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find Keyword "转运" 50 results
  • 乳腺癌耐药蛋白/ATP结合转运蛋白G超家族成员单核苷酸多态性研究进展

    【摘要】乳腺癌耐药蛋白(breast cancer resistance protein, BCRP)是ATP结合转运蛋白(ATPbinding cassette,ABC)超家族成员之一,ABC在人肿瘤细胞和正常组织均有表达,参与多种物质的吸收、分布和排泄,并在机体组织防御过程中发挥重要作用。编码BCRP的ABCG2基因单核苷酸多态性(SNP)在BCRP的表达和功能、底物的体内过程、抗癌药物的化疗效果等方面均有重要意义。

    Release date:2016-09-08 09:31 Export PDF Favorites Scan
  • Study about the Relationships Between the Formation of Cholesterol Calculus and the Transporters of BSEP, MRP2 and MDR3

    【Abstract】ObjectiveTo evaluate the relationships between the transporters BSEP, MRP2, MDR3 and cholesterol calculus formation. MethodsTwenty hepatic tissue specimens were taken from consented patients with cholesterol calculus during intraoperative liver biopsy, of which ten were taken from patients without cholesterol calculus. RNA of liver tissue from all the samples was extracted and ultraviolet spectrophotometry was used to measure the content and purity of it. The mRNA and protein expressions of BSEP, MRP2 and MDR3 were determined by reverse transcriptionpolymerase chain reaction (RTPCR) and Western blot analysis, respectively. ResultsRTPCR showed that the mRNA expressions of BSEP, MRP2 and MDR3 in liver were significantly lower in patients with cholesterol calculus (0.47±0.18, 1.12±0.39 and 1.02±0.24) than those in the liver of patients without calculus (0.90±0.42, 2.48±0.89 and 1.94±0.80),P<0.01. And Western blot also showed the protein expressions of these transporters were significantly lower in patients with cholesterol calculus (90.16±18.82, 45.43±22.77 and 61.08±14.77) than those in the liver of patients without calculus (186.17±4.34, 160.47±30.19 and 100.84±15.44). ConclusionThe decreased expression of BSEP, MRP2 and MDR3 may correlate with the formation of cholesterol calculus.

    Release date:2016-09-08 11:52 Export PDF Favorites Scan
  • Translocation and Expression of GLUT-4 in Bone Marrow Mesenchymal Stem Cells Transfected with Akt Gene of Rat Ex Vivo

    Objective To elucidate whether glucose transporters-4 (GLUT-4) takes part in glucose uptake of mesenchymal stem cells (MSCs) and whether Akt gene improves translocation and expression of GLUT-4 in MSCs under hypoxic environment ex vivo. Methods MSCs, transfected by Akt gene and no, were cultured with normoxia (5% CO2) or hypoxia (94%N2, 1%O2 and 5% CO2) at 37 ℃ for 8 h. Glucose uptake was assayed by using radiation isotope 2-[3H]-deoxy-Dglucose (3H-G) and the expression of GLUT-4 protein and mRNA was assayed by immunocytochemistry, Western blot and RT-PCR, respectively. Results ①3 H-G intake of MSCs was significantly increased in hypoxiatransfection group than that in hypoxia-non-transfection 〔(1.39±0.13) fold, P<0.05〕, but which was lower than that in normoxia-non-transfection group, P<0.05. ②GLUT-4 was expressed by MSCs under any conditions. Compared with normoxia-non-transfection group, hypoxia decreased the expressions of GLUT-4 mRNA and protein significantly (P<0.05). ③Compared with hypoxianontransfection group, the expression of GLUT-4 〔mRNA(1.756±0.152) fold, total protein in cell (1.653±0.312) fold, protein in plasma membrane (2.041±0.258) fold〕 was increased in hypoxia-transfection group significantly (P<0.05), but which was lower than that in normoxianontransfection group (P<0.05). ④There was significantly positive relation between 3H-G intake and GLUT-4 protein expression in plasma membrane (r=0.415, P=0.001).Conclusion GLUT-4 may take part in glucose uptake of MSCs, and the capability of Akt gene to improve MSCs anti-hypoxia may be finished by its role in increasing the expression and translocation of GLUT-4.

    Release date:2016-09-08 10:50 Export PDF Favorites Scan
  • Study of expression and effect factors on glucose transporter-1 of rabbit retinal Müller cells cultured in vitro

    Objective To observe the different effect such as high concentration of glucose and high concentration of insulin on GLUT1 of Rabbit Retinal Muuml;ller Cell in vitro. Methods Rabbit retinal Muuml;ller cells were cultured in vitro with suspended constitution,which were divided as the following groups: common control group,high glucose group,insulin group,high glucose combined insulin group. Laser confocal microscope combined with immunocytochemical and fluorescence staining method to quantitatively analyze the expression condition of GLUT1. Results The expression of GLUT1 has been enhanced obviously by high glucose and high insulin,which locates mainly in the cytoplasm that near to the nucleus. Conclusion Rabbit retinal Muuml;ller cells can express GLUT1,and the expression of GLUT1 can be reinforced by high glucose and high insulin. (Chin J Ocul Fundus Dis,2008,24:265-267)

    Release date:2016-09-02 05:46 Export PDF Favorites Scan
  • Relationship Between Characteristic of Expression of Facilitative Glucose Transporter-1 in Bronchial Aveolar Carcinoma and Fluorine-18 Fluorodeoxyglucose Uptake

    Objective To investigate the characteristic of the expression of facilitative glucose transporter 1 (Glut1) in bronchial aveolar carcinoma (BAC) and the relationship between expression of Glutl and fluorine-18 fluorodeoxyglucose (18F-FDG) uptake. Methods Twenty patients with BAC were imaged with 18F-FDG positron emission tomography (PET) before surgery. Maximum standard uptake value (SUVmax) and mean standard uptake value (SUVmean ) of tumor and standard uptake value of normal lung (SUVIung) were measured. The expression of Glutl was studied in paraffin sections by streptavidin peroxidase (SP) immunohistochemistry. Results All tumors of the patients could be detected by ^18F-FDG-PET. 18F-FDG uptake of tumor was higher than that of normal lung (SUV SUV and SUVlong were 3.09± 1.35, 2.37±1.03 and 0.39±0.09 respectively). The expression of Glutl were positive in all tumors (73. 8%± 14. 8% of positive cell rate, 2. 8 ± 0. 9 grade of staining intensity). Predominantly cytoplasm positive with weak staining intensity were observed in many tumors. Glutl negtive were observed in normal bronchial and lung parenchyma. Positive correlations were found among 18F-FDG uptake, Glut1 expression and tumor size (P〈0. 01). Conclusion Glutl expression with peculiarity in BAC is correlate with 18F-FDG uptake.

    Release date:2016-08-30 06:26 Export PDF Favorites Scan
  • ABCA1在胆固醇结石患者胆囊黏膜上皮的表达

    Release date:2016-08-28 03:48 Export PDF Favorites Scan
  • 自制双活瓣抗反流引流管在地震救援中的应用

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  • Effects of bevacizumab on the expression of aquaporin 4 in Müller cells under hypoxia

    Objective To observe the effects of bevacizumab on aquaporin 4 (AQP4) expression in human retinal Muuml;ller cells in vitro under hypoxia. To explored the mechanism of treating retinal edema with bevacizumab. Methods Human Muuml;ller cells were cultured using the enzymatic digestion method. Transmission electron microscopic analysis and immunofluorescence staining identified Muuml;ller cells. With semi-quantitative reverse transcription polymerase chain reaction (RT-PCR), the expression of AQP4 mRNA and vascular endothelial growth factor (VEGF) mRNA in Muuml;ller cells cultured under different concentration of COCl2 for different hours were observed. The expression of AQP4 mRNA in Muuml;ller cells cultured using CoCl2 precultured with 200 mu;g/ml bevacizumab was measured. Results More than 95% of primary cells showed positive reaction to glial fibrillary acidic protein, glutamine synthetase, vimentin and alpha;-smooth muscle actin with immunofluorescence staining. Characteristic 8-10 nm intracellular filaments could be seen in the cytoplasm viewed with transmission electron microscopy. The results using RT-PCR showed that CoCl2 increased the AQP4 and VEGF mRNA expression in Muuml;ller cells in a dose and time dependent manner (r=0.952, 0.954;P<0.05). The expression of AQP4 mRNA in Muuml;ller cells was increased by VEGF (F=12.43,P<0.05). The expression of AQP4 mRNA was significantly decreased by bevacizumab (F=2 370.37,P<0.05). Conclusion Bevacizumab can down-regulate the expression of AQP4 mRNA in human Muuml;ller cells under hypoxic conditions partially by VEGF path, which may be a mechanism for treating retinal edema with bevacizumab.

    Release date:2016-09-02 05:26 Export PDF Favorites Scan
  • Effects of acid-base balance in the brain in epileptogenesis

    The acid-base balance of the brain is critical to the functioning of the nervous system. The mechanisms that maintain acid-base homeostasis in the brain are complex and regulated by a variety of transporter proteins and enzymes. Slight changes in acid-base balance can affect neuronal excitability and even lead to epilepsy. Epilepsy is a common neurological disease with complex pathogenesis and numerous causes. Drug therapy is still the main method, but the treatment effect is limited. Therefore, it is urgent to clarify the pathological mechanism of epilepsy and explore new treatment directions This study provides an overview of the transporter proteins (acid-sensing ion channel, Na+/H+ exchanger, Na+/HCO3- cotransporters, anion exchangers, carbonic anhydrases) and the regulation of acid-base balance in the lungs. This study also introduces how these transporters participate in the stable maintenance of brain acid-base balance and their influence in epileptogenesis from both basic and clinical aspects in detail, providing new targets for epilepsy treatment and intervention.

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  • 危重患者院内转运实践及策略探讨

    目的探讨综合性医院危重患者院内转运的重要性及转运中应注意的问题及转运策略。 方法总结分析2012年1月-2014年1月期间20 352例危重患者的急救及院内转运的实践及资料,探讨转运中的医疗人员组成、急救设备、转运流程、转运风险的评估、应对方案。 结果20 352例危重患者中,除136例因病情危重在抢救室抢救无效死亡,5 756例因抢救后病情相对平稳由抢救室转送急诊科留观室留观治疗或暂因患方及医院主客观原因不能转送专科住院治疗由抢救室转送急诊科监护室治疗,其余14 460例危重患者经抢救病情相对稳定后全部实现院内安全转送。 结论合理的救治医疗人员组成、积极对危重患者的救治、作好病情评估、把握好转运的时机是实现危重患者院内转运安全的保障。

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