Delivering drugs via bacterial secretion systems
Delivering drugs via bacterial secretion systems
批准号:
7739236
负责人:
MARCIN S FILUTOWICZ
金额:
$18.08万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-06-15 至 2011-05-31
关键词:
AddressAmberAmino AcidsAnti-Bacterial AgentsAntibiotic ResistanceAntibioticsAttenuatedBacteriaBacteriophagesBiological AssayBiologyCarrier ProteinsCategoriesCellsCollectionContainmentDNADNA PrimaseDisciplineEscherichia coliEvaluationGenesGenetic ConjugationGenetically Modified OrganismsGoalsGovernmentGrowthHealthIndividualKineticsKnowledgeLaboratoriesLacZ GenesLibrariesLongevityMeasuresMembrane ProteinsMethodsMicrobeMutationOne-Step dentin bonding systemPathway interactionsPersonsPharmaceutical PreparationsPhenotypePlasmidsProcessProductionProteinsRNARNA PhagesReportingResearchResistanceResourcesRiskRouteScientistStructureSystemTechnologyTemperatureTestingTherapeuticToxic effectToxinTransfer RNAUniversitiesWisconsinWorkantimicrobialantimicrobial drugaptamerbaseclinically relevantcombatdesignkillingsmalenovelnovel strategiespathogenpathogenic bacteriaplasmid DNApolypeptidepublic health relevanceresearch studytooluptake
中文摘要
描述(由申请人提供):威斯康星大学麦迪逊分校最近发起了一项新的倡议,威斯康星抗菌研究项目(WISPAR)。该项目旨在创造和培育抗菌素发现的新途径。WISPAR创建和培育的资源伙伴关系对于迅速开发能够延长现有抗生素的寿命并作为新的和适当有针对性的替代品的抗菌技术至关重要。我们的目标是应用从不同学科收集的知识来开发更智能、可持续的微生物管理方法。在这个途径上的一个步骤是利用自然发生的细菌结合过程的概念。基于细菌接合的技术(BCBT)的目标是利用质粒生物学来对抗日益高涨的抗生素耐药性细菌。在其全部范围内,这些技术将利用高度减毒的细菌作为载体,将抗菌剂输送到病原菌中。BCBT得益于许多科学家60年来积累的工作。构成这项技术的所有单独组件都已被证明是可行的。在这里,我们建议生产新类别的接合传递的抗菌化合物,并测试它们对一组细菌病原体的活性,其中一些已经对所有临床相关的抗生素产生抗药性,与公共卫生相关:保持领先的唯一方法是继续开发新的抗菌剂,最好是以全新的方式攻击病原体。基于细菌接合的技术(BCBT)将利用质粒生物学来开发更智能、可持续的微生物管理方法。在这里,我们建议鉴定属于一种新类别的抗菌化合物的分子,并测试一种新的方法来输送抗菌剂,特别是靶向细菌。
英文摘要
DESCRIPTION (provided by applicant): University of Wisconsin-Madison has recently launched a new initiative, the Wisconsin Project for Antimicrobial Research (WisPAR). This project is designed to create and nurture novel pathways to antimicrobial discovery. The resource partnership created and nurtured by WisPAR will be critical for rapidly developing antimicrobial technologies with the capacity to both extend the lifespan of current antibiotics and to act as new and appropriately targeted alternatives. Our goal is to apply collected knowledge from a variety of disciplines to develop smarter, sustainable approaches to microbe-management. One step on this pathway is a concept utilizing naturally occurring process of bacterial conjugation. The objective of the Bacterial Conjugation-Based Technologies (BCBT) is to exploit plasmid biology to combat the rising tide of antibiotic-resistant bacteria. In its full breadth, these technologies will utilize highly attenuated bacteria as vehicles for delivering antimicrobial agents into pathogenic bacteria. BCBT benefits from the accumulated work of many scientists over a period of six decades. All of the individual components that comprise the technology have been demonstrated to be feasible. Here we propose production of new categories of conjugationally-delivered antimicrobial compounds and test their activity against a group of bacterial pathogens, some of which have become resistant to all clinically relevant antibiotics PUBLIC HEALTH RELEVANCE: The only way to stay ahead of the ongoing health crisis caused by antibiotic resistant bacteria is to continually develop new antibacterial agents, preferably ones that attack pathogens in entirely new ways. Bacterial Conjugation-Based Technologies (BCBT) will exploit plasmid biology to develop smarter, sustainable approaches to microbe-management. Here we propose to identify molecules belonging to a new category of antimicrobial compounds and to test a novel method for delivering antimicrobials, specifically, to target bacteria.
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会议论文
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批准号:8264540
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项目类别:
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资助金额:$18.17万
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财政年份:2011
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负责人:MARCIN S FILUTOWICZ
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依托单位:
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批准号:8176377
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资助金额:$18.17万
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财政年份:2011
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负责人:MARCIN S FILUTOWICZ
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依托单位:
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批准号:7870437
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NUCLEOPROTEIN STRUCTURES AND GENOME DUPLICATION
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依托单位:
海外基金