Analysis of Technologies Developed for the Control of Mosquito Aedes Aegypti in the Last 10 Years

Authors

DOI:

https://doi.org/10.9771/cp.v11i4.27147

Keywords:

Patents, Aedes aegypti, Control.

Abstract

The present work aims to evaluate the behavior of patent deposits related to the control of the Aedes aegypti mosquito in the last ten years. A patent application prospection was performed at online software Orbit, considering patents from all around the world. The scope of the research also included patents applied to other similar mosquitoes and their respective larval stages. It was seen that 35.46% of all deposits were classified in the basic chemistry technological domain, although patents related to biotechnology prevailed in the last years of the time interval. The United States, China and Japan have figured as the main technology holders and exporters of knowledge by depositing the same patents in other countries. What we have concluded is that this is a good area for investments, since the effects of arboviruses today are felt far beyond the endemic areas due to the adaptability of the mosquito.

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Author Biographies

Nalu Gusmão Teixeira de Freitas, Federal University of Bahia, Salvador, BA, Brazil

Biotechnologist from Universidade Federal da Bahia, Master's student at PROFNIT, Product Analyst at Editora Sanar, Volunteer at the Art of Living Organization.

Doris Monteiro Ribeiro Soares, Federal University of Bahia, Salvador, BA, Brazil

Graduated in Chemistry from the Federal University of Bahia (2015). She is currently a teacher at the Bahia State Department of Education. Has experience in the field of Chemistry, with emphasis on Chemistry

Paulo José Lima Juiz, Federal University of Recôncavo da Bahia, Cruz das Almas, BA, Brazil

Post-doctorate in Pharmacy - UFBA . PhD in biotechnology (UEFS/FIOCRUZ-BA). Sandwich Doctorate from the Università Degli Studi di Ferrara - Italy. He has a Masters in Immunology from the Federal University of Bahia. Specialization in Molecular Biology applied to forensic medicine (UNEB), Specialization in microbiology (UFBA). He is currently a professor at the Federal University of Recôncavo da Bahia. Permanent professor of the Postgraduate Program in Intellectual Property and Technology Transfer for Innovation. Has experience in Dentistry, with emphasis on periodontics, working mainly on the following topics: biological activities of medicinal plants, periodontitis, oral microbiology. Member of the Brazilian Society of Microbiology. Member of the Brazilian Society of Pharmacognosy. Coordinator of the Ethics Committee in Research with Human Beings at UFRB. Manager of the Coordination of Creation and Innovation at UFRB. Legal Representative of UFRB at the National Forum Association of Managers of Innovation and Technology Transfer (FORTEC)

References

AUDRETSCH, D. B.; LEHMANN, E. E.; WRIGHT, M. J. Technology transfer in a global economy. The Journal of Technology Transfer, n. 39, p. 301, ago. 2014.

BAYER CROPSCIENCE. Agro Bayer Brasil. 2018. Disponível em: <https://www.agro.bayer.com.br/>. Acesso em: 21 jun. 2018.

DEVGEN NV. Raemaekers Romaan, Feldmann Pascale, Plaetinck Geert, Nooren Irene, Van Bleu Els, Pecqueur Frederic, Kubler Laurent, Damme Nicole, Degrave Lies, Remory Isabel. Methods for controlling pests using RNAi. US n. PI. 20090306189, 13 jan. 2015. Disponível em: <https://permalink.orbit.com/#/patent;xpn=VX5XpXFMmFW8CKt4qLhXusRHIQdPpfyajIQBIFKxQPE%3D%26n%3D1;id=0;base=FAMPAT>. Acesso em: 21 jun. 2018.

JOURDAN, F.; ROIZ, David; PERRIN, Y.; GRUCKER, K.; SIMARD, F.; PAUPY, Christophe. Entomological factors of arboviruses emergences. Journal de la Societe Franceise de Transfusion Sanguine, v. 22, p. 101-106, ago 2015.

GENENTECH. Genentech. 2018. Disponível em: <https://www.gene.com/>. Acesso em: 21 jun. 2018.

GOOGLE SCHOLAR [Base de dados – Internet]. Google Acadêmico. 2018. Disponível em: <https://scholar.google.com.br/>. Acesso em: 21 jun. 2018.

KRAEMER, Moritz; SINKA, Marianne; DUDA, Kirsten; MYLNE, Adrian; SHEARER, Freya; BARKER, Christopher; MOORE, Chester; CARVAHO, Roberta; COELHO, Giovanini; BORTEL, Wim Van; HENDRICKC, Guy; SCHAFFNER, Francis; ELYAZAR, Iqbal; TENG, Hwa-Jen; BRADY, Oliver; MESSINA, Jane; PIGOTT, David; SCOTT, Thomas; SMITH, David; WINT, WILLIAN Golding; SIMON, Nick. The global distribution of the arbovirus vectors Aedes aegypti and Ae. albopictus. eLife. jun. 2015. Disponível em: < https://elifesciences.org/articles/08347 >. Acesso em: 21 jun. 2016.

MACEDO, M. F. G.; BARBOSA, A. L. F. Patentes, pesquisa & desenvolvimento: um manual de propriedade intelectual [on-line]. Rio de Janeiro: Editora FIOCRUZ, 2000. 164 p. Disponível em: <https://static.scielo.org/scielobooks/6tmww/pdf/macedo-8585676787.pdf>. Acesso em: 21 junho 2018

MARIANI, Daniel; DUCROQUET, Simon. O caminho do Zika vírus pelo mundo até as Américas. Jornal Nexo. 21 jan 2016. Disponível em: < https://www.nexojornal.com.br/grafico/2016/01/21/O-caminho-do-zika-v%C3%ADrus-pelo-mundo-at%C3%A9-as-Am%C3%A9ricas>. Acesso em: 25 jun. 2018.

NASH, Satterfield; KOTZKY, K.; ALLEN, J.; BERTOLLI, J.; MOORE, C. A.; PEREIRA, I. O.; PEACOCK, G. Health and Development at Age 19–24 Months of 19 Children Who Were Born with Microcephaly and Laboratory Evidence of Congenital Zika Virus Infection During the 2015 Zika Virus Outbreak — Brazil. MMWR. Morbidity and Mortality Weekly Report, v. 49, n. 66, p. 1.347–1.351, dez. 2017.

QUESTEL - ORBIT [Base de dados – Internet], 2018. Disponível em: < https://www.questel.com/software/ipbi/orbit-intelligence/> Acesso em: 21 jun. 2018.

ROCHA, Alvaro; VASCONCELOS, José. Os modelos de maturidade na gestão de sistemas de informação. Revista da Faculdade de Ciência e Tecnologia, Porto, v. 1, p. 93-107, 2004.

SCIELO [Base de dados – Internet]. Scientific Electronic Library Online, 2018. Disponível em: <http://www.scielo.org/php/index.php>. Acesso em: 21 jun. 2018.

SUMITOMO CHEMICAL Co., Ltd. Sumitomo Chemical: Creative Hybrid Chemistry For a Better Tomorrow. 2018. Disponível em: <https://www.sumitomo-chem.co.jp/english/>. Acesso em: 21 jun. 2018.

VALE, Denise; PIMENTA, Denise Nacif; CUNHA, Rivaldo Venâncio. Dengue: teorias e práticas. Rio de Janeiro: Editora SciELO; Editora FIOCRUZ, 2015.

WIPO. Tratado de Cooperação em Matéria de Patentes (PCT). 1970. Disponível em: <http://www.wipo.int/edocs/lexdocs/treaties/pt/pct/trt_pct_001pt.pdf>. Acesso em: 21 jun. 2018.

_______. The Global Innovation Index 2017: Innovation Feeding the World. 10. ed. 2017. Disponível em: <https://www.globalinnovationindex.org/gii-2017-report>. Acesso em: 21 jun. 2018.

ZARA, Ana Laura de Sene Amâncio; SANTOS, Sandra Maria; OLIVEIRA, Ellen Synthia Fernandes; CARVALHO, Roberta Gomes; COELHO, Giovanini Evelim. Estratégias de controle do Aedes aegypti: uma revisão. Epidemiol. Serv. Saude, Brasília, v. 2, n. 25, p. 391-404, jun. 2016.

ZHEJIANG CUIXI AGRICULTURAL DEVELOPMENT, Fang Xuanjun Zhang Wenfei. Bacillus thuringiensis for killing mosquito larvae and application of bacillus thuringiensis. CN n. PI 107254426, 14 ago. 2017. Disponível em: <https://permalink.orbit.com/#/patent;xpn=RIWQ8uum%252FS%252Fh7svUaWmo55NXe7dphUsu7KxJINoFg8I%3D%26n%3D1;id=0;base=FAMPAT>. Acesso em: 21 jun. 2018.

Published

2018-12-07

How to Cite

Freitas, N. G. T. de, Soares, D. M. R., & Juiz, P. J. L. (2018). Analysis of Technologies Developed for the Control of Mosquito Aedes Aegypti in the Last 10 Years. Cadernos De Prospecção, 11(4), 1099. https://doi.org/10.9771/cp.v11i4.27147

Issue

Section

Prospecções Tecnológicas de Assuntos Específicos