1.Effects Combined Valsartan and Ramipril on Expression of Angiotensin Ⅱ Type 1 and Type 2 Receptors Cardiovascular Vessels and brain
Yonghong ZHENG ; Yuru BAI ; Xizhong HU ; Wenling ZHU ; Wei ZHENG
Chinese Journal of Hypertension 2007;0(03):-
Objective To study the efficacy of low dose of combined angiotensin Ⅱ type 1 receptor blockade(ARB)valsartan with angiotensin-converting enzyme inhibitor(ACEI)ramipril on the expression of the gene of angiotensin Ⅱ type 1 receptor(AT1R)and type 2 receptor(AT2R)in cardiovascular vessels and brain in SHR.Methods SHRs 7-8 weeks old were received valsartan 30 mg/(kg?d),or ramipril 1 mg/(kg?d),or valsartan 15 mg/(kg?d)combined with ramipril 0.5 mg/(kg?d)by gavage for three months.SBP,LV/BW ratio,plasma angiotensin Ⅱ,plasma and myocardial NO levels were determined.The severity of myocardial interstitial fibrosis was assessed by image analysis.ACE mRNA,AT1R mRNA and AT2R mRNA expression were detected in the LV myocardium,aorta and brain by the RT-PCR.Results Combined low dose of valsartan and ramipril was shown to reduce more significantly the expression of AT1R mRNA and ACE mRNA in myocardium,aorta and brain than valsartan or ramipril monotherapy(AT1R mRNA:P
2.Advances in the appetite regulation of gut microbiome
Yu BAI ; Yunxia HU ; Nanyuan FANG ; Xizhong YU
Journal of Medical Postgraduates 2017;30(1):100-103
The pathogenic and therapeutic effect of gut microbiome is a hot topic in recent years .Many researchers gradually focused on the relationship between the eating disorder and the gut microbiome .The gradual in-depth studies show that gut microbiome can intervene in the host′s metabolic state by multiple approaches to regulate appetite and bring new inspiration for the treatment of dis -eases.In this article, we review all important findings in this field and discuss the mechanism how gut microbiome effects appetite regu -lation.
3.Effects of different doses of dexmedetomidine pretreatment on cardiac toxicity of bupivacaine in rats
Xiaohong DU ; Yong CHEN ; Xizhong TONG ; Yanhui HU ; Guohai XU
The Journal of Clinical Anesthesiology 2014;(7):689-692
Objective To investigate the effects of different doses of dexmedetomidine pretreat-ment on cardiac toxicity of bupivacaine in rats.Methods Forty eight adult male SD rats weighing 250-300 g were randomly divided into 4 groups (n=12):saline control group (group C),dexmedetomi-dine 5 μg/kg group(group D5),dexmedetomidine 10 μg/kg group(group D10)and dexmedetomidine 1 5 μg/kg group(group D1 5 ).A Ⅱ-lead electrocardiogram(ECG)was continuously monitored,the femoral artery was cannulated for direct measurement of MAP and the femoral vein was cannulated for infusion of drugs.Groups D5,D10 and D1 5 were received infusion of dexmedetomidine 5,10 and 1 5μg/kg respectively 1 5 minutes before administration of bupivacaine,while the equal volume of saline was given in group C,then all rats received infusion 0.75% bupivacaine at the rate of 2 mg·kg-1· min-1 until asystole occurred.The doses of bupivacaine and the times of bupivacaine-induced convul-sions,arrhythmia and asystole were recorded respectively,and the myocardial concentration of bupiv-acaine was observed.Results Compared with group C,the doses of bupivacaine and the times of bupivacaine-induced convulsions,arrhythmia and asystole were all increased in groups D5,D10 and D1 5 (P <0.05).Compared with group D5,the above parameters were increased in groups D10 and D1 5 (P <0.05 ).There was no statistical significance of the above parameters between groups D10 and group D1 5.Conclusion Dexmedetomidine pretreatment can raise the threshold toxic dose of bupi-vacaine,delay the time of occurrence of cardiotoxicity of bupivacaine,so that to prevent the cardiac toxicities of bupivacaine in rats,and it produces a dose-dependent protective effect within a certain dose range.
4.Effect of stellate ganglion block on postoperative synaptic structure in hippocampal CA3 region in aged rats
Yong CHEN ; Xizhong TONG ; Yanhui HU ; Keqing CAI ; Mengqiu LIANG ; Shuchun YU ; Guohai XU
Chinese Journal of Anesthesiology 2014;34(2):158-160
Objective To evaluate the effect of stellate ganglion block (SGB) on postoperative synaptic structure in hippocampal CA3 region in aged rats.Methods Seventy-two male Sprague-Dawley rats,aged 20-22 months,weighing 550-650 g,were randomly divided into 3 groups (n =24 each) using a random number table:control group (group C),operation group (group O) and SGB + operation group (group SGB).Group SGB received right SGB with 0.25% bupivacaine 0.15 ml.Groups O and SGB underwent 30 min of exploratory laparotomy starting from 15 min after the end of administration.Y-maze test was performed on 1 day after operation in 6 rats chosen from each group for assessment of cognitive function.The frequency of standard training and standard time were recorded.Six rats were chosen from each group on 1,3 and 7 days after operation and sacrificed and the hippocampal CA3 region was isolated for microscopic examination and for measurement of synaptic structure.Results Compared with group C,the standard time was significantly prolonged,and the frequency of standard training was increased in groups O and SGB,the width of synaptic cleft was increased,the thickness of post-synaptic density was decreased,the length of active zones was shortened,and the curvature of the synaptic interface was decreased on 1,3 and 7 days after operation in group O (P < 0.05),and no significant changes were found in each synaptic structure parameter in group SGB (P > 0.05).Compared with group O,the standard time was significantly shortened,the frequency of standard training was decreased,the width of synaptic cleft was decreased,the thickness of the post-synaptic density was increased,the length of active zones was prolonged,and the curvature of the synaptic interface was increased on 1,3 and 7 days after operation in group SGB (P < 0.05).Conclusion The mechanism by which SGB improves the postoperative cognitive dysfunction in aged rats may be related to inhibition of changes of synaptic structure in hippocampal CA3 region.