1.Investigation on T-lymphocyte subsets absolute counting and CD4+/CD8+ratio in healthy adults of Ugyur and Han nationalities in Karamy
Qin FENG ; Gang DU ; Guiying YANG ; Lijuan ZHANG ; Xinrong YUAN ; Shanjun ZHU
International Journal of Laboratory Medicine 2015;(22):3227-3228,3231
Objective To built the reference range of peripheral blood T-lymphocyte subsets including CD3+ ,CD4+ ,CD8+ and CD4+ /CD8+ ratio in healthy adults of Ugyur and Han nationalities and to provide basis for the diagnosis ,therapy and prognosis of disease .Methods A total of 181 blood samples were collected from healthy adults .The cell chip quantitative detection technology was used to detect CD3+ ,CD4+ and CD8+ ,CD3+ ,CD4+ absolute value ,CD8+ and CD4+ /CD8+ ratio were compared between Ugyur and Han nationalities .Results CD8+ absolute counting and CD4+ /CD8+ ratio had no significant difference between Ugyur and Han nationalities(P>0 .05) ,while the CD3+ ,CD4+ absolute counting had significant difference(P<0 .05) .Conclusion The discrepancy of territory and living environment should be taken into account for building a reference values of CD4+ .
2.Family Rehabilitation for Stroke Dysfunction in China: Status and Prospects (review)
Xiaochao MA ; Chunhong BI ; Shanjun FENG ; Lixin ZHANG ; Rong QIAO ; Hailong SHANG ; Ping TIAN ; Ling TANG ; Meilan YU ; Cuiling LUO ; Tieqing ZHANG ; Weijin ZHOU
Chinese Journal of Rehabilitation Theory and Practice 2014;(10):932-934
This paper summarized the characteristics, rehabilitation needs, and situation and problems of stroke dysfunction in China. Approaches and methods of family rehabilitation were also discussed.
3.Study on characteristics of energy metabolism in skeletal muscle of rats with postoperative fatigue syndrome and interventional effect of ginsenoside Rb1.
Shanjun TAN ; Feng ZHOU ; Zhen YU ; Ludi DU ; Xingzhao YE ; Xiaodong ZHANG ; Qiantong DONG ; Bo ZHANG ; Li HU
China Journal of Chinese Materia Medica 2011;36(24):3489-3493
OBJECTIVETo study characteristics of energy metabolism in the skeletal muscle of rats with postoperative fatigue syndrome (POFS) and the interventional effect of ginsenoside Rb1.
METHODWe chose resection of 70% of the "middle" small intestine as the rat model for POFS. Ninety-six adult male SPF SD rats were randomly divided into the control group, the model group, and the ginsenoside Rb1-treated group by body weight. And then, each group was further randomly divided into four subgroups, according to different postoperative investigated time points, such as postoperative day 1, postoperative day 3, postoperative day 7 and postoperative day 10. So the animals were divided into twelve subgroups (n = 8 in each subgroup). Rats of the control group and the model group were injected intraperitoneally with saline at the dose of 10 mL x kg(-1) one hour before the operation and once a day during the postoperative days. Rats of the ginsenoside Rb1-treated group were administered 10 mg x kg(-1) ginsenoside Rb1 by the same method. The skeletal muscles were sampled on postoperative day 1, 3, 7 and 10. The contents of ATP, ADP, AMP in skeletal muscles were determined by HPLC, and the activities of Na(+)-K(+)-ATPase and Ca(2+)-ATPase were investigated by colorimetry.
RESULTCompared with the control group, the content of ATP in skeletal muscle of rats of the model group decreased significantly on postoperative day 3 (P < 0.05), while the content of ADP significantly increased on postoperative day 7 and 10 (P < 0.05). The activity of Na(+)-K(+)-AT-Pase decreased on postoperative day 3 and 7 (P < 0.05), and the activity of Ca(2+)-ATPase decreased on postoperative day 7. After supplement of ginsenoside Rb1, on the investigated time points, all the negative changes of the indicators discovered above were significantly adjusted (P < 0.05) in rats of the ginsenoside Rb1-treated group, while no significant differences were investigated.
CONCLUSIONDuring a certain period of postoperative time, the activity of energy metabolism is depressed in the skeletal muscle of rats with POFS, but it can be improved by supplement of ginsenoside Rb1.
Animals ; Calcium-Transporting ATPases ; physiology ; Energy Metabolism ; drug effects ; Fatigue ; drug therapy ; metabolism ; Ginsenosides ; pharmacology ; therapeutic use ; Male ; Muscle, Skeletal ; metabolism ; Postoperative Complications ; drug therapy ; metabolism ; Rats ; Rats, Sprague-Dawley ; Sodium-Potassium-Exchanging ATPase ; physiology ; Syndrome
4.Change of expression of cell/organs defense genes in brain tissue of rats with stroke-like episodes induced by complex environmental factors.
Xianmei WANG ; Rui YAN ; Lixia YANG ; Feng QI ; Shanjun ZHU ; Bin ZHAO ; Qian ZHANG ; Rutai HUI ; Chuanming GUO ; Ling WEI
Chinese Journal of Medical Genetics 2003;20(2):143-146
OBJECTIVETo investigate the effect of environmental risk factors on the development of stroke.
METHODSWith the use of cold-stimuli plus high-salt intake as environmental risk factors, a hypertension model with the complication of stroke was established in rats, then, a new technique, suppression subtractive hybridization (SSH), was used to identify the differential genes which specifically expressed in total cerebrum tissue of rat in each group. Comparison was made between control group and stroke group.
RESULTSBy the application of SSH, a total of 576 clones were generated in this study from two subtractive libraries, among them 456 clones were usable and were analyzed. Genes for cell/organs defense were down-regulated in stroke group and metabolism transcripts were shown to be up-regulated (P<0.01).
CONCLUSIONCell/organs defense genes may play important roles in the development of stroke. The above findings suggested that environmental risk factors could genetically alter individual sensitivity to stroke.
Animals ; Brain ; metabolism ; pathology ; Cell Division ; genetics ; Cold Temperature ; DNA, Complementary ; chemistry ; genetics ; Expressed Sequence Tags ; Gene Expression Regulation ; drug effects ; Immunity, Innate ; genetics ; Male ; RNA, Messenger ; drug effects ; genetics ; metabolism ; Rats ; Rats, Wistar ; Sequence Analysis, DNA ; Signal Transduction ; genetics ; Sodium Chloride, Dietary ; administration & dosage ; Stroke ; genetics