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3361por Ayllón, Tania, Câmara, Daniel Cardoso Portela, Morone, Fernanda Cristina, Gonçalves, Larissa da Silva, Saito Monteiro de Barros, Fábio, Brasil, Patrícia, Carvalho, Marilia Sá, Honório, Nildimar Alves“…Aedes albopictus, originally considered as a secondary vector for arbovirus transmission, especially in areas where this species co-exist with Aedes aegypti, has been described in most regions of the world. …”
Publicado 2018
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3362por Eiras, Alvaro E., Pires, Simone F., Staunton, Kyran M., Paixão, Kelly S., Resende, Marcelo C., Silva, Hilcielly A., Rocha, Isadora G., Oliveira, Bruna A., Peres, Anderson M., Drumond, Betânia P., Ritchie, Scott A.“…Currently, management of ZIKV and DENV centers on control of the primary vector Aedes aegypti. This vector is highly anthropophilic and is therefore prevalent throughout densely urbanised landscapes. …”
Publicado 2018
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3363por Udayanga, Lahiru, Gunathilaka, Nayana, Iqbal, Mohamed Cassim Mohamed, Najim, Mohamed Mujithaba Mohamed, Pahalagedara, Kusumawathie, Abeyewickreme, Wimaladharma“…METHODS: Monthly vector indices, viz PI, BI and CI, for Aedes aegypti and Aedes albopictus, of four selected dengue high risk Medical Officer of Health (MOH) areas in the Kandy District from January 2010 to August 2017, were used in the study. …”
Publicado 2018
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3364por Ravi, Rajiv, Zulkrnin, Nor Shaida Husna, Rozhan, Nurul Nadiah, Nik Yusoff, Nik Raihan, Mat Rasat, Mohd Sukhairi, Ahmad, Muhammad Iqbal, Ishak, Intan H., Amin, Mohamad Faiz Mohd“…RESULTS: The larvicidal activity of Azolla pinnata plant extracts evidently affected the early 4(th) instar larvae of Aedes aegypti mosquito vectors. The Soxhlet extraction method had the highest larvicidal effect against Ae. aegypti early 4(th) instar larvae, with LC50 and LC95 values of 1093 and 1343 mg/L, respectively. …”
Publicado 2018
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3365por Garcia, Magali, Alout, Haoues, Diop, Fodé, Damour, Alexia, Bengue, Michèle, Weill, Mylène, Missé, Dorothée, Lévêque, Nicolas, Bodet, Charles“…Moreover, WNV infection of keratinocyte resulted in a significant increase of pro-inflammatory cytokines (TNFα, IL-6) and various chemokines (CXCL1, CXCL2, CXCL8 and CCL20) expression. The addition of Aedes aegypti or Culex quinquefasciatus mosquito saliva, two vectors of WNV infection, to infected keratinocytes led to a decrease of inflammatory response at 24 h p.i. …”
Publicado 2018
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3366por Manning, Jessica E., Oliveira, Fabiano, Parker, Daniel M., Amaratunga, Chanaki, Kong, Dara, Man, Somnang, Sreng, Sokunthea, Lay, Sreyngim, Nang, Kimsour, Kimsan, Soun, Sokha, Ly, Kamhawi, Shaden, Fay, Michael P., Suon, Seila, Ruhl, Parker, Ackerman, Hans, Huy, Rekol, Wellems, Thomas E., Valenzuela, Jesus G., Leang, Rithea“…METHODS/DESIGN: We describe a longitudinal, pagoda (community)-based pediatric cohort study to evaluate the burden of dengue virus infection and document the immune responses to salivary proteins of Aedes aegypti, the mosquito vector of dengue, Zika, and chikungunya viruses. …”
Publicado 2018
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3367por Wilke, André B. B., Carvajal, Augusto, Medina, Johana, Anderson, Melissa, Nieves, Veronica J., Ramirez, Monica, Vasquez, Chalmers, Petrie, William, Cardenas, Gabriel, Beier, John C.“…A total of 5,154 mosquitoes were collected, from which 3,514 by traps baited with CO(2) and 1,640 mosquitoes by traps baited with BG-Lure. Aedes aegypti and Culex quinquefasciatus were the most abundant and dominant species. …”
Publicado 2019
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3368“…METHODS: The present study identified the HSP genes in the An. sinensis genome, analysed their characteristics, and deduced phylogenetic relationships of all HSPs in An. sinensis, Anopheles gambiae, Culex quinquefasciatus and Aedes aegypti by bioinformatic methods. Importantly, the present study screened the HSPs associated with pyrethroid resistance using three field pyrethroid-resistant populations with RNA-seq and RT-qPCR, and looked over the HSP gene expression pattern for the first time in An. sinensis on the time-scale post insecticide treatment with RT-qPCR. …”
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3369por Hernández-Triana, Luis M., Barrero, Elsa, Delacour-Estrella, Sarah, Ruiz-Arrondo, Ignacio, Lucientes, Javier, Fernández de Marco, Maria del Mar, Thorne, Leigh, Lumley, Sarah, Johnson, Nicholas, Mansfield, Karen L., Fooks, Anthony R.“…In this study, the susceptibility of Aedes albopictus originating from Spain and a laboratory-adapted colony of Aedes aegypti, was assessed for infection with, and transmission of Zika virus (ZIKV). …”
Publicado 2019
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3370por Gopalakrishnan, Reji, Mazumder, Avik, Yadav, Ruchi, Meher, Damayanti, Singh, Ram, Sukumaran, Devanathan, Thakare, Vikas B., Palit, Meehir“…Bioefficacy tests were carried out against dengue vector Aedes aegypti and malaria vector Anopheles stephensi as per the improved test method and the three minutes bioassay method. …”
Publicado 2019
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3371“…BACKGROUND: Aedes aegypti and Aedes albopictus are two globally invasive vectors with similar ecological niches. …”
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3372por Pinchoff, Jessie, Serino, Arianna, Merritt, Alice Payne, Hunter, Gabrielle, Silva, Martha, Parikh, Priya, Hewett, Paul C.“…We examined articles to determine each behavior's potential effectiveness in preventing Zika transmission or reducing the Aedes aegypti population. We also developed assessment criteria to delineate the ease with which the target population could adopt each behavior, including: (1) required frequency; (2) feasibility of the behavior; and (3) accessibility and cost of the necessary materials in the setting. …”
Publicado 2019
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3373“…Adipokinetic hormone (AKH), corazonin (CRZ), and the AKH/CRZ-related peptide (ACP) are neuropeptides considered homologous to the vertebrate gonadotropin-releasing hormone (GnRH). All three Aedes aegypti GnRH-related neuropeptide receptors have been characterized and functionally deorphanized. …”
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3374“…Specifically, we considered (a) the modelled habitat suitability for the two main vector species Aedes aegypti and Ae. albopictus as a proxy of vector species distributions; (b) temperature, as it has a great influence on virus transmission; (c) commonly called evidence consensus maps (ECM) of human Zika virus infections on a regional scale as a proxy for virus distribution; (d) ECM of human dengue virus infections and, (e) as possibly relevant socio-economic factors, population density and the gross domestic product. …”
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3375por Blair, Carol D.“…The piRNAs that target transposons originate from piRNA clusters in transposon-rich regions of the Drosophila genome and are processed by three PIWI family proteins. In Aedes aegypti and Aedes albopictus mosquitoes, which are two of the most important vectors of arthropod-borne viruses (arboviruses), the number of PIWI family genes has expanded and some are expressed in somatic, as well as germline, tissues. …”
Publicado 2019
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3376“…Some strains of Wolbachia, when introduced into Aedes aegypti mosquitoes, reduce or block the replication of RNA viruses pathogenic to humans. …”
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3377por Mbanzulu, Kennedy M., Mboera, Leonard E. G., Luzolo, Flory K., Wumba, Roger, Misinzo, Gerald, Kimera, Sharadhuli I.“…Yellow fever and chikungunya outbreaks have been frequently reported. Aedes aegypti and Ae. simpsoni were documented as the main vectors of most of the mosquito-borne viral infections. …”
Publicado 2020
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3378“…METHODS: A close proximity response assay was used to test the direct repulsive effect of six mosquito repellents on Anopheles coluzzii, Aedes aegypti and Culex quinquefasciatus mosquitoes. …”
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3379por Vivekanandhan, Perumal, Swathy, Kannan, Kalaimurugan, Dharman, Ramachandran, Marimuthu, Yuvaraj, Ananthanarayanan, Kumar, Arjunan Naresh, Manikandan, Ayyavu Thendral, Poovarasan, Neelakandan, Shivakumar, Muthugoundar Subramanian, Kweka, Eliningaya J.“…This study assessed the larvicidal potential of Metarhizium anisopliae fungi derived metabolites against Aedes aegypti, Anopheles stephensi, Culex quinquefasciatus and non-targeted organisms at 24hr post treatment. …”
Publicado 2020
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3380por Anders, Katherine L., Indriani, Citra, Ahmad, Riris Andono, Tantowijoyo, Warsito, Arguni, Eggi, Andari, Bekti, Jewell, Nicholas P., Dufault, Suzanne M., Ryan, Peter A., Tanamas, Stephanie K., Rancès, Edwige, O’Neill, Scott L., Simmons, Cameron P., Utarini, Adi“…BACKGROUND: The AWED (Applying Wolbachia to Eliminate Dengue) trial is a parallel, two-arm, non-blinded cluster randomised controlled trial that is under way in Yogyakarta, Indonesia, with the aim of measuring the efficacy of Wolbachia-infected Aedes aegypti deployments in reducing dengue incidence in an endemic setting. …”
Publicado 2020
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