Title :
Differential protein expression profiling in serum of asthmatic rats on nano-2D-LC technique
Author :
Yan, Xingke ; Yu, Lu ; Chen, Cheng ; Cui, Haifu
Author_Institution :
Dept. of Acupuncture & Tuina, Gansu Coll. of TCM, Lanzhou, China
Abstract :
Objective: To discuss the biological mechanism of allergic asthma by proteomic techniques. Method: 24 Wistar rats were randomly divided into 3 groups: control group, restraint group and asthma model group. The nanoliter two-dimensional liquid chromatography (nano-2D-LC) is used to study differential protein expression in asthmatic serum of rats. Results: The model group compared with the restraint group, appeared a peak for the No.13 peak (94.731min); 3 disappearance of the peak for the No.1 peak(77.489min), 2 peak (78.418 min) and No.5 peak (80.533min), which suggested that some peptides may be related to the pathogenesis of asthma; compared with the control group, 4 new peaks of the restraint group appeared for the No.2 peak (78.418 min), No.4 peak (79.398min), No.5 peak (80.533min) and No.7 peak (81.824min), and disappeared a peak for the No.3 (78.804min), which indicated those 5 polypeptides may be concerning bound stress stimuli. Conclusion: The study suggests that the pathogenesis of allergic asthma is closely related to abnormal expression of proteins, but animal experiments need to pay attention to distinguish the correlated proteins caused by stress factors.
Keywords :
biochemistry; cellular biophysics; chromatography; diseases; genetics; molecular biophysics; molecular configurations; nanobiotechnology; physiological models; proteins; proteomics; 2D LC nanotechnique; Wistar rats; allergic asthma; asthma model group; asthmatic serum rats; bound stress stimuli; nanoliter two-dimensional liquid chromatography; pathogenesis; polypeptides; protein expression profiling; proteomic techniques; stress factors; time 77.489 min to 94.731 min; Biological system modeling; Educational institutions; Nanobioscience; Peptides; Proteins; Proteomics; Rats; Allergic asthma; Low abundance proteins; nano-2D-LC;
Conference_Titel :
Remote Sensing, Environment and Transportation Engineering (RSETE), 2011 International Conference on
Conference_Location :
Nanjing
Print_ISBN :
978-1-4244-9172-8
DOI :
10.1109/RSETE.2011.5965909