Plasmodium knowlesi transmission: integrating quantitative approaches from epidemiology and ecology to understand malaria as a zoonosis
The public health threat posed by zoonotic Plasmodium knowlesi appears to be growing: it is increasingly reported across South East Asia, and is the leading cause of malaria in Malaysian Borneo. Plasmodium knowlesi threatens progress towards malaria elimination as aspects of its transmission, such a...
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description | The public health threat posed by zoonotic Plasmodium knowlesi appears to be growing: it is increasingly reported across South East Asia, and is the leading cause of malaria in Malaysian Borneo. Plasmodium knowlesi threatens progress towards malaria elimination as aspects of its transmission, such as spillover from wildlife reservoirs and reliance on outdoor-biting vectors, may limit the effectiveness of conventional methods of malaria control. The development of new quantitative approaches that address the ecological complexity of P. knowlesi, particularly through a focus on its primary reservoir hosts, will be required to control it. Here, we review what is known about P. knowlesi transmission, identify key knowledge gaps in the context of current approaches to transmission modelling, and discuss the integration of these approaches with clinical parasitology and geostatistical analysis. We highlight the need to incorporate the influences of fine-scale spatial variation, rapid changes to the landscape, and reservoir population and transmission dynamics. The proposed integrated approach would address the unique challenges posed by malaria as a zoonosis, aid the identification of transmission hotspots, provide insight into the mechanistic links between incidence and land use change and support the design of appropriate interventions. |
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M. ; FORNACE, K. M. ; PARMITER, M. ; COX, J. ; DRAKELEY, C. J. ; FERGUSON, H. M. ; KAO, R. R.</creator><creatorcontrib>BROCK, P. M. ; FORNACE, K. M. ; PARMITER, M. ; COX, J. ; DRAKELEY, C. J. ; FERGUSON, H. M. ; KAO, R. R.</creatorcontrib><description>The public health threat posed by zoonotic Plasmodium knowlesi appears to be growing: it is increasingly reported across South East Asia, and is the leading cause of malaria in Malaysian Borneo. Plasmodium knowlesi threatens progress towards malaria elimination as aspects of its transmission, such as spillover from wildlife reservoirs and reliance on outdoor-biting vectors, may limit the effectiveness of conventional methods of malaria control. The development of new quantitative approaches that address the ecological complexity of P. knowlesi, particularly through a focus on its primary reservoir hosts, will be required to control it. Here, we review what is known about P. knowlesi transmission, identify key knowledge gaps in the context of current approaches to transmission modelling, and discuss the integration of these approaches with clinical parasitology and geostatistical analysis. We highlight the need to incorporate the influences of fine-scale spatial variation, rapid changes to the landscape, and reservoir population and transmission dynamics. 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M.</creatorcontrib><creatorcontrib>FORNACE, K. M.</creatorcontrib><creatorcontrib>PARMITER, M.</creatorcontrib><creatorcontrib>COX, J.</creatorcontrib><creatorcontrib>DRAKELEY, C. J.</creatorcontrib><creatorcontrib>FERGUSON, H. M.</creatorcontrib><creatorcontrib>KAO, R. R.</creatorcontrib><title>Plasmodium knowlesi transmission: integrating quantitative approaches from epidemiology and ecology to understand malaria as a zoonosis</title><title>Parasitology</title><addtitle>Parasitology</addtitle><description>The public health threat posed by zoonotic Plasmodium knowlesi appears to be growing: it is increasingly reported across South East Asia, and is the leading cause of malaria in Malaysian Borneo. Plasmodium knowlesi threatens progress towards malaria elimination as aspects of its transmission, such as spillover from wildlife reservoirs and reliance on outdoor-biting vectors, may limit the effectiveness of conventional methods of malaria control. The development of new quantitative approaches that address the ecological complexity of P. knowlesi, particularly through a focus on its primary reservoir hosts, will be required to control it. Here, we review what is known about P. knowlesi transmission, identify key knowledge gaps in the context of current approaches to transmission modelling, and discuss the integration of these approaches with clinical parasitology and geostatistical analysis. We highlight the need to incorporate the influences of fine-scale spatial variation, rapid changes to the landscape, and reservoir population and transmission dynamics. The proposed integrated approach would address the unique challenges posed by malaria as a zoonosis, aid the identification of transmission hotspots, provide insight into the mechanistic links between incidence and land use change and support the design of appropriate interventions.</description><subject>Animals</subject><subject>Asia, Southeastern - epidemiology</subject><subject>Borneo</subject><subject>Culicidae - parasitology</subject><subject>Demography</subject><subject>disease reservoirs</subject><subject>Disease Reservoirs - parasitology</subject><subject>ecology</subject><subject>Ecology - trends</subject><subject>Epidemiology</subject><subject>geostatistics</subject><subject>Health risks</subject><subject>Human Activities</subject><subject>Humans</subject><subject>Insect Vectors - parasitology</subject><subject>Land use</subject><subject>land use change</subject><subject>landscapes</subject><subject>Macaca - parasitology</subject><subject>Malaria</subject><subject>Malaria - epidemiology</subject><subject>Malaria - parasitology</subject><subject>Malaria - transmission</subject><subject>Models, Biological</subject><subject>Monkey Diseases - epidemiology</subject><subject>Monkey Diseases - parasitology</subject><subject>Monkey Diseases - transmission</subject><subject>parasitology</subject><subject>Plasmodium knowlesi</subject><subject>Plasmodium knowlesi - pathogenicity</subject><subject>Plasmodium knowlesi - physiology</subject><subject>Public health</subject><subject>Reservoirs</subject><subject>Review</subject><subject>Risk Factors</subject><subject>Vector-borne diseases</subject><subject>Wildlife</subject><subject>Zoonoses</subject><subject>Zoonoses - epidemiology</subject><subject>Zoonoses - parasitology</subject><subject>Zoonoses - transmission</subject><issn>0031-1820</issn><issn>1469-8161</issn><issn>1469-8161</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2016</creationdate><recordtype>article</recordtype><sourceid>IKXGN</sourceid><sourceid>EIF</sourceid><sourceid>BENPR</sourceid><recordid>eNqNkstu1TAQhi0EoofCA7ABS2zYBMZx7MQsKqGKm1QJpNK15cST1CWxT-2kqLwAr42jc6gKCMHK45nP_1w8hDxm8IIBq1-eAnDGmhKYAMgnu0M2rJKqaJhkd8lmDRdr_IA8SOkCACSX5X1yUMqG1XUjNuT7p9GkKVi3TPSLD19HTI7O0fg0uZRc8K-o8zMO0czOD_RyMX52c75cITXbbQymO8dE-xgmiltncXJhDMM1Nd5S7Hb2HOjiLcY0r97JjCY6Q02ihn4LwYfk0kNyrzdjwkf785CcvX3z-fh9cfLx3Yfj1ydFJySbi6otFVMWDELdWVvXXYktZkerRMXKpuIChe1VCV3TCqhrq6QEtNnmVrWSH5Kjne52aSe0Hfrc7Ki30U0mXutgnP414t25HsKVrhqAmlVZ4PleIIbLBdOs86A6HEfjMSxJs4YBCMif8W80_0DJOXDxH2gtmJSNXAt49ht6EZbo89BWqqqUErDmZjuqiyGliP1Niwz0ujz6j-XJb57cns3Ni5_bkoGnO6A3QZshuqTPTrOAzAJSKa4ywfdpzdRGZwe8Vd1fE_8AGs3aig</recordid><startdate>20160401</startdate><enddate>20160401</enddate><creator>BROCK, P. 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M.</au><au>FORNACE, K. M.</au><au>PARMITER, M.</au><au>COX, J.</au><au>DRAKELEY, C. J.</au><au>FERGUSON, H. M.</au><au>KAO, R. R.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Plasmodium knowlesi transmission: integrating quantitative approaches from epidemiology and ecology to understand malaria as a zoonosis</atitle><jtitle>Parasitology</jtitle><addtitle>Parasitology</addtitle><date>2016-04-01</date><risdate>2016</risdate><volume>143</volume><issue>4</issue><spage>389</spage><epage>400</epage><pages>389-400</pages><issn>0031-1820</issn><issn>1469-8161</issn><eissn>1469-8161</eissn><abstract>The public health threat posed by zoonotic Plasmodium knowlesi appears to be growing: it is increasingly reported across South East Asia, and is the leading cause of malaria in Malaysian Borneo. Plasmodium knowlesi threatens progress towards malaria elimination as aspects of its transmission, such as spillover from wildlife reservoirs and reliance on outdoor-biting vectors, may limit the effectiveness of conventional methods of malaria control. The development of new quantitative approaches that address the ecological complexity of P. knowlesi, particularly through a focus on its primary reservoir hosts, will be required to control it. Here, we review what is known about P. knowlesi transmission, identify key knowledge gaps in the context of current approaches to transmission modelling, and discuss the integration of these approaches with clinical parasitology and geostatistical analysis. We highlight the need to incorporate the influences of fine-scale spatial variation, rapid changes to the landscape, and reservoir population and transmission dynamics. The proposed integrated approach would address the unique challenges posed by malaria as a zoonosis, aid the identification of transmission hotspots, provide insight into the mechanistic links between incidence and land use change and support the design of appropriate interventions.</abstract><cop>Cambridge, UK</cop><pub>Cambridge University Press</pub><pmid>26817785</pmid><doi>10.1017/S0031182015001821</doi><tpages>12</tpages><oa>free_for_read</oa></addata></record> |
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subjects | Animals Asia, Southeastern - epidemiology Borneo Culicidae - parasitology Demography disease reservoirs Disease Reservoirs - parasitology ecology Ecology - trends Epidemiology geostatistics Health risks Human Activities Humans Insect Vectors - parasitology Land use land use change landscapes Macaca - parasitology Malaria Malaria - epidemiology Malaria - parasitology Malaria - transmission Models, Biological Monkey Diseases - epidemiology Monkey Diseases - parasitology Monkey Diseases - transmission parasitology Plasmodium knowlesi Plasmodium knowlesi - pathogenicity Plasmodium knowlesi - physiology Public health Reservoirs Review Risk Factors Vector-borne diseases Wildlife Zoonoses Zoonoses - epidemiology Zoonoses - parasitology Zoonoses - transmission |
title | Plasmodium knowlesi transmission: integrating quantitative approaches from epidemiology and ecology to understand malaria as a zoonosis |
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