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17~45岁肥胖门诊患者的6分钟步行试验距离参考方程研究
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作者 张家鸣 王欣宇 +1 位作者 王道荣 孙晓芳 《中国全科医学》 CAS 北大核心 2025年第3期330-334,345,共6页
背景 目前6分钟步行试验(6MWT)已经被广泛用于评估肥胖人群的运动能力,并为制订干预措施提供了参考依据。国外已有研究提出了其他人群的6MWT距离参考方程,但中国17~45岁且BMI≥30 kg/m^(2)肥胖受试者的6MWT距离参考方程研究较少。目的 ... 背景 目前6分钟步行试验(6MWT)已经被广泛用于评估肥胖人群的运动能力,并为制订干预措施提供了参考依据。国外已有研究提出了其他人群的6MWT距离参考方程,但中国17~45岁且BMI≥30 kg/m^(2)肥胖受试者的6MWT距离参考方程研究较少。目的 为17~45岁门诊肥胖受试者制订6MWT距离参考方程,并评估其影响因素。方法 根据美国胸科学会指南,前瞻性选取2022年6月—2023年9月于江苏省苏北人民医院内分泌科肥胖门诊部就诊的143名年龄17~45岁且BMI≥30 kg/m^(2)的成年人(71名男性和72名女性),进行人体测量和6MWT。采用逐步多元回归模型建立6MWT距离参考方程,将新建立的6MWT距离参考方程与现有的预测方程进行比较。结果 143名受试者的平均6MWT距离为(506.1±49.8)m,其中男性平均6MWT距离为(515.7±50.1)m,大于女性的平均6MWT距离(496.6±47.9)m(P<0.05)。在年龄段17~23岁、24~30岁、31~37岁以及38~45岁中,男性与女性6MWT距离比较,差异均有统计学意义(P<0.05)。男性受试者的体质量、BMI、最大心率(HR_(max))、心率差(ΔHR)、腰围、舒张压差(ΔDBP)、Borg量表评分差(ΔBorg)与6MWT距离相关(P<0.05),女性受试者的体质量、BMI、腰围与6MWT距离相关(P<0.05)。以步进的方法将潜在的影响因素纳入多元线性回归方程中,最终建立6MWT距离参考公式:男性y=494.463+1.414×ΔHR-3.903×BMI+0.874×HR_(max),R^(2)=0.429,女性y=670.448+0.299×ΔHR-4.342×BMI-0.195×HR_(max),R^(2)=0.312。结论 17~45岁门诊肥胖受试者中,男性的平均6MWT距离长于女性,且在不同年龄段均有显著差异。男性的体质量、BMI、HR_(max)、ΔHR、腰围、ΔDBP、ΔBorg与6MWT距离相关,女性的体质量、BMI、腰围、ΔSBP与6MWT距离相关。通过多元线性回归分析,为男性和女性分别建立了预测6MWT距离的参考方程,这些公式可能为评估个体的体能水平提供有价值的参考。 展开更多
关键词 肥胖症 步行试验 距离方程 17~45岁 6分钟步行试验 影响因素分析
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金属二聚体和氮共掺杂石墨烯(Gra)M_(2)N_(6)-Gra(M=Cr-Cu)的NO_(2)吸附特性理论研究
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作者 张展博 余娇 +5 位作者 魏亚茹 张轩 靳鑫 张子音 杨保成 张雷雷 《原子与分子物理学报》 CAS 北大核心 2025年第5期35-42,共8页
NO_(2)是空气污染物的主要成分之一,设计和开发高效的气敏传感器对NO_(2)进行检测具有重要意义.本工作利用基于密度泛函理论(DFT)的第一性原理计算方法对不同过渡金属原子形成的金属二聚体和氮共掺杂石墨烯(Gra)M_(2)N_(6)-Gra(M=Cr-Cu)... NO_(2)是空气污染物的主要成分之一,设计和开发高效的气敏传感器对NO_(2)进行检测具有重要意义.本工作利用基于密度泛函理论(DFT)的第一性原理计算方法对不同过渡金属原子形成的金属二聚体和氮共掺杂石墨烯(Gra)M_(2)N_(6)-Gra(M=Cr-Cu)的NO_(2)吸附特性进行了研究.结果表明,NO_(2)分子与M_(2)N_(6)-Gra之间均存在明显的化学吸附作用.其中,Ni_(2)N_(6)-Gra和Cu_(2)N_(6)-Gra体系具备较为适中的恢复时间(分别约为5秒和14分钟),这意味着这两个体系是开发新型NO_(2)气敏材料的潜在候选者.其它体系(M_(2)N_(6)-Gra,M=Cr-Co)强的吸附作用导致恢复时间过长,从而使得它们不适合作为NO_(2)气敏材料.这一研究不仅有望为设计和开发性能优异的新型NO_(2)气敏材料提供有益理论指导,还将有益于人们深入认识M_(2)N_(6)-Gra材料的NO_(2)电催化合成NO或NH 3性能. 展开更多
关键词 M_(2)N_(6)-Gra NO_(2)吸附 密度泛函理论
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定向电场下W_(6)C_(6)团簇的超卤素调制及非线性光学特性
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作者 蔡璧钧 段宇静 魏强 《原子与分子物理学报》 CAS 北大核心 2025年第3期72-76,共5页
本文采用密度泛函(DFT)方法研究了定向外电场(OEEF)对W_(6)C_(6)团簇几何结构、电子性质以及非线性光学响应(NLO)的影响.计算结果表明W_(6)C_(6)的结构在一定OEEF强度下可以保持稳定.OEEF可以增大W_(6)C_(6)团簇的电子亲和能(EA值),且... 本文采用密度泛函(DFT)方法研究了定向外电场(OEEF)对W_(6)C_(6)团簇几何结构、电子性质以及非线性光学响应(NLO)的影响.计算结果表明W_(6)C_(6)的结构在一定OEEF强度下可以保持稳定.OEEF可以增大W_(6)C_(6)团簇的电子亲和能(EA值),且在特定强度下,OEEF可以将W_(6)C_(6)团簇转变为超卤素.通过对EA值的非线性拟合可以实现对W_(6)C_(6)团簇的连续调制.进一步对不同外电场下W_(6)C_(6)团簇的最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)能级进行分析,发现OEEF降低了W_(6)C_(6)团簇LUMO能级是其EA值增大的主因.此外,OEEF可以显著增大W_(6)C_(6)团簇的平均极化率和第一超极化率,尤其是第一超极化率,改变其非线性光学性质. 展开更多
关键词 定向外电场 超原子 密度泛函理论 NLO W_(6)C_(6)团簇
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血清淀粉样蛋白A、白介素6、肿瘤坏死因子α及微小RNA在脓毒症并发急性肾损伤患儿中的表达及预后评估价值研究
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作者 王林娜 张靖辉 《中国全科医学》 CAS 北大核心 2025年第3期293-298,共6页
背景 急性肾损伤(AKI)是脓毒症常见并发症,机体免疫-炎症指标是预测脓毒症并发AKI患儿预后的常用指标,目前从微小RNA(miR)方面评估的研究较少,有待临床探究。目的 探究血清淀粉样蛋白A(SAA)、白介素6(IL-6)、肿瘤坏死因子α(TNF-α)及mi... 背景 急性肾损伤(AKI)是脓毒症常见并发症,机体免疫-炎症指标是预测脓毒症并发AKI患儿预后的常用指标,目前从微小RNA(miR)方面评估的研究较少,有待临床探究。目的 探究血清淀粉样蛋白A(SAA)、白介素6(IL-6)、肿瘤坏死因子α(TNF-α)及miR在脓毒症并发AKI患儿中的表达,并分析其对预后的评估价值。方法 选取2020年3月—2023年3月平顶山市第一人民医院收治的100例脓毒症并发AKI患儿为观察组,另选取同期80例单纯脓毒症患儿为对照组。收集患者一般资料,酶联免疫吸附试验(ELISA)检测血清SAA、IL-6、TNF-α水平,采用实时荧光定量PCR法检测miR-21-3p、miR-182-5p、miR-128-3p相对表达量。比较两组序贯性器官功能衰竭(SOFA)评分、急性生理与慢性健康(APACHEⅡ)评分。采用Pearson相关性检验分析血清SAA、IL-6、TNF-α及miR水平与SOFA、APACHEⅡ评分的相关性。绘制受试者工作特征(ROC)曲线探究血清SAA、IL-6、TNF-α及miR水平对脓毒症并发AKI患儿死亡的预测价值并计算ROC曲线下面积(AUC)。结果 观察组SOFA评分、APACHEⅡ评分、血清SAA、IL-6、TNF-α、miR-21-3p、miR-182-5p、miR-128-3p水平均高于对照组(P<0.05)。住院28 d后观察组74例患儿生存,26例患儿死亡。生存患儿血清SAA、IL-6、TNF-α、miR-21-3p、miR-182-5p、miR-128-3p均低于死亡患儿(P<0.05)。血清SAA、IL-6、TNF-α、miR-21-3p、miR-182-5p、miR-128-3p与SOFA、APACHEⅡ评分均呈正相关(P<0.05)。ROC曲线结果显示联合预测的AUC为0.926(95%CI=0.856~0.969,P<0.05)。结论 脓毒症并发AKI患儿血清SAA、IL-6、TNF-α、miR-21-3p、miR-182-5p、miR-128-3p异常高表达,临床检测各项指标水平对患儿预后评估有较高价值及预警作用。 展开更多
关键词 脓毒症 急性肾损伤 血清淀粉样蛋白A 白介素6 肿瘤坏死因子Α
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一种偏差校正方法在青藏高原夏季CMIP6降水数据订正中的应用评估
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作者 刘雨萌 赵林 +3 位作者 李照国 王少影 马媛媛 孟宪红 《高原气象》 北大核心 2025年第1期16-31,共16页
利用第六次国际耦合模式比较计划(CMIP6)中的18个模式,基于欧洲中期天气预报中心第五代再分析资料(ERA5)再分析数据对青藏高原夏季降水数据进行了偏差校正,并从平均降水和极端降水两方面评估了校正前后的CMIP6数据以及单个模式在1979-2... 利用第六次国际耦合模式比较计划(CMIP6)中的18个模式,基于欧洲中期天气预报中心第五代再分析资料(ERA5)再分析数据对青藏高原夏季降水数据进行了偏差校正,并从平均降水和极端降水两方面评估了校正前后的CMIP6数据以及单个模式在1979-2014年的表现。研究结果表明,该校正方法高度依赖于用于偏差校正的ERA5再分析数据在研究区域的质量,尽管偏差校正后的青藏高原夏季平均降水的误差和误差率上有所改善,但在年际时间变化特征方面却不如偏差校正前的数据。大多数CMIP6模式能够较好地模拟1979-2014年青藏高原上由西北至东南逐渐递增的平均降水空间变化特征。偏差校正前的降水数据在高原上会出现显著的高估,误差率为60.4%,经过偏差校正后的数据相对观测数据误差降低,误差率为-13.9%,并且偏差校正后的数据与ERA5的平均误差仅为0.003 mm·d^(-1),与ERA5的空间相关性高达0.999。空间趋势方面,观测数据表明青藏高原大部分地区夏季降水在1979-2014年呈现轻微增加的趋势,只有东缘出现明显降低的趋势。偏差校正前后的数据都能够大致刻画出这一空间分布特征,然而,未经偏差校正的大多数单个CMIP6模式与ERA5的空间相关系数未超过0.5。与由独立观测降水数据的年际变化特征相比,偏差校正前的数据高估了高原上的降水量,而偏差校正后的数据相比观测结果则偏低。通过确定95%分位阈值选取了极端降水个例,其集合平均极端降水空间分布与年平均降水类似,也呈西北向东南递增的趋势。部分CMIP6模式较好地模拟了这一特征,如MRI-ESM2-0(The Meteorological Research Institute Earth System Model version 2.0)和ACCESSCM2(Australian Community Climate and Earth System Simulator Climate Model Version 2),与观测结果的空间相关系数分别为0.851和0.821。但偏差校正后的数据在空间相关性方面下降,由偏差校正前的0.861降为0.730,未能准确刻画高原极端降水阶梯式递增的特点。偏差校正后的极端降水数据误差分布与偏差校正前相似,偏低区域主要集中在高原南部腹地和东部。进一步的极端降水贡献率分析结果表明,观测结果与CMIP6降水数据均显示1979-2014年期间极端降水贡献率变化趋势不明显。单个CMIP6模式中,EC-Earth3-Veg(European Community Earth-Vegetation model version 3)和EC-Earth3(European Community Earth Model version 3)及CanESM5(The Canadian Earth System Model version 5)在多个统计评估指标上排名靠前,展示出较好的模拟能力;IPSL-CM6A-LR(Institut Pierre-Simon Laplace Climate Model 6A Low Resolution)在平均降水误差和极端降水的误差指标上表现出色。 展开更多
关键词 青藏高原 第六次国际耦合模式比较计划(CMIP6) 偏差校正 降水
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血清IL-6R和IL-22表达与溃疡性结肠炎严重程度及临床结局的关系
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作者 费良 刘红霞 +2 位作者 赵敬贤 颜悦蓉 聂琳 《安徽医药》 CAS 2025年第1期48-52,共5页
目的探究血清白细胞介素-6受体(IL-6R)和白细胞介素-22(IL-22)表达与溃疡性结肠炎严重程度及临床结局的关系。方法选取监利市人民医院2017年12月至2022年6月治疗的212例溃疡性结肠炎病人为研究对象,根据其病情严重程度分为轻症组与重症... 目的探究血清白细胞介素-6受体(IL-6R)和白细胞介素-22(IL-22)表达与溃疡性结肠炎严重程度及临床结局的关系。方法选取监利市人民医院2017年12月至2022年6月治疗的212例溃疡性结肠炎病人为研究对象,根据其病情严重程度分为轻症组与重症组,根据治疗2个月的预后情况分为预后良好组与预后不良组,采用酶联免疫吸附测定检测IL-6R、IL-22水平并收集病人临床资料,logistic多因素回归分析影响溃疡性结肠炎病人预后的相关因素;绘制受试者操作特征曲线(ROC曲线)预测IL-6R和IL-22对溃疡性结肠炎严重程度以及预后的临床诊断及预测价值。结果与轻症组[(11.10±1.21)ng/L、(50.24±6.35)ng/L]相比,重症组在入院时的血清IL-6R[(15.32±2.62)ng/L]、IL-22水平[(63.61±6.95)ng/L]显著增加(P<0.05),通过绘制ROC曲线发现IL-6R、IL-22以及两者联合诊断重症溃疡性结肠炎的曲线下面积(AUC)分别为0.85、0.85、0.92,并且二者联合诊断显著优于IL-6R、IL-22单独诊断(Z=3.58,3.42;P=0.003,0.006);通过分析病人一般临床资料发现,溃疡性结肠炎病人的预后与病人是否有肠外表现、C反应蛋白(CRP)、降钙素原(PCT)、红细胞沉降率(ESR)、粪便钙卫蛋白(FC)、粪便乳铁蛋白(FL)、IL-6R以及IL-22水平有关(P<0.05),与性别、年龄无关(P>0.05),logistic多因素回归分析发现,CRP、PCT、ESR、FC、FL、IL-6R以及IL-22均为影响溃疡性结肠炎病人预后的危险因素(P<0.05)。绘制ROC曲线发现IL-6R、IL-22以及两者联合预测溃疡性结肠炎病人预后的AUC分别为0.81、0.83、0.90,并且二者联合预测显著优于IL-6R、IL-22单独预测(Z=3.70,3.18;P<0.001,P=0.002)。结论溃疡性结肠炎病人血清IL-6R、IL-22水平随病人病情严重程度增加,均为影响溃疡性结肠炎病人预后的危险因素,并且对病人的病情严重程度及临床结局预测具有辅助诊断价值。 展开更多
关键词 结肠炎 溃疡性 白细胞介素-6受体 白细胞介素-22 病情严重程度 临床结局
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血清激肽释放酶6及脂联素与帕金森病患者认知功能障碍的相关性
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作者 孙迎迎 龚梦茜 +3 位作者 张伟 梁晓倩 孙超 崔桂云 《中国实用神经疾病杂志》 2025年第1期23-27,共5页
目的探讨血清激肽释放酶6(KLK6)、脂联素(APN)与帕金森病患者认知功能障碍的相关性。方法选取徐州医科大学附属医院收治的112例帕金森病患者,依据认知功能障碍情况分为发生组(帕金森病合并认知障碍组,44例)和未发生组(帕金森病认知功能... 目的探讨血清激肽释放酶6(KLK6)、脂联素(APN)与帕金森病患者认知功能障碍的相关性。方法选取徐州医科大学附属医院收治的112例帕金森病患者,依据认知功能障碍情况分为发生组(帕金森病合并认知障碍组,44例)和未发生组(帕金森病认知功能正常组,68例),采用酶联免疫吸附法检测血清KLK6、APN水平,比较2组血清KLK6、APN水平,相关性、影响因素、预测价值分别采用Pearson法、Logistic回归及受试者工作特征(ROC)曲线分析。结果Pearson相关性分析显示,血清KLK6、APN分别与MMSE评分、MoCA评分呈负、正相关(P<0.05)。Logistic回归分析显示,帕金森病程长、修订Hoehn-Yahr分级晚期、血清KLK6高水平均是影响帕金森病患者发生认知功能障碍的危险因素,血清APN高水平是其保护性因素(P<0.05)。ROC曲线分析显示,血清KLK6、APN水平联合预测的曲线下面积为0.960,灵敏度、特异度分别为90.91%、89.71%(P<0.05)。结论帕金森病合并认知功能障碍患者血清KLK6升高、APN降低,血清KLK6、APN不仅与认知功能相关,还是帕金森病患者发生认知功能障碍的影响因素,两者联合预测帕金森病认知功能障碍有较高的临床价值。 展开更多
关键词 帕金森病 认知功能障碍 激肽释放酶6 脂联素 相关性 影响因素 预测价值
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Interleukin-6 in epilepsy and its neuropsychiatric comorbidities: How to bridge the gap
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作者 Xiao-Man Chen Shuo Zhang +1 位作者 Shi-Qi Gao Michael Xu 《World Journal of Psychiatry》 SCIE 2025年第1期1-6,共6页
There is growing evidence that interleukin(IL)-6 plays an important role in neurological and psychiatric disorders.This editorial comments on the study published in the recent issue of the World Journal of Psychiatry,... There is growing evidence that interleukin(IL)-6 plays an important role in neurological and psychiatric disorders.This editorial comments on the study published in the recent issue of the World Journal of Psychiatry,which employed Mendelian randomization to identify a causal relationship between IL-6 receptor blockade and decreased epilepsy incidence.The purpose of this editorial is to highlight the dual effects of IL-6 in epilepsy and its related neuropsychiatric comorbidities.IL-6 plays a critical role in the facilitation of epileptogenesis and maintenance of epileptic seizures and is implicated in neuroinflammatory proce-sses associated with epilepsy.Furthermore,IL-6 significantly influences mood regulation and cognitive dysfunction in patients with epilepsy,highlighting its involvement in neuropsychiatric comorbidities.In summary,IL-6 is not only a pivotal factor in the pathogenesis of epilepsy but also significantly contributes to the emergence of epilepsy-related neuropsychiatric complications.Future resear-ch should prioritize elucidating the specific mechanisms by which IL-6 operates across different subtypes,stages and neuropsychiatric comorbidities of epilepsy,with the aim of developing more precise and effective interventions.Furthermore,the potential of IL-6 as a biomarker for the early diagnosis and prognosis of epile-psy warrants further investigation. 展开更多
关键词 EPILEPSY INTERLEUKIN-6 Neuropsychiatric comorbidities Depression Tocilizu-mab NEUROINFLAMMATION Interleukin-6 receptor blockade
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Electronic structure and ultraviolet spectra of p-C_(6)H_(4)-C_(20)
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作者 CHEN Xin 《原子与分子物理学报》 CAS 北大核心 2025年第3期21-28,共8页
Geometry optimization of p-C_(6)H_(4)-connected cyclo[20]carbon(p-C_(6)H_(4)-C_(20))was carried out at M062X/6-311G(d,p)level,three kinds of bond orders(Mayer,Laplacian,and Wiberg),electron-hole distributions,localize... Geometry optimization of p-C_(6)H_(4)-connected cyclo[20]carbon(p-C_(6)H_(4)-C_(20))was carried out at M062X/6-311G(d,p)level,three kinds of bond orders(Mayer,Laplacian,and Wiberg),electron-hole distributions,localized orbital locators(LOL),and infrared(IR)spectrum were also performed at the same level.Based on TD-DFT M062X/6-311G(d,p)method,the first 20 excited states and ultraviolet(UV)spectra of p-C_(6)H_(4)-C_(20) were calculated.Calculation results of π-electron delocalization analyses prove thatπ-electron delocalization of p-C_(6)H_(4)-C_(20) is more likely to occur on shorter C-C bonds rather than longer C-C bonds,and inside/outside of the ring plane rather than above/below the ring plane.Two absorption peaks of p-C_(6)H_(4)-C_(20) locate at about 319 nm and 236 nm,respectively. 展开更多
关键词 p-C_(6)H_(4)-C_(20) Bone orders UV spectrum Electron-hole analyses π-electron delocalization analyses
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Regulator of G protein signaling 6 mediates exercise-induced recovery of hippocampal neurogenesis,learning,and memory in a mouse model of Alzheimer’s disease
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作者 Mackenzie M.Spicer Jianqi Yang +5 位作者 Daniel Fu Alison N.DeVore Marisol Lauffer Nilufer S.Atasoy Deniz Atasoy Rory A.Fisher 《Neural Regeneration Research》 SCIE CAS 2025年第10期2969-2981,共13页
Hippocampal neuronal loss causes cognitive dysfunction in Alzheimer’s disease.Adult hippocampal neurogenesis is reduced in patients with Alzheimer’s disease.Exercise stimulates adult hippocampal neurogenesis in rode... Hippocampal neuronal loss causes cognitive dysfunction in Alzheimer’s disease.Adult hippocampal neurogenesis is reduced in patients with Alzheimer’s disease.Exercise stimulates adult hippocampal neurogenesis in rodents and improves memory and slows cognitive decline in patients with Alzheimer’s disease.However,the molecular pathways for exercise-induced adult hippocampal neurogenesis and improved cognition in Alzheimer’s disease are poorly understood.Recently,regulator of G protein signaling 6(RGS6)was identified as the mediator of voluntary running-induced adult hippocampal neurogenesis in mice.Here,we generated novel RGS6fl/fl;APP_(SWE) mice and used retroviral approaches to examine the impact of RGS6 deletion from dentate gyrus neuronal progenitor cells on voluntary running-induced adult hippocampal neurogenesis and cognition in an amyloid-based Alzheimer’s disease mouse model.We found that voluntary running in APP_(SWE) mice restored their hippocampal cognitive impairments to that of control mice.This cognitive rescue was abolished by RGS6 deletion in dentate gyrus neuronal progenitor cells,which also abolished running-mediated increases in adult hippocampal neurogenesis.Adult hippocampal neurogenesis was reduced in sedentary APP_(SWE) mice versus control mice,with basal adult hippocampal neurogenesis reduced by RGS6 deletion in dentate gyrus neural precursor cells.RGS6 was expressed in neurons within the dentate gyrus of patients with Alzheimer’s disease with significant loss of these RGS6-expressing neurons.Thus,RGS6 mediated voluntary running-induced rescue of impaired cognition and adult hippocampal neurogenesis in APP_(SWE) mice,identifying RGS6 in dentate gyrus neural precursor cells as a possible therapeutic target in Alzheimer’s disease. 展开更多
关键词 adult hippocampal neurogenesis Alzheimer’s disease dentate gyrus EXERCISE learning/memory neural precursor cells regulator of G protein signaling 6(RGS6)
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Association of interleukin-6 with acute lung injury risk and disease severity in sepsis
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作者 Imshaal Musharaf Abdulqadir J Nashwan 《World Journal of Clinical Cases》 SCIE 2025年第8期49-52,共4页
Sepsis is a life-threatening condition caused by a dysregulated response of the body in response to an infection that harms its tissues and organs.Interleukin-6(IL-6)is a significant component of the inflammatory resp... Sepsis is a life-threatening condition caused by a dysregulated response of the body in response to an infection that harms its tissues and organs.Interleukin-6(IL-6)is a significant component of the inflammatory response as part of the pa-thogenesis of sepsis.It aids in the development of Acute lung injury and,subse-quently,multiple organ dysfunction syndrome.This letter probes into the corre-lation between plasma IL-6 levels and the risk of developing acute lung injury and multiple organ dysfunction syndrome in critically ill patients with sepsis.While it shows promising results,limitations like its observational study design,a limited sample size,a single center involvement,single-time-point measurement,and a lack of a control group restrain its cogency.The study is a big step in identifying IL-6 as a biomarker to improve patient care. 展开更多
关键词 SEPSIS Acute lung injury Multiple organ dysfunction syndrome INTERLEUKIN-6 BIOMARKER Critical illness
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Protein arginine methyltransferase-6 regulates heterogeneous nuclear ribonucleoprotein-F expression and is a potential target for the treatment of neuropathic pain
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作者 Xiaoyu Zhang Yuqi Liu +6 位作者 Fangxia Xu Chengcheng Zhou Kaimei Lu Bin Fang Lijuan Wang Lina Huang Zifeng Xu 《Neural Regeneration Research》 SCIE CAS 2025年第9期2682-2696,共15页
Protein arginine methyltransferase-6 participates in a range of biological functions,particularly RNA processing,transcription,chromatin remodeling,and endosomal trafficking.However,it remains unclear whether protein ... Protein arginine methyltransferase-6 participates in a range of biological functions,particularly RNA processing,transcription,chromatin remodeling,and endosomal trafficking.However,it remains unclear whether protein arginine methyl transferase-6 modifies neuropathic pain and,if so,what the mechanisms of this effect.In this study,protein arginine methyltransferase-6 expression levels and its effect on neuropathic pain were investigated in the spared nerve injury model,chronic constriction injury model and bone cancer pain model,using immunohistochemistry,western blotting,immunoprecipitation,and label-free proteomic analysis.The results showed that protein arginine methyltransferase-6 mostly co-localized withβ-tubulinⅢin the dorsal root ganglion,and that its expression decreased following spared nerve injury,chronic constriction injury and bone cancer pain.In addition,PRMT6 knockout(Prmt6~(-/-))mice exhibited pain hypersensitivity.Furthermore,the development of spared nerve injury-induced hypersensitivity to mechanical pain was attenuated by blocking the decrease in protein arginine methyltransferase-6 expression.Moreover,when protein arginine methyltransferase-6 expression was downregulated in the dorsal root ganglion in mice without spared nerve injury,increased levels of phosphorylated extracellular signal-regulated kinases were observed in the ipsilateral dorsal horn,and the response to mechanical stimuli was enhanced.Mechanistically,protein arginine methyltransferase-6 appeared to contribute to spared nerve injury-induced neuropathic pain by regulating the expression of heterogeneous nuclear ribonucleoprotein-F.Additionally,protein arginine methyltransfe rase-6-mediated modulation of hete rogeneous nuclear ribonucleoprotein-F expression required amino atids 319 to 388,but not classical H3R2 methylation.These findings indicated that protein arginine methyltransferase-6 is a potential therapeutic target fo r the treatment of peripheral neuro pathic pain. 展开更多
关键词 dorsal root ganglion heterogeneous nuclear ribonucleoprotein F neuropathic pain protein arginine methyltransferase-6 sensory neurons
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Salsolinol as an RNA m~6A methylation inducer mediates dopaminergic neuronal death by regulating YAP1 and autophagy
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作者 Jianan Wang Yuanyuan Ran +5 位作者 Zihan Li Tianyuan Zhao Fangfang Zhang Juan Wang Zongjian Liu Xuechai Chen 《Neural Regeneration Research》 SCIE CAS 2025年第3期887-899,共13页
Salsolinol(1-methyl-6,7-dihydroxy-1,2,3,4-tetrahydroisoquinoline,Sal)is a catechol isoquinoline that causes neurotoxicity and shares structural similarity with 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine,an environme... Salsolinol(1-methyl-6,7-dihydroxy-1,2,3,4-tetrahydroisoquinoline,Sal)is a catechol isoquinoline that causes neurotoxicity and shares structural similarity with 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine,an environmental toxin that causes Parkinson's disease.However,the mechanism by which Sal mediates dopaminergic neuronal death remains unclear.In this study,we found that Sal significantly enhanced the global level of N~6-methyladenosine(m~6A)RNA methylation in PC12 cells,mainly by inducing the downregulation of the expression of m~6A demethylases fat mass and obesity-associated protein(FTO)and alk B homolog 5(ALKBH5).RNA sequencing analysis showed that Sal downregulated the Hippo signaling pathway.The m~6A reader YTH domain-containing family protein 2(YTHDF2)promoted the degradation of m~6A-containing Yes-associated protein 1(YAP1)mRNA,which is a downstream key effector in the Hippo signaling pathway.Additionally,downregulation of YAP1 promoted autophagy,indicating that the mutual regulation between YAP1 and autophagy can lead to neurotoxicity.These findings reveal the role of Sal on m~6A RNA methylation and suggest that Sal may act as an RNA methylation inducer mediating dopaminergic neuronal death through YAP1 and autophagy.Our results provide greater insights into the neurotoxic effects of catechol isoquinolines compared with other studies and may be a reference for assessing the involvement of RNA methylation in the pathogenesis of Parkinson's disease. 展开更多
关键词 ALKBH5 AUTOPHAGY FTO Hippo pathway m~6A Parkinson's disease RNA methylation SALSOLINOL YAP1 YTHDF2
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Mutual regulation of microglia and astrocytes after Gas6 inhibits spinal cord injury
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作者 Jiewen Chen Xiaolin Zeng +6 位作者 Le Wang Wenwu Zhang Gang Li Xing Cheng Peiqiang Su Yong Wan Xiang Li 《Neural Regeneration Research》 SCIE CAS 2025年第2期557-573,共17页
Invasive inflammation and excessive scar formation are the main reasons for the difficulty in repairing nervous tissue after spinal cord injury.Microglia and astrocytes play key roles in the spinal cord injury micro-e... Invasive inflammation and excessive scar formation are the main reasons for the difficulty in repairing nervous tissue after spinal cord injury.Microglia and astrocytes play key roles in the spinal cord injury micro-environment and share a close interaction.However,the mechanisms involved remain unclear.In this study,we found that after spinal cord injury,resting microglia(M0)were polarized into pro-inflammatory phenotypes(MG1 and MG3),while resting astrocytes were polarized into reactive and scar-forming phenotypes.The expression of growth arrest-specific 6(Gas6)and its receptor Axl were significantly down-regulated in microglia and astrocytes after spinal cord injury.In vitro experiments showed that Gas6 had negative effects on the polarization of reactive astrocytes and pro-inflammatory microglia,and even inhibited the cross-regulation between them.We further demonstrated that Gas6 can inhibit the polarization of reactive astrocytes by suppressing the activation of the Yes-associated protein signaling pathway.This,in turn,inhibited the polarization of pro-inflammatory microglia by suppressing the activation of the nuclear factor-κB/p65 and Janus kinase/signal transducer and activator of transcription signaling pathways.In vivo experiments showed that Gas6 inhibited the polarization of pro-inflammatory microglia and reactive astrocytes in the injured spinal cord,thereby promoting tissue repair and motor function recovery.Overall,Gas6 may play a role in the treatment of spinal cord injury.It can inhibit the inflammatory pathway of microglia and polarization of astrocytes,attenuate the interaction between microglia and astrocytes in the inflammatory microenvironment,and thereby alleviate local inflammation and reduce scar formation in the spinal cord. 展开更多
关键词 ASTROCYTES AXL cell polarization GAS6 Hippo signal inflammatory micro-environment intercellular interaction MICROGLIA single-cell sequencing spinal cord injury
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AAV2-PDE6B restores retinal structure and function in the retinal degeneration 10 mouse model of retinitis pigmentosa by promoting phototransduction and inhibiting apoptosis
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作者 Ruiqi Qiu Mingzhu Yang +5 位作者 Xiuxiu Jin Jingyang Liu Weiping Wang Xiaoli Zhang Jinfeng Han Bo Lei 《Neural Regeneration Research》 SCIE CAS 2025年第8期2408-2419,共12页
Retinitis pigmentosa is a group of inherited diseases that lead to retinal degeneration and photoreceptor cell death.However,there is no effective treatment for retinitis pigmentosa caused by PDE6B mutation.Adeno-asso... Retinitis pigmentosa is a group of inherited diseases that lead to retinal degeneration and photoreceptor cell death.However,there is no effective treatment for retinitis pigmentosa caused by PDE6B mutation.Adeno-associated virus(AAV)-mediated gene therapy is a promising strategy for treating retinitis pigmentosa.The aim of this study was to explore the molecular mechanisms by which AAV2-PDE6B rescues retinal function.To do this,we injected retinal degeneration 10(rd10)mice subretinally with AAV2-PDE6B and assessed the therapeutic effects on retinal function and structure using dark-and light-adapted electroretinogram,optical coherence tomography,and immunofluorescence.Data-independent acquisition-mass spectrometry-based proteomic analysis was conducted to investigate protein expression levels and pathway enrichment,and the results from this analysis were verified by real-time polymerase chain reaction and western blotting.AAV2-PDE6B injection significantly upregulated PDE6βexpression,preserved electroretinogram responses,and preserved outer nuclear layer thickness in rd10 mice.Differentially expressed proteins between wild-type and rd10 mice were closely related to visual perception,and treating rd10 mice with AAV2-PDE6B restored differentially expressed protein expression to levels similar to those seen in wild-type mice.Kyoto Encyclopedia of Genes and Genome analysis showed that the differentially expressed proteins whose expression was most significantly altered by AAV2-PDE6B injection were enriched in phototransduction pathways.Furthermore,the phototransductionrelated proteins Pde6α,Rom1,Rho,Aldh1a1,and Rbp1 exhibited opposite expression patterns in rd10 mice with or without AAV2-PDE6B treatment.Finally,Bax/Bcl-2,p-ERK/ERK,and p-c-Fos/c-Fos expression levels decreased in rd10 mice following AAV2-PDE6B treatment.Our data suggest that AAV2-PDE6B-mediated gene therapy promotes phototransduction and inhibits apoptosis by inhibiting the ERK signaling pathway and upregulating Bcl-2/Bax expression in retinitis pigmentosa. 展开更多
关键词 APOPTOSIS AAV2-PDE6B ERK1/2 gene therapy PHOTOTRANSDUCTION PROTEOMICS rd10 retinitis pigmentosa
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“Zero‑Strain” NiNb_(2)O_(6) Fibers for All‑Climate Lithium Storage
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作者 Yan Zhao Qiang Yuan +5 位作者 Liting Yang Guisheng Liang Yifeng Cheng Limin Wu Chunfu Lin Renchao Che 《Nano-Micro Letters》 SCIE EI CAS 2025年第1期348-360,共13页
Niobates are promising all-climate Li^(+)-storage anode material due to their fast charge transport,large specific capacities,and resistance to electrolyte reaction.However,their moderate unit-cellvolume expansion(gen... Niobates are promising all-climate Li^(+)-storage anode material due to their fast charge transport,large specific capacities,and resistance to electrolyte reaction.However,their moderate unit-cellvolume expansion(generally 5%–10%)during Li^(+)storage causes unsatisfactory long-term cyclability.Here,“zero-strain”NiNb_(2)O_(6) fibers are explored as a new anode material with comprehensively good electrochemical properties.During Li^(+)storage,the expansion of electrochemical inactive NiO_(6) octahedra almost fully offsets the shrinkage of active NbO_(6) octahedra through reversible O movement.Such superior volume-accommodation capability of the NiO_(6) layers guarantees the“zero-strain”behavior of NiNb_(2)O_(6) in a broad temperature range(0.53%//0.51%//0.74%at 25//−10//60℃),leading to the excellent cyclability of the NiNb_(2)O_(6) fibers(92.8%//99.2%//91.1%capacity retention after 1000//2000//1000 cycles at 10C and 25//−10//60℃).This NiNb_(2)O_(6) material further exhibits a large reversible capacity(300//184//318 mAh g−1 at 0.1C and 25//−10//60℃)and outstanding rate performance(10 to 0.5C capacity percentage of 64.3%//50.0%//65.4%at 25//−10//60℃).Therefore,the NiNb_(2)O_(6) fibers are especially suitable for large-capacity,fast-charging,long-life,and all-climate lithium-ion batteries. 展开更多
关键词 NiNb_(2)O_(6)porous fiber “Zero-strain”mechanism Electrochemical property Harsh-temperature operation Operando characterization
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Enhanced autophagic clearance of amyloid-βvia histone deacetylase 6-mediated V-ATPase assembly and lysosomal acidification protects against Alzheimer's disease in vitro and in vivo
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作者 Zhimin Long Chuanhua Ge +5 位作者 Yueyang Zhao Yuanjie Liu Qinghua Zeng Qing Tang Zhifang Dong Guiqiong He 《Neural Regeneration Research》 SCIE CAS 2025年第9期2633-2644,共12页
Recent studies have suggested that abnormal acidification of lysosomes induces autophagic accumulation of amyloid-βin neurons,which is a key step in senile plaque formation.Therefore,resto ring normal lysosomal funct... Recent studies have suggested that abnormal acidification of lysosomes induces autophagic accumulation of amyloid-βin neurons,which is a key step in senile plaque formation.Therefore,resto ring normal lysosomal function and rebalancing lysosomal acidification in neurons in the brain may be a new treatment strategy for Alzheimer's disease.Microtubule acetylation/deacetylation plays a central role in lysosomal acidification.Here,we show that inhibiting the classic microtubule deacetylase histone deacetylase 6 with an histone deacetylase 6 shRNA or thehistone deacetylase 6 inhibitor valproic acid promoted lysosomal reacidification by modulating V-ATPase assembly in Alzheimer's disease.Fu rthermore,we found that treatment with valproic acid markedly enhanced autophagy.promoted clearance of amyloid-βaggregates,and ameliorated cognitive deficits in a mouse model of Alzheimer's disease.Our findings demonstrate a previously unknown neuroprotective mechanism in Alzheimer's disease,in which histone deacetylase 6 inhibition by valproic acid increases V-ATPase assembly and lysosomal acidification. 展开更多
关键词 Alzheimer's disease amyloid-β APP/PS1 mice autophagy cognitive impairment histone deacetylase 6 lysosomal acidification microtubule acetylation valproic acid V-ATPASE
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Overexpression pattern,function,and clinical value of proteasome 26S subunit non-ATPase 6 in hepatocellular carcinoma
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作者 Sheng-Sheng Zhou Yu-Ping Ye +10 位作者 Yi Chen Da-Tong Zeng Guang-Cai Zheng Rong-Quan He Bang-Teng Chi Lei Wang Qian Lin Qin-Yan Su Yi-Wu Dang Gang Chen Jia-Liang Wei 《World Journal of Clinical Oncology》 2025年第2期76-93,共18页
BACKGROUND In recent years,many studies have shown that proteasome 26S subunit non-ATPase 6(PSMD6)plays an important role in the occurrence and development of malignant tumours.Unfortunately,there are no reports on th... BACKGROUND In recent years,many studies have shown that proteasome 26S subunit non-ATPase 6(PSMD6)plays an important role in the occurrence and development of malignant tumours.Unfortunately,there are no reports on the evaluation of the potential role of PSMD6 in hepatocellular carcinoma(HCC).AIM To comprehensively evaluate the overexpression pattern and clinical significance of PSMD6 in HCC tissues.METHODS This study integrated PSMD6 mRNA expression profiles from 4672 HCC and 3667 non-HCC tissues,along with immunohistochemical scores from 383 HCC and adjacent tissues,to assess PSMD6 overexpression in HCC.Clustered regularly interspaced short palindromic repeats knockout technology evaluated PSMD6’s essential role in HCC cell growth.Functional enrichment analysis explored the molecular mechanism of PSMD6 abnormalities in HCC.Drug sensitivity analysis and molecular docking analysed the effect of abnormal expression of PSMD6 on the drug sensitivity of HCC cells.RESULTS The results of 41 external and two internal datasets showed that PSMD6 mRNA(SMD=0.26,95%CI:0.09-0.42,P<0.05)and protein(SMD=2.85,95%CI:1.19-4.50,P<0.05)were significantly overexpressed in HCC tissues.The integrated analysis results showed that PSMD6 had a significant overexpression pattern in HCC tissues(SMD=0.40,95%CI:0.15-0.66,P<0.05).PSMD6 knockout inhibited HCC cell growth(chronos scores<-1).Functional enrichment implicated ribosome biogenesis and RNA splicing.Significant enrichment of signalling pathways such as RNA degradation,ribosomes,and chemical carcinogenesis—reactive oxygen species.Drug sensitivity analysis and a molecular docking model showed that high expression of PSMD6 was associated with the tolerance of HCC cells to drugs such as ML323,sepantronium bromide,and GDC0810.Overexpressed PSMD6 effectively distinguished HCC tissues(AUC=0.75,95%CI:0.71-0.79).CONCLUSION This study was the first to discover that PSMD6 was overexpressed in HCC tissues.PSMD6 is essential for the growth of HCC cells and may be involved in ribosome biogenesis and RNA splicing. 展开更多
关键词 Hepatocellular carcinoma Proteasome 26S subunit non-ATPase 6 Clustered regularly interspaced short palindromic repeats Ribosome biogenesis RNA splicing
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支持IPv4/IPv6双栈的5G通信网络可靠性组网部署研究
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作者 黄琳 黄劼 蒋平 《现代电子技术》 北大核心 2025年第1期102-106,共5页
5G网络要求更多的基站部署以支持更高的数据传输速率和连接密度。为实现网络数据的并行高速传输,确保网络应用业务的实时性和稳定性,文中提出一种支持IPv4/IPv6双栈的5G通信网络可靠性组网部署方法。结合IPv4和IPv6双栈,构建双栈转换机... 5G网络要求更多的基站部署以支持更高的数据传输速率和连接密度。为实现网络数据的并行高速传输,确保网络应用业务的实时性和稳定性,文中提出一种支持IPv4/IPv6双栈的5G通信网络可靠性组网部署方法。结合IPv4和IPv6双栈,构建双栈转换机制结合有限双协议栈模型,在模型下构建5G通信网络结构,并通过高架立体交叉网优化IPv4/IPv6双栈的5G通信网络组网结构,提升IPv4/IPv6双栈5G通信网络的通信速度。采用冗余路径算法,实现5G网络IPv4/IPv6双栈通信中的服务功能链编排,解决IPv4/IPv6双栈通信中的冗余问题。实验结果表明,该方法能够构建一种更稳定、更高效的5G通信网络组网结构,提高了网络频谱效率,优化了网络环境。 展开更多
关键词 5G通信网络 IPV4/IPV6双栈 可靠性组网部署 服务功能链 冗余路径算法 有限双协议栈模型
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Enhancing m^(6)A modification in the motor cortex facilitates corticospinal tract remodeling after spinal cord injury
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作者 Tian Qin Yuxin Jin +5 位作者 Yiming Qin Feifei Yuan Hongbin Lu Jianzhong Hu Yong Cao Chengjun Li 《Neural Regeneration Research》 SCIE CAS 2025年第6期1749-1763,共15页
Spinal cord injury typically causes corticospinal tract disruption. Although the disrupted corticospinal tract can self-regenerate to a certain degree, the underlying mechanism of this process is still unclear. N6-met... Spinal cord injury typically causes corticospinal tract disruption. Although the disrupted corticospinal tract can self-regenerate to a certain degree, the underlying mechanism of this process is still unclear. N6-methyladenosine(m^(6)A) modifications are the most common form of epigenetic regulation at the RNA level and play an essential role in biological processes. However, whether m^(6)A modifications participate in corticospinal tract regeneration after spinal cord injury remains unknown. We found that expression of methyltransferase 14 protein(METTL14) in the locomotor cortex was high after spinal cord injury and accompanied by elevated m^(6)A levels. Knockdown of Mettl14 in the locomotor cortex was not favorable for corticospinal tract regeneration and neurological recovery after spinal cord injury. Through bioinformatics analysis and methylated RNA immunoprecipitation-quantitative polymerase chain reaction, we found that METTL14 regulated Trib2 expression in an m^(6)A-regulated manner, thereby activating the mitogen-activated protein kinase pathway and promoting corticospinal tract regeneration. Finally, we administered syringin, a stabilizer of METTL14, using molecular docking. Results confirmed that syringin can promote corticospinal tract regeneration and facilitate neurological recovery by stabilizing METTL14. Findings from this study reveal that m^(6)A modification is involved in the regulation of corticospinal tract regeneration after spinal cord injury. 展开更多
关键词 corticospinal tract remodeling epigenetic regulations locomotor cortex m^(6)A modification methyltransferase 14 protein(METTL14) mitogen-activated protein kinase neural regeneration spinal cord injury SYRINGIN TRIB2
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