Catalogue Search | MBRL
Search Results Heading
Explore the vast range of titles available.
MBRLSearchResults
-
DisciplineDiscipline
-
Is Peer ReviewedIs Peer Reviewed
-
Item TypeItem Type
-
SubjectSubject
-
YearFrom:-To:
-
More FiltersMore FiltersSourceLanguage
Done
Filters
Reset
826
result(s) for
"Plasmodium vivax - isolation "
Sort by:
Microhaplotype deep sequencing assays to capture Plasmodium vivax infection lineages
2025
Plasmodium vivax
elimination is challenged by dormant liver stages (hypnozoites) that can reactivate months after initial infection resulting in relapses. Relapsing infections confound antimalarial clinical efficacy trials due to the inability to distinguish between recurrences arising from blood-stage treatment failure (recrudescence), reinfection or relapse. Genetic relatedness of paired parasite isolates, measured by identity-by-descent (IBD), can provide important information on whether individuals have had single or multiple mosquito inoculations, thus informing on recurrence origin. We developed a high-throughput amplicon sequencing assay comprising 93 multi-SNP (microhaplotype) markers to determine IBD between
P. vivax
clinical isolates. The assay was evaluated in 745 global infections, including 128 infection pairs from a randomized controlled trial (RCT) (ClinicalTrials.gov NCT01680406). Simulations demonstrate low error in pairwise IBD estimation at the panel (RMSE < 0.12) and IBD-based networks illustrate strong clustering by geography. IBD analysis in the RCT demonstrates a lower frequency of suspected relapses or recrudescence in patients treated with primaquine compared to those without primaquine; the impact is greater when paired with chloroquine than with artemether-lumefantrine. Our results demonstrate the potential to derive new information on
P. vivax
treatment and transmission using IBD generated by amplicon sequencing data that can be further improved with time-to-event models.
Dormant liver stages of
Plasmodium vivax
complicate malaria elimination efforts by causing relapses that obscure the efficacy of antimalarial treatments. Here, the authors develop a high-throughput amplicon sequencing assay to reconstruct
P. vivax
lineages, demonstrating its capacity for geospatial infection tracking, and distinguishing recurrent malaria caused by new infections versus untreated dormant liver stages.
Journal Article
Antimalarial Activity of KAF156 in Falciparum and Vivax Malaria
by
Magnusson, Baldur
,
Feng, Yiyan
,
Leong, F. Joel
in
Administration, Oral
,
Adult
,
Antimalarial activity
2016
With the emergence and spread of artemisinin resistance, new therapies for malaria are needed. This study shows that the imidazolopiperazine KAF156, a new antimalarial compound, has in vivo antimalarial activity.
Expanding artemisinin resistance and worsening partner-drug resistance in Southeast Asia threaten the global control of
Plasmodium falciparum
malaria.
1
–
5
New drugs are needed. KAF156 represents a new class of antimalarial agents (imidazolopiperazines)
6
identified by high-throughput phenotypic screening. KAF156 has potent in vitro activity against both asexual and sexual blood stages and the preerythrocytic liver stages of the malarial parasite.
7
The mechanism of antimalarial action is unknown, but drug resistance, mediated by mutations in the
P. falciparum
cyclic amine resistance locus (
PfCARL
) gene, which encodes a protein of unknown function, can be selected.
7
In a study of 70 healthy . . .
Journal Article
Human Plasmodium vivax diversity, population structure and evolutionary origin
by
Elguero, Eric
,
Shafiul Alam, Mohammad
,
González-Cerón, Lilia
in
Biology and Life Sciences
,
Causes of
,
College campuses
2020
More than 200 million malaria clinical cases are reported each year due to Plasmodium vivax, the most widespread Plasmodium species in the world. This species has been neglected and understudied for a long time, due to its lower mortality in comparison with Plasmodium falciparum. A renewed interest has emerged in the past decade with the discovery of antimalarial drug resistance and of severe and even fatal human cases. Nonetheless, today there are still significant gaps in our understanding of the population genetics and evolutionary history of P. vivax, particularly because of a lack of genetic data from Africa. To address these gaps, we genotyped 14 microsatellite loci in 834 samples obtained from 28 locations in 20 countries from around the world. We discuss the worldwide population genetic structure and diversity and the evolutionary origin of P. vivax in the world and its introduction into the Americas. This study demonstrates the importance of conducting genome-wide analyses of P. vivax in order to unravel its complex evolutionary history.
Journal Article
Cost-effectiveness of malaria diagnosis using rapid diagnostic tests compared to microscopy or clinical symptoms alone in Afghanistan
2015
Background
Improving access to parasitological diagnosis of malaria is a central strategy for control and elimination of the disease. Malaria rapid diagnostic tests (RDTs) are relatively easy to perform and could be used in primary level clinics to increase coverage of diagnostics and improve treatment of malaria.
Methods
A cost-effectiveness analysis was undertaken of RDT-based diagnosis in public health sector facilities in Afghanistan comparing the societal and health sector costs of RDTs
versus
microscopy and RDTs
versus
clinical diagnosis in low and moderate transmission areas. The effect measure was ‘appropriate treatment for malaria’ defined using a reference diagnosis. Effects were obtained from a recent trial of RDTs in 22 public health centres with cost data collected directly from health centres and from patients enrolled in the trial. Decision models were used to compare the cost of RDT diagnosis
versus
the current diagnostic method in use at the clinic per appropriately treated case (incremental cost-effectiveness ratio, ICER).
Results
RDT diagnosis of
Plasmodium vivax
and
Plasmodium falciparum
malaria in patients with uncomplicated febrile illness had higher effectiveness and lower cost compared to microscopy and was cost-effective across the moderate and low transmission settings. RDTs remained cost-effective when microscopy was used for other clinical purposes. In the low transmission setting, RDTs were much more effective than clinical diagnosis (65.2% (212/325)
vs
12.5% (40/321)) but at an additional cost (ICER) of US$4.5 per appropriately treated patient including a health sector cost (ICER) of US$2.5 and household cost of US$2.0. Sensitivity analysis, which varied drug costs, indicated that RDTs would remain cost-effective if artemisinin combination therapy was used for treating both
P. vivax
and
P. falciparum
. Cost-effectiveness of microscopy relative to RDT is further reduced if the former is used exclusively for malaria diagnosis. In the health service setting of Afghanistan, RDTs are a cost-effective intervention compared to microscopy.
Conclusions
RDTs remain cost-effective across a range of drug costs and if microscopy is used for a range of diagnostic services. RDTs have significant advantages over clinical diagnosis with minor increases in the cost of service provision.
Trial Registration
The trial was registered at ClinicalTrials.gov under identifier
NCT00935688
.
Journal Article
Does treatment of intestinal helminth infections influence malaria? Background and methodology of a longitudinal study of clinical, parasitological and immunological parameters in Nangapanda, Flores, Indonesia (ImmunoSPIN Study)
by
Wammes, Linda J
,
Supali, Taniawati
,
Hamid, Firdaus
in
Albendazole - administration & dosage
,
Albendazole - therapeutic use
,
Animals
2010
Background
Given that helminth infections are thought to have strong immunomodulatory activity, the question whether helminth infections might affect responses to malaria antigens needs to be addressed. Different cross-sectional studies using diverse methodologies have reported that helminth infections might either exacerbate or reduce the severity of malaria attacks. The same discrepancies have been reported for parasitemia.
Methods/Design
To determine the effect of geohelminth infections and their treatment on malaria infection and disease outcome, as well as on immunological parameters, the area of Nangapanda on Flores Island, Indonesia, where malaria and helminth parasites are co-endemic was selected for a longitudinal study. Here a Double-blind randomized trial will be performed, incorporating repeated treatment with albendazole (400 mg) or placebo at three monthly intervals. Household characteristic data, anthropometry, the presence of intestinal helminth and
Plasmodium spp
infections, and the incidence of malaria episodes are recorded.
In vitro
cultures of whole blood, stimulated with a number of antigens, mitogens and toll like receptor ligands provide relevant immunological parameters at baseline and following 1 and 2 years of treatment rounds. The primary outcome of the study is the prevalence of
Plasmodium falciparum
and
P. vivax
infection. The secondary outcome will be incidence and severity of malaria episodes detected via both passive and active follow-up. The tertiary outcome is the inflammatory cytokine profile in response to parasite antigens. The project also facilitates the transfer of state of the art methodologies and technologies, molecular diagnosis of parasitic diseases, immunology and epidemiology from Europe to Indonesia.
Discussion
The study will provide data on the effect of helminth infections on malaria. It will also give information on anthelminthic treatment efficacy and effectiveness and could help develop evidence-based policymaking.
Trial registration
This study was approved by The Ethical Committee of Faculty of Medicine, University of Indonesia, ref:194/PT02.FK/Etik/2006 and has been filed by ethics committee of the Leiden University Medical Center. Clinical trial number:ISRCTN83830814. The study is reported in accordance with the CONSORT guidelines for cluster-randomized studies.
Journal Article
Comparative ophthalmic assessment of patients receiving tafenoquine or chloroquine/primaquine in a randomized clinical trial for Plasmodium vivax malaria radical cure
2019
PurposeOphthalmic safety observations are reported from a clinical trial comparing tafenoquine (TQ) efficacy and safety versus sequential chloroquine (CQ)/primaquine (PQ) for acute Plasmodium vivax malaria.MethodsIn an active-control, double-blind study, 70 adult subjects with microscopically confirmed P. vivax malaria were randomized (2:1) to receive 400 mg TQ × 3 days or 1500 mg CQ × 3 days then 15 mg PQ × 14 days. Main outcome measures: clinically relevant changes at Day 28 and Day 90 versus baseline in the ocular examination, color vision evaluation, and corneal and retinal digital photography.ResultsPost-baseline keratopathy occurred in 14/44 (31.8%) patients with TQ and 0/24 with CQ/PQ (P = 0.002). Mild post-baseline retinal findings were reported in 10/44 (22.7%) patients receiving TQ and 2/24 (8.3%) receiving CQ/PQ (P = 0.15; treatment difference 14.4%, 95% CI − 5.7, 30.8). Masked evaluation of retinal photographs identified a retinal hemorrhage in one TQ patient (Day 90) and a slight increase in atrophy from baseline in one TQ and one CQ/PQ patient. Visual field sensitivity (Humphrey™ 10-2 test) was decreased in 7/44 (15.9%) patients receiving TQ and 3/24 (12.5%) receiving CQ/PQ; all cases were < 5 dB. There were no clinically relevant changes in visual acuity or macular function tests.ConclusionsThere was no evidence of clinically relevant ocular toxicity with either treatment. Mild keratopathy was observed with TQ, without conclusive evidence of early retinal changes. Eye safety monitoring continues in therapeutic studies of low-dose tafenoquine (300 mg single dose).Clinical trial registrationClinicaltrials.gov identifier: NCT01290601.
Journal Article
Dihydroartemisinin-piperaquine versus chloroquine to treat vivax malaria in Afghanistan: an open randomized, non-inferiority, trial
by
Woodrow, Charles J
,
Singhasivanon, Pratap
,
Imwong, Mallika
in
Adolescent
,
Afghanistan
,
Antimalarials
2010
Background
Afghanistan's national guidelines recommend chloroquine for the treatment of
Plasmodium vivax
infection, the parasite responsible for the majority of its malaria burden. Chloroquine resistance in
P. vivax
is emerging in Asia. Therapeutic responses across Afghanistan have not been evaluated in detail.
Methods
Between July 2007 and February 2009, an open-label, randomized controlled trial of chloroquine and dihydroartemisinin-piperaquine in patients aged three months and over with slide-confirmed
P. vivax
mono-infections was conducted. Consistent with current national guidelines, primaquine was not administered. Subjects were followed up daily during the acute phase of illness (days 0-3) and weekly until day 56. The primary endpoint was the overall cumulative parasitological failure rate at day 56 after the start of treatment, with the hypothesis being that dihydroartemisinin-piperaquine was non-inferior compared to chloroquine (Δ = 5% difference in proportion of failures).
Results
Of 2,182 individuals with positive blood films for
P. vivax
, 536 were enrolled in the trial. The day 28 cure rate was 100% in both treatment groups. Parasite clearance was more rapid with dihydroartemisinin-piperaquine than chloroquine. At day 56, there were more recurrent infections in the chloroquine arm (8.9%, 95% CI 6.0-13.1%) than the dihydroartemisinin-piperaquine arm (2.8%, 95% CI 1.4-5.8%), a difference in cumulative recurrence rate of 6.1% (2-sided 90%CI +2.6 to +9.7%). The log-rank test comparing the survival curves confirmed the superiority of dihydroartemisinin-piperaquine over chloroquine (p = 0.003). Multivariate analysis showed that a lower initial haemoglobin concentration was also independently associated with recurrence. Both regimens were well tolerated and no serious adverse events were reported.
Conclusions
Chloroquine remains an efficacious treatment for the treatment of
vivax
malaria in Afghanistan. In a setting where radical therapy cannot be administered, dihydroartemisinin-piperaquine provides additional benefit in terms of post-treatment prophylaxis, reducing the incidence of recurrence from 4-8 weeks after treatment.
Trial Registration
The trial was registered at ClinicalTrials.gov under identifier NCT00682578.
Journal Article
Asymptomatic Natural Human Infections With the Simian Malaria Parasites Plasmodium cynomolgi and Plasmodium knowlesi
2019
Abstract
Background
In Southeast Asia, Plasmodium knowlesi, a parasite of long-tailed macaques (Macaca fascicularis), is an important cause of human malaria. Plasmodium cynomolgi also commonly infects these monkeys, but only one naturally acquired symptomatic human case has been reported previously.
Methods
Malariometric studies involving 5422 subjects (aged 6 months to 65 years) were conducted in 23 villages in Pailin and Battambang, western Cambodia. Parasite detection and genotyping was conducted on blood samples, using high-volume quantitative PCR (uPCR).
Results
Asymptomatic malaria parasite infections were detected in 1361 of 14732 samples (9.2%). Asymptomatic infections with nonhuman primate malaria parasites were found in 21 individuals living close to forested areas; P. cynomolgi was found in 11, P. knowlesi was found in 8, and P. vivax and P. cynomolgi were both found in 2. Only 2 subjects were female, and 14 were men aged 20–40 years. Geometric mean parasite densities were 3604 parasites/mL in P. cynomolgi infections and 52488 parasites/mL in P. knowlesi infections. All P. cynomolgi isolates had wild-type dihydrofolate reductase genes, in contrast to the very high prevalence of mutations in the human malaria parasites. Asymptomatic reappearance of P. cynomolgi occurred in 2 subjects 3 months after the first infection.
Conclusions
Asymptomatic naturally acquired P. cynomolgi and P. knowlesi infections can both occur in humans.
Clinical Trials Registration
NCT01872702.
Epidemiological studies in western Cambodia identified 21 subjects with asymptomatic monkey malaria parasite infections (8 with P. knowlesi infection and 13 with P. cynomolgi infection). These parasites represented 1.9% of all identified malaria parasites.
Journal Article
Ancient Plasmodium genomes shed light on the history of human malaria
2024
Malaria-causing protozoa of the genus
Plasmodium
have exerted one of the strongest selective pressures on the human genome, and resistance alleles provide biomolecular footprints that outline the historical reach of these species
1
. Nevertheless, debate persists over when and how malaria parasites emerged as human pathogens and spread around the globe
1
,
2
. To address these questions, we generated high-coverage ancient mitochondrial and nuclear genome-wide data from
P. falciparum
,
P. vivax
and
P. malariae
from 16 countries spanning around 5,500 years of human history. We identified
P. vivax
and
P. falciparum
across geographically disparate regions of Eurasia from as early as the fourth and first millennia
bce
, respectively; for
P. vivax
, this evidence pre-dates textual references by several millennia
3
. Genomic analysis supports distinct disease histories for
P. falciparum
and
P. vivax
in the Americas: similarities between now-eliminated European and peri-contact South American strains indicate that European colonizers were the source of American
P. vivax
, whereas the trans-Atlantic slave trade probably introduced
P. falciparum
into the Americas. Our data underscore the role of cross-cultural contacts in the dissemination of malaria, laying the biomolecular foundation for future palaeo-epidemiological research into the impact of
Plasmodium
parasites on human history. Finally, our unexpected discovery of
P. falciparum
in the high-altitude Himalayas provides a rare case study in which individual mobility can be inferred from infection status, adding to our knowledge of cross-cultural connectivity in the region nearly three millennia ago.
Genomic analysis of
Plasmodium
DNA from 36 ancient individuals provides insight into the global distribution and spread of malaria-causing species during around 5,500 years of human history.
Journal Article
Global extent of chloroquine-resistant Plasmodium vivax: a systematic review and meta-analysis
by
Baird, J Kevin
,
von Seidlein, Lorenz
,
Valecha, Neena
in
Antibiotics. Antiinfectious agents. Antiparasitic agents
,
Antimalarials - pharmacology
,
Antimalarials - therapeutic use
2014
Chloroquine is the first-line treatment for Plasmodium vivax malaria in most endemic countries, but resistance is increasing. Monitoring of antimalarial efficacy is essential, but in P vivax infections the assessment of treatment efficacy is confounded by relapse from the dormant liver stages. We systematically reviewed P vivax malaria treatment efficacy studies to establish the global extent of chloroquine resistance.
We searched Medline, Web of Science, Embase, and the Cochrane Database of Systematic Reviews to identify studies published in English between Jan 1, 1960, and April 30, 2014, which investigated antimalarial treatment efficacy in P vivax malaria. We excluded studies that did not include supervised schizonticidal treatment without primaquine. We determined rates of chloroquine resistance according to P vivax malaria recurrence rates by day 28 whole-blood chloroquine concentrations at the time of recurrence and study enrolment criteria.
We identified 129 eligible clinical trials involving 21 694 patients at 179 study sites and 26 case reports describing 54 patients. Chloroquine resistance was present in 58 (53%) of 113 assessable study sites, spread across most countries that are endemic for P vivax. Clearance of parasitaemia assessed by microscopy in 95% of patients by day 2, or all patients by day 3, was 100% predictive of chloroquine sensitivity.
Heterogeneity of study design and analysis has confounded global surveillance of chloroquine-resistant P vivax, which is now present across most countries endemic for P vivax. Improved methods for monitoring of drug resistance are needed to inform antimalarial policy in these regions.
Wellcome Trust (UK).
Journal Article