Epidemiology of multidrug-resistant tuberculosis in Peru
Epidemiology of multidrug-resistant tuberculosis in Peru
批准号:
7676673
负责人:
MERCEDES C BECERRA
金额:
$60.79万
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:
2006-08-01 至 2011-07-31
关键词:
AccountingAgeAntibiotic ResistanceAntibioticsAreaBacteriaBasic ScienceBioterrorismCategoriesClinicalCohort StudiesCollaborationsDiagnosticDiseaseDisease OutbreaksDrug resistanceDrug-sensitiveEmerging Communicable DiseasesEnrollmentEnvironmentEpidemiologic MethodsEpidemiologyExposure toGoalsHIV InfectionsHealthHouseholdInfectionInfectious Diseases ResearchIsoniazid resistanceKnowledgeLeadMassachusettsMeasuresMolecularMono-SMorbidity - disease rateMulti-Drug ResistanceMultidrug-Resistant TuberculosisMutationMycobacterium tuberculosisNatural HistoryNutritional statusPatientsPersonsPeruPharmaceutical PreparationsPhenotypePopulationPublic HealthRelapseResearch PersonnelResistanceRiskRisk EstimateTestingTherapeuticTuberculosisUnited Statesbiodefenseclinical infrastructurecohortcostdisorder riskfitnessfollow-upmortalitymultidisciplinarymutantpathogenprospectiveresistance mutationresistant strainsextransmission processvaccination against tuberculosis
中文摘要
描述(由申请人提供):该项目的总体目标是提供关于秘鲁结核病高负担地区耐多药(MDR)结核分枝杆菌传播动态的新知识。更好地了解高暴露人群中耐多药结核病的流行病学和自然历史非常重要,因为它将改变我们在美国和其他地方控制耐多药结核病传播的能力。在没有抗生素的情况下,通常认为导致抗生素耐药性的突变会降低细菌的适应性;这被称为阻力的适应性“成本”。最近的研究表明,使抗生素耐药性适应度成本最小化的特定耐药突变可能有利于高传染性耐多药突变体的出现。这种结核分枝杆菌菌株的出现威胁到全球结核病控制,因为这些菌株的治疗比药物敏感菌株困难和昂贵得多。在20世纪90年代,耐多药结核病在美国的爆发与高死亡率有关。高传染性耐多药菌株的存在可能为通过生物恐怖主义故意传播该疾病创造机会。拟议的研究将建立在秘鲁利马北部城市棚户区已建立的临床基础设施的基础上,那里的结核病高流行。在那里,耐多药突变体对多达9种药物产生了抗药性,并产生了继发性病例。具体目的是:(1)比较耐多药和耐异烟肼结核分枝杆菌与药敏菌株的家庭传播情况。(2)评估社会人口统计学和临床混杂因素以及年龄、性别、合并发病、HIV感染、营养状况和卡介苗接种等风险调节因素对这些关联的影响。(3)测量特定耐药突变和表型之间的关联,包括(i)多药耐药,(ii)临床表现和(iii)传播性。(4)测量真实复发率和再感染率。这些目标将通过一项前瞻性的四年入组队列研究和分子流行病学方法来实现。将招募1.1万多名患者,包括至少500名传染性耐多药结核病患者及其暴露的家庭接触者。该项目将以美国和秘鲁调查人员组成的多学科小组、马萨诸塞州公共卫生部和秘鲁卫生部之间的既定合作为基础;它将允许对持续暴露于耐多药、耐药和药敏结核分枝杆菌菌株的大量人群进行登记和纵向随访。结果将有助于指导结核病诊断和治疗的基础研究。
英文摘要
DESCRIPTION (provided by applicant): The overarching goal of this project is to provide new knowledge about the transmission dynamics of multidrug- resistant (MDR) M. tuberculosis in a high tuberculosis-burden area in Peru. A better understanding of the epidemiology and natural history of MDR tuberculosis in a high-exposure population is very significant because it will change our capacity to contain the spread of MDR tuberculosis in the United States and elsewhere. Mutations that lead to antibiotic resistance are often assumed to reduce bacterial fitness in the absence of antibiotics; this is referred to as the fitness "cost" of resistance. Recent studies suggest specific drug-resistance- conferring mutations that minimize the fitness cost of antibiotic resistance may favor the emergence of highly transmissible MDR mutants. The emergence of such M. tuberculosis strains threatens global tuberculosis control because these strains are much more difficult and expensive to treat than drug-sensitive strains. In the 1990s, MDR tuberculosis outbreaks in the U.S. were associated with high mortality. The existence of highly transmissible MDR strains may create an opportunity for the intentional spread of this disease through bioterrorism. The proposed study will build on an established clinical infrastructure in the urban shantytowns in northern Lima, Peru, where tuberculosis is hyperendemic. There, MDR mutants resistant to as many as nine drugs have produced secondary cases. Specific aims are: (1) To measure the within-household transmission of MDR and isoniazid- resistant M. tuberculosis strains compared to drug-sensitive strains. (2) To assess the impact of socio- demographic and clinical confounders and risk modifiers such as age, sex, co-morbidity, HIV infection, nutritional status, and BCG vaccination on these associations. (3) To measure associations among specific resistance mutations and phenotypes including (i) multi-drug resistance, (ii) clinical presentations, and (iii) transmissibility. (4) To measure the rate of true relapse versus re-infection. These aims will be achieved using a prospective four-year enrollment cohort study and molecular epidemiologic methods. Over 11,000 patients, including at least 500 with infectious MDR tuberculosis, will be enrolled along with their exposed household contacts. This project will build on an established collaboration among a multidisciplinary team of U.S. and Peruvian investigators, the Massachusetts Department of Public Health, and the Ministry of Health of Peru; it will permit the enrollment and longitudinal follow-up of a large cohort of persons with sustained exposure to MDR, drug-resistant, and drug- sensitive M. tuberculosis strains. Results will serve to guide basic research in tuberculosis diagnostics and therapeutics.
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会议论文
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