, we used C57BL/6 mice fed a high-fat diet (HFD) for 4 months to construct a MAFLD model, and gave the mice a low dose (5 mg·kg-1) and a high dose (15 mg·kg-1) of RUT by gavage for 4 weeks. The effects of RUT on liver steatosis and bone metabolism were then evaluated at the end of the experiment [this experiment was approved by the Experimental Animal Ethics Committee of Institute of Medicinal Biotechnology, Chinese Academy of Medical Sciences (approval number: IMB-20190124D303)]. The results showed that RUT treatment significantly reduced hepatic steatosis and lipid accumulation, and significantly reduced bone loss and promoted bone formation. In summary, this study shows that RUT has an effect of improving fatty liver and OP in MAFLD mice.
4.Exercise Regulates Structural Plasticity and Neurogenesis of Hippocampal Neurons and Improves Memory Impairment in High-fat Diet-induced Obese Mice
Meng-Si YAN ; Lin-Jie SHU ; Chao-Ge WANG ; Ran CHENG ; Lian-Wei MU ; Jing-Wen LIAO
Progress in Biochemistry and Biophysics 2025;52(4):995-1007
ObjectiveObesity has been identified as one of the most important risk factors for cognitive dysfunction. Physical exercise can ameliorate learning and memory deficits by reversing synaptic plasticity in the hippocampus and cortex in diseases such as Alzheimer’s disease. In this study, we aimed to determine whether 8 weeks of treadmill exercise could alleviate hippocampus-dependent memory impairment in high-fat diet-induced obese mice and investigate the potential mechanisms involved. MethodsA total of sixty 6-week-old male C57BL/6 mice, weighing between 20-30 g, were randomly assigned to 3 distinct groups, each consisting of 20 mice. The groups were designated as follows: control (CON), high-fat diet (HFD), and high-fat diet with exercise (HFD-Ex). Prior to the initiation of the treadmill exercise protocol, the HFD and HFD-Ex groups were fed a high-fat diet (60% fat by kcal) for 20 weeks. The mice in the HFD-Ex group underwent treadmill exercise at a speed of 8 m/min for the first 10 min, followed by 12 m/min for the subsequent 50 min, totally 60 min of exercise at a 0° slope, 5 d per week, for 8 weeks. We employed Y-maze and novel object recognition tests to assess hippocampus-dependent memory and utilized immunofluorescence, Western blot, Golgi staining, and ELISA to analyze axon length, dendritic complexity, number of spines, the expression of c-fos, doublecortin (DCX), postsynaptic density-95 (PSD95), synaptophysin (Syn), interleukin-1β (IL-1β), and the number of major histocompatibility complex II (MHC-II) positive cells. ResultsMice with HFD-induced obesity exhibit hippocampus-dependent memory impairment, and treadmill exercise can prevent memory decline in these mice. The expression of DCX was significantly decreased in the HFD-induced obese mice compared to the control group (P<0.001). Treadmill exercise increased the expression of c-fos (P<0.001) and DCX (P=0.001) in the hippocampus of the HFD-induced obese mice. The axon length (P<0.001), dendritic complexity (P<0.001), the number of spines (P<0.001) and the expression of PSD95 (P<0.001) in the hippocampus were significantly decreased in the HFD-induced obese mice compared to the control group. Treadmill exercise increased the axon length (P=0.002), dendritic complexity(P<0.001), the number of spines (P<0.001) and the expression of PSD95 (P=0.001) of the hippocampus in the HFD-induced obese mice. Our study found a significant increase in MHC-II positive cells (P<0.001) and the concentration of IL-1β (P<0.001) in the hippocampus of HFD-induced obese mice compared to the control group. Treadmill exercise was found to reduce the number of MHC-II positive cells (P<0.001) and the concentration of IL-1β (P<0.001) in the hippocampus of obese mice induced by a HFD. ConclusionTreadmill exercise led to enhanced neurogenesis and neuroplasticity by increasing the axon length, dendritic complexity, dendritic spine numbers, and the expression of PSD95 and DCX, decreasing the number of MHC-II positive cells and neuroinflammation in HFD-induced obese mice. Therefore, we speculate that exercise may serve as a non-pharmacologic method that protects against HFD-induced hippocampus-dependent memory dysfunction by enhancing neuroplasticity and neurogenesis in the hippocampus of obese mice.
5.Research progress of Faricimab in the treatment of macular edema associated with retinal vascular diseases
Xinyi HOU ; Haoran WANG ; Chunhua DAI ; Jing ZHANG ; Meng XIN ; Zhixin GUAN ; Shu LIU
International Eye Science 2025;25(8):1267-1273
Intravitreal injection of anti-vascular endothelial growth factor(VEGF)agents has become the primary treatment for macular edema associated with retinal vascular disease such as diabetic retinopathy and retinal vein occlusion, but there are limitations such as variable treatment efficacy and insufficient durability of therapeutic effects. As the first bispecific antibody applied in ophthalmic treatment, Faricimab achieves favorable outcomes by simultaneously targeting both VEGF-A and angiopoietin-2(Ang-2)pathways. Based on evidence from recent clinical trials and real-world studies, this article reviews the research progress on Faricimab for the treatment of diabetic macular edema(DME), retinal vein occlusion-associated macular edema(RVO-ME)and refractory macular edema compared to the therapeutic effects of other agents. Additionally, based on Faricimab's safety characteristics and future potential, its therapeutic prospects for macular edema associated with retinal vascular diseases are discussed. This review aims to provide evidence-based references for optimizing clinical treatment strategies, thereby contributing to mitigating the risk of vision loss due to macular edema.
6.Impact of rigid container material type and loading volume on the sterilization of thoracoscopic instruments
Xue'e FANG ; Yanjun MAO ; Qiuping ZHU ; Yanni CAI ; Jing SHU ; Guifen ZHANG ; Yichun JIN ; Minye TANG ; Ying TAO ; Huiting HU
Shanghai Journal of Preventive Medicine 2025;37(8):697-699
ObjectiveTo explore the impacts of material type and loading volume of rigid containers on the hydrogen peroxide low temperature plasma sterilization of thoracoscopic instruments, to identify the best rigid containers and loading volume of thoracoscopic instruments. MethodsThoracoscopic instruments sterilized by STERRAD® 100NX hydrogen peroxide low temperature plasma in Shanghai Pulmonary Hospital affiliated to Tongji University from August to September 2024 were selected as the research items. According to the material of rigid containers, the instruments were divided into polyethylene case group (A), stainless steel case group (B) and silicone resin case group (C). In terms of the loading volume, the rigid containers were divided into (loading capacity <80%) groups of 8, 10 and 12 instruments. The results of physical monitoring, the first type of chemical indicator card monitoring, and the five types of card luminal chemical process challenge device (PCD) monitoring of the 9 groups of A8, A10, A12, B8, B10, B12, C8, C10 and C12 were compared and evaluated. ResultsCompared to A8, A10 A12, C8, C10 or C12 groups, the thoracoscope instruments in the stainless steel containers in B8, B10 or B12 group had higher hydrogen peroxide concentrations and shorter elapsed time in the pressure check phases 1 and phases 2, with the differences statistically significant (P<0.05), followed by the silicone resin case group and the polyethylene case group. The nine groups of physical parameter monitoring, the first type of chemical indicator monitoring, and the five types of chemical PCD monitoring for lumen sterilization achieved 100% qualification rates, and there were no significant differences in the qualified rates of sterilization among the 9 groups (P>0.05). ConclusionWhen using hydrogen peroxide low temperature plasma to sterilize thoracoscopic instruments, it is recommended to use stainless steel or silicone resin rigid containers with a controlled loading capacity (≤12) to ensure optimal sterilization quality.
7.Current status of cognition and skin care behavior in adolescent patients with acne: A survey in China.
Jing TIAN ; Hong SHU ; Qiufang QIAN ; Zhong SHEN ; Chunyu ZHAO ; Li SONG ; Ping LI ; Xiuping HAN ; Hua QIAN ; Jinping CHEN ; Hua WANG ; Lin MA ; Yuan LIANG
Chinese Medical Journal 2024;137(4):476-477
8.Discussion of the methodology and implementation steps for assessing the causality of adverse event
Hong FANG ; Shuo-Peng JIA ; Hai-Xue WANG ; Xiao-Jing PEI ; Min LIU ; An-Qi YU ; Ling-Yun ZHOU ; Fang-Fang SHI ; Shu-Jie LU ; Shu-Hang WANG ; Yue YU ; Dan-Dan CUI ; Yu TANG ; Ning LI ; Ze-Huai WEN
The Chinese Journal of Clinical Pharmacology 2024;40(2):299-304
The assessment of adverse drug events is an important basis for clinical safety evaluation and post-marketing risk control of drugs,and its causality assessment is gaining increasing attention.The existing methods for assessing the causal relationship between drugs and the occurrence of adverse reactions can be broadly classified into three categories:global introspective methods,standardized methods,and probabilistic methods.At present,there is no systematic introduction of the operational details of the various methods in the domestic literature.This paper compares representative causality assessment methods in terms of definition and concept,methodological steps,industry evaluation and advantages and disadvantages,clarifies the basic process of determining the causality of adverse drug reactions,and discusses how to further improve the adverse drug reaction monitoring and evaluation system,with a view to providing a reference for drug development and pharmacovigilance work in China.
9.Clinical trial of tislelizumab combined with chemotherapy in the treatment of patients with stage Ⅲb-Ⅳ non-small cell lung cancer
Xiao-Xue LI ; Yi ZHANG ; Shu-Yang YAO ; Jing-Ying NONG
The Chinese Journal of Clinical Pharmacology 2024;40(3):335-339
Objective To analyze the effect of tislelizumab combined with chemotherapy in the treatment of stage Ⅲb-Ⅳ non-small cell lung cancer(NSCLC)and its influence on T lymphocyte immunity and survival prognosis.Methods Patients with NSCLC were divided into control group and treatment group according to different treatment methods.The control group was treated with platinum-containing dual-drug combined chemotherapy regimen(PC regimen:intravenous drip of pemetrexed 500 mg·m-2 on the 1st day and intravenous drip of carboplatin with area under plasma concentration-time curve(AUC)=5 mg·mL-1·min-1 on the 1st day;TP regimen:intravenous drip of taxol 135 mg·m-2 on the 1st day,and intravenous drip of carboplatin with AUC=5 mg·mL-1·min-1 on the 1st day to 3rd day).The treatment group was given tislelizumab 200 mg intravenously once every 3 weeks on the basis of the control group.Both groups were treated for 2 cycles by taking 3 weeks as 1 treatment cycle.The clinical efficacy,serum tumor markers levels,T lymphocyte immune function,progression-free survival(PFS)and overall survival(OS)and occurrence of adverse drug reactions during treatment were compared between the two groups.Results There were 40 cases in control group and 40 cases in treatment group.After treatment,the total effective rates in control group and treatment group were 40.00%(16 cases/40 cases)and 62.50%(25 cases/40 cases),the disease control rates were 70.00%(28 cases/40 cases)and 90.00%(36 cases/40 cases),carcinoembryonic antigen(CEA)levels were(9.21±2.03)and(5.42±1.36)ng·mL-1,carbohydrate antigen 125(CA125)levels were(72.53±8.16)and(31.95±5.08)U·mL-1,carbohydrate antigen 19-9(CA19-9)levels were(25.79±3.31)and(10.38±2.04)U·mL-1,cytokeratin19 fragment antigen 21-1(CYFRA21-1)levels were(6.47±1.34)and(4.26±0.91)ng·mL-1,CD3+levels were(54.36±5.81)%and(61.85±4.96)%,CD4+levels were(31.28±2.93)%and(43.08±3.15)%,CD4+/CD8+were 1.43±0.40 and 1.91±0.46,survival rates were 47.37%(18 cases/38 cases)and 67.57%(25 cases/37 cases),PFS were 7.73 months(95%CI:6.42-9.03)and 9.75 months(95%CI:8.68-10.82),and OS were 8.96 months(95%CI:7.94-9.97)and 10.52 months(95%CI:9.78-11.27)respectively(all P<0.05).There were no statistically significant differences in the incidence of gastrointestinal reactions,liver dysfunction,bone marrow suppression,hypothyroidism and non-infectious pneumonia between both groups(all P>0.05).Conclusion Tislelizumab combined with chemotherapy has a good effect in the treatment of stage Ⅲb-Ⅳ NSCLC,and it can effectively reduce the levels of serum tumor markers,improve the T lymphocyte immune function,and prolong the survival time of patients,with good safety.
10.Effects of sulforaphane on endothelin-1-induced proliferation in rat vascular smooth muscle cells
Chen-Jing WANG ; Shu-Yan PEI ; Xiao-Kun WANG ; Feng SUN ; Zhong GUO
The Chinese Journal of Clinical Pharmacology 2024;40(3):363-367
Objective To investigate the effects and the mechanisms of sulforaphane(SFN)on endothelin-1(ET-1)-induced proliferation in rat vascular smooth muscle cell(VSMC).Methods Rat VSMC were cultured by using the modified tissue explant technique in vitro and were randomly divided into control group(normal culture),model group(treated with 0.1 μmol·L-1 ET-1)and experimental-L,-M,-H groups(treated with 5,10,20 SFN+0.1 μmol·L-1 ET-1).The survival rate of VSMC were measured by methyl thiazolyl tetrazolium.The proliferation and apoptosis related genes in mRNA level in VSMC were respectively examined with real-time quantitative polymerase chain reaction;the relative fluorescence intensity of reactive oxygen species(ROS)in VSMC were measured by fluorescent probe 2',7'-dichlorodihydrofluorescein diacetate;the protein expression of B-cell lymphoma-2(Bel-2),cysteinyl aspartate-specific proteinase-3(caspase-3),p38 mitogen-activated protein kinases(p38MAPK),phosphorylated p38 mitogen-activated protein kinases(p-p38MAPK),and p53 in VSMC were investigated by Western blot.Results The proliferation activities of the control group,model group,experimental-L,-M,-H groups were 0.27±0.02,0.50±0.04,0.40±0.03,0.38±0.03 and 0.34±0.03;the expression levels of Bcl-2 mRNA were 1.57±0.28,1.00±0.00,0.87±0.05,0.75±0.08 and 0.41±0.18;the expression levels of caspase-3 mRNA were 0.84±0.10,1.00±0.00,1.33±0.10,1.61±0.15 and 1.83±0.16;the relative fluorescence intensities of ROS in VSMC were 6.05±1.50,31.45±3.12,30.03±1.85,18.39±5.62 and 17.18±1.97;the relative expression levels of Bel-2 protein were 0.65±0.02,0.60±0.02,0.49±0.02,0.48±0.03 and 0.49±0.01;the relative expression levels of caspase-3 protein were 0.03±0.00,0.25±0.01,0.42±0.01,0.46±0.02 and 0.64±0.03;the protein expression ratios of p-p38MAPK/p38MAPK were 0.97±0.05,1.44±0.04,1.62±0.10,2.18±0.05 and 2.70±0.05;the relative expression levels of p53 protein were 0.20±0.01,0.30±0.01,0.34±0.02,0.37±0.01 and 0.42±0.01 respectively.There were statistically significant differences in the above indicators between model group and control group,between model group and experimental-M,-H groups(P<0.05,P<0.01).Conclusion These demonstrate that SFN may inhibit proliferation and prompt apoptosis in ET-1-stimulated VSMC by anti-oxidant and activating p38MAPK and p53-depended apoptosis signal pathway.

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