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mechanism

mechanism的相关文献在1989年到2023年内共计726篇,主要集中在肿瘤学、化学、金属学与金属工艺 等领域,其中期刊论文723篇、会议论文3篇、相关期刊250种,包括中国科学、中国科学、中南大学学报等; 相关会议3种,包括第五届全国博士生会议暨环境科学与工程新理论、新技术学术研讨会、第三届国际信息技术与管理科学学术研讨会、第七届海峡两岸新型炭材料学术研讨会等;mechanism的相关文献由2333位作者贡献,包括陈运泰、Jiamin Jin、吴忠良等。

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论文:3 占比:0.41%

总计:726篇

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mechanism

-研究学者

  • 陈运泰
  • Jiamin Jin
  • 吴忠良
  • CHEN
  • G. P. Malik
  • LI
  • Zou Guo-lin
  • 刁桂苓
  • 许越
  • 黄伯云
  • 期刊论文
  • 会议论文

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    • Qi Tian; Sheng Liu; Shou-Meng Han; Wei Zhang; Xian-Yao Qin; Jun-Hui Chen; Cheng-Li Liu; Yu-Jia Guo; Ming-Chang Li
    • 摘要: Subarachnoid hemorrhage(SAH)is a dominant cause of death and disability wo rldwide.A sharp increase in intracranial pressure after SAH leads to a reduction in cerebral perfusion and insufficient blood supply for neuro ns,which subsequently promotes a series of pathophysiological responses leading to neuronal death.Many previous experimental studies have reported that excitotoxicity,mitochondrial death pathways,the release of free radicals,protein misfolding,apoptosis,nec rosis,autophagy,and inflammation are involved solely or in combination in this disorder.Among them,irreversible neuronal apoptosis plays a key role in both short-and long-term prognoses after SAH.Neuronal apoptosis occurs through multiple pathways including extrinsic,mitochondrial,endoplasmic reticulum,p53 and oxidative stress.Meanwhile,a large number of blood contents enter the subarachnoid space after SAH,and the secondary metabolites,including oxygenated hemoglo bin and heme,further aggravate the destruction of the blood-brain barrier and vasogenic and cytotoxic brain edema,causing early brain injury and delayed cerebral ischemia,and ultimately increasing neuronal apoptosis.Even there is no clear and effective therapeutic strategy for SAH thus far,but by understanding apoptosis,we might excavate new ideas and approaches,as targeting the upstream and downstream molecules of apoptosis-related pathways shows promise in the treatment of SAH.In this review,we summarize the existing evidence on molecules and related drugs or molecules involved in the apoptotic pathway after SAH,which provides a possible target or new strategy for the treatment of SAH.
    • Yu Kang; Rui Zhu; Shuang Li; Kun-Peng Qin; Hao Tang; Wen-Shan Shan; Zong-Sheng Yin
    • 摘要: Ferroptosis is one of the critical pathological events in spinal cord injury.Erythropoietin has been reported to improve the recovery of spinal cord injury.However,whether ferroptosis is involved in the neuroprotective effects of erythropoietin on spinal cord injury has not been examined.In this study,we established rat models of spinal cord injury by modified Allen’s method and intraperitoneally administered 1000 and 5000 IU/kg erythropoietin once a week for 2 successive weeks.Both low and high doses of erythropoietin promoted recovery of hindlimb function,and the high dose of erythropoietin led to better outcome.High dose of erythropoietin exhibited a stronger suppressive effect on ferroptosis relative to the low dose of erythropoietin.The effects of erythropoietin on inhibiting ferroptosis-related protein expression and restoring mitochondrial morphology were similar to those of Fer-1(a ferroptosis suppressor),and the effects of erythropoietin were largely diminished by RSL3(ferroptosis activator).In vitro experiments showed that erythropoietin inhibited RSL3-induced ferroptosis in PC12 cells and increased the expression of xCT and Gpx4.This suggests that xCT and Gpx4 are involved in the neuroprotective effects of erythropoietin on spinal cord injury.Our findings reveal the underlying anti-ferroptosis role of erythropoietin and provide a potential therapeutic strategy for treating spinal cord injury.
    • Song Wang; Lin Yang; Ajiao Hou; Songtao Liu; Liu Yang; Haixue Kuang; Hai Jiang
    • 摘要: Lonicerae japonicae Flos(LF)is a kind of healthcare food with hepatoprotective function.This study was designed to explore the spectrum-effect relationships between UPLC fingerprints and the hepatoprotective effects of LF.Fingerprints of ten batches of LF were established by UPLC-PDA.The inhibitory levels of AST and ALT were used as pharmacological indexes,and secoxyloganin,isochlorogenic acid A and isochlorogenic acid C were screened as hepatoprotective active compounds by grey relational analysis(GRA)and partial least squares regression analysis(PLSR).Caspase-3 was obtained by network pharmacology as a key target of hepatoprotective active compounds.Molecular docking is used to explore the interaction between small molecules and proteins.This work provided a general model of the combination of UPLC-PDA and hepatoprotective effect to study the spectrum-effect relationship of LF,which can be used to considerable methods and insight for the fundamental research of the material basis of similar healthcare food.
    • Shi-Cheng Lin; Dian-Na Liu; Xiang-Nan Zhou; Yao-Xue Zhuang; Tian-Yu Liang; Xiao-Fan Wang; Kai-Wen Hu; Jing-Yi Sun; Quan-Wang Li
    • 摘要: Objective:To study the regulatory effect of cryoablation on MAPK/ERK signaling pathway in mice with lung adenocarcinoma.Methods:Lewis mouse lung adenocarcinoma cell line was used to establish subcutaneous transplanted tumor model in C57BL/6 mice.Ten mice were randomly divided into two groups:sham operation group and cryoablation group,with 5 mice in each group.The cryoablation group was treated with double circulation-rewarming ablation,and the sham operation group was treated with incision and suture at the transplanted tumor.The tumor tissues were taken 14 days after operation.Detect the effect of cryoablation on MAPK/ERK pathway related proteins by Western blot,such as KRAS,RAF1,MEK1,ERK1/2,P-RAF1,P-MEK1,P-ERK1/2.The expression of KRAS gene was further verified by qRt-PCR.Results:Compared with the sham operation group,the phosphorylated proteins P-RAF1,P-MEK1 and P-ERK1/2 in tumor tissue after cryoablation were decreased(P<0.05),and the key molecule KRAS in MAPK/ERK pathway was decreased in protein and gene expression(P<0.05).Conclusion:Cryoablation can negatively regulate MAPK/ERK signaling pathway by down-regulating KRas expression.
    • Yuxiao Meng; Xiaojun Li; Xiaoting Wang; Lu Zhang; Jiaqi Guan
    • 摘要: Background:We aimed to reveal the mechanism of functional constipation in the treatment of Atractylodes macrocephala Koidz.(AMK)and Paeonia lactiflora Pall.(PLP).Methods:The main active ingredients of AMK and PLP were screened by the Traditional Chinese Medicine Systems Pharmacology(TCMSP)platform.A database of functional constipation targets was established by GeneCard and OMIM.An“ingredient-target”network map was constructed with Cytoscape software(version 3.7.1),and molecular docking analysis was performed on the components and genes with the highest scores.The rats in the normal group were given saline,and those in the other groups were given 10 mg/kg diphenoxylate once a day for 14 days.The serum and intestinal tissue levels of adenosine monophosphate(cAMP),protein kinase A(PKA),and adenylyl cyclase(AC)of the rats and aquaporin(AQP)1,AQP3,and AQP8 were measured.Results:AMK and PLP had a significant role in the regulation of targets in the treatment of functional constipation.After treatment with AMK,PLP,or mosapride,the serum and intestinal tissue levels of AC,cAMP,and PKA were significantly downregulated.Groups receiving AMK and PLP or mosapride exhibited a reduction in the level of AQP1,AQP3,and AQP8 to varying degrees.Conclusion:Molecular docking analysis revealed that AMK and PLP had a significant role in the regulation of targets in the treatment of functional constipation.Studies have confirmed that AMK and PLP can also affect AC,cAMP,and PKA.AC,cAMP,and PKA in model rats were significantly downregulated.AQP expression is closely related to AC,cAMP,and PKA.AMK and PLP can reduce the expression of AQP1,AQP3,and AQP9 in the colon of constipated rats.
    • Hongwei Huang; Tianyi Ma; Antonio Tricoli
    • 摘要: Development of renewable fuels,such as hydrogen,liquid ammonia,is of great significance for relieving the pressure of anthropogenic CO_(2)emissions and depletion of traditional fossil energy sources.For the past two decades,heterogeneous catalysis has received increased attention as an efficient route for the production of renewable fuels.Typical heterogeneous catalytic reactions include photocatalysis,electrocatalysis,photoelectrocatalysis,thermalcatalysis,photothermalcatalysis as well as some emerging catalytic pathways,e.g.piezocatalysis.Each catalytic reaction has its own advantages.For instance,electrocatalysis has the characteristic of high efficiency,photocatalysis is featured by the sustainability and low cost,thermalcatalysis generally shows a high practicability and scalability for industrialization,and coupled‐catalysis can integrate the merits of diversified catalytic reactions,achieving a more efficient catalytic performance for production of renewable fuels.Developing new catalytic reactions is anticipated to enrich the selection of possible catalytic system,and to advance the understanding of heterogeneous catalytic mechanism.
    • Siwen Ouyang; Weiming Kang
    • 摘要: The incidence and mortality rates of gastrointestinal(GI)cancer remain high.Despite constant improvements in diagnostic and therapeutic techniques,the early diagnosis,mid-and late-stage treatment,drug tolerance,and cancer recurrence and metastasis in GI cancer remain challenging.In this review article we summarize the recent research advance in the roles of keratins in GI cancer,with the hope that they will become efficient biomarkers for the prediction,diagnosis,or treatment of these malignancies.
    • Shu Wang; Yu-Guang Guan; Yan-Hua Zhu; Min-Zhong Wang
    • 摘要: As a common and serious psychiatric disorder,depression significantly affects psychosocial functioning and quality of life.However,the mechanism of depression is still enigmatic and perplexing,which limits its precise and effective therapeutic methods.Recent studies demonstrated that neuroinflammation activation plays an important role in the pathophysiology of depression.In this respect,high mobility group box 1(HMGB1)may be a possible signaling inducer of neuroinflammation and can be a potential mechanistic and therapeutic target for depression.Herein,we review recent studies on the mechanistic and therapeutic targets of HMGB1 in depression and propose potential perspectives on this topic.
    • Reza Rastmanes
    • 摘要: I would like to add new findings in support of a novel hypothesis stating that malaria infection may protect against COVID-19[1-3].As this might facilitate understanding the underlying mechanism behind this association,the discovery of better preventive measures and therapeutic agents for the management of this terrible pandemic.
    • Xinyu Chen; Shuo Shi; Ximei Han; Min Li; Ying Nian; Jing Sun; Wentao Zhang; Tianli Yue; Jianlong Wang
    • 摘要: Adsorbents with simple preparation and high surface area have become increasingly prevalent for the removal of organic contaminants.Herein,a carbon nanoplate codoped by Co and N elements with abundant ordered mesoporous(Co/N-MCs)was applied as an adsorbent for tetracycline removal.Taking integrated advantages of ordered mesopores on carbon-based structures and N-doping inducing the strengthenedπ–πdispersion and generation of pyridinic N,as well as cobaltic nanoparticles embedded in carbon nanoplates,the Co/N-MCs was tailored for high efficiently absorbing tetracycline viaπ-πinteraction,Lewis acid-base interaction,metal complexation and electrostatic attraction.The Co/N-MCs had the advantages of high surface area,porous structure,plenty adsorption sites,and easy separation.As such,the as-prepared Co/N-MCs adsorbents significantly enhanced tetracycline removal performance with a maximum adsorption capacity of 344.83 mg·g^(-1) at pH 6 and good reusability,which was finally applied to removal tetracycline from tap water sample.Furthermore,the adsorption process towards tetracycline hydrochloride could be well attributed to the pseudo-second-order kinetic and Langmuir isotherm models.Compared with traditional carbon-based adsorbents,it owns a simpler synthesis method and a higher adsorption capacity,as well as it is a promising candidate for water purification.
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