aqp
- 网络水通道;水通道蛋白
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Members of the mammalian AQP family are expressed diversely in fluid-transporting epithelium , endothelium of various organs , and in other tissues such as skin , white blood cells and fat cells .
哺乳动物水通道家族的成员表达分布在各种液体转运器官的上皮和内皮组织,在一些与液体转运无明显关系的组织例如皮肤、白细胞和脂肪细胞也广泛分布。
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CONCLUSION : AQP 4 is the important factor which influences the ischemic cerebral edema .
结论:AQP-4是影响缺血性脑水肿的重要因素。
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AQP support , participation and development .
支持、参与和开发AQP。
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The expressions of AQP 4 protein and gene .
AQP4蛋白、基因的表达量。
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Aquaporin ( AQP ) was discovered in recent years from plasma and tonoplast membrane .
水孔蛋白(AQP)是近年来发现的质膜和液泡膜上专一性、高效性水分跨膜运输通道。
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The abnormal expression of AQP may be one of the pathogenesis of piwei damp-heat syndrome .
结论:AQP与水液代谢密切相关,AQP的异常表达可能是脾胃湿热证的发生机制之一。
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Aquaporins ( AQP ) are a family of hydrophobic intrinsic membrane proteins that efficiently and selectively transport water .
水通道蛋白(aquaporin,AQP)是一族细胞膜上选择性高效转运水分子的特异孔道。
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So far 13 members of the AQP family ( AQP0-12 ) have been reported in human and rodents .
到目前为止已克隆的人和啮齿类动物水通道蛋白家族有13个成员(AQP0-AQP12)。
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Aquaporin-4 ( AQP-4 ), as one of the AQP family of water channels , is primarily expressed in astrocytes .
水通道蛋白-4(aquaporins-4,AQP-4)为水通道蛋白家族的一种,广泛分布在中枢神经系统,并主要表达于星形胶质细胞膜。
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Objective To determine the distribution of various subtypes of water channel protein ( aquaporin , AQP ) in various structures of different human salivary glands .
目的检测水通道蛋白亚型在人涎腺不同腺体的分布和各亚型所在的部位。
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The average gray values of near and far regions from tumor tissue were measured with HPIAS-1000 cells measuring procedure to compare actual expression quantity of AQP .
应用HPIAS-1000高清晰病理图文分析系统分别测量每张切片中紧贴肿瘤区和离肿瘤较远区的平均灰度值,比较这两类区域中AQP的实际表达量。
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Mice lacking the gene for aqueous water channel aquaporin ( Aqp ) 5 exhibit methacholine-induced bronchiolar hyperreactivity when compared to normal mice .
与正常小鼠相比,缺乏水通道基因的小鼠显示出乙酰胆碱诱导的细支气管高反应性。
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Objective To observe the distribution of aquaporin-4 ( AQP ! 4 ) in brain tissue of intracerebral hemorrhagic rats , and its role in hemorrhagic brain edema .
目的观察脑出血大鼠水通道蛋白4(AQP4)在脑组织的分布变化及其在出血性脑水肿中的作用。
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Results In the control group , AQP 5 was strongly expressed in the apical membrane , the basolateral membrane , and the secretory duct of the acinar cells .
结果对照组AQP5在腺泡的顶膜、侧膜和导管等处均有较强表达;
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OBJECTIVE : To investigate the effect of different PDS on peritoneal dialysis efficiency in rat models , and to observe the TJ and AQP in the peritoneal mesothelial cell .
目的观察不同葡萄糖浓度的商用含糖乳酸盐腹膜透析(腹透)液对大鼠腹膜功能和腹膜间皮细胞紧密连接的影响。
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Aquaporin ( AQP ) are a family of hydrophobic intrinsic membrane proteins that efficiently and selectively transport water . Aquaporin is the main molecular basis of water transmembrane transport .
水通道蛋白(Aquaporin,AQP)是一组具有同源性的内在膜蛋白家族成员,是水跨膜转运的主要分子基础。
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AQP ( aquaporin ) is an important molecule in water transportation . The first AQP was reported in 1988 and until 1997 the first molecule in water transportation was named as aquaporin .
水的跨膜转运与生命活动息息相关,随着1988年第一个水通道蛋白(AQP)被发现,并于1997年被正式命名,由此为水分子跨膜转运提供了分子结构依据。
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Objective To investigate the rule of the aquaporin 4 ( AQP 4 ) expression in the acute ischemic cerebral tissues , and to study the molecular biologic mechanism of diffusion weighted imaging ( DWI ) .
目的研究水通道蛋白4(AQP4)在急性期缺血脑组织中的表达规律,探讨扩散加权成像(DWI)的分子生物学机制。
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Since the discovery of first water channel ( AQP1 ) from red blood cell membrane by Agre et al in 1992 , rapid and serial progresses have been made in characterization of AQP structure and function .
自从Agre等于1992年从红细胞膜发现第一个水通道蛋白AQP1以来,有关水通道蛋白结构与功能的研究取得了迅速的、系列性的进展。
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BACKGROUND : Cell edema is related to water transport which is closely related to the aquaporin ( AQP ) so that it will provide basis for further exploring the pathogenesis of cerebral edema by studying the relationship between cerebral edema and AQP .
背景:细胞水肿与水的转运有关,水的转运与水通道蛋白(aquaporin、AQP)密切相关,研究脑水肿与水通道蛋白关系,会为进一步阐述脑水肿的发病机制奠定基础。
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INTERVENTIONS : Cerebral ischemia model of rat was built according to the Longa 's method . Haematoxylin and eosin staining was used to observe the histopathologic changes while immunohistochemical staining was used to detect the change of AQP 4 in brain tissue .
干预:参考Longa等方法建立大鼠大脑缺血模型,苏木精-伊红染色观察组织病理学改变,应用免疫组化染色检测脑组织中AQP-4的变化。
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Aqp 3 in the spiral limb , vestibular lip , internal and external sulci , basilar membrane and basilar membrane crest , endolymphatic sac and duct , membranous semicircular canal and utricle and saccular macula ;
Aqp3在螺旋韧带、前庭唇、内、外螺旋沟、基底膜和基底膜嵴、内淋巴囊和内淋巴管、膜半规管和椭圆囊、球囊斑等处显示荧光染色。
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Objective To determine the effects of lipopolysaccharide ( LPS ) stimulation on aquaporin 1 ( AQP 1 ) expression in rat lung microvessel endothelial cells ( RLMECs ) and to offer experimental support for the investigation of the mechanisms of lung fluid abnormal metabolism in acute lung injury .
目的通过观察脂多糖(LPS)刺激下对肺微血管内皮细胞水通道蛋白1(AQP1)表达的影响,为进一步研究急性肺损伤时肺水异常代谢的机制提供实验依据。
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The AQP - 3 locates in basolateral membrane of connecting tubule mainly , AQP & 3 not only can transport water but also can transport some small molecule material such as urea and glycerin . , and the urea have important effect on the concentrated mechanism of kidney .
AQP-3主要分布于集合管上皮细胞基侧质膜,除了对水有通透性外、还可转运尿素和甘油等小分子物质,而尿素在尿液浓缩机制中有着重要的作用。