1.Membrane separation technology in medical devices.
Xianghua HU ; Xiyun DANG ; Minyu WU
Chinese Journal of Medical Instrumentation 2014;38(1):44-46
Membrane separation technology is a major branch in modern separation technology, which is widely applied in chemical, pharmaceutical and other industries. The purpose of this paper is to introduce principle and the application example of the membrane separation technology in medical devices, to analyse the problems existing in the current application, and to discuss the future development direction.
Equipment and Supplies
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Membranes, Artificial
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Technology
2.Establishment and evaluation of heat sheng model of rat primary immune thrombocytopenic purpura
Tian NIE ; Wenming JIANG ; Sujuan PENG ; Minyu ZHANG ; Lin YANG ; Shineng LI ; Ni HU
Chinese Journal of Comparative Medicine 2015;(5):13-19
Objective To establish a rat model at the same time in accordance with the “hot sheng syndrome” of traditional Chinese medicine and primary immune thrombocytopenic purpura of peripheral blood platelet reduction. Methods Using back multi-point injection of 20% dry yeast suspension on SD rats and 1∶4 dilution of rabbit anti SD rats platelet serum (APS) by intraperitoneal injection to establish a primary immune thrombocytopenic purpura “heat sheng”rat model.And observing rats of TCM syndrome characteristics, hemogram, myelogram and serotonin (5-HT) level of the temperature regulating center in thalamus.Results After injection of 2 h ~6 h temperature and daily water of the model group rats increased significantly,toe purper showed in fourth day of modeling and intestinal mucosal bleeding in thirty day of modeling(P <0.05);Platelet count in peripheral blood decreased significantly, bone marrow megakaryocyte number reduced significantly((P <0.05);5-HT level of the temperature regulating center of brain increased significantly((P <0.05).Conclusions The study of the primary immune thrombocytopenic purpura heat sheng rat model of combination of disease and syndrome reflected basically the pathological characteristics of purpura caused by “heat sheng” in primary immune thrombocytopenic purpura rat mode.
3.Protective effect of ellagic acid on acute liver injury induced by CCl4 in mice and its mechanism
Yi LONG ; Jingfang LUO ; Minyu HU ; Jihua CHEN ; Liufeng ZHU ; Wei WEI ; Nan QIAO ; Lina YANG
Journal of Jilin University(Medicine Edition) 2017;43(3):572-576
Objective:To explore the protective effect of ellagic acid on the acute liver injury induced by carbon tetrachloride (CCl4) of the mice,and to explore its possible mechanism.Methods:A total of 50 mice were randomly divided into normal control group,model group,low,medium and high doses of ellagic acid groups (n=10).The mice in normal control group and model group were treated with 1% sodium carboxymethyl cellulose solvent by intragastic administration,and the mice in ellagic acid groups were treated with 160,320,and 480 mg·kg-1 ellagic acid by intragastic administration,respectively.After 14 d,the mice in model group and different doses of ellagic acid groups were intraperitoneally injected with 10 mL·kg-1 0.1% CCl4,while the mice in normal control group were intraperitoneally injected with 10 mL·kg-1plant oil.16 h later,all the mice were sacrificed and the body weights and the liver indexes of the mice were detected;the serum levels of alanine transaminase(ALT),aspartate transaminase(AST) were detected;the activities of superoxide dismutase(SOD) and levels of GSH-Px,malonalde hyde(MDA) and catalase(CAT) in liver tissue of the mice were detected.Results:There were no significant differences of the body weights of the mice between each group before and after treatment(P>0.05).Compared with normal control group,the liver indexes and the levels of serum ALT and AST of the mice in model group and different doses of ellagic acid groups were significantly increased (P<0.05).Compared with model group,the liver indexes of the mice in different doses of ellagic acid groups were decreased(P<0.05);the serum levels of ALT and AST of the mice in high dose of ellagic acid group were significantly decreased (P<0.05),while the CAT level in liver homogenate was significantly increased (P<0.05);the levels of GSH-Px in liver homogenate of the mice in medium and high doses of ellagic acid groups were significantly increased (P<0.05);the activities of SOD in liver homogenate of the mice in different doses of ellagic acid groups were significantly increased (P<0.05),and the MDA levels were significantly decreased (P<0.05).Conclusion:The ellagic acid has the protective effect on acute chemical liver injury in the mice induced by CCl4 and the most effective dose is 480 mg·kg-1;its mechanism may be related to the anti-oxidation.
4.Study on application of the Revised International Prognostic Scoring System in myelodysplastic syndrome
Yanping HU ; Xuan LIU ; Minyu ZHANG ; Fang CHEN ; Nan ZHANG ; Jihong ZHANG
Chongqing Medicine 2013;(34):4126-4127,4131
Objective To investigate the clinical and cytogenetic features of myelodysplastic syndrome (MDS) ,and to investigate the application of the International Prognostic Scoring System Revised (IPSS-R) in myelodysplastic syndrome .Methods A retro-spective analysis was conducted on 112 patients diagnosed with MDS on basis of French-American-British(FAB) and World Health Organization(WHO) criterion .Conventional cytogenetics are performed to investigated the cytogenetics changes .Results Karyo-type abnormalities are found in 46(41 .1% ) patients .Cytogenetics subgroups are devided into 5 groups according to IPSS-R criteri-on :very good ,good ,intermediate ,poor ,very poor ,which account for 2 cases(1 .8% ) ,48 cases (42 .9% ) ,41 cases (36 .6% ) ,10 ca-ses (8 .9% ) ,11 cases (9 .8% ) ,with a median survival time(MS) 59 ,36 ,15 ,10 month respectively ,except for very good .Conclusion It is of great guiding significance of IPSS-R criteria for prognostic stratification .
5.Membrane Separation Technology in Medical Devices
Xianghua HU ; Xiyun DANG ; Minyu WU
Chinese Journal of Medical Instrumentation 2014;(1):44-46
Membrane separation technology is a major branch in modern separation technology, which is widely applied in chemical, pharmaceutical and other industries. The purpose of this paper is to introduce principle and the application example of the membrane separation technology in medical devices, to analyse the problems existing in the current application, and to discuss the future development direction.