Curriculum Vitae

Joana Rita Antunes Gonçalves Madeira e Góis

Data da última atualização »Last update : 27/11/2018


Joana Rita Antunes Gonçalves Madeira e Góis. Concluiu Mestrado Integrado em Engenharia Biomédica pela Universidade de Coimbra em 2008. É Estudante de doutoramento na Universidade de Coimbra. Publicou 11 artigos em revistas especializadas, possui 2 capítulos de livros publicados. Participou em 1 evento no estrangeiro e 3 em Portugal. Actua nas áreas de Engenharia e Tecnologia com ênfase em Engenharia Química, Engenharia e Tecnologia com ênfase em Engenharia Médica, Ciências Médicas com ênfase em Biotecnologia Médica e Engenharia e Tecnologia com ênfase em Nanotecnologia. Nas suas actividades profissionais interagiu com 67 colaboradores em co-autorias de trabalhos científicos.


Endereço de acesso a este CV:

http://www.degois.pt/visualizador/curriculum.jsp?key=1030666718158372


Dados pessoais (Personal data)
Nome completo
Full name
Joana Rita Antunes Gonçalves Madeira e Góis
Nome em citações bibliográficas
Quoting name
Góis, Joana R.
Domínio científico de atuação
Scientific domain
Engenharia e Tecnologia-Engenharia Médica.
Ciências Médicas-Biotecnologia Médica.
Engenharia e Tecnologia-Nanotecnologia.
Endereço profissional
Professional address
Universidade de Coimbra
Centro de Engenharia Mecânica da Universidade de Coimbra
Polo II, Rua Sílvio Lima
Coimbra
3030-290 Coimbra
Portugal
Telefone: (+351)239798700Extensão: 760
Correio electrónico: joanagois@eq.uc.pt
Sexo
Gender
Feminino»Female




Graus Académicos (Academic Degrees)
2007-2008 Mestrado
Master degree
Mestrado Integrado em Engenharia Biomédica (1 anos » years) .
Universidade de Coimbra, Portugal.

2002-2007 Licenciatura
Licentiate degree
Engenharia Biomédica (5 anos » years) .
Universidade de Coimbra, Portugal.





Vínculos profissionais (Professional Positions)
Fundação para a Ciência e a Tecnologia
Out/2011-Set/2015 Outra Situação

Universidade de Coimbra
Jun/2010-Set/2011 Estudante de doutoramento
Jun/2009-Jun/2010 Outra Situação
Mai/2008-Dez/2008 Outra Situação





Línguas (Languages)
Compreende
Understandig
Inglês (Bem).
Fala
Speaking
Inglês (Bem).

Reading
Inglês (Bem).
Escreve
Writing
Inglês (Bem).




Prémios e títulos (Awards Prizes, and Honours)
2010 Distinguished Article of 2010, International Reviews in Predictive, Preventive and Personalized Medicine (EPMA)..
2014 Cover of Polymer Chemistry (Vol. 5, Issue 16, 2014), Royal Society of Chemistry .




Produção científica, técnica e artística/cultural (Scientific, technical and artistical/cultural production)
Capítulos de livros publicados
Published book chapters
1. Rocha, Nuno; Mendonça, Patrícia; Góis, Joana R; Cordeiro, Rosemeyre; Fonseca, Ana; Ferreira, Paula; Guliashvili, Tamaz; Matyjaszewski, Krzysztof; Serra, Arménio; Coelho, Jorge. 2013. The Importance of Controlled/Living Radical Polymerization Techniques in the Design of Tailor Made Nanoparticles for Drug Delivery Systems.  In Drug Delivery Systems: Advanced Technologies Potentially Applicable in Personalised Treatment, ed. Jorge Coelho, 315 - 357. ISBN: 978-94-007-6009-7. Dordrecht: Springer Netherlands.
2. Fonseca, Ana C; Ferreira, Paula; Cordeiro, Rosemeyre A; Mendonça, Patrícia V; Góis, Joana R; Gil, Maria H; Coelho, Jorge F. J. 2013. Drug Delivery Systems for Predictive Medicine: Polymers as Tools for Advanced Applications.  In New Strategies to Advance Pre/Diabetes Care: Integrative Approach by PPPM, ed. Mahmood S. Mozaffari, 399 - 455. ISBN: 978-94-007-5970-1. Dordrecht: Springer Netherlands.

Artigos em revistas sem arbitragem científica
Papers in periodics without scientific refereeing
1. Rodrigues, Daniela P; Costa, João R; Rocha, Nuno; Góis, Joana R; Serra, Arménio C; Coelho, Jorge F. 2016. "Room temperature aqueous self-assembly of poly(ethylene glycol)-poly(4-vinyl pyridine) block copolymers: From spherical to worm-like micelles", Colloids and Surfaces B: Biointerfaces, 145: 447 - 453.
2. Góis, Joana R; Serra, Arménio C; Coelho, Jorge F. 2016. "Synthesis and characterization of new temperature-responsive nanocarriers based on POEOMA-b-PNVCL prepared using a combination of ATRP, RAFT and CuAAC", European Polymer Journal, 81: 224 - 238.
3. Góis, Joana R; Costa, João R. C; Popov, Anatoliy V; Serra, Arménio C; Coelho, Jorge F. J. 2016. "Synthesis of well-defined alkyne terminated poly(N-vinyl caprolactam) with stringent control over the LCST by RAFT", RSC Adv. 6, 21: 16996 - 17007.
4. Rosa, Natacha; Martins, Gabriela V; Bastos, Margarida M; Gois, Joana R; Coelho, Jorge F; Marques, Juliana; Tavares, Carlos J; Magalhães, Fernão D. 2015. "Preparation of robust polyamide microcapsules by interfacial polycondensation of p-phenylenediamine and sebacoyl chloride and plasticization with oleic acid ", Journal of Microencapsulation 32, 4: 349 - 357.
5. Catalão, Francisco; Góis, Joana R; Trino, A. S. M; Serra, Arménio C; Coelho, Jorge F. J. 2015. "Facile synthesis of well-controlled poly(glycidyl methacrylate) and its block copolymers via SARA ATRP at room temperature", Polym. Chem. 6, 10: 1875 - 1882.
6. Góis, Joana R; Popov, Anatoliy V; Guliashvili, Tamaz; Serra, Arménio C; Coelho, Jorge F. J. 2015. "Synthesis of functionalized poly(vinyl acetate) mediated by alkyne-terminated RAFT agents", RSC Adv. 5, 111: 91225 - 91234.
7. Góis, Joana R; Konkolewic, Dominik; Popov, Anatoliy V; Guliashvili, Tamaz; Matyjaszewski, Krzysztof; Serra, Arménio C; Coelho, Jorge F. J. 2014. "Improvement of the control over SARA ATRP of 2-(diisopropylamino)ethyl methacrylate by slow and continuous addition of sodium dithionite", Polymer Chemistry 5, 16: 4617 - 4617.
8. Góis, Joana R; Rocha, Nuno; Popov, Anatoliy V; Guliashvili, Tamaz; Matyjaszewski, Krzysztof; Serra, Arménio C; Coelho, Jorge F. J. 2014. "Synthesis of well-defined functionalized poly(2-(diisopropylamino)ethyl methacrylate) using ATRP with sodium dithionite as a SARA agent", Polymer Chemistry 5, 12: 3919 - 3919.
9. Konkolewicz, Dominik; Krys, Pawel; Góis, Joana R; Mendonça, Patrícia V; Zhong, Mingjiang; Wang, Yu; Gennaro, Armando; Isse, Abdirisak A; Fantin, Marco; Matyjaszewski, Krzysztof. 2014. "Aqueous RDRP in the Presence of Cu0: The Exceptional Activity of CuI Confirms the SARA ATRP Mechanism ", Macromolecules 47, 2: 560 - 570.
10. Marques, J.; Oliveira, L. F; Pinto, R. T; Coutinho, P. J. G; Parpot, P.; Góis, J. R; Coelho, J. F. J; Magalhães, F. D; Tavares, C. J. 2013. "Release of Volatile Compounds from Polymeric Microcapsules Mediated by Photocatalytic Nanoparticles", International Journal of Photoenergy 2013, 2013: 1 - 9.
11. Rocha, Nuno; Coelho, Jorge F; Gois, Joana R; Gil, Maria H; Gonçalves, Pedro M; Guthrie, James T. 2013. "Poly(vinyl chloride)-b-poly(hydroxypropyl acrylate)-b-Poly(vinyl chloride): Understanding the synthesis of an amphiphilic PVC block copolymer on a pilot scale", Journal of Vinyl and Additive Technology 19, 2: 94 - 104.
12. Coelho, Jorge F; Fonseca, A.C.; Gois, J.R.; Gonçalves, Pedro M; Popov, Anatoliy V; Gil, M.H.. 2011. "Scaling-up of poly(vinyl chloride) prepared by single electron transfer degenerative chain transfer mediated living radical polymerization in water media: 1) Low molecular weight. Kinetic analysis", Chemical Engineering Journal 169, 1-3: 399 - 413.
13. Coelho, Jorge; Ferreira, Paula C; Alves, Patricia; Cordeiro, Rosemeyre; Fonseca, Ana C; Góis, Joana R; Gil, Maria H. 2010. "Drug delivery systems: Advanced technologies potentially applicable in personalized treatments", The EPMA Journal 1, 1: 164 - 209.
Advanced drug delivery systems (DDS) present indubitable benefits for drug administration. Over the past three decades, new approaches have been suggested for the development of novel carriers for drug delivery. In this review, we describe general concepts and emerging research in this field based on multidisciplinary approaches aimed at creating personalized treatment for a broad range of highly prevalent diseases (e.g., cancer and diabetes). This review is composed of two parts. The first part provides an overview on currently available drug delivery technologies including a brief history on the development of these systems and some of the research strategies applied. The second part provides information about the most advanced drug delivery devices using stimuliresponsive polymers. Their synthesis using controlled-living radical polymerization strategy is described. In a near future it is predictable the appearance of new effective tailor-made DDS, resulting from knowledge of different interdisciplinary sciences, in a perspective of creating personalized medical solutions.

14. Coelho, Jorge F. J; Góis, Joana R; Fonseca, Ana C; Gil, M. H. 2010. "Modification of Poly(3-hydroxybutyrate)-co-Poly (3-hydroxyvalerate) with Natural Rubber", Journal of Applied Polymer Science 116, 2: 718 - 726.
Composites of poly(3-hydroxybutyrate)-copoly( 3-hydroxyvalerate) (PHBHV) with 6% of 3-hydroxyvalerate (HV) and natural rubber (NR) were prepared by a solvent-casting method. Different approaches were tested for the composite preparation. Both PHBHV and NR were dissolved in chloroform, followed by its evaporation, giving various layers. The mechanical properties and morphology of the obtained composites were evaluated by tensile tests and scanning electron microscopy (SEM), respectively. The obtained results demonstrated that the final composite has excellent mechanical properties when compared with PHBHV. SEM analysis unequivocally showed the excellent adhesion between the two polymeric layers. This new material was also tested as a drug delivering system using flurbiprofen as a model drug, and then the diffusion coefficients were determined. This article describes an easy method to produce a desirable composite from PHBHV and NR.

15. Coelho, Jorge F; Góis, Joana; Fonseca, Ana C; CARVALHO, RUI A; POPOV, ANATOLIY V; PERCEC, VIRGIL; Gil, M. H. 2009. "Synthesis of Poly(2-methoxyethyl acrylate) by Single Electron Transfer—Degenerative Transfer Living Radical Polymerization Catalyzed by Na2S2O4 in Water", Journal of Polymer Science: Part A: Polymer Chemistry 47, 17: 4454 - 4463.
Living radical polymerization of 2-methoxyethyl acrylate (MEA) was achieved by single-electron-transfer/degenerative transfer mediated living radical polymerization (SET-DTLRP) in water catalyzed by sodium dithionate. The poly(2- methoxyethyl acrylate) is an amphiphilic polymer with a hydrophobic part (polyethylene chain) and a mildly hydrophilic tail. The plots of number-average molecular weight versus conversion and ln{[M]0/[M]} versus time are linear, indicating a controlled polymerization. This method leads to the preparation of a,x-di(iodo) poly(2- methoxyethyl acrylate)s (a,x-di(iodo)PMEA) macroinitiators that can be further functionalized. The molecular weight distributions were determined using a combination of three detectors (TriSEC): right-angle light scattering (RALLS), a differential viscometer (DV) and refractive index (RI). The method studied in this work represents a possible route to prepare well-tailored macromolecules made of 2-methoxyethyl acrylate (biocompatible material) in an environmentally friendly reaction medium. To the best of our knowledge there is no previous report dealing with the synthesis of PMEA by any LRP approach in aqueous medium. .




Organização de evento
Event organization
1. Góis, Joan R. A. G. M. e; Matias, Aurea A. J; Cordeiro, Rosemeyre; Almeida, Gilberto; Santos, Armanda; Ferreira, Ana. Noite Branca Coimbra,2006 (Outro).





Dados Complementares (Additional data)


Participação em eventos
Event participation
Participação como Keynote Speaker
Participation as Keynote Speaker
1. Conference on Nanotechnologies Applications Manano European Program Marie Curie, 2014 (Congresso).
Nome do evento: Conference on Nanotechnologies Applications Manano European Program Marie Curie; Nome da Instituição: Department of Chemical Engineering – University of Coimbra; Cidade do evento: Coimbra / University of Coimbra.
“Nanotechnology, the potential of self-assembly approaches”. Oral communication. Conference on Nanotechnologies Applications Manano European Program Marie Curie. University of Coimbra, September 3rd, 2014.
2. 1st Seminar on Organically Modified Silica Aerogels, 2014 (Seminário).
Nome do evento: 1st Seminar on Organically Modified Silica Aerogels; Nome da Instituição: University of Coimbra; Cidade do evento: Coimbra / University of Coimbra.
“Nanotechnology, the potential of self-assembly approaches”. Oral communication. 1st Seminar on Organically Modified Silica Aerogels. University of Coimbra, March 19th, 2014. .
3. 20th International Symposium on surfactants in solution , 2014 (Simpósio).
Nome do evento: 20th International Symposium on surfactants in solution ; Nome da Instituição: University of Coimbra; Cidade do evento: Coimbra / University of Coimbra.
“Brush-Type pH-responsive block copolymers as nanocarriers for smart drug delivery applications”. Oral communication. 20th International Symposium on Surfactants in Solution (SIS 2014). University of Coimbra, 22-27 June, 2014. .
4. 36th Controlled Radical Polymerization Consortium Meeting- Fall, 2013 (Encontro).
Nome do evento: 36th CLP Consortium Meeting, ; Nome da Instituição: Matyjaszewski Polymer Group; Cidade do evento: Pittsburgh / Carnegie Mellon University.
“Development of ATRP of 2 (diisopropylamino)ethyl methacrylate using inorganic sulfites as reducing agents “. Oral communication. 36th CLP Consortium Meeting, Carnegie Mellon University, Fall 2013. .








Indicadores de produção (Production indicators)

Total
Produção científica
Scientific production
17

Livros e capítulos
Books and book chapters
2
Capítulos de livros publicados
Published book chapters
2
Artigos científicos em revistas
Papers in periodics
15
Sem arbitragem científica
Without scientific refereeing
15

Total
Produção técnica
Technical production
1

Outros tipos de produção técnica
Other technical production
1

Total
Dados complementares
(Additional data)
4

Participação em Eventos
Event participation
4


Outras informações relevantes
Joana Rita Antunes Gonçalves Madeira e Góis.
Concluiu Mestrado Integrado em Engenharia Biomédica pela Universidade de Coimbra em 2008.
É Estudante de doutoramento na Universidade de Coimbra.
Publicou 11 artigos em revistas especializadas, possui 2 capítulos de livros publicados.
Participou em 1 evento no estrangeiro e 3 em Portugal.
Actua nas áreas de Engenharia e Tecnologia com ênfase em Engenharia Química, Engenharia e Tecnologia com ênfase em Engenharia Médica, Ciências Médicas com ênfase em Biotecnologia Médica e Engenharia e Tecnologia com ênfase em Nanotecnologia.
Nas suas actividades profissionais interagiu com 67 colaboradores em co-autorias de trabalhos científicos.


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