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1Alcoholic pancreatitis:New insights into the pathogenesisand treatment显示文摘Acute pancreatitis is a necro-inflammatory disease of the exocrine pancreas that is characterized by inappropriate activation of zymogens, infiltration of the pancreas by inflammatory cells, and destruction of the pancreatic exocrine cells. Acute pancreatitis can progress to a severe life-threatening disease. Currently there is no pharmacotherapy to prevent or treat acute pancreatitis. One of the more common factors associated with acute pancreatitis is alcohol abuse. Although commonly associated with pancreatitis alcohol alone is unable to cause pancreatitis. Instead, it appears that alcohol and its metabolic by-products predispose the pancreas to damage from agents that normally do not cause pancreatitis, or to more severe disease from agents that normally cause mild pancreatic damage. Over the last 10 to 20 years, a tremendous amount of work has defined a number of alcohol-mediated biochemical changes in pancreatic cells. Among these changes are: Sustained levels of intracellular calcium, activation of the mitochondrial permeability transition pore, endoplasmic reticulum stress, impairment in autophagy, alteration in the activity of transcriptional activators, and colocalization of lysosomal and pancreatic digestive enzymes. Elucidation of these changes has led to a deeper understanding of the mechanisms by which ethanol predisposes acinar cells to damage. This greater understanding has revealed a number of promising targets for therapeutic intervention. It is hoped that further investigation of these targets will lead to the development of pharmacotherapy that is effective in treating and preventing the progression of acute pancreatitis.Dahn L Clemens Katrina J Schneider Christopher K Arkfeld Jaclyn R Grode Mark A Wells Shailender Singh 2016World Journal of Gastrointestinal Pathophysiology2016,7,1:10
2Electrochemical and in situ X-ray diffraction studies of the reaction of lithium with tin oxide composites显示文摘COURTNEY I A DAHN J R 1997J Electrochem Soc1997,144,:2
3Structure and electrochemistry of LiMO2 ( M = Ti, Mn, Fe, Co, Ni ) prepared by mechanochemical synthesis 显示文摘OBROVAC M N MAO O DAHN J R 1998Solid State Ionics1998,,112:2
4Study of irreversible capacities for Li insertion in hard and graphitic carbons显示文摘Xing W Dahn J R 1997J Electrochemical Society1997,144,4:1
5显示文摘Luo W B Dahn J R 2009Electrochimica Acta2009,54,:1
6Studies of the Layered Manganese Bronzes, Na2/3 O2 with M = Co, Ni, Li and Li2/2 O2 Prepared by Ion-exchange 显示文摘J M Paulsen J R Dahn 1999Solid State Ionics1999,126,1:1
7Reducing carbon in LiFePO4/C composite electrodes to maximize specific energy, volumetric energy, and tap density显示文摘Chen Z Dahn J R 2002J Electrochem Soc2002,149,:1
8Reducing carbon in LiFePO4/C composite electrodes to maxing specific energy, volumetric energy, and tap density 显示文摘Zhaohui C Dahn J R 2002Journal of the Electrochemical Society2002,149,9:1
9Layered LiO2 cathode materials for lithium-ion batteries显示文摘Lu Zhonghua MacNeil D D Dahn J R 2001Electrochemical and Solid State Lett2001,4,11:1
10Structure and electrochemistry of Li (NixCo1-2xMnx) O2 (0 ≤ x≤ 1/2)显示文摘Macneil D D Lu Z Dahn J R 2002Electrochemical Soc2002,149,10:1
11The effect of boron substitution in carbon on the intercalation of lithium in Lix (B2C1-x )6 显示文摘Way B M Dahn J R 1994J Electrochem Soc1994,141,4:1
12Li-insertion in hard carbon anode materials for Li-ion batteries 显示文摘BUIEL E DAHN J R 1999Electrochim Acta1999,45,:1
13A new layered cathode material for rechargeable lithium batteries显示文摘Paulsen J M Larcher D Dahn J R 2000J Electrochem Soc2000,147,8:1
14Thermal stability of LixCoO2,LixNiO2 and LixMnO2 and consequences for the safety of Li-ion cells显示文摘DAHN J R FULLER E W OBROVAC M 1994Solid State Ionics1994,69,:1
15Mechanically alloyed Sn-Fe(-C) powders as anode materials for Li-ion batteries--The SnFe2 SnFe3C active/inactive system 显示文摘Mao O Dahn J R 1999Journal of the Electrochemical Society1999,146,2:1
16Structure and electro- chemistry of the spinel oxides LiTi204 and Li4~TisaO4显示文摘COLBOW K M DAHN J R HAERING R R 1989J Power Sources1989,,26:1
17Combinatorial investigations of Si- M (M=Cr + Ni,Fe,Mn) thin film negative electrode materials显示文摘Fleischauer M D Topple J M Dahn J R 2005Electrochemical and Solid-State Letters2005,8,2:1
18In situ X-ray diffraction and electrochemical studies of Lh-xNi02 显示文摘LI W REIMERS J N DAHN J R 1993Solid State Ionics1993,67,1:1
19Kinetics study of the high potentialrange of lithium-rich transition-metal oxides for lithium-ion batteriesby electrochemical methods显示文摘VAN BOMMEL A DAHN J R 2010Electrochem Solid-State Lett2010,13,5:1
20Thermal degradation of the support in carbon-supported platinum electrocatalysts for PEM fuel cells 显示文摘STEVENS D A DAHN J R 2005Carbon2005,43,:1
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