Dynamics and Outcomes of Plasmodium Infections in Grammomys surdaster (Grammomys dolichurus) Thicket Rats versus Inbred Mice
Author(s) -
Solomon Conteh,
Jacqueline Kolasny,
Yvette Robbins,
Pati Patient Pyana,
Philippe Büscher,
Javonn Musgrove,
Brandi Butler,
Lynn Lambert,
J. Patrick Gorres,
Patrick E. Duffy
Publication year - 2020
Publication title -
american journal of tropical medicine and hygiene
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.015
H-Index - 151
eISSN - 1476-1645
pISSN - 0002-9637
DOI - 10.4269/ajtmh.20-0183
Subject(s) - plasmodium berghei , plasmodium chabaudi , malaria , biology , rodent , parasitemia , plasmodium yoelii , thicket , plasmodium (life cycle) , virology , parasite hosting , immunology , plasmodium falciparum , ecology , habitat , computer science , world wide web
Investigations of malaria infection are often conducted by studying rodent Plasmodium species in inbred laboratory mice, but the efficacy of vaccines or adjunctive therapies observed in these models often does not translate to protection in humans. This raises concerns that mouse malaria models do not recapitulate important features of human malaria infections. African woodland thicket rats ( Grammomys surdaster ) are the natural host for the rodent malaria parasite Plasmodium berghei and the suspected natural host for Plasmodium vinckei vinckei . Previously, we reported that thicket rats are highly susceptible to diverse rodent parasite species, including P. berghei , Plasmodium yoelii , and Plasmodium chabaudi chabaudi , and are a more stringent model to assess the efficacy of whole-sporozoite vaccines than laboratory mice. Here, we compare the course of infection and virulence with additional rodent Plasmodium species, including various strains of P. berghei , P. yoelii , P. chabaudi , and P. vinckei , in thicket rats versus laboratory mice. We present evidence that rodent malaria parasite growth typically differs between the natural versus nonnatural host; G. surdaster limit infection by multiple rodent malaria strains, delaying and reducing peak parasitemia compared with laboratory mice. The course of malaria infection in thicket rats varied depending on parasite species and strain, resulting in self-cure, chronic parasitemia, or rapidly lethal infection, thus offering a variety of rodent malaria models to study different clinical outcomes in the natural host.
Accelerating Research
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom
Address
John Eccles HouseRobert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom