Disposition of Flavonoids via Glucuronidation, Critical Role of Efflux Transporte
Disposition of Flavonoids via Glucuronidation, Critical Role of Efflux Transporte
批准号:
8697807
负责人:
MING HU
金额:
$41.99万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-06-05 至 2018-04-30
关键词:
Animal ModelAntioxidantsBasic ScienceBeta-glucuronidaseBioavailableBiologicalBiological AvailabilityBlood CirculationCardiovascular systemCell modelCholesterolClassificationColonComplexDegenerative DisorderDevelopmentDietary FlavonoidDrug CompoundingDrug DesignDrug KineticsEffectivenessEnteralEnzymesFlavonoidsGenisteinGlucuronidesGlucuronosyltransferaseGoalsHealthHealth BenefitHumanHydrolysisIn VitroInhibitory Concentration 50Inorganic SulfatesIntestinal AbsorptionKineticsKnowledgeLeadMalignant NeoplasmsMapsMetabolicMetabolic PathwayMetabolismModelingMolecularMusOrganPharmaceutical PreparationsPhaseProcessProductionProtein IsoformsRecyclingResearchResearch Project GrantsResearch ProposalsRoleSafetyScienceStructureSystemTestingTimeTissuesUGT1A1 geneUnspecified or Sulfate Ion SulfatesValidationanti agingdesignenzyme activityimprovedin vivoinhibitor/antagonistinnovationmathematical modeloverexpressionpractical applicationpreventpublic health relevancesulfotransferase
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Dietary flavonoids exert a broad range of biological effects including anticancer, antioxidant, antiosteoperosis, cholesterol lowering, and anti-aging, which make them attractive for preventing cancer and cardiovascular ailments and for impeding the progress of degenerative diseases. However, these compounds are poorly bioavailable, which impedes their development as viable drugs. The long-term goal of our study is to determine how efflux transporters of hydrophilic phase II conjugates control the overall disposition of flavonoids and determine their biological fate in vivo. The central hypothesis for the present research proposal is that the local and systemic bioavailability of a flavonoid will be
improved by modulating the function of a critical efflux transporter responsible for its distributin to the local target organs (e.g., colon) or the systemic circulation. Our central hypothesis is a step beyond the classical hypothesis that bioavailabilities of drugs can only be improved if more are absorbed and/or less of the absorbed amount is metabolized. The Specific Aims of this renewal proposal are to: (1) construct precise quantitative cellular metabolic models to describe the kinetics of glucuronide formation and efflux at the molecular level; (2) determine the quantitative structure-efflux relationships (QSERs) for three key efflux transporters of flavonoid glucuronides: BCRP, MRP2, and MRP3; and (3) establish a glucuronidation classification system to map which flavonoid is likely to have good bioavailability by manipulating a particular efflux transporter. Successful completion of our research project will significantly advance the basic sciences as well as practical knowledge that may be used to improve the bioavailability of flavonoids and relevant drugs for human health.
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