The Animal Core will provide the Intragastric Ethanol Infusion model (IEI model) to the Center investigators and coordinate the shared use of the model and its tissues by the Center and non-Center members. The IEI model was devoted fifteen years ago by two of the Center investigators (Tsukamoto and French), and re now used by several independent laboratories in the U.S. for studies on the pathogenesis of ethanol induced organ injury and ethanol metabolism. Though the model uses an unphysiologic mode of intragastric infusion for alimentation and ethanol administration, it is a powerful tool with which the relative roles of ethanol and dietary factors can be investigated in an absolutely and independently controlled fashion. Due to this virtue, the model became the first rodent model in which progressive alcoholic liver injury was induced and the contribution of the nutritional factors (fat, iron, etc0 was unquestionably demonstrated. The model was also instrumental in identifying ethanol-induced """"""""priming"""""""" and """"""""sensitization"""""""" mechanisms which we proposed underlie alcoholic liver and pancreatic injury. All Research and Pilot Projects of the Center address this Center theme through utilization of the IEI model except for Pilot Project-2 which does not require animals. Thus, the model is an integral component of the enter, and the Core will provide it in a standardized manner while minimizing duplication of the model maintenance efforts and costs. It is also the Animal Core's objective to promote the animal or tissue sharing program available to non-enter investigators and to assist their training in all technical aspects of the IEI model upon request. The Core will also provide the Lieber-DeCarli model to the Research Project-1 which comparatively studies effects of moderate and heavy ethanol intake.

Agency
National Institute of Health (NIH)
Institute
National Institute on Alcohol Abuse and Alcoholism (NIAAA)
Type
Specialized Center (P50)
Project #
5P50AA011999-03
Application #
6410037
Study Section
Project Start
2001-01-01
Project End
2001-12-31
Budget Start
1998-10-01
Budget End
1999-09-30
Support Year
3
Fiscal Year
2001
Total Cost
$178,517
Indirect Cost
Name
University of Southern California
Department
Type
DUNS #
041544081
City
Los Angeles
State
CA
Country
United States
Zip Code
90089
Zhao, Qinglan; Wei, Yi; Pandol, Stephen J et al. (2018) STING Signaling Promotes Inflammation in Experimental Acute Pancreatitis. Gastroenterology 154:1822-1835.e2
Edderkaoui, Mouad; Chheda, Chintan; Soufi, Badr et al. (2018) An Inhibitor of GSK3B and HDACs Kills Pancreatic Cancer Cells and Slows Pancreatic Tumor Growth and Metastasis in Mice. Gastroenterology 155:1985-1998.e5
Khanova, Elena; Wu, Raymond; Wang, Wen et al. (2018) Pyroptosis by caspase11/4-gasdermin-D pathway in alcoholic hepatitis in mice and patients. Hepatology 67:1737-1753
Zheng, Han; You, Yang; Hua, Meiyun et al. (2018) Chlorophyllin Modulates Gut Microbiota and Inhibits Intestinal Inflammation to Ameliorate Hepatic Fibrosis in Mice. Front Physiol 9:1671
Lew, Daniel; Wu, Bechien U; Pandol, Stephen J et al. (2018) Disease Course Differences in Acute Pancreatitis Based on Etiology Using the Pancreatitis Activity Scoring System. Pancreas 47:e40-e41
Ogawa, Tomohiro; Li, Yuchang; Lua, Ingrid et al. (2018) Isolation of a unique hepatic stellate cell population expressing integrin ?8 from embryonic mouse livers. Dev Dyn 247:867-881
Tripathi, Anupriya; Debelius, Justine; Brenner, David A et al. (2018) The gut-liver axis and the intersection with the microbiome. Nat Rev Gastroenterol Hepatol 15:397-411
Waldron, Richard T; Su, Hsin-Yuan; Piplani, Honit et al. (2018) Ethanol Induced Disordering of Pancreatic Acinar Cell Endoplasmic Reticulum: An ER Stress/Defective Unfolded Protein Response Model. Cell Mol Gastroenterol Hepatol 5:479-497
Waldron, Richard T; Lugea, Aurelia; Gulla, Aiste et al. (2018) Proteomic Identification of Novel Plasma Biomarkers and Pathobiologic Pathways in Alcoholic Acute Pancreatitis. Front Physiol 9:1215
Wu, Raymond; Murali, Ramachandran; Kabe, Yasuaki et al. (2018) Baicalein Targets GTPase-Mediated Autophagy to Eliminate Liver Tumor-Initiating Stem Cell-Like Cells Resistant to mTORC1 Inhibition. Hepatology 68:1726-1740

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