维普中文期刊产品整合服务
51篇 您的检索式:作者名="Meerson"
    题名 作者 年代 出处 被引量
1Effects of alkaline-electrolyzed and hydrogen-rich water,in a high-fat-diet nonalcoholic fatty liver disease mouse model显示文摘AIM To identify the effect of hydrogen-rich water(HRW) and electrolyzed-alkaline water(EAW) on high-fat-induced non-alcoholic fatty acid disease in mice.METHODS Mice were divided into four groups:(1) Regular diet(RD)/regular water(RW);(2) high-fat diet(HFD)/RW;(3) RD/EAW; and(4) HFD/EAW. Weight and body composition were measured. After twelve weeks, animals were sacrificed, and livers were processed for histology and reverse-transcriptase polymerase chain reaction. A similar experiment was performed using HRW to determine the influence and importance of molecular hydrogen(H2) in EAW. Finally, we compared the response of hepatocytes isolated from mice drinking HRW or RW to palmitate overload.RESULTS EAW had several properties important to the study:(1) pH = 11;(2) oxidation-reduction potential of-495 mV; and(3) H2 = 0.2 mg/L. However, in contrast to other studies, there were no differences between the groups drinking EAW or RW in either the RD or HFD groups. We hypothesized that the null result was due to low H2 concentrations. Therefore, we evaluated the effects of RW and low and high HRW concentrations(L-HRW = 0.3 mg H2/L and H-HRW = 0.8 mg H2/L, respectively) in mice fed an HFD. Compared to RW and L-HRW, H-HRW resulted in a lower increase in fat mass(46% vs 61%), an increase in lean body mass(42% vs 28%), and a decrease in hepatic lipid accumulation(P < 0.01). Lastly, exposure of hepatocytes isolated from mice drinking H-HRW to palmitate overload demonstrated a protective effect from H2 by reducing hepatocyte lipid accumulation in comparison to mice drinking regular water.CONCLUSION H2 is the therapeutic agent in electrolyzed-alkaline water and attenuates HFD-induced nonalcoholic fatty liver disease in mice.Karen Jackson Noa Dressler Rotem S Ben-Shushan Ari Meerson Tyler W LeBaron Snait Tamir 2018World Journal of Gastroenterology2018,24,45:9
2The role of lipid peroxidation in pathogenesis of ischemic damage and the antioxidant protection of the heart显示文摘Prof. F. Z. Meerson Dr. V. E. Kagan Yu. P. Kozlov L. M. Belkina Yu. V. Arkhipenko 1982Basic Research in Cardiology1982,,5:2
3MicroRNA-132 Potentiates Cholinergic Anti-Inflammatory Signaling by Targeting Acetylcholinesterase显示文摘Iftach Shaked Ari Meerson Yochai Wolf Ran Avni David Greenberg Adi Gilboa-Geffen Hermona Soreq 2009Immunity2009,,6:2
4Prevention of ischemic and reperfusion arrhythmias using the calmodulin blocker trifluoperazine显示文摘Meerson FZ Malyshev IIu Larionov NP 1988Kardiologia1988,28,5:1
5Changes in brain MicroRNAs contribute to cholinergic stress reactions显示文摘Meerson A Cacheaux L Goosens KA 2009J Mol Neurosci2009,40,12:1
6Close- packed floating clusters: granular hydrodynamics be- yond the freezing point? 显示文摘MEERSON B POSCHEL T BROMBERG Y 2003Physical Review Letters2003,91,02:1
7MieroRNA-132 potentiates cholinergic anti-inflammatory signaling by targeting acetylcholinester- ase 显示文摘Shaked I Meerson A Wolf Y 2009Immunity2009,31,6:1
8Prevention of ischemic and reperfusion arrhythmias using the calmodulin blocker trifluoperazine显示文摘Meerson FZ Malyshev IIu Larionov NP 1988Kardiologiia1988,28,5:1
9MicroRNA-132 potentiates eholinergic anti-inflammatory signaling by targeting acetyleholines- terase 显示文摘Shaked I Meerson A Wolf Y 2009Immunity2009,31,6:1
10On the mechanism of compensatory hyperfunetion and insufficiency of the heart显示文摘Meerson FZ 1961Cor Vasa1961,3,:1
11MicroRNA-132 potentiates cholinergic anti-inflammatory signaling by targeting acetylcholinesterase显示文摘Shaked I Meerson A Wolf Y 2009Immunity2009,31,6:1
12Stress induced arrhythmic disease of the heart-Part I 显示文摘Meerson FZ 1994Clin Cardiol1994,17,:1
13Stress decrease in re-sistance of an organism to a tumor growth and its prevention bycentral inhibiting metabolites显示文摘Sukhikh GT Meerson FZ Mikhaleva II 1984Dokl Akad Nauk USSR1984,278,3:1
14MicroRNA-132 potentiates cholinergic anti-inflammatory signaling by targeting acetylcholinesterase显示文摘Shaked I Meerson A Wolf Y 2009Immunity2009,31,6:1
15Anotioxidative effects of interval hypoxic training显示文摘Meerson NV Tkatchouk EN 1997Hyp Med J1997,,3:1
16Adaptation to high altitude hypoxia as a factor preventing development of myocardial ischemic necrosis显示文摘Meerson FZ Gomzakov OA Shimkovich MV 1973Am J Cardiol1973,31,1:1
17Changes in brain MicroRNAs contribute to cholinergic stress reactions显示文摘Meerson A Cacheaux L Goosens KA 0,,1:1
18MicroRNA-132 potentiates cholinergic anti-inflammatory signaling by targeting acetylcholinesterase显示文摘Shaked I Meerson A Wolf Y 2009Immunity2009,31,6:1
19MicroRNA-132 potentiates cholinergic anti-inflammatory signaling by targeting acctylcholine- sterase显示文摘Shaked 1 Meerson A Wolf Y 2009Inmaunity2009,31,6:1
20The effect of adaptation to a physical load on the endotheliummediated reactions of isolated vessels and NO production in rats 显示文摘MANUKHINA E B LAPSHIN A V MEERSON F Z 1996Fiziol Zh Im I M Sechenova1996,82,7:1
返回顶部 每页显示:
共3页 首页 上一页 第1页 下一页 末页 /3 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费