The Role of Casual Contact and Migration in XDR TB Transmission in South Africa: a Geospatial, Genomic and Social Network Study
The Role of Casual Contact and Migration in XDR TB Transmission in South Africa: a Geospatial, Genomic and Social Network Study
批准号:
10411576
负责人:
Koleka P Mlisana
金额:
$2.02万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2018
资助国家:
美国
项目状态:
已结题
起止时间:
2018-01-17 至 2024-12-31
关键词:
AfricaAsiaAutomobile DrivingBeliefCommunicable DiseasesCommunitiesCountryDataDiagnosisDrug resistance in tuberculosisEconomicsEpidemicEvidence based interventionExtreme drug resistant tuberculosisGenomicsGenotypeGoalsHIVHealthcareHomeHouseholdIncidenceIndividualInterventionInvestigationKnowledgeLinkLocationMethodologyMigrantMovementNamesParticipantPatternPersonsPharmaceutical PreparationsPositioning AttributeProvinceResearchResearch InfrastructureResistanceRiskRoleRuralSocial NetworkSouth AfricaTestingTimeTravelTuberculosisUrbanizationair samplingdesigneffective interventionextensive drug resistancegenome sequencinginnovationinsightmigrationmortalitynovelpopulation basedpublic health interventionrural arearural settingtransmission processtuberculosis drugsurban areawhole genome
中文摘要
结核病(TB)是全球主要的传染病杀手,主要由
高发病率设置。然而,到目前为止,研究还没有能够确定大多数
传输正在进行中。结核病的传播传统上被归因于长时间的密切接触,但
大量研究表明,只有9%-30%的基因相关病例可以归因于关闭
联系。另一个令人信服的假设是,剩下的70%的传播是由于偶然的
联系了社区,但这一点从未得到证实。更好地了解在哪里传播
发生这种情况将使设计出更有效的干预措施来控制结核病发病率。
在南非夸祖鲁-纳塔尔省艾滋病毒相关广泛耐药结核病(TRAX)的传播研究中,我们
表明广泛耐药(XDR)结核病主要是由传播而不是获得性驱动的
抵抗,颠覆了主流信仰。然而,与药物敏感的结核病类似,不到三分之一的人
耐药结核病病例可以通过密切接触联系在一起。耐药结核病提供了一个独特的机会
研究由偶然接触引起的传播,因为有限的病例量允许全面的基因分型
确定在接触调查中可能相互指名的个人之间的传输链路。
在这项拟议的研究中,我们将检验一个新的假设,即偶然的接触和迁移是结核病的诱因
在高发环境中的传播。整个亚洲和非洲的城市化和迁移率不断上升
为结核病传播创造了有利条件。然而,到目前为止,还没有一项研究全面研究
移民如何促进结核病从城市传播到农村。在目标1中,我们将确定
通过偶然接触感染的广泛耐药结核病的比例,并确定发生传播的地点
使用基因组、社会网络和地理空间分析。在目标2中,我们将描述迁移模式
在德班被诊断患有广泛耐药结核病的人中,确定移民如何为广泛耐药创造机会
结核病传播。在目标3中,我们将量化夸祖鲁-纳塔尔地区广泛耐药结核病病例的比例。
使用全基因组测序与德班病例有基因组联系的省份。
上下文中提出的目标(广泛耐药结核病传播中的临时接触和迁移)
研究建立在我们已建立的研究基础设施和成功记录的基础上,将最新情况与
ART方法,以深入了解结核病的传播。这项研究的新知识将对
告知循证干预措施,以遏制结核病传播,减少药物敏感和耐药性
结核病发病率。这将包括与基因有关的结核病病例的近乎实时的数据,以及
为减少空气传播的靶向干预措施的最高产量的地点。一起,
通过这项研究创建的知识和集成方法将催化
全球结核病发病率需要实现全球EndTB 2035目标。
英文摘要
Tuberculosis (TB) is the leading infectious disease killer globally and is largely driven by transmission in
high incidence settings. Studies to date, however, have not been able to identify where the majority of
transmission is occurring. TB transmission has traditionally been attributed to prolonged, close contact, but
numerous studies have shown that only 9–30% of genotypically linked cases can be attributed to close
contact. A compelling alternative hypothesis is that the remaining 70% of transmission occurs due to casual
contact in the community, but this has never been verified. A better understanding of where transmission
occurs will enable the design of more effective interventions to curb TB incidence.
In the Transmission of HIV-Associated XDR TB (TRAX) study in KwaZulu-Natal province, South Africa, we
demonstrated that extensively drug-resistant (XDR) TB is primarily driven by transmission, rather than acquired
resistance, overturning the prevailing belief. However, similar to drug-susceptible TB, less than one-third of
drug-resistant TB cases could be linked through close contact. Drug-resistant TB provides a unique opportunity
to study transmission due to casual contact, as the limited caseload allows for comprehensive genotyping to
identify transmission links between individuals who may name each other in a contact investigation.
In the proposed study, we will test a novel hypothesis that casual contact and migration are fueling TB
transmission in high incidence settings. Rising rates of urbanization and migration throughout Asia and Africa
have created favorable conditions for TB transmission. Yet, to date, no studies have comprehensively studied
how migration may facilitate the spread of TB from urban to rural settings. In Aim 1, we will determine the
proportion of XDR TB that develops through casual contact and identify locations where transmission occurs
using genomic, social network, and geospatial analyses. In Aim 2, we will characterize migration patterns
among persons diagnosed with XDR TB in Durban to determine how migration creates opportunities for XDR
TB dissemination. In Aim 3, we will quantify the proportion of XDR TB cases from throughout KwaZulu-Natal
province that are genomically linked to cases in Durban using whole genome sequencing.
The aims proposed in the CONTEXT (Casual Contact and Migration in the Transmission of XDR TB)
study build upon our established research infrastructure and successful track record of combining state-of-the-
art methodologies to gain insight into TB transmission. New knowledge from this study will be essential for
informing evidence-based interventions to halt TB transmission and reduce drug-susceptible and drug-resistant
TB incidence. This will include near real-time data on genomically linked TB cases, as well as the identification
of locations that will be highest yield for targeting interventions to decrease airborne transmission. Together,
the knowledge and integrated methodology created from this study will catalyze the significant declines in
global TB incidence needed to achieve the global EndTB 2035 goals.
期刊论文(9)
专著(0)
科研奖励(0)
会议论文
Advances in tuberculosis control during the past decade.
在过去十年中,结核病控制的进展。
DOI:
10.1016/s2213-2600(23)00090-5
发表时间:
2023-04
期刊:
The Lancet. Respiratory medicine
影响因子:
--
作者:
[]
通讯作者:
DOI:
10.1183/13993003.00246-2018
发表时间:
2018-10
期刊:
The European respiratory journal
影响因子:
--
作者:
[Auld SC, Shah NS, Mathema B, Brown TS, Ismail N, Omar SV, Brust JCM, Nelson KN, Allana S, Campbell A, Mlisana K, Moodley P, Gandhi NR]
通讯作者:
Gandhi NR
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