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2021年老挝M_(S)6.0地震序列研究
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作者 孙楠 贺素歌 +1 位作者 刘自凤 李利波 《地震研究》 北大核心 2025年第1期1-9,共9页
云南地震活动与周边强震存在“构造相连,动力同源”的特征,研究周边强震的序列演化特征及发震构造,对云南地区地震研究具有重要意义。2021年12月24日老挝M_(S)6.0地震发生在滇西南地区的NW向整董断裂附近,震源机制解显示,此次地震是一... 云南地震活动与周边强震存在“构造相连,动力同源”的特征,研究周边强震的序列演化特征及发震构造,对云南地区地震研究具有重要意义。2021年12月24日老挝M_(S)6.0地震发生在滇西南地区的NW向整董断裂附近,震源机制解显示,此次地震是一次走滑型破裂事件,破裂方向与区域构造特征一致。老挝M_(S)6.0地震序列属于前震-主震-余震型序列,主震前震中附近出现3~4级地震非常活跃的现象,前震序列参数计算显示b值波动相对幅度较大,h值出现“上翘”形态,而余震序列b值和h值变化均相对平稳,主震的同震库伦应力结果表明老挝地震可能对云南地区有应力加载作用。 展开更多
关键词 老挝M_(s)6.0地震 前震序列 余震序列 序列参数
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遗传性蛋白S缺乏症致兄弟二人患肺栓塞报告
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作者 胡建秋 乔华 《临床肺科杂志》 2025年第1期151-153,共3页
肺栓塞(pulmonary embolism, PE)是临床上常见的急危重症之一,具有致死性,由于症状及体征均不典型,常常导致漏诊、误诊。青少年肺栓塞性相对少见,更容易被临床医师忽视。但该类患者可能发病年龄早,应注重其求因的检查尤其遗传缺陷。本... 肺栓塞(pulmonary embolism, PE)是临床上常见的急危重症之一,具有致死性,由于症状及体征均不典型,常常导致漏诊、误诊。青少年肺栓塞性相对少见,更容易被临床医师忽视。但该类患者可能发病年龄早,应注重其求因的检查尤其遗传缺陷。本文通过报道兄弟患肺栓塞病例,最终确诊为遗传性蛋白S缺乏症,且为少见的复杂杂合变异病例,而提高临床医师对于青少年PE的诊治水平。 展开更多
关键词 肺栓塞 蛋白s缺乏 复杂杂合变异
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基于“微生物-肠-脑轴”探讨补肾通腑方对APP/PS1小鼠肠道菌群及LPS/TLR4/NF-κB通路的影响
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作者 王旭 张杰 +2 位作者 赵敏 宋晓雨 段建平 《中国药理学通报》 CAS 北大核心 2025年第1期171-178,共8页
目的探讨补肾通腑方调控肠道菌群,改善阿尔茨海默病(Alzheimer’s disease,AD)模型小鼠学习记忆能力的作用机制。方法以APP/PS1小鼠为研究对象,给予补肾通腑方治疗8周,采用Morris水迷宫法观察小鼠空间学习记忆能力变化;16S rDNA检测小... 目的探讨补肾通腑方调控肠道菌群,改善阿尔茨海默病(Alzheimer’s disease,AD)模型小鼠学习记忆能力的作用机制。方法以APP/PS1小鼠为研究对象,给予补肾通腑方治疗8周,采用Morris水迷宫法观察小鼠空间学习记忆能力变化;16S rDNA检测小鼠肠道菌群丰度、多样性变化;HE染色观察海马病理形态学变化;免疫荧光检测海马区小胶质细胞活化情况;Western blot检测TLR4、NF-κB、IL-6等炎症因子表达。结果与模型组相比,补肾通腑方可以缩短AD模型小鼠逃避潜伏期、游泳路径,增加跨越平台次数(P<0.05),提升肠道菌群多样性,调节肠道菌群丰度,促进海马神经元细胞损伤修复,降低iNOS/Iba1共表达,提高Arg1/Iba1共表达(P<0.01),促进小胶质细胞从M1型向M2型转化,下调TLR4、NF-κB、IL-6等促炎因子的表达。结论补肾通腑方改善AD模型小鼠学习记忆能力的作用机制可能与调节肠道菌群介导的LPS/TLR4/NF-κB通路,从而抑制促炎型小胶质细胞活化、减轻中枢神经系统炎症、改善海马区神经元细胞损伤有关。 展开更多
关键词 阿尔茨海默病 补肾通腑方 肠道菌群 LPs/TLR4/NF-κB通路 16s rDNA 微生物-肠-脑轴
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2021年9月16日四川泸县M_(S)6.0地震前地磁扰动异常特征分析
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作者 王玮铭 冯志生 +3 位作者 朱培育 廖晓峰 何畅 张致伟 《地震工程学报》 北大核心 2025年第1期229-239,共11页
选取四川地区3个地磁扰动台站的观测数据,利用基于脉冲幅度法的地磁垂直强度极化方法,对2021年9月16日四川泸县M_(S)6.0地震前的地磁扰动异常演化特征进行分析。研究结果表明:(1)在中强地震前,台站的垂直强度极化值和超阈值极化值频次... 选取四川地区3个地磁扰动台站的观测数据,利用基于脉冲幅度法的地磁垂直强度极化方法,对2021年9月16日四川泸县M_(S)6.0地震前的地磁扰动异常演化特征进行分析。研究结果表明:(1)在中强地震前,台站的垂直强度极化值和超阈值极化值频次逐日变化均会出现高值异常,其中频次异常呈现先增强后降低,再增强-降低的形态;(2)发生异常变化的多个台站距离震中300 km范围内,时间上属准同步变化;(3)地震多发生在异常出现的一个月后,频次异常值往往是研究时段的最高值;(4)机理上,这些异常演化形态和特征是由岩石的破裂特性决定的,一定程度上反映了地震的孕育过程;(5)这种震前的地磁扰动异常与外源场无关。 展开更多
关键词 地磁扰动 地磁垂直强度极化法 泸县M_(s)6.0地震 异常特征
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2021年漾濞M_(S)6.4地震前重力段差指标量分析及场源特征反演
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作者 郑秋月 黄江培 +3 位作者 吴宇琴 陈政宇 刘东 王青华 《地震研究》 北大核心 2025年第1期22-31,共10页
基于2016-2021年云南地区流动重力重复观测资料,利用流动重力段差变化可视化方法及重力场变化显著性程度指标量G和C值研究了2021年漾濞M_(S)6.4地震前的重力变化,并反演了其与地震孕育相关的场源分布特征,开展了对研究区重力变化及场源... 基于2016-2021年云南地区流动重力重复观测资料,利用流动重力段差变化可视化方法及重力场变化显著性程度指标量G和C值研究了2021年漾濞M_(S)6.4地震前的重力变化,并反演了其与地震孕育相关的场源分布特征,开展了对研究区重力变化及场源特征的定性和定量研究。结果表明:①段差表示法的大小和方向对地下物质的运移方向有一定的指示意义,震前重力指标量呈显著上升,震后又迅速回落,重力变化指标量G和C值可作为评价测网区域重力变化显著性程度的定量依据;②反演得到的重力变化场源位置主要集中在红河断裂带北段至滇西北一带,且表现出与维西-乔后断裂及红河断裂带走向较为一致的分布特征,这可能与地震前中上地壳的深部物质运移相关。 展开更多
关键词 重力段差 定量分析 重力变化指数 场源反演 漾濞M_(s)6.4地震
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小鼠S100A9蛋白在枯草芽孢杆菌中的表达及生物学活性分析
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作者 李婷 李甜甜 +1 位作者 丁明玲 彭勇波 《中南民族大学学报(自然科学版)》 CAS 2025年第1期36-42,共7页
钙结合蛋白S100A9与细胞炎症应答及肿瘤生长等密切相关,但对其生物学功能还不十分清楚.本研究构建了小鼠S100A9基因的枯草芽孢杆菌诱导表达载体,以期获得具有生物活性的S100A9蛋白并探讨其功能.采用无缝克隆将小鼠S100A9基因编码区序列... 钙结合蛋白S100A9与细胞炎症应答及肿瘤生长等密切相关,但对其生物学功能还不十分清楚.本研究构建了小鼠S100A9基因的枯草芽孢杆菌诱导表达载体,以期获得具有生物活性的S100A9蛋白并探讨其功能.采用无缝克隆将小鼠S100A9基因编码区序列克隆至pHT43载体的Pgrac启动子区,并将重组载体pHT43-S100A9转化至芽孢杆菌WB800N菌株,经IPTG诱导S100A9蛋白表达.通过LPS诱导的RAW264.7细胞炎症模型检测了重组蛋白S100A9对炎症应答的调控作用.Western Blot证实了S100A9重组蛋白分泌表达,且在0.2 mmol/L的IPTG、30℃的发酵条件下其表达水平最佳.ELISA检测表明S100A9重组蛋白分泌表达量达到了15.47 ng/mL.分别利用含有1.54、3.09、6.59 ng/mL三种不同浓度S100A9重组蛋白的发酵液上清作用于LPS诱导的RAW264.7细胞,与空载组比较,1.54 ng/mL的S100A9重组蛋白能显著抑制LPS诱导的RAW264.7细胞促炎因子TNF-α及IL-6等的表达(P<0.05). 展开更多
关键词 s100A9蛋白 枯草芽孢杆菌 异源表达 RAW264.7细胞 炎症因子
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SphK1/S1P/S1PR2信号通路促进肌生成:运动改善骨骼肌健康的新视角
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作者 张文华 李荀 +3 位作者 张伟超 李欣颖 马帼澳 王孝强 《中国组织工程研究》 CAS 北大核心 2025年第6期1265-1275,共11页
背景:近年来,运动改善骨骼肌的健康已成为学者们关注的一个重要研究内容,适宜的运动对骨骼肌具有积极的作用,其中在运动激活鞘氨醇激酶1(sphingosine kinase1,SphK1)/鞘氨醇-1-磷酸(sphingosine-1-phosphate,S1P)/鞘氨醇-1-磷酸受体2(sp... 背景:近年来,运动改善骨骼肌的健康已成为学者们关注的一个重要研究内容,适宜的运动对骨骼肌具有积极的作用,其中在运动激活鞘氨醇激酶1(sphingosine kinase1,SphK1)/鞘氨醇-1-磷酸(sphingosine-1-phosphate,S1P)/鞘氨醇-1-磷酸受体2(sphingosine-1-phosphate receptor2,S1PR2)信号通路如何改善骨骼肌的健康,正受到科研人员的重视。目的:研究运动经SphK1/S1P/S1PR2信号通路如何改善骨骼肌的健康,探索治疗相关肌肉疾病的新方法,以改善人的骨骼肌健康。方法:检索Web of Science、PubMed、中国知网、万方和维普数据库从建库至今与文章主题相关的文献,以“signaling pathway,SphK1,S1P,S1PR2,skeletal muscle,satellite cell,myogenesis,exercise”为英文检索词,以“信号通路,SphK1,S1P,S1PR2,骨骼肌,卫星细胞,肌生成,运动”为中文检索词,最终纳入69篇文献进行分析。结果与结论:①SphK1/S1P/S1PR2信号通路是一个复杂的调控网络,通过SphK1催化产生的S1P,与S1PR2等受体的相互作用,触发下游信号转导过程,进而调控细胞、组织、器官和系统的多种生物学功能。②SphK1/S1P/S1PR2信号通路能调控卫星细胞增殖和成肌细胞分化,改善肌生成。③文章通过文献资料调研法分析了SphK1/S1P/S1PR2信号通路的生理基础以及运动对其影响的可能性。急性有氧运动可提高骨骼肌中SphK1的表达,人体和动物研究中已证实急性和长期运动均可提高骨骼肌中S1P水平,另外研究表明长期抗阻运动可提高S1PR2在骨骼肌中的表达,部分实验结果表明急性和长期运动对肌肉或者血液中S1P水平无显著影响,出现不同结果的原因可能是选择的研究对象、方式、强度及频率不同,而具体机制尚不明确。④研究认为,运动能够促进SphK1/S1P/S1PR2信号通路在骨骼肌中的表达,调控下游相关信号通路,并且针对这一信号通路的研究可能为骨骼肌疾病的治疗提供新的策略和方法,从而改善骨骼肌健康。⑤未来应深化对SphK1/S1P/S1PR2信号通路与骨骼肌健康关联的研究,进一步揭示其与卫星细胞、成肌细胞的调控关系及与上下游通路的相互作用,挖掘其临床应用价值,制定康复方案时考虑该通路变化,探索不同运动对该通路的影响机制,并将其作为潜在治疗靶点,结合人体肌肉模型提升研究深度和准确性。 展开更多
关键词 sphK1/s1P/s1PR2信号通路 骨骼肌 运动 肌生成 卫星细胞 成肌细胞 机制
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2021年5月21日云南漾濞M_(S)6.4地震序列中的共轭走滑断层研究
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作者 黑贺堂 王光明 +3 位作者 匡泳庄 茶文剑 杨建文 张源 《地震工程学报》 北大核心 2025年第1期217-228,共12页
基于全国地震编目系统提供的地震编目报告和地震事件波形数据,采用双差定位法对2021年5月21日漾濞M_(S)6.4地震序列(2021年5月18日至10月31日,M_(L)0.0以上)进行重新定位,得到7138次地震事件的精确震源位置;同时,利用震源机制波形反演(C... 基于全国地震编目系统提供的地震编目报告和地震事件波形数据,采用双差定位法对2021年5月21日漾濞M_(S)6.4地震序列(2021年5月18日至10月31日,M_(L)0.0以上)进行重新定位,得到7138次地震事件的精确震源位置;同时,利用震源机制波形反演(CAP)方法,获得了序列中39次M S≥3.0地震的震源机制解结果。以此勾勒出更多的构造细节和清晰的共轭断层形迹,并结合地震序列分布区域的野外地质调查,对此次走滑型地震的破裂过程与模式进行分析。结果显示:(1)漾濞M_(S)6.4地震主震断层为一组宽度约5 km、长度约60 km、走向约130°,向西南陡倾的右旋走滑断裂;该断裂属简单剪切模式,主断层两侧发育与其相交呈斜列式排列的R剪切破裂、R′剪切破裂、伸展破裂等次级共轭断层,地震序列的分布明显受到简单剪切的约束,呈现出单斜对称特征(整个地震序列北端东侧与南端西侧呈现出扫帚状、马尾状分布,而南端东侧与北端西侧则存在明显的地震平静区),其中M_(S)≥5的强震均发生在共轭断层与主断层相交的区域。(2)整个地震序列均分布于维西—乔后断裂西侧中生代沉积地层之上,主震断层的延伸方向与维西—乔后断裂存在一定的夹角,断层性质则与左白达断裂差异较大。研究认为,此次漾濞M_(S)6.4地震的发震构造为一组位于维西—乔后断裂与左白达断裂之间相对独立且未出露地表的隐伏断裂。 展开更多
关键词 2021年漾濞M_(s)6.4地震 重定位 震源机制 共轭断层 简单剪切
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基于改进S-ResNet34模型的小麦条锈病等级识别研究
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作者 尉国帅 贺佳 +3 位作者 常宝方 袁培燕 赵肖媛 王来刚 《南京农业大学学报》 CAS 北大核心 2025年第1期230-239,共10页
[目的]快速准确识别小麦条锈病病害等级,对其精准防控具有重要意义。[方法]利用数码相机获取小麦叶片条锈病RGB图像,构建小麦叶片条锈病不同病害等级数据集,通过对ResNet34模型添加通道注意力模块(SE)和Inception模块加以改进,增强模型... [目的]快速准确识别小麦条锈病病害等级,对其精准防控具有重要意义。[方法]利用数码相机获取小麦叶片条锈病RGB图像,构建小麦叶片条锈病不同病害等级数据集,通过对ResNet34模型添加通道注意力模块(SE)和Inception模块加以改进,增强模型对小麦条锈病特征的关注程度和提取能力,并采用精准率、召回率、平衡F分数和准确率等评价指标,对比分析S-ResNet34与VGG16、MobileNetV2、Swin-Transformer、ResNet34等多种主流模型的识别精度。[结果]S-ResNet34模型的训练准确率为93.85%,相比于VGG16(84.53%)、MobileNetV2(79.35%)、Swin-Transformer(85.67%)和ResNet34(87.50%)等深度网络模型,准确率分别提高了9.32%、14.50%、8.18%和6.35%。模型损失值更小,改进的ResNet34模型识别小麦条锈病特征能力更强,训练收敛更快。[结论]采用深度学习模型能够准确识别小麦条锈病发病程度,通过对ResNet34模型添加注意力模块能有效提高小麦条锈病病害识别精度。 展开更多
关键词 小麦条锈病 深度学习 病害等级 图像识别 改进s-ResNet34模型
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利用BLUP和Bayes方法对湘佳黑凤鸡S1系产蛋性状基因组育种值预测效果的比较研究
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作者 勃攻 杨杰 +2 位作者 肖健 贺喜 张海涵 《中国家禽》 北大核心 2025年第1期1-7,共7页
试验旨在评估湘佳黑凤鸡S1系产蛋性状遗传参数,比较BLUP和Bayes算法对肉鸡产蛋性状基因组育种值预测的准确性,为湘佳黑凤鸡S1系选育及育种值估计的策略提供依据。研究以2886只黄羽肉鸡品系的产蛋性状为研究对象,利用ASREML软件以平均信... 试验旨在评估湘佳黑凤鸡S1系产蛋性状遗传参数,比较BLUP和Bayes算法对肉鸡产蛋性状基因组育种值预测的准确性,为湘佳黑凤鸡S1系选育及育种值估计的策略提供依据。研究以2886只黄羽肉鸡品系的产蛋性状为研究对象,利用ASREML软件以平均信息约束最大似然法(AIREML)分别估计开产日龄、40周产蛋量以及43周平均蛋重的遗传力和遗传相关,并基于PBLUP、SSGBLUP、GBLUP和BayesA、BayesB、BayesC模型对产蛋性状基因组育种值预测效果进行比较研究。结果显示:开产日龄遗传力为0.263~0.429,40周产蛋量遗传力为0.213~0.359,43周平均蛋重遗传力为0.441~0.553;开产日龄与40周产蛋量、43周平均蛋重间的遗传相关分别为-0.72、0.10,表型相关为-0.57、0.10,40周产蛋量和43周平均蛋重间遗传相关和表型相关系数分别为-0.29和-0.21;在对开产日龄和40周产蛋量的基因组预测准确性上,BayesB方法分别有最高准确性0.236和0.251,BayesC方法对43周平均蛋重有最高的准确性0.345。结果表明:开产日龄和40周产蛋量属于中等遗传力性状,43周平均蛋重属于中等偏高遗传力性状。开产日龄和40周产蛋量之间存在强的遗传负相关,与43周平均蛋重呈低的遗传正相关;40周产蛋量与43周平均蛋重间具有一定程度的遗传负相关。对于开产日龄,Bayes方法的基因组预测准确性均高于GBLUP方法,Bayes方法的计算时间远大于GBLUP;对于40周产蛋量,BayesB方法的预测准确性最高;BayesC方法对43周平均蛋重有最高的准确性。综上所述,在湘佳黑凤鸡S1系产蛋性状中应用BayesB方法将获得最高的育种值估计准确性。 展开更多
关键词 湘佳黑凤鸡s1系 产蛋性状 遗传参数 基因组选择
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Gut microbiota-astrocyte axis: new insights into age-related cognitive decline
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作者 Lan Zhang Jingge Wei +5 位作者 Xilei Liu Dai Li Xiaoqi Pang Fanglian Chen Hailong Cao Ping Lei 《Neural Regeneration Research》 SCIE CAS 2025年第4期990-1008,共19页
With the rapidly aging human population,age-related cognitive decline and dementia are becoming increasingly prevalent worldwide.Aging is considered the main risk factor for cognitive decline and acts through alterati... With the rapidly aging human population,age-related cognitive decline and dementia are becoming increasingly prevalent worldwide.Aging is considered the main risk factor for cognitive decline and acts through alterations in the composition of the gut microbiota,microbial metabolites,and the functions of astrocytes.The microbiota–gut–brain axis has been the focus of multiple studies and is closely associated with cognitive function.This article provides a comprehensive review of the specific changes that occur in the composition of the gut microbiota and microbial metabolites in older individuals and discusses how the aging of astrocytes and reactive astrocytosis are closely related to age-related cognitive decline and neurodegenerative diseases.This article also summarizes the gut microbiota components that affect astrocyte function,mainly through the vagus nerve,immune responses,circadian rhythms,and microbial metabolites.Finally,this article summarizes the mechanism by which the gut microbiota–astrocyte axis plays a role in Alzheimer’s and Parkinson’s diseases.Our findings have revealed the critical role of the microbiota–astrocyte axis in age-related cognitive decline,aiding in a deeper understanding of potential gut microbiome-based adjuvant therapy strategies for this condition. 展开更多
关键词 age aging Alzheimer’s disease AsTROCYTEs cognitive decline dementia gut microbiota gut–brain axis microbial metabolites NEUROINFLAMMATION Parkinson’s disease
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猪流行性腹泻病毒S1蛋白的表达纯化及多克隆抗体制备
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作者 李佳晋 杨克礼 +3 位作者 朱啟超 任曼 江昌盛 李升和 《安徽科技学院学报》 2025年第1期9-16,共8页
以猪流行性腹泻病毒(PEDV)的S1蛋白为研究对象,构建PEDV S1的杆状病毒系统并稳定表达高纯度的S1蛋白,制备高特异性的S1蛋白多克隆抗体。基于多种基因型PEDV S1基因序列信息,使用生物信息学技术分析其理化特性、跨膜结构域、抗原表位和... 以猪流行性腹泻病毒(PEDV)的S1蛋白为研究对象,构建PEDV S1的杆状病毒系统并稳定表达高纯度的S1蛋白,制备高特异性的S1蛋白多克隆抗体。基于多种基因型PEDV S1基因序列信息,使用生物信息学技术分析其理化特性、跨膜结构域、抗原表位和二级结构等性质。进一步对S1基因序列进行适用于昆虫细胞表达的密码子优化,通过基因合成、载体构建、杆粒转化、细胞培养等步骤,构建适用于表达PEDV S1重组蛋白的Bac-to-Bac杆状病毒表达系统。通过镍柱亲和层析和超滤技术纯化S1重组蛋白,将其与弗氏佐剂混合乳化后免疫BALB/c小鼠,制备鼠多克隆抗血清(多抗血清)。通过间接免疫荧光(IFA)、十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)、免疫印迹(Western Blot)等方法,成功证明了本研究所建立的杆状病毒表达系统能够有效地表达S1重组蛋白。ELISA和IFA验证了所得抗体在特异识别PEDV感染Vero细胞方面的有效性。本文成功构建了PEDV S1的杆状病毒表达系统,稳定表达了高纯度的S1蛋白,并制备了具有高特异性的S1蛋白多克隆抗体,为未来猪流行性腹泻单克隆抗体的制备及检测试剂的研发奠定了基础。 展开更多
关键词 猪流行性腹泻病毒 s1蛋白 生物信息学 杆状病毒表达 多克隆抗体
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Role of metabolic dysfunction and inflammation along the liver-brain axis in animal models with obesity-induced neurodegeneration
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作者 Evridiki Asimakidou Eka Norfaishanty Saipuljumri +1 位作者 Chih Hung Lo Jialiu Zeng 《Neural Regeneration Research》 SCIE CAS 2025年第4期1069-1076,共8页
The interaction between metabolic dysfunction and inflammation is central to the development of neurodegenerative diseases such as Alzheimer’s disease and Parkinson’s disease.Obesity-related conditions like type 2 d... The interaction between metabolic dysfunction and inflammation is central to the development of neurodegenerative diseases such as Alzheimer’s disease and Parkinson’s disease.Obesity-related conditions like type 2 diabetes and non-alcoholic fatty liver disease exacerbate this relationship.Peripheral lipid accumulation,particularly in the liver,initiates a cascade of inflammatory processes that extend to the brain,influencing critical metabolic regulatory regions.Ceramide and palmitate,key lipid components,along with lipid transporters lipocalin-2 and apolipoprotein E,contribute to neuroinflammation by disrupting blood–brain barrier integrity and promoting gliosis.Peripheral insulin resistance further exacerbates brain insulin resistance and neuroinflammation.Preclinical interventions targeting peripheral lipid metabolism and insulin signaling pathways have shown promise in reducing neuroinflammation in animal models.However,translating these findings to clinical practice requires further investigation into human subjects.In conclusion,metabolic dysfunction,peripheral inflammation,and insulin resistance are integral to neuroinflammation and neurodegeneration.Understanding these complex mechanisms holds potential for identifying novel therapeutic targets and improving outcomes for neurodegenerative diseases. 展开更多
关键词 Alzheimer’s disease inflammatory cytokines insulin resistance LIPID
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Differential distribution of PINK1 and Parkin in the primate brain implies distinct roles
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作者 Yanting Liu Wei Huang +8 位作者 Jiayi Wen Xin Xiong Ting Xu Qi Wang Xiusheng Chen Xianxian Zhao Shihua Li Xiaojiang Li Weili Yang 《Neural Regeneration Research》 SCIE CAS 2025年第4期1124-1134,共11页
The vast majority of in vitro studies have demonstrated that PINK1 phosphorylates Parkin to work together in mitophagy to protect against neuronal degeneration.However,it remains largely unclear how PINK1 and Parkin a... The vast majority of in vitro studies have demonstrated that PINK1 phosphorylates Parkin to work together in mitophagy to protect against neuronal degeneration.However,it remains largely unclear how PINK1 and Parkin are expressed in mammalian brains.This has been difficult to address because of the intrinsically low levels of PINK1 and undetectable levels of phosphorylated Parkin in small animals.Understanding this issue is critical for elucidating the in vivo roles of PINK1 and Parkin.Recently,we showed that the PINK1 kinase is selectively expressed as a truncated form(PINK1–55)in the primate brain.In the present study,we used multiple antibodies,including our recently developed monoclonal anti-PINK1,to validate the selective expression of PINK1 in the primate brain.We found that PINK1 was stably expressed in the monkey brain at postnatal and adulthood stages,which is consistent with the findings that depleting PINK1 can cause neuronal loss in developing and adult monkey brains.PINK1 was enriched in the membrane-bound fractionations,whereas Parkin was soluble with a distinguishable distribution.Immunofluorescent double staining experiments showed that PINK1 and Parkin did not colocalize under physiological conditions in cultured monkey astrocytes,though they did colocalize on mitochondria when the cells were exposed to mitochondrial stress.These findings suggest that PINK1 and Parkin may have distinct roles beyond their well-known function in mitophagy during mitochondrial damage. 展开更多
关键词 NEURODEGENERATION PARKIN Parkinson’s disease PINK1 subcellular distribution
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Comparative proteomic analysis of plasma exosomes reveals the functional contribution of N-acetyl-alpha-glucosaminidase to Parkinson’s disease
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作者 Yuan Zhao Yidan Zhang +6 位作者 Xin Liu Jian Zhang Ya Gao Shuyue Li Cui Chang Xiang Liu Guofeng Yang 《Neural Regeneration Research》 SCIE CAS 2025年第10期2998-3012,共15页
Parkinson’s disease is the second most common progressive neurodegenerative disorder,and few reliable biomarkers are available to track disease progression.The proteins,DNA,mRNA,and lipids carried by exosomes reflect... Parkinson’s disease is the second most common progressive neurodegenerative disorder,and few reliable biomarkers are available to track disease progression.The proteins,DNA,mRNA,and lipids carried by exosomes reflect intracellular changes,and thus can serve as biomarkers for a variety of conditions.In this study,we investigated alterations in the protein content of plasma exosomes derived from patients with Parkinson’s disease and the potential therapeutic roles of these proteins in Parkinson’s disease.Using a tandem mass tag-based quantitative proteomics approach,we characterized the proteomes of plasma exosomes derived from individual patients,identified exosomal protein signatures specific to patients with Parkinson’s disease,and identified N-acetyl-alpha-glucosaminidase as a differentially expressed protein.N-acetyl-alpha-glucosaminidase expression levels in exosomes from the plasma of patients and healthy controls were validated by enzyme-linked immunosorbent assay and western blot.The results demonstrated that the exosomal N-acetyl-alpha-glucosaminidase concentration was not only lower in Parkinson’s disease,but also decreased with increasing Hoehn-Yahr stage,suggesting that N-acetyl-alpha-glucosaminidase could be used to rapidly evaluate Parkinson’s disease severity.Furthermore,western blot and immunohistochemistry analysis showed that N-acetyl-alpha-glucosaminidase levels were markedly reduced both in cells treated with 1-methyl-4-phenylpyridinium and cells overexpressingα-synuclein compared with control cells.Additionally,N-acetyl-alpha-glucosaminidase overexpression significantly increased cell viability and inhibitedα-synuclein expression in 1-methyl-4-phenylpyridinium-treated cells.Taken together,our findings demonstrate for the first time that exosomal N-acetyl-alpha-glucosaminidase may serve as a biomarker for Parkinson’s disease diagnosis,and that N-acetyl-alpha-glucosaminidase may reduceα-synuclein expression and 1-methyl-4-phenylpyridinium-induced neurotoxicity,thus providing a new therapeutic target for Parkinson’s disease. 展开更多
关键词 biomarker diagnosis EXOsOMEs N-acetyl-alpha-glucosaminidase Parkinson’s disease proteomic α-synuclein
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Netrin-1 signaling pathway mechanisms in neurodegenerative diseases
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作者 Kedong Zhu Hualong Wang +2 位作者 Keqiang Ye Guiqin Chen Zhaohui Zhang 《Neural Regeneration Research》 SCIE CAS 2025年第4期960-972,共13页
Netrin-1 and its receptors play crucial roles in inducing axonal growth and neuronal migration during neuronal development.Their profound impacts then extend into adulthood to encompass the maintenance of neuronal sur... Netrin-1 and its receptors play crucial roles in inducing axonal growth and neuronal migration during neuronal development.Their profound impacts then extend into adulthood to encompass the maintenance of neuronal survival and synaptic function.Increasing amounts of evidence highlight several key points:(1)Diminished Netrin-1 levels exacerbate pathological progression in animal models of Alzheimer’s disease and Parkinson’s disease,and potentially,similar alterations occur in humans.(2)Genetic mutations of Netrin-1 receptors increase an individuals’susceptibility to neurodegenerative disorders.(3)Therapeutic approaches targeting Netrin-1 and its receptors offer the benefits of enhancing memory and motor function.(4)Netrin-1 and its receptors show genetic and epigenetic alterations in a variety of cancers.These findings provide compelling evidence that Netrin-1 and its receptors are crucial targets in neurodegenerative diseases.Through a comprehensive review of Netrin-1 signaling pathways,our objective is to uncover potential therapeutic avenues for neurodegenerative disorders. 展开更多
关键词 Alzheimer’s disease axon guidance colorectal cancer Netrin-1 receptors Netrin-1 signaling pathways NETRIN-1 neurodegenerative diseases neuron survival Parkinson’s disease UNC5C
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The autophagy-lysosome pathway:a potential target in the chemical and gene therapeutic strategies for Parkinson’s disease
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作者 Fengjuan Jiao Lingyan Meng +1 位作者 Kang Du Xuezhi Li 《Neural Regeneration Research》 SCIE CAS 2025年第1期139-158,共20页
Parkinson’s disease is a common neurodegenerative disease with movement disorders associated with the intracytoplasmic deposition of aggregate proteins such asα-synuclein in neurons.As one of the major intracellular... Parkinson’s disease is a common neurodegenerative disease with movement disorders associated with the intracytoplasmic deposition of aggregate proteins such asα-synuclein in neurons.As one of the major intracellular degradation pathways,the autophagy-lysosome pathway plays an important role in eliminating these proteins.Accumulating evidence has shown that upregulation of the autophagy-lysosome pathway may contribute to the clearance ofα-synuclein aggregates and protect against degeneration of dopaminergic neurons in Parkinson’s disease.Moreover,multiple genes associated with the pathogenesis of Parkinson’s disease are intimately linked to alterations in the autophagy-lysosome pathway.Thus,this pathway appears to be a promising therapeutic target for treatment of Parkinson’s disease.In this review,we briefly introduce the machinery of autophagy.Then,we provide a description of the effects of Parkinson’s disease–related genes on the autophagy-lysosome pathway.Finally,we highlight the potential chemical and genetic therapeutic strategies targeting the autophagy–lysosome pathway and their applications in Parkinson’s disease. 展开更多
关键词 AUTOPHAGY chemical therapy gene therapy Parkinson’s disease Α-sYNUCLEIN
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Nanomaterials-mediated lysosomal regulation:a robust protein-clearance approach for the treatment of Alzheimer’s disease
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作者 Mengqi Hao Jianjian Chu +8 位作者 Tinglin Zhang Tong Yin Yuankai Gu Wendanqi Liang Wenbo Ji Jianhua Zhuang Yan Liu Jie Gao You Yin 《Neural Regeneration Research》 SCIE CAS 2025年第2期424-439,共16页
Alzheimer’s disease is a debilitating,progressive neurodegenerative disorder characterized by the progressive accumulation of abnormal proteins,including amyloid plaques and intracellular tau tangles,primarily within... Alzheimer’s disease is a debilitating,progressive neurodegenerative disorder characterized by the progressive accumulation of abnormal proteins,including amyloid plaques and intracellular tau tangles,primarily within the brain.Lysosomes,crucial intracellular organelles responsible for protein degradation,play a key role in maintaining cellular homeostasis.Some studies have suggested a link between the dysregulation of the lysosomal system and pathogenesis of neurodegenerative diseases,including Alzheimer’s disease.Restoring the normal physiological function of lysosomes hold the potential to reduce the pathological burden and improve the symptoms of Alzheimer’s disease.Currently,the efficacy of drugs in treating Alzheimer’s disease is limited,with major challenges in drug delivery efficiency and targeting.Recently,nanomaterials have gained widespread use in Alzheimer’s disease drug research owing to their favorable physical and chemical properties.This review aims to provide a comprehensive overview of recent advances in using nanomaterials(polymeric nanomaterials,nanoemulsions,and carbon-based nanomaterials)to enhance lysosomal function in treating Alzheimer’s disease.This review also explores new concepts and potential therapeutic strategies for Alzheimer’s disease through the integration of nanomaterials and modulation of lysosomal function.In conclusion,this review emphasizes the potential of nanomaterials in modulating lysosomal function to improve the pathological features of Alzheimer’s disease.The application of nanotechnology to the development of Alzheimer’s disease drugs brings new ideas and approaches for future treatment of this disease. 展开更多
关键词 Alzheimer’s disease autophagy dysfunction lysosomal acidification lysosomal system nanomaterials neurodegenerative diseases
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基于YOLOv5s的自动驾驶车辆行人检测方法
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作者 侯佩玉 徐淼 +2 位作者 张明 柳庆 徐芳冬 《北华大学学报(自然科学版)》 CAS 2025年第1期107-114,共8页
提出一种改进的YOLOv5s模型,旨在提高自动驾驶车辆行人检测的准确性。通过增加一个小目标检测层,将原有的三尺度检测层扩展为四尺度,提高小目标的检测能力;在颈部网络中将坐标注意力(CA)机制引入C3模块,构建C3-CA模块,以强化特征间的空... 提出一种改进的YOLOv5s模型,旨在提高自动驾驶车辆行人检测的准确性。通过增加一个小目标检测层,将原有的三尺度检测层扩展为四尺度,提高小目标的检测能力;在颈部网络中将坐标注意力(CA)机制引入C3模块,构建C3-CA模块,以强化特征间的空间关系,从而更精确地定位行人;将原有的CIoU损失函数替换为EIoU,改善模型收敛性。在BDD100K数据集进行试验验证,结果显示:与YOLOv5s模型相比,改进后的模型检测精度提高了1.7%,召回率提高了4.8%,平均精度提高了2.2%,降低了漏检和误检概率。 展开更多
关键词 自动驾驶 行人检测 YOLOv5s 坐标注意力
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Glycolytic dysregulation in Alzheimer's disease:unveiling new avenues for understanding pathogenesis and improving therapy
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作者 You Wu Lijie Yang +2 位作者 Wanrong Jiang Xinyuan Zhang Zhaohui Yao 《Neural Regeneration Research》 SCIE CAS 2025年第8期2264-2278,共15页
Alzheimer's disease poses a significant global health challenge owing to the progressive cognitive decline of patients and absence of curative treatments.The current therapeutic strategies,primarily based on choli... Alzheimer's disease poses a significant global health challenge owing to the progressive cognitive decline of patients and absence of curative treatments.The current therapeutic strategies,primarily based on cholinesterase inhibitors and N-methyl-Daspartate receptor antagonists,offer limited symptomatic relief without halting disease progression,highlighting an urgent need for novel research directions that address the key mechanisms underlying Alzheimer's disease.Recent studies have provided insights into the critical role of glycolysis,a fundamental energy metabolism pathway in the brain,in the pathogenesis of Alzheimer's disease.Alterations in glycolytic processes within neurons and glial cells,including microglia,astrocytes,and oligodendrocytes,have been identified as significant contributors to the pathological landscape of Alzheimer's disease.Glycolytic changes impact neuronal health and function,thus offering promising targets for therapeutic intervention.The purpose of this review is to consolidate current knowledge on the modifications in glycolysis associated with Alzheimer's disease and explore the mechanisms by which these abnormalities contribute to disease onset and progression.Comprehensive focus on the pathways through which glycolytic dysfunction influences Alzheimer's disease pathology should provide insights into potential therapeutic targets and strategies that pave the way for groundbreaking treatments,emphasizing the importance of understanding metabolic processes in the quest for clarification and management of Alzheimer's disease. 展开更多
关键词 Alzheimer’s disease glial cells GLYCOLYsIs neuronal metabolism PATHOGENEsIs therapeutic targets
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