1.Changes in phosphorylation of tau protein and COX-2 expression in colon submucosal neurons of IBD model rats induced by TNBS
Tingkun ZHAO ; Zhidong WANG ; Fengjiao LIU ; Meihua QU ; Zhiqin GAO
Chinese Journal of Pathophysiology 2015;(6):1125-1129
[ ABSTRACT] AIM:To investigate the change of phosphorylation of tau protein and expression of cyclooxygenase 2 ( COX-2) in colon submucosal neurons of enteric nerve system in inflammatory bowel disease ( IBD) rats induced by tri-nitrobenzene sulfonic acid (TNBS).METHODS:Male rats (n=30) were randomly assigned to 3 groups (n=10 each):control group, IBD group and TNBS group.The IBD rats were induced by TNBS+ethanol enema for 14 d.The control and TNBS rats were given an equal volume of saline and TNBS, respectively.The general situation and the histopathologic change of the rat colon were observed.Immunofluorescence was used to check the change of phosphalated tau protein and COX-2 expression in the submucosal neurons of the colon.The expression of COX-2 and phosphorylated tau231 and tau262 in the rat colon submucosal neurons was observed by double immunofluorescence staining.RESULTS:Compared with con-trol group, the number of neurons in the colon of IBD rats decreased obviously and the expression of phospholated tau231 and tau262 was significantly increased.The number of neurons in the colon of TNBS rats showed no significant difference compared with control rats.The rat neurons in control group and TNBS group did not express COX-2.COX-2 expression was observed in the nucleus and cytoplasm of colonic neurons in IBD rats, which showed significantly different from control and TNBS rats.CONCLUSION:The decreased neurons in the enteric nerve system of IBD rats might be associated with the phosphorylation of tau protein and the expression of inducible COX-2.
2.Comparison of HPLC and CMIA Method in Monitoring Concentration of Phenytoin in Epileptic Patients' Plasma
Jing LU ; Yan CHEN ; Meihua GUO ; Zhao QIAN ; Ting QU ; Lijuan DUAN ; Xin HAI
Herald of Medicine 2017;36(2):131-135
Objective To establish a high performance liquid chromatography (HPLC) method for determining phenytoin concentration in epilepsy patients' plasma,and compare this method with chemiluminescence microparticle immunoassay (CMIA),and to evaluate the consistency of the two methods.Methods HPLC and CMIA methods were applied to determine the plasma concentration of phenytoin in 60 epileptic patients,respectively.The difference of results was analyzed by two-side paired t-test,and then the correlation and consistency of the two methods were investigated with Passing-Bablok regression and Bland-Altman method.Results There was no significant difference between the results of the two methods (P >0.05).The regression equation of the determination results by HPLC (Y) and CMIA (X) was Y=0.992 9X +0.143 7 (R2 =0.992 6,n =60),which indicated the correlation of the two methods was good.Bland-Altman analysis showed that the consistency of the two methods for determining was good.Conclusion HPLC and CMIA method in monitoring plasma concentration of phenytoin have good correlation and consistency.Both methods can be used for therapeutic drug monitoring of phenytoin.
3.Effect of DHA-PC on improvement of mouse sleep
Hailin HAN ; Xiaoyun YANG ; Ruiyan PAN ; Hongpan ZHOU ; Na LI ; Lili CHEN ; Yuming WANG ; Changhu XUE ; Tingkun ZHAO ; Meihua QU
Military Medical Sciences 2014;(1):22-25
Objective To study the sleep improvement function of DHA-PC.Methods The mice were randomly divid-ed into control, vehicle, DHA+Lecithin (60+200 mg/kg) and DHA-PC(50,100,200 mg/kg) groups.Ten mice were enrolled in each group .The mice of control were administered with normal food , the vehicle group was orally given normal saline at the dosage of 0.2 ml/10 g, while both DHA-PC and DHA+Lecithin were orally given corresponding drugs at the dosage of 0.2 ml/10 g.All the groups were treated for 30 days except control group .The direct sleep-inducing test, the test of lengthening sleep time induced by pentobarbital sodium , the test of pentobarbital sodium subthreshold-hypnosis and the test of barbital sodium sleep latency were conducted to observe the inductive effect of DHA -PC.Results Neither the effect on mice body mass nor directly-induced sleep was observed .DHA-PC (50,100, and 200 mg/kg) could prolong sleep time to (56.2 ±13.7),(57.9 ±25.4) and(64.1 ±18.4) min, respectively,compared to vehicle(32.9 ±10.8)min (P<0.05).DHA+Lecithin could not prolong sleep time (38.6 ±11.7)min compared to (32.9 ±10.8)min of vehicle.There was significant difference compared with DHA-PC at the dosage of 200 mg/kg (64.1 ±18.4)min (P<0.05).DHA-PC (200 mg/kg) enhanced pentobarbital sodium subthreshold-hypnosis (70%) compared to vehicle (10%) (P<0.05),so did DHA+Lecithin (60%) compared to vehicle (10%) (P<0.05).Both DHA-PC (200 mg/kg)[(22.9 ±4.1)min ] and DHA+Lecithin [(19.5 ±2.7) min ]could shorten sleep latency compared to vehicle (31.3 ±6.9) min(P<0.01), and the sleep latency of DHA +Lecithin (19.5 ±2.7) min was shorter than that of DHA-PC(50,100 mg/kg).Conclusion DHA-PC has some effect some sleep improvement in mice .
4.Improvement effect of duodenal-jejunal bypass on inflammatory status of biliopancreatic limb of ZDF rats and its mechanism
Lianguang HUO ; Qingtao YAN ; Jingyue YAN ; Na LI ; Han SU ; Meijia ZHANG ; Shumei MAO ; Zhiqin GAO ; Meihua QU
Journal of Jilin University(Medicine Edition) 2017;43(6):1155-1160,后插2
Objective:To investigate the improvement effects of duodenal-jejunal bypass (DJB)on the blood glucose homeostasis,insulin resistance and inflammation of the obese type 2 diabetic (T2DM)ZDF rats,and to discuss its possible mechanism.Methods:A total of 20 ZDF rats were randomly divided into DJB operation group and sham operation group (n = 10).There were 8 rats survived in each group after operation.The level of blood glucose (FBG)was detected by Roche glucose meter at 1 week before operation,2 weeks,4 weeks and 6 weeks after operation;the fasting serum insulin level of the rats was measured by ELISA kit;the insulin sensitivity index (HOMA-ISI)and insulin resistance index (HOMA-IR)were calculated.The rats were executed 6 weeks after operation.HE staining was used to observe the morphology of the inflammatory cells in BP limb of the rats;the expression levels of AMPK and pAMPK in BP lamb of the rats were observed by immunohistochemical staining;the expression levels of interleukin 1β(IL-1β),interleukin 6 (IL-6),tumor necrosis factorα(TNF-α),nuclear factorκB (NF-κB),and interleukin 10 (IL-10)mRNA of the rats were detected by QRT-PCR method.Results:From the 2nd week after operation,compared with before operation,the FBG levels of the rats in DJB operation group were decreased (t=3.798,P <0.05);compared with sham operation group,the FBG level of the rats in DJB operation group was decreased (t=3.205,P <0.05).Six weeks after operation,compared with sham operation group,the HOMA-IR of the rats in DJB operation group was significantly decreased (t=4.441,P <0.05)and the HOMA-ISI was significantly increased (t=-8.65,P < 0.05).The HE staining results showed that compared with sham operation group,the morphology of the inflammatory cells in BP limb of the rats in DJB operation group was significantly improved.The QRT-PCR results showed that the expression levels of IL-1β,IL-6,TNF-αand NF-κB of the rats in DJB operation group was significantly decreased compared with sham operation group (P < 0.05), while the expression level of IL-10 was significantly increased (P < 0.05).The immunohistochemical test results showed that the expression levels of AMPK and pAMPK in BP lamb of the rats in DJB operation group were increased compared with sham operation group.Conclusion:DJB can significantly improve the blood glucose homeostasis and insulin resistance in the T2DM rats,and its mechanism may be related to the decreased expressions of inflammatory factors and the activation of AMPK molecules in BP lamb of the T2DM rats.
5.Cytoprotective Mechanism of the Novel Gastric Peptide BPC157 in Gastrointestinal Tract and Cultured Enteric Neurons and Glial Cells.
Xi-Yu WANG ; Meihua QU ; Rui DUAN ; Dengping SHI ; Ling JIN ; Jinping GAO ; Jackie D WOOD ; Junhua LI ; Guo-Du WANG
Neuroscience Bulletin 2019;35(1):167-170
Animals
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Cells, Cultured
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Gastrointestinal Tract
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metabolism
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Neuroglia
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metabolism
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Neurons
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metabolism
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Peptide Fragments
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metabolism
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Peptides
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metabolism
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Proteins
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metabolism
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Rats