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Tracking the flow of malaria parasites and drug resistance within the DRC and across its borders

Tracking the flow of malaria parasites and drug resistance within the DRC and across its borders
追踪刚果民主共和国境内和跨境的疟原虫流动和耐药性
批准号:
10721404
负责人:
JEFFREY A. BAILEY
金额:
$0.51万
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:
2018-06-21 至 2024-05-31

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中文摘要
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英文摘要
ABSTRACT Malaria​ ​remains​ ​endemic​ ​in​ ​sub-Saharan​ ​Africa​ ​in​ ​large​ ​part​ ​due​ ​to​ ​continued​ ​evolution​ ​and​ ​spread​ ​of​ ​drug resistance​ ​which​ ​undermines​ ​ongoing​ ​large-scale​ ​control​ ​and​ ​elimination​ ​efforts.​ ​We​ ​will​ ​leverage high-throughput​ ​genotyping​ ​of​ ​parasites​ ​using​ ​a​ ​state-of-the-art​ ​panel​ ​of​ ​molecular​ ​inversion​ ​probes​ ​(MIPs)​ ​for targeted​ ​sequencing​ ​of​ ​thousands​ ​of​ ​resistance​ ​and​ ​neutral​ ​loci​ ​across​ ​thousands​ ​of​ ​infections​ ​covering​ ​the entire​ ​Democratic​ ​Republic​ ​of​ ​Congo​ ​(DRC)​ ​and​ ​select​ ​areas​ ​in​ ​bordering​ ​countries.​ ​This​ ​will​ ​provide​ ​us​ ​a​ ​map with​ ​an​ ​unprecedented​ ​scale​ ​and​ ​resolution​ ​to​ ​define​ ​the​ ​evolution​ ​and​ ​spread​ ​of​ ​antimalarial​ ​resistance mutations.​ ​In​ ​this​ ​project,​ ​we​ ​will​ ​first​ ​develop​ ​our​ ​genotyping​ ​panel​ ​which​ ​should​ ​provide​ ​a​ ​high-resolution​ ​tool for​ ​studying​ ​all​ ​known​ ​drug​ ​resistance​ ​loci​ ​and​ ​general​ ​parasite​ ​population​ ​structure​ ​in​ ​this​ ​and​ ​other​ ​settings. Applying​ ​this​ ​to​ ​well​ ​annotated​ ​samples​ ​from​ ​across​ ​the​ ​DRC​ ​and​ ​bordering​ ​countries,​ ​we​ ​will​ ​define​ ​the prevalence​ ​of​ ​drug​ ​resistance​ ​mutations​ ​and​ ​define​ ​them​ ​based​ ​on​ ​their​ ​genetic​ ​haplotypes​ ​which​ ​act​ ​as​ ​a unique​ ​fingerprints.​ ​We​ ​will​ ​then​ ​map​ ​these​ ​drug​ ​resistance​ ​haplotypes​ ​and​ ​study​ ​their​ ​spread​ ​and​ ​spatial associations​ ​and​ ​further​ ​examine​ ​their​ ​epidemiologic​ ​associations​ ​and​ ​interactions.​ ​Onto​ ​this​ ​detailed​ ​spatial map,​ ​we​ ​will​ ​​ ​examine​ ​specific​ ​locales​ ​of​ ​interest​ ​for​ ​temporal​ ​changes.​ ​​ ​These​ ​focal​ ​regions​ ​in​ ​the​ ​DRC represent​ ​diverse​ ​ecologic​ ​and​ ​demographic​ ​features​ ​that​ ​likely​ ​impact​ ​resistance​ ​spread​ ​and​ ​evolution including​ ​areas​ ​with​ ​minimal​ ​health​ ​care​ ​infrastructure​ ​and​ ​ongoing​ ​regions​ ​of​ ​conflict.​ ​Our​ ​final​ ​work​ ​will​ ​be​ ​to apply​ ​more​ ​sophisticated​ ​models​ ​to​ ​the​ ​rich​ ​sequence​ ​data​ ​in​ ​order​ ​to​ ​estimate​ ​the​ ​flow​ ​of​ ​parasites​ ​and resistance​ ​mutations​ ​within​ ​and​ ​between​ ​the​ ​DRC.​ ​This​ ​includes​ ​the​ ​development​ ​of​ ​new​ ​​ ​population​ ​structure models​ ​(MALECOT)​ ​incorporating​ ​parasite​ ​infections​ ​that​ ​have​ ​multiple​ ​strains​ ​allowing​ ​for​ ​a​ ​better understanding​ ​of​ ​the​ ​full​ ​dataset​ ​as​ ​in​ ​polyclonal​ ​infections​ ​are​ ​often​ ​the​ ​majority​ ​in​ ​endemic​ ​African​ ​countries. This​ ​model​ ​should​ ​be​ ​broadly​ ​applicable​ ​to​ ​other​ ​studies​ ​of​ ​malaria​ ​or​ ​infections​ ​with​ ​mixed​ ​strains.​ ​We​ ​will also​ ​leverage​ ​​ ​spatially​ ​explicit​ ​models​ ​to​ ​define​ ​general​ ​parasite​ ​flow​ ​in​ ​both​ ​relative​ ​and​ ​absolute​ ​terms comparing​ ​and​ ​contrasting​ ​to​ ​the​ ​flow​ ​of​ ​resistant​ ​parasites.​ ​This​ ​work​ ​will​ ​provide​ ​the​ ​patterns​ ​of​ ​general​ ​gene flow​ ​and​ ​barriers​ ​on​ ​the​ ​spread​ ​of​ ​specific​ ​drug​ ​resistance​ ​alleles​ ​and​ ​haplotypes.​ ​In​ ​summary,​ ​not​ ​only​ ​will this​ ​project​ ​enhance​ ​our​ ​understanding​ ​of​ ​malaria​ ​landscape​ ​genetics​ ​and​ ​the​ ​evolution​ ​and​ ​spread​ ​of antimalarial​ ​resistance,​ ​it​ ​will​ ​provide​ ​tools​ ​and​ ​analysis​ ​framework​ ​for​ ​improving​ ​public​ ​health​ ​interventions that​ ​will​ ​directly​ ​inform​ ​the​ ​DRC​ ​National​ ​Malaria​ ​Control​ ​Program.
期刊论文(3)
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科研奖励(0)
会议论文
DOI: 10.1093/infdis/jiaa527
发表时间: 2022-04-01
期刊: The Journal of infectious diseases
影响因子: --
作者: [Tessema SK, Hathaway NJ, Teyssier NB, Murphy M, Chen A, Aydemir O, Duarte EM, Simone W, Colborn J, Saute F, Crawford E, Aide P, Bailey JA, Greenhouse B]
通讯作者: Greenhouse B
DOI: 10.7717/peerj.11794
发表时间: 2021
期刊: PeerJ
影响因子: 2.7
作者: [Aydemir O, Mensah B, Marsh PW, Abuaku B, Myers-Hansen JL, Bailey JA, Ghansah A]
通讯作者: Ghansah A
DOI: 10.1371/journal.pcbi.1010247
发表时间: 2023-06
期刊: PLoS computational biology
影响因子: 4.3
作者: []
通讯作者:
Artemisinin Resistance in Africa: its emergence and evolution in Rwanda
  • 批准号:
    10462700
  • 项目类别:
  • 资助金额:
    $72.72万
  • 财政年份:
    2021
  • 负责人:
    JEFFREY A. BAILEY
  • 依托单位:
Artemisinin Resistance in Africa: its emergence and evolution in Rwanda
  • 批准号:
    10670872
  • 项目类别:
  • 资助金额:
    $71.72万
  • 财政年份:
    2021
  • 负责人:
    JEFFREY A. BAILEY
  • 依托单位:
Tracking the flow of malaria parasites and drug resistance within the DRC and across its borders
  • 批准号:
    10473084
  • 项目类别:
  • 资助金额:
    $8.03万
  • 财政年份:
    2021
  • 负责人:
    JEFFREY A. BAILEY
  • 依托单位:
Artemisinin Resistance in Africa: its emergence and evolution in Rwanda
  • 批准号:
    10298909
  • 项目类别:
  • 资助金额:
    $79.49万
  • 财政年份:
    2021
  • 负责人:
    JEFFREY A. BAILEY
  • 依托单位:
海外基金