力学信号转导,Mechanotransduction
1)Mechanotransduction力学信号转导
1.The Study on the Mechanotransduction Mechanism of Mandibular Condylar Chondrocyte;下颌髁突软骨细胞力学信号转导机制的研究
2.Objective:To identify the transcription of particular subunits of ionotropic NMDA glutamate receptors(NMDAR) in mouse bone marrow stromal precursor cell line D1,osteoblastic cell MC3T3-E1 and MC3T3-E1 subclone 14,investigate the involved glutamate signaling underlying the potential mechanisms of mechanotransduction.目的:鉴定骨髓间充质干细胞D1和成骨细胞MC3T3-E1、MC3T3-E1亚克隆14是否表达NMDA型谷氨酸受体(NMDAR),并初步探讨NMDAR是否参与力学信号转导
3.Objective: To identify the transcription of particular subunits of ionotropic NMDA glutamate receptors in mouse bone marrow stromal precursor cell line D1, osteoblastic cell MC3T3-E1 and MC3T3-E1 subclone 14, investigate the involved functional pathways underlying the potential mechanisms of mechanotransduction.目的:研究骨髓间充质干细胞D1和成骨细胞MC3T3-E1、MC3T3-E1 subclone 14在基底应变作用下NMDA型谷氨酸受体(NMDAR)的表达情况,探讨NMDAR在成骨细胞力学信号转导的作用和相关的信号通路。
英文短句/例句

1.The Study on the Mechanotransduction Mechanism of Mandibular Condylar Chondrocyte;下颌髁突软骨细胞力学信号转导机制的研究
2.Effects of progressive increasing load training on signaling factors of mechanotransduction递增负荷运动对力学信号转导因子的影响效应
3.Effects of Different Gravitational Environments on Mechanotransduction in Rat Osteoblasts;不同重力环境对大鼠成骨细胞力学信号转导功能的影响
4.The Mechanotransduction in Myoblast Cultured in Vitro in PLGA-collage Scaffolds;PLGA-胶原支架上大鼠成肌细胞力学信号转导机制的初步研究
5.Functional Involvement of NMDAR and Pathways in the Process of Mechanotransduction in Osteoblastic Cell;谷氨酸受体在成骨细胞力学信号转导中作用的研究
6.Studies on the Mechanism Underlying Sclerostin Function and the Role of Sclerostin in Mediating Bone Response to Mechanical UnloadingSclerostin分子在骨骼力学信号转导中的作用及其机制研究
7.Advances in the Study on the Role of Connective Tissue in the Mechanical Signal Transduction of Acupuncture结缔组织在针刺力学信号转导中的作用和研究进展
8.The Initial Biological Responses to Tension/compress Stimuli and the Mechanotransduction in Osteoblastic Cells in Vitro;张、压应力刺激下成骨细胞早期应答及力学信号转导机制的初步研究
9.The Initial Responses to Mechanical Strain and the Mechanotransduction in Osteoblastic Cells in Vitro;机械力作用下成骨细胞的早期应答反应及力学信号转导机制的初步研究
10.Dynamic modeling of cell apoptosis signaling pathway细胞凋亡信号转导通路的动力学模拟
11.Transmembrane signal transmission functions of cell; The mechanics of muscle contraction.【了解】细胞的跨膜信号转导功能;肌肉收缩的力学关系。
12.The Effects of Mechanical Stimulation on the Function and Signal Transduction in Osteoblasts;机械力学刺激对成骨细胞功能及信号转导的影响
13.Changes of the Learning and Memory Function and IGF-Ⅰ Signal Pathway in Hippocampus of Diabetic Rats;药物性糖尿病大鼠学习记忆能力及海马IGF-Ⅰ信号转导通路的变化
14.The Change of Bone Relevant Factors of Female Rats Mechanical Signal Transductions by Long-term Incremental Load Training长期递增大负荷训练对雌性大鼠相关力学转导信号因子的影响
15.Dynamic Simulation and Analysis of ERK Signal Pathway Activated by Epidermal Growth Factor Receptor表皮生长因子受体激活的ERK信号转导通路的动力学模拟与分析
16.Signal transduction and gene regulation of the osteoblasts under the stress应力作用下成骨细胞的信号转导及基因调控
17.capstan tachogenerator signal主导轴转速传感信号
18.Regulatory mechanisms of ERK signal transduction pathwayERK信号通路的信号转导调控机制
相关短句/例句

mechanotransduction signaling factor力学信号转导因子
3)signal transduction信号转导
1.Vasodilatation of SO_2 derivatives and cAMP-PKA signal transduction;cAMP-PKA信号转导在SO_2衍生物舒张血管中作用
2.The role of Smads and related transcription factors in the signal transduction of bone morphogenetic protein;骨形成蛋白信号转导通路中的Smads相关转录因子
3.Advancements of signal transduction in myocardial ischemic postconditioning;心肌缺血后处理胞内信号转导研究进展
4)Signaling['siɡn?li?]信号转导
1.The role of Smad8 in BMP-2 signaling in odontoblast cell line MDPC-23;Smad8在成牙本质细胞系MDPC-23内BMP-2信号转导中的作用
2.ABA and H_2O_2 Signaling in Vicia Guard Cells;蚕豆保卫细胞ABA、H_2O_2信号转导系统的研究
3.The Expression and Signaling of Leptin and Its Receptors in Helicobacter Pylori-associated Gastritis;幽门螺杆菌相关性胃炎患者胃黏膜瘦素及其受体的表达与信号转导
5)signaling transduction信号转导
1.The role of protein kinase CK2 in signaling transduction and tumourigenesis;蛋白激酶CK2在信号转导中的作用及其与肿瘤发生的关系
2.Roles of Rho GTPase in signaling transduction and cytoskeletonRho GTPase在信号转导和细胞骨架中的作用
3.Aim:To explore the intracellular signaling transduction pathways in mice neurons stimulated by octapeptide cholecystokinin(CCK8).目的:从蛋白质可逆磷酸化修饰的角度,对小鼠神经元在八肽胆囊收缩素(CCK8)刺激下的信号转导通路进行初步研究。
6)signaling pathway信号转导
1.Photodynamic therapy with hypericin and its signaling pathway system of apoptosis and antiapoptosis;金丝桃素光动力学疗法与其诱导细胞凋亡、抗凋亡信号转导系统
2.Recently, fragments of the closely related human tyrosyl and tryptophanyl tRNA synthetases were discovered to be active in angiogenesis signaling pathway.在哺乳动物细胞中 ,蛋白质的生物合成途径与细胞信号转导途径紧密相连 。
延伸阅读

脉心导敏 ,脉导敏,英他佐明,麦新导明药物名称:吗多明英文名:Molsidomine别名: 吗导敏;吗多明;吗斯酮胺;脉心导敏 ,脉导敏,英他佐明,麦新导明外文名:Molsidomine 特点: 脉导敏是一种属于亚胺类化合物,其作用与硝酸盐相似。舌下含服1毫克,2~4分钟起作用,可阻止心绞痛发作。口服一次可持续6~7小时,剂量每天3次,每次2毫克。副作用包括头痛、头胀、脸部发热感等,但不多见。 适应症: 防治心绞痛的发作。 用量用法: 口服:1次1~2mg,1日2~3次,发作时舌下含服:1次2mg。喷雾吸入:每次揿吸1~2次(相当于本品0.2~0.4mg),每日次数酌定。 注意事项: 1.一般不良反应可有头痛、面部潮红、眩晕等,停药后可自行消失。 2.低血压、青光眼病人忌用。 规格: 片剂:每片1mg、2mg。 气雾剂:每瓶含42mg(可揿吸200次左右)。 类别:非选择性钙通道阻滞剂||防治心绞痛药