Yang Yuan-Sheng, Chen Ken, Ye Sheng, Shi Xing-Liang, Du Zheng-Wei, Cui Shu-Lan, Wang Hui
Department of Internal Medicine, College of Clinical Medicine, Guangdong Pharmaceutical University, Guangzhou 510310, China.
Zhongguo Zhong Xi Yi Jie He Za Zhi. 2013 Jan;33(1):60-4.
To observe the effects of Qingyi Granule (QYG) on the changes of total protein expressions in the pancreatic tissue of rats with severe acute pancreatitis (SAP) induced by sodium taurocholate (STC).
SAP was induced by retrograded injecting 5% STC from the gut-pancreatic duct in 36 Sprague-Dawley (SD)rats. Then they were randomly divided into the SAP group and the QYG treatment group (abbreviated as the QYG group), 18 in each group. After successful modeling, rats in the QYG group were administered with QYG water solution (W: W = 1:1) once with an interval of 12 h (1 mL/100 g), while rats in the SAP group were administered with normal saline. The medication was performed four times. The total proteins were extracted from the pancreatic tissue of all rats to perform two-dimensional electrophoresis, fluorescent staining, and atlas analysis. The protein dots with differential expressions more than four times between each other in 48 h gel pictures were chosen and used for MALDI-TOF/TOF mass chromatographic analysis and biological information analysis.
The 5% STC induced SAP model rats had typical pathological changes in the pancreatic tissue. The proteomics changes of the pancreatic tissue were analyzed by gel image manipulation software. Twenty two disparate points were detected between two groups at 48 h, 5 points of the protein were up-regulated and 17 points were down-regulated of the total after QYG intervention. Nine protein spots expressed differently more than 4 times and stably at 48 h, 7 kinds of proteins have been identified by mass chromatographic analysis and Data Base Retrieval, and they were Serpinb1a 39 kDa protein, Serpinb1a 43 kDa protein, Prdx4 Prx IV, Clps, gamma-actin (Actg1), Eprs and Hadhsc. Those proteins were involved in signal transmit during the process of SAP pancreas--pathological injury analyzed from their functions.
Proteomics can well reflect the effects of QYG on differential expression proteins in the pancreatic tissue of rats with SAP. Studying differential expression proteins may provide a new theoretical basis and molecule target for QYG treating SAP.
观察清胰颗粒(QYG)对牛磺胆酸钠(STC)诱导的重症急性胰腺炎(SAP)大鼠胰腺组织总蛋白表达变化的影响。
将36只Sprague-Dawley(SD)大鼠经胰胆管逆行注射5% STC诱导建立SAP模型,然后随机分为SAP组和QYG治疗组(简称QYG组),每组18只。造模成功后,QYG组大鼠给予QYG水溶液(W∶W = 1∶1),间隔12 h给药1次(1 mL/100 g),SAP组大鼠给予生理盐水。给药4次。提取所有大鼠胰腺组织总蛋白进行二维电泳、荧光染色及图谱分析。选取48 h凝胶图谱中差异表达倍数大于4倍的蛋白点进行基质辅助激光解析电离飞行时间串联质谱(MALDI-TOF/TOF)质谱分析及生物信息学分析。
5% STC诱导的SAP模型大鼠胰腺组织有典型病理改变。用凝胶图像分析软件分析胰腺组织蛋白质组学变化。48 h时两组间检测到22个差异点,QYG干预后上调5个蛋白点,下调17个蛋白点。48 h时9个蛋白点表达差异倍数大于4倍且稳定,经质谱分析和数据库检索鉴定出7种蛋白,分别为Serpinb1a 39 kDa蛋白、Serpinb1a 43 kDa蛋白、Prdx4 Prx IV、Clps、γ-肌动蛋白(Actg1)、Eprs和Hadhsc。从功能上分析,这些蛋白参与了SAP胰腺病理损伤过程中的信号传导。
蛋白质组学能很好地反映QYG对SAP大鼠胰腺组织差异表达蛋白的影响。研究差异表达蛋白可能为QYG治疗SAP提供新的理论依据和分子靶点。