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    题名 作者 年代 出处 被引量
1二氢乳清酸脱氢酶介导的铁死亡防御是肿瘤治疗中的潜在靶点显示文摘铁死亡是一种过度的脂质过氧化诱导的调节性细胞死亡形式,是关键的肿瘤抑制机制。谷胱甘肽过氧化物酶4(GPX4)和铁死亡抑制蛋白1(FSP1)构成了2个主要的铁死亡防御系统。本研究表明用GPX4抑制剂治疗癌细胞会导致N-氨基甲酰基-l-天冬氨酸(一种嘧啶生物合成中间体)的急性消耗,并伴随尿苷的积累。李娜(编译) Mao C Liu X Zhang Y 2021国际老年医学杂志2021,42,4:69
2SARS coronavirus entry into host cells through a novel clathrin- and caveolae-independent endocytic pathway显示文摘当严重急性呼吸症候群日冕病毒(SARS-CoV ) 开始被认为与质膜通过直接熔化进入房间时,更最近的证据建议那个病毒条目可以也包含 endocytosis。我们发现了那 SARS-CoV 进入房间经由 pH 依赖并且受体依赖者 endocytosis。有任何一个 SARS-CoV 尖铁蛋白质或忍受尖铁的假病毒的房间的治疗导致了变换血管收缩素的酶的 translocation 2 (ACE2 ) , SARS-CoV 的功能的受体,从房间表面到内涵体。另外,忍受尖铁的假病毒和 1 在内涵体被发现到 colocalize 的早内涵体抗原。用象 caveolin-1 colocalization 学习一样的特定的 endocytic 小径禁止者和主导否定的 Eps15 的进一步的分析建议那个病毒条目被 clathrin 独立、 caveolae 独立的机制调停。而且,在质膜的微域,它被显示出到为许多生理的发信号小径作为平台扮演的充满胆固醇、 sphingolipid 富有的类脂化合物木排,被显示涉及病毒入口。SARS-CoV 的 Endocytic 入口可以扩展这里的 SARS-CoV 感染,和我们的调查结果的细胞的范围贡献 SARS-CoV 致病的理解,为抗病毒的药研究提供新信息。Wang,H Yang,P Liu,K Guo,F Zhang,Y Zhang,G Jiang,C 2008Cell Research2008,18,2:50
3The Generalized Roper-Suffridge Extension Operator for Locally Biholomorphic Mappings显示文摘In this paper, we introduce the generalized R oper-Suffridge extension operator for locally biholomorphic mappings. It is sh own that this operator preserves the starlikeness on some Reinhardt domains and does not preserve convexity for some cases. Meanwhile, the growth theorem and di stortion theorem of the corresponding mappings are given.LIU Xiao-song,LIU Tai-shun (Department of Mathematics, University of Science and Technology of C hina, Hefei 230026, China) 2003Chinese Quarterly Journal of Mathematics2003,18,3:47
4Main seagrass beds and threats to their habitats in the coastal sea of South China显示文摘The distribution, species, biomass,productivity of main seagrasses and their sufferedmain threats are introduced and discussed in thispaper based on the field surveys in the offshore areas of Guangdong, Guangxi and Hainan provinces.The seagrass beds distributed mainly in Liusha Bay,Donghai Island and Hailing Island of GuangdongProvince; Hepu and Pearl Bay of Guangxi ZhuangAutonomous Region; Li’an Bay, Xincun Bay, Longwan Bay and Sanya Bay of Hainan Province and soon. The total area of seagrass beds in the coastal seaof South China is about 2400 ha. There are about 8species, such as Halophila ovalis, Halodule uninervisHalophila beccarii, Zostera japonica, Enhalus acoroides, Thalassia hemperichii, Ruppia martime andCymodocea rotundata. These seagrasses have highbiomass and productivity. However, they are subjected to some threats resulting from artificial andnatural factors, especially anthropogenic causes,such as culture of shrimps and fishes, shellfish collection, fishing by means of poisons, electric powerand explosives as well as trawling, artificial pollution,dredging channels, and typhoons natural disaster.HUANG Xiaoping HUANG Liangmin LI Yinghong XU Zhanzhou FONG C W HUANG Daojian HAN Qiuying HUANG Hui TAN Yehui LIU Sheng 2006Chinese Science Bulletin2006,51,B12:36
5Abnormal activation of the synuclein-gamma gene in hepatocellular carcinomas by epigenetic alteration.显示文摘Zhao W Liu H Liu W Wu Y Chen W Jiang B Zhou Y Xue R Luo C Wang L Jiang JD Liu J 2006中国生物学文摘2006,20,4:31
6Structure of MERS-CoV spike receptor-binding domain complexed with human receptor DPP4显示文摘最近的尖铁 glycoprotein (S) 鉴别中东呼吸症候群 coronavirus (MERS-CoV ) 指向细胞的受体, dipeptidyl peptidase 4 (DPP4 ) 。顺序比较和当模特儿的分析在病毒的尖铁上揭示了一个通常认为的受体绑定领域(RBD ) ,它调停这个相互作用。我们报导 3.0 Å MERS-CoV RBD 的决定水晶结构跳了到人的 DPP4 的细胞外的领域。我们的结果证明 MERS-CoV RBD 由一个核心和受体绑定子域组成。受体绑定子域与 DPP4 β 交往;推进器然而并非它的内在的 hydrolase 领域。MERS-CoV RBD 和相关 SARS-CoV RBD 分享他们的核心子域的结构的类似的高度,但是在受体绑定子域是尤其是分叉的。Mutagenesis 研究在为到 DPP4 和入口的病毒的绑定是批评的进目标房间的受体绑定子域识别了几关键残余。在在 MERS-CoV RBD 和 DPP4 之间的接口的原子细节提供病毒和受体相互作用的结构的理解,它能对 MERS-CoV 感染指导治疗学和疫苗的开发。Nianshuang Wang Xuanling Shi Liwei Jiang Senyan Zhang Dongli Wang Pei Tong Dongxing Guo Lili Fu Ye Cui Xi Liu Kelly C Arledge Ying-Hua Chen Linqi Zhang Xinquan Wang 2013Cell Research2013,23,8:26
7Vascular endothelial growth factor receptor 2(VEGFR-2) plays a key role in vasculogenic mimicry formation,neovascularization and tumor initiation by Glioma stem-like cells显示文摘Human glioblastomas(GBM)are thought to be initiated by glioma stem-like cells(GSLCs).GSLCs also participate in tumor neovascularization by transdifferentiating into vascular endothelial cells.Here,we report a critical role of GSLCs in the formation of vasculogenic mimicry(VM),which defines channels lined by tumor cells to supply nutrients to early growing tumors andYao X Ping Y Liu Y Chen K Yoshimura T Liu M Gong W Chen C Niu Q Guo D Zhang X Wang JM Bian X 2013中国神经肿瘤杂志2013,11,3:23
8The precipitation strengthening behavior of Cu-rich phase in Nb contained advanced Fe-Cr-Ni type austenitic heat resistant steel for USC power plant applicationCheng-yu Chi a, Hong-yao Yu b, Jian-xin Dong b, Wen-qing Liu c, Shi-chang Cheng d, Zheng-dong Liu d, Xi-shan Xie b a School of Metallurgical and Ecological Engineering, University of Science & Technology Beijing, Beijing 100083, China b School of Materials Science and Engineering, University of Science & Technology Beijing, Beijing 100083, China c Instrumental Analysis & Research Center, Shanghai University, Shanghai 200444, China d Central Iron and Steel Research Institute, Beijing 100081, China 2012Progress in Natural Science:Materials International2012,22,3:20
9MicroRNA-21 in the pathogenesis of acute kidney injury显示文摘Acute kidney injury(AKI),associated with significant mor-bidity and mortality,is widely known to involve epithelial apoptosis,excessive inflammation,and fibrosis in re-sponse to ischemia or reperfusion injury,which results in either chronic pathological changes or death.Therefore,it is imperative that investigations are conducted in order to fi nd effective,early diagnoses,and therapeutic targets needed to help prevent and treat AKI.However,the mech-anisms modulating the pathogenesis of AKI still remain largely undetermined.MicroRNAs(miRNAs),small non-coding RNA molecules,play an important role in several fundamental biological and pathological processes by a post transcriptional regulatory function of gene expres-sion.MicroRNA-21(miR-21)is a recently identifi ed,typi-cal miRNA that is functional as a regulator known to be involved in apoptosis as well as inflammatory and fi brotic signaling pathways in AKI.As a result,miR-21 is now considered a novel biomarker when diagnosing and treat-ing AKI.This article reviews the correlative literature and research progress regarding the roles of miR-21 in AKI.Ya-Feng Li Ying Jing Jielu Hao Nathan C Frankfort Xiaoshuang Zhou Bing Shen Xinyan Liu Lihua Wang Rongshan Li 2013Protein & Cell2013,4,11:18
10Nicotine attenuates beta-amyloid-induced neurotoxicity by regulating metal homeostasis.显示文摘Zhang J Liu Q Chen Q Liu NQ Li FL Lu ZB Qin C Zhu H Huang YY He W Zhao BL 2006中国生物学文摘2006,20,9:17
11The evolution and functional diversification of animal microRNA genes显示文摘microRNAs (miRNAs ) 是 22 核苷酸(nt ) 的一个丰富的班在更高真核细胞的染色体是弥漫的规章的 RNA。以便充分在染色体理解他们的突起,阐明是必要的能多样化 miRNA 活动的分子的机制。在这评论,我们描述一些允许新奇 miRNA 功能出现的许多策略,与 miRNA 基因怎么在动物演变的特别强调。这些机制在他们的顺序包括变化,处理,或表示模式;miRNA 的获得 * 功能或 antisense 处理;并且 de novo 基因出生。miRNAs 的设备和通用性位于下面多半演变并且变化他们怎么成为了更高的染色体的主导的成分。Na Liu Katsutomo Okamura David M Tyler Michael D Phillips Wei-Jen Chung Eric C Lai 2008Cell Research2008,18,10:17
12轴承钢硬切削表面残余应力对滚动接触界面疲劳寿命的影响显示文摘为了预测轴承钢硬切削表面残余应力对滚动接触寿命的影响规律,基于高级非线性有限元分析软件MARC,建立了具有平面应变特征的二维滚动接触寿命预测模型,并在二维有限元模型的表面和次表面对应施加了轴承钢硬切削实验所测残余应力,模拟计算典型服役条件下的滚动接触应力;采用基于S-N寿命理论的Miner法则,计算轴承钢滚动界面的疲劳接触寿命,分析了在不同摩擦系数、滚动接触频率和外加载荷工况下,硬切削残余压应力对疲劳寿命的影响.结果表明,硬切削残余压应力可使轴承钢的滚动接触疲劳寿命提高10%~30%.其中,载荷对滚动接触疲劳寿命影响最大,摩擦系数的影响最小.李振 张相琴 张雪萍 LIU C Richard 2011上海交通大学学报2011,45,1:16
13Protective actions of salvianolic acid A on hepatocyte injured by peroxidation in vitro显示文摘INTRODUCTION Salvianolic radix,one of the most commonly usedtraditional Chinese herbs,was widely studied aboutits actions against liver injury and fibrosis,and wasone of the focuses of recent research.Salvianolic acid-A(SA-A)was an aqueous solublecomponent of Salvianolic radix.In ourHu YY Liu CH Wang RP Liu C Liu P Zhu DY 2000World Journal of Gastroenterology2000,6,3:15
14The wonders of BMP9:From mesenchymal stem cell differentiation,angiogenesis,neurogenesis,tumorigenesis,and metabolism to regenerative medicine显示文摘Although bone morphogenetic proteins(BMPs)initially showed effective induction of ectopic bone growth in muscle,it has since been determined that these proteins,as members of the TGF-b superfamily,play a diverse and critical array of biological roles.These roles include regulating skeletal and bone formation,angiogenesis,and development and homeostasis of multiple organ systems.Disruptions of the members of the TGF-b/BMP superfamily result in severe skeletal and extra-skeletal irregularities,suggesting high therapeutic potential from understanding this family of BMP proteins.Although it was once one of the least characterized BMPs,BMP9 has revealed itself to have the highest osteogenic potential across numerous experiments both in vitro and in vivo,with recent studies suggesting that the exceptional potency of BMP9 may result from unique signaling pathways that differentiate it from other BMPs.The effectiveness of BMP9 in inducing bone formation was recently revealed in promising experiments that demonstrated efficacy in the repair of critical sized cranial defects as well as compatibility with bone-inducing bio-implants,revealing the great translational promise of BMP9.Furthermore,emerging evidence indicates that,besides its osteogenic activity,BMP9 exerts a broad range of biological functions,including stem cell differentiation,angiogenesis,neurogenesis,tumorigenesis,and metabolism.This review aims to summarize our current understanding of BMP9 across biology and the body.Sami Mostafa Mikhail Pakvasa Elam Coalson Allen Zhu Alex Alverdy Hector Castillo Jiaming Fan Alex Li Yixiao Feng Di Wu Elliott Bishop Scott Du Mia Spezia Alissa Li Ofir Hagag Alison Deng Winny Liu Mingyang Li Sherwin S·Ho Aravind Athiviraham Michael J·Lee Jennifer Moriatis Wolf Guillermo A·Ameer Hue H·Luu Rex C·Haydon Jason Strelzow Kelly Hynes Tong-Chuan He Russell R·Reid 2019Genes & Diseases2019,6,3:15
15Design of TRIP Steel With High Welding and Galvanizing Performance in Light of Thermodynamics and Kinetics显示文摘A new type of transformation induced plasticity (TRIP) steel with not only high strength and high ductility but also superior welding and galvanizing properties was designed and developed recently. Low carbon and low silicon content were preliminarily selected with the aim of meeting the requirements of superior quality in both welding and galvanizing. Phosphorus was chosen as one of the alloying elements, because it could reduce carbon activity in cementite and increase the stability of austenite. In addition, the possibility of phosphorus segregating at grain boundary was also discussed by thermodynamics as well as kinetics. Phase diagram was estimated at high temperature and the composition of the steel was then selected in the hyperperitectic range to avoid problems, which might occur in sheet steel continuous casting. Phase diagram in the inter-critical temperature was estimated for the steel to obtain the starting temperature of fast cooling. For understanding the minimum rate of fast cooling, pearlite growth kinetics was calculated with self-developed diffusion coefficients of elements in grain boundary. Overaging temperature was determined through the calculation of T0 temperature by both equilibrium and para-equilibrium assumptions, which was different from the current determination, which is only based on an equilibrium estimation.LI Lin DE COOMAN B C LIU Ren-dong VLEUGELS j ZHANG Mei SHI Wen 2007Journal of Iron and Steel Research(International)2007,14,6:13
16Abdominal applications of diffusion-weighted magnetic resonance imaging: Where do we stand?显示文摘Diffusion-weighted imaging (DWI) is one of the magnetic resonance imaging (MRI) sequences providing qualitative as well as quantitative information at a cellular level. It has been widely used for various applications in the central nervous system. Over the past decade, various extracranial applications of DWI have been increasingly explored, as it may detect changes even before signal alterations or morphological abnormalities become apparent on other pulse sequences. Initial results from abdominal MRI applications are promising, particularly in oncological settings and for the detection of abscesses. The purpose of this article is to describe the clinically relevant basic concepts of DWI, techniques to perform abdominal DWI, its analysis and applications in abdominal visceral MR imaging, in addition to a brief overview of whole body DWI MRI.Ajaykumar C Morani Khaled M Elsayes Peter S Liu William J Weadock Janio Szklaruk Jonathan Russell Dillman Asra Khan Thomas L Chenevert Hero K Hussain 2013World Journal of Radiology2013,5,3:12
17Nutrient Intakes of Pregnant Women and their Associated Factors in Eight Cities of China: A Cross-sectional Study显示文摘Fang-Li Liu Yu-Mei Zhang Gerard Vinyes Pares Kathleen C Reidy Wen-Zhi Zhao Ai Zhao Cheng Chen Celia Y Ning Ying-Dong Zheng Pei-Yu Wang 2015Chinese Medical Journal2015,,13:12
18Gastrointestinal imaging-practical magnetic resonance imaging approach显示文摘Over the past two decades, advances in cross-sectionalimaging such as computed tomography and magneticresonance imaging(MRI) have dramatically changed theconcept of gastrointestinal imaging. MR is playing anincreasing role in the evaluation of gastrointestinal disorders. MRI combines the advantages of excellent soft-tissue contrast, noninvasiveness, functional informationand lack of ionizing radiation. Furthermore, recent developments of MRI have led to improved spatial and temporal resolution as well as decreased motion artifacts. Inthis article we describe the technical aspects of gastroin-testinal MRI and present a practical approach for a well-known spectrum of gastrointestinal disease processes.Baodong Liu Miguel Ramalho Mamdoh AlObaidy Kiran K Busireddy Ersan Altun Janaka Kalubowila Richard C Semelka 2014World Journal of Radiology2014,6,8:11
19Cyclosporin A impairs dendritic cell migration by regulating chemokine receptor expression and inhibiting cyclooxygenase-2 expression显示文摘Chen T Guo J Yang M Han C Zhang M Chen W Liu Q Wang J Cao X 2005第二军医大学学报2005,26,11:11
20Transcriptomic landscape regulated by the 14 types of bone morphogenetic proteins(BMPs)in lineage commitment and differentiation of mesenchymal stem cells(MSCs)显示文摘Mesenchymal stem cells(MSCs)are ubiquitously-existing multipotent progenitors that can self-renew and differentiate into multiple lineages including osteocytes,chondrocytes,adipocytes,tenocytes and myocytes.MSCs represent one of the most commonly-used adult progenitors and serve as excellent progenitor cell models for investigating lineagespecific differentiation regulated by various cellular signaling pathways,such as bone morphogenetic proteins(BMPs).As members of TGFb superfamily,BMPs play diverse and important roles in development and adult tissues.At least 14 BMPs have been identified in mammals.Different BMPs exert distinct but overlapping biological functions.Through a comprehensive analysis of 14 BMPs in MSCs,we demonstrated that BMP9 is one of the most potent BMPs in inducing osteogenic differentiation of MSCs.Nonetheless,a global mechanistic view of BMP signaling in regulating the proliferation and differentiation of MSCs remains to be fully elucidated.Here,we conducted a comprehensive transcriptomic profiling in the MSCs stimulated by 14 types of BMPs.Hierarchical clustering analysis classifies 14 BMPs into three subclusters:an osteo/chondrogenic/adipogenic cluster,a tenogenic cluster,and BMP3 cluster.We also demonstrate that six BMPs(e.g.,BMP2,BMP3,BMP4,BMP7,BMP8,and BMP9)can induce ISmads effectively,while BMP2,BMP3,BMP4,BMP7,and BMP11 up-regulate Smad-independent MAP kinase pathway.Furthermore,we show that many BMPs can upregulate the expression of the signal mediators of Wnt,Notch and PI3K/AKT/mTOR pathways.While the reported transcriptomic changes need to be further validated,our expression profiling represents the first-of-its-kind to interrogate a comprehensive transcriptomic landscape regulated by the 14 types of BMPs in MSCs.Linghuan Zhang Qing Luo Yi Shu Zongyue Zeng Bo Huang Yixiao Feng Bo Zhang Xi Wang Yan Lei Zhenyu Ye Ling Zhao Daigui Cao Lijuan Yang Xian Chen Bin Liu William Wagstaff Russell R*Reid Hue H*Luu Rex C*Haydon Michael J*Lee Jennifer Moriatis Wolf Zhou Fu Tong-Chuan He Quan Kang 2019Genes & Diseases2019,6,3:11
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