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"Shaw, Robert"
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Vector biology meets disease control: using basic research to fight vector-borne diseases
2019
Human pathogens that are transmitted by insects are a global problem, particularly those vectored by mosquitoes; for example, malaria parasites transmitted by
Anopheles
species, and viruses such as dengue, Zika and chikungunya that are carried by
Aedes
mosquitoes. Over the past 15 years, the prevalence of malaria has been substantially reduced and virus outbreaks have been contained by controlling mosquito vectors using insecticide-based approaches. However, disease control is now threatened by alarming rates of insecticide resistance in insect populations, prompting the need to develop a new generation of specific strategies that can reduce vector-mediated transmission. Here, we review how increased knowledge in insect biology and insect–pathogen interactions is stimulating new concepts and tools for vector control. We focus on strategies that either interfere with the development of pathogens within their vectors or directly impact insect survival, including enhancement of vector-mediated immune control, manipulation of the insect microbiome, or use of powerful new genetic tools such as CRISPR–Cas systems to edit vector genomes. Finally, we offer a perspective on the implementation hurdles as well as the knowledge gaps that must be filled in the coming years to safely realize the potential of these novel strategies to eliminate the scourge of vector-borne disease.
Mosquitoes are responsible for transmission of important human diseases, including malaria, dengue and Zika. Here, Shaw and Catteruccia discuss how studying insect biology can inform the development of new control strategies against vector-borne disease.
Journal Article
Evidence of natural Wolbachia infections in field populations of Anopheles gambiae
by
Segata, Nicola
,
Diabaté, Abdoulaye
,
Catteruccia, Flaminia
in
631/158/855
,
631/326/417
,
692/699/255/1629
2014
Wolbachia
are maternally transmitted intracellular bacteria that invade insect populations by manipulating their reproduction and immunity and thus limiting the spread of numerous human pathogens. Experimental
Wolbachia
infections can reduce
Plasmodium
numbers in
Anopheles
mosquitoes in the laboratory, however, natural
Wolbachia
infections in field anophelines have never been reported. Here we show evidence of
Wolbachia
infections in
Anopheles gambiae
in Burkina Faso, West Africa. Sequencing of the
16S
rRNA gene identified
Wolbachia
sequences in both female and male germlines across two seasons, and determined that these sequences are vertically transmitted from mother to offspring. Whole-genome sequencing of positive samples suggests that the genetic material identified in
An. gambiae
belongs to a novel
Wolbachia
strain, related to but distinct from strains infecting other arthropods. The evidence of
Wolbachia
infections in natural
Anopheles
populations promotes further investigations on the possible use of natural
Wolbachia
–
Anopheles
associations to limit malaria transmission.
Wolbachia
bacteria live within the cells of many insect species, manipulating their hosts’ reproduction and immune responses. Here, the authors show that these microbes also infect wild populations of malaria-spreading
Anopheles
mosquitoes, supporting a potential use of
Wolbachia
to limit malaria transmission.
Journal Article
John Galliano for Dior
As testified by the monumental success of the recent Dior retrospective curated by the Musee des Arts Decoratifs in Paris, 'Christian Dior: Designer of Dreams', which attracted over 700,000 visitors over its extended run, John Galliano's creations for the house of Dior have entered fashion history and are widely recognized as some of the most breathtaking and imaginative collections ever created. 0'John Galliano for Dior' is the first publication entirely dedicated to showcasing these unforgettable designs, which have become collectors' items and form a key chapter of the history of the house of Dior - \"the greatest house in the world\", as Galliano stated when he was first placed at its helm. \"I see myself as a guardian of [Christian Dior's] spirit, a keeper of his dreams,\" he added. The book unfolds chronologically, revisiting the most iconic creations and revealing previously unseen behind-the-scenes moments that capture models, hairdressers, stylists, make-up artists and John Galliano himself at their most creative. Robert Fairer's stunning and high-energy photographs convey the drama, glamour and wild imagination that defined Galliano's Dior shows. A treasure trove of inspiration, they make this publication a must-have reference for fashion and photography lovers alike.
Transmission of community- and hospital-acquired SARS-CoV-2 in hospital settings in the UK: A cohort study
2021
Nosocomial spread of Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2) has been widely reported, but the transmission pathways among patients and healthcare workers (HCWs) are unclear. Identifying the risk factors and drivers for these nosocomial transmissions is critical for infection prevention and control interventions. The main aim of our study was to quantify the relative importance of different transmission pathways of SARS-CoV-2 in the hospital setting.
This is an observational cohort study using data from 4 teaching hospitals in Oxfordshire, United Kingdom, from January to October 2020. Associations between infectious SARS-CoV-2 individuals and infection risk were quantified using logistic, generalised additive and linear mixed models. Cases were classified as community- or hospital-acquired using likely incubation periods of 3 to 7 days. Of 66,184 patients who were hospitalised during the study period, 920 had a positive SARS-CoV-2 PCR test within the same period (1.4%). The mean age was 67.9 (±20.7) years, 49.2% were females, and 68.5% were from the white ethnic group. Out of these, 571 patients had their first positive PCR tests while hospitalised (62.1%), and 97 of these occurred at least 7 days after admission (10.5%). Among the 5,596 HCWs, 615 (11.0%) tested positive during the study period using PCR or serological tests. The mean age was 39.5 (±11.1) years, 78.9% were females, and 49.8% were nurses. For susceptible patients, 1 day in the same ward with another patient with hospital-acquired SARS-CoV-2 was associated with an additional 7.5 infections per 1,000 susceptible patients (95% credible interval (CrI) 5.5 to 9.5/1,000 susceptible patients/day) per day. Exposure to an infectious patient with community-acquired Coronavirus Disease 2019 (COVID-19) or to an infectious HCW was associated with substantially lower infection risks (2.0/1,000 susceptible patients/day, 95% CrI 1.6 to 2.2). As for HCW infections, exposure to an infectious patient with hospital-acquired SARS-CoV-2 or to an infectious HCW were both associated with an additional 0.8 infection per 1,000 susceptible HCWs per day (95% CrI 0.3 to 1.6 and 0.6 to 1.0, respectively). Exposure to an infectious patient with community-acquired SARS-CoV-2 was associated with less than half this risk (0.2/1,000 susceptible HCWs/day, 95% CrI 0.2 to 0.2). These assumptions were tested in sensitivity analysis, which showed broadly similar results. The main limitations were that the symptom onset dates and HCW absence days were not available.
In this study, we observed that exposure to patients with hospital-acquired SARS-CoV-2 is associated with a substantial infection risk to both HCWs and other hospitalised patients. Infection control measures to limit nosocomial transmission must be optimised to protect both staff and patients from SARS-CoV-2 infection.
Journal Article
Multiple blood feeding in mosquitoes shortens the Plasmodium falciparum incubation period and increases malaria transmission potential
by
Paton, Douglas G.
,
Catteruccia, Flaminia
,
Buckee, Caroline O.
in
Animals
,
Anopheles
,
Anopheles - parasitology
2020
Many mosquito species, including the major malaria vector Anopheles gambiae , naturally undergo multiple reproductive cycles of blood feeding, egg development and egg laying in their lifespan. Such complex mosquito behavior is regularly overlooked when mosquitoes are experimentally infected with malaria parasites, limiting our ability to accurately describe potential effects on transmission. Here, we examine how Plasmodium falciparum development and transmission potential is impacted when infected mosquitoes feed an additional time. We measured P . falciparum oocyst size and performed sporozoite time course analyses to determine the parasite’s extrinsic incubation period (EIP), i.e. the time required by parasites to reach infectious sporozoite stages, in An . gambiae females blood fed either once or twice. An additional blood feed at 3 days post infection drastically accelerates oocyst growth rates, causing earlier sporozoite accumulation in the salivary glands, thereby shortening the EIP (reduction of 2.3 ± 0.4 days). Moreover, parasite growth is further accelerated in transgenic mosquitoes with reduced reproductive capacity, which mimic genetic modifications currently proposed in population suppression gene drives. We incorporate our shortened EIP values into a measure of transmission potential, the basic reproduction number R 0 , and find the average R 0 is higher (range: 10.1%–12.1% increase) across sub-Saharan Africa than when using traditional EIP measurements. These data suggest that malaria elimination may be substantially more challenging and that younger mosquitoes or those with reduced reproductive ability may provide a larger contribution to infection than currently believed. Our findings have profound implications for current and future mosquito control interventions.
Journal Article