Mechanisms Regulating Non-biliary Fecal Sterol Loss
Mechanisms Regulating Non-biliary Fecal Sterol Loss
批准号:
8255468
负责人:
Jonathan Mark Brown
金额:
$24.32万
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-04-15 至 2013-03-31
关键词:
AccountingAffinityAnimalsApicalApolipoprotein EApolipoproteins BAppearanceAwardBackcrossingsBile AcidsBile fluidBiliaryBiliary FistulaBreedingC57BL/6 MouseCaco-2 CellsCarrier ProteinsCause of DeathCellsCholesterolColoradoCoronary heart diseaseDataDefectDevelopmentEnterocytesEquilibriumExcretory functionFacultyFecesFranceGene Expression AlterationGenerationsGeneticGenetic ModelsGenotypeGrantHealthHepaticHepatobiliaryHepatocyteHigh Density LipoproteinsHumanInstructionInterruptionIntestinal AbsorptionIntestinesKnockout MiceKupffer CellsLabelLeadLipidsLipoproteinsLiverManuscriptsMarshalMeasuresMediatingMentorsModelingMolecularMovementMusOperative Surgical ProceduresPathway interactionsPeripheralPhasePlasmaPlayPreparationProcessProteinsPublishingRadiolabeledRelative (related person)ResearchRoleRouteSR-BI receptorSmall IntestinesSterolsSurgical ModelsTestingTimeTissuesTracerTransgenic MiceTransgenic OrganismsTransport ProcessUnited StatesWorkbasebasolateral membranecholesterol absorptionin vivoknowledge basemacrophagenovel therapeutic interventionoverexpressionparticleradiotracerresearch studyreverse cholesterol transportsymposium
中文摘要
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英文摘要
Dysregulation of cholesterol balance contributes significantly to coronary heart disease (CHD), the leading
cause of death in the United States. Molecular mechanisms regulating the transport of cholesterol into and
out of the body have been well defined. It is generally accepted that cholesterol enters the body via
intestinal absorption or endogenous synthesis, and is excreted out of the body via a hepatobiliary route,
either as free sterol or following hepatic conversion to bile acids. Although it is believed that the
hepatobiliary route is the major pathway for fecal cholesterol excretion in humans, we have recently found
that fecal sterol loss is normal in mice unable to secrete cholesterol into bile. Furthermore, we have
demonstrated that nascent liver-derived lipoproteins can deliver cholesterol to the intestine, indicating the
presence of a non-biliary plasma-based route for fecal sterol loss. Our findings, along with others, suggest
that the intestine may play an important role in the direct elimination of cholesterol. The objective of this
work is to understand the molecular mechanisms regulating non-biliary fecal sterol loss through the
intestine, a pooriy understood pathway that may play a quantitatively important role in whole body
cholesterol balance. During the mentored phase of this project, we propose to: 1) quantify biliary and nonbiliary
contributions to fecal cholesterol loss using surgical and genetic models of biliary insufficiency, and
2) determine whether plasma lipoprotein-mediated delivery of cholesterol to the intestine depends on the
presence of apolipoprotein E. During the independent research phase, we propose to: 3) identify the
carrier(s) responsible for cholesterol transport across the basolateral membrane of the enterocyte, and 4)
identify the carrier(s) responsible for apical cholesterol transport into the small intestine lumen.
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依托单位:
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依托单位:
海外基金