Publicação
Tissue engineering and regenerative medicine research - how can it contribute to fight future pandemics?
| Resumo: | Understanding the pathogenesis of viral infection is of paramount importance for the development of better therapies. In the particular case of COVID-19, the mechanism of infection is highly complex and involves a critical cascade of events, which can lead to the death of the patient. Intense research is currently being performed to gain mechanistic insights about the virus etiology and to evaluate new therapeutic approaches. The development of point-of-care diagnostic tools, predictive drug screening platforms, and biomimetic models of the disease could play a key role in understanding the cellular and molecular mechanism of viral infection and its response to drugs. In this regard, specific tissue engineering and regenerative medicine approaches, such as microfluidics and organ-on-a-chip technologies, as well as bioprinted in vitro disease models, could be used to develop a technological platform to fight COVID-19, and other virus pandemics yet to come. Herein, we briefly discuss about how such approaches can contribute to address current and future viral pandemics by highlighting recent successful examples. |
|---|---|
| Autores principais: | Caballero, David |
| Outros Autores: | Carvalho, Mariana Rodrigues; Kundu, Subhas C; Oliveira, J. M.; Alves, N. M.; Reis, R. L. |
| Assunto: | COVID-19 Microfabrication Microfluidics Pandemic Regenerative medicine Tissue engineering |
| Ano: | 2020 |
| País: | Portugal |
| Tipo de documento: | capítulo de livro |
| Tipo de acesso: | acesso aberto |
| Instituição associada: | Universidade do Minho |
| Idioma: | inglês |
| Origem: | RepositóriUM - Universidade do Minho |
Registos relacionados
book Current trends in microfluidics and biosensors for cancer research applications
por: Caballero, David
Publicado em: (2022)
por: Caballero, David
Publicado em: (2022)
category Preface [Hydrogels for tissue engineering and regenerative medicine: from fundamentals to applications]
por: Silva-Correia, Joana
Publicado em: (2023)
por: Silva-Correia, Joana
Publicado em: (2023)
book Tissue engineering and regenerative medicine: past, present, and future
por: Salgado, A. J.
Publicado em: (2013)
por: Salgado, A. J.
Publicado em: (2013)
category Stromal vascular fraction cell sheets angiogenic potential for tissue engineering and regenerative medicine applications
por: Costa, M.
Publicado em: (2015)
por: Costa, M.
Publicado em: (2015)
article Magnetic force-based tissue engineering and regenerative medicine
por: Castro, E.
Publicado em: (2013)
por: Castro, E.
Publicado em: (2013)
article Impact of kefiran exopolysaccharide extraction on its applicability for tissue engineering and regenerative medicine
por: Correia, Susana
Publicado em: (2022)
por: Correia, Susana
Publicado em: (2022)
article Contributions and future perspectives on the use of magnetic nanoparticles as diagnostic and therapeutic tools in the field of regenerative medicine
por: Santo, Vítor E.
Publicado em: (2013)
por: Santo, Vítor E.
Publicado em: (2013)
article Current concepts: tissue engineering and regenerative medicine applications in the ankle joint
por: Correia, Sandra I.
Publicado em: (2014)
por: Correia, Sandra I.
Publicado em: (2014)
category Marine sponges : a new source of bioactive ceramics for tissue engineering and regenerative medicine applications
por: Barros, Alexandre A.
Publicado em: (2013)
por: Barros, Alexandre A.
Publicado em: (2013)
book Processing of biomedical devices for tissue engineering and regenerative medicine applications
por: Correlo, V. M.
Publicado em: (2016)
por: Correlo, V. M.
Publicado em: (2016)
article Core-shell microcapsules: biofabrication and potential applications in tissue engineering and regenerative medicine
por: Ladeira, Bruno M.
Publicado em: (2022)
por: Ladeira, Bruno M.
Publicado em: (2022)
book Microfluidic engineering of silk fibroin biomaterial
por: Caballero, David
Publicado em: (2023)
por: Caballero, David
Publicado em: (2023)
article Scaffolding strategies for tissue engineering and regenerative medicine applications
por: Pina, Sandra Cristina Almeida
Publicado em: (2019)
por: Pina, Sandra Cristina Almeida
Publicado em: (2019)
article Natural-based nanocomposites for bone tissue engineering and regenerative medicine: a review
por: Pina, S.
Publicado em: (2015)
por: Pina, S.
Publicado em: (2015)
article Recent advances using gold nanoparticles as a promising multimodal tool for tissue engineering and regenerative medicine
por: Vial, Stephanie
Publicado em: (2016)
por: Vial, Stephanie
Publicado em: (2016)
book Microfluidics for processing of biomaterials
por: Gasperini, Luca
Publicado em: (2020)
por: Gasperini, Luca
Publicado em: (2020)
category Tissue engineered constructs based on human adipose tissue derived stem cells and starch-based scaffolds for allogeneic approaches in tissue engineering and regenerative medicine
por: Santos, T. C.
Publicado em: (2013)
por: Santos, T. C.
Publicado em: (2013)
book Natural-origin materials for tissue engineering and regenerative medicine
por: Silva, Simone Santos
Publicado em: (2017)
por: Silva, Simone Santos
Publicado em: (2017)
article Harnessing magnetic-mechano actuation in regenerative medicine and tissue engineering
por: Santos, Lívia
Publicado em: (2015)
por: Santos, Lívia
Publicado em: (2015)
category Magnetic systems for regenerative medicine
por: Gomes, Manuela E.
Publicado em: (2022)
por: Gomes, Manuela E.
Publicado em: (2022)
article Blood derivatives awaken in regenerative medicine strategies to modulate wound healing
por: Mendes, B. B.
Publicado em: (2018)
por: Mendes, B. B.
Publicado em: (2018)
article Recent advances and perspectives of MicroNeedles for biomedical applications
por: Maia, Renata Faria
Publicado em: (2025)
por: Maia, Renata Faria
Publicado em: (2025)
book Recent developments on chitosan applications in regenerative medicine
por: Duarte, Ana Rita C.
Publicado em: (2016)
por: Duarte, Ana Rita C.
Publicado em: (2016)
article Development of highly sensitive temperature microsensors for localized measurements
por: Sousa, Paulo Jorge Teixeira
Publicado em: (2021)
por: Sousa, Paulo Jorge Teixeira
Publicado em: (2021)
article Blood cells separation and sorting techniques of passive microfluidic devices: From fabrication to applications
por: Catarino, Susana O.
Publicado em: (2019)
por: Catarino, Susana O.
Publicado em: (2019)
article Perinatal tissues and cells in tissue engineering and regenerative medicine
por: Deus, Inês A.
Publicado em: (2020)
por: Deus, Inês A.
Publicado em: (2020)
article Dendrimers and derivatives as a potential therapeutic tool in regenerative medicine strategies: a review
por: Oliveira, Joaquim M.
Publicado em: (2010)
por: Oliveira, Joaquim M.
Publicado em: (2010)
category Injectable silk fibroin hydrogels with ionic strength and pH response for tissue engineering and regenerative medicine applications
por: Yan, Leping
Publicado em: (2013)
por: Yan, Leping
Publicado em: (2013)
article Bottom-up approach to construct microfabricated multi-layer scaffolds for bone tissue engineering
por: Lima, M. J.
Publicado em: (2014)
por: Lima, M. J.
Publicado em: (2014)
article Surface biofunctionalization to improve the efficacy of biomaterial substrates to be used in regenerative medicine
por: Casanova, Marta Alexandra Rodrigues
Publicado em: (2020)
por: Casanova, Marta Alexandra Rodrigues
Publicado em: (2020)
article The current status of iPS cells in cardiac research and their potential for tissue engineering and regenerative medicine
por: Martins, Ana M.
Publicado em: (2014)
por: Martins, Ana M.
Publicado em: (2014)
book Delivery systems made of natural-origin polymers for tissue engineering and regenerative medicine applications
por: Martins, Albino
Publicado em: (2016)
por: Martins, Albino
Publicado em: (2016)
article αvβ3 and α5β1 integrin-specific ligands: From tumor angiogenesis inhibitors to vascularization promoters in regenerative medicine?
por: Rocha, Luís M.
Publicado em: (2018)
por: Rocha, Luís M.
Publicado em: (2018)
book Tailoring Bioengineered Scaffolds for Regenerative Medicine
por: Amado, Sandra
Publicado em: (2018)
por: Amado, Sandra
Publicado em: (2018)
article Trapping metastatic cancer cells with mechanical ratchet arrays
por: Caballero, David
Publicado em: (2023)
por: Caballero, David
Publicado em: (2023)
article Polymer-based microparticles in tissue engineering and regenerative medicine
por: Oliveira, Mariana B.
Publicado em: (2011)
por: Oliveira, Mariana B.
Publicado em: (2011)
article Fibroblasts Impair Migration and Antitumor Activity of NK-92 Lymphocytes in a Melanoma-on-Chip Model
por: Iaia, Ilenia
Publicado em: (2023)
por: Iaia, Ilenia
Publicado em: (2023)
book Red blood cells separation in a curved T-shaped microchannel fabricated by a micromilling technique
por: Madureira, Miguel
Publicado em: (2019)
por: Madureira, Miguel
Publicado em: (2019)
article Optimized SU-8 processing for low-cost microstructures fabrication without cleanroom facilities
por: Pinto, V. C.
Publicado em: (2014)
por: Pinto, V. C.
Publicado em: (2014)
category The cell secretome in personalized and regenerative medicine
por: Salgado, A. J.
Publicado em: (2018)
por: Salgado, A. J.
Publicado em: (2018)
Registos relacionados
-
book Current trends in microfluidics and biosensors for cancer research applications
por: Caballero, David
Publicado em: (2022) -
category Preface [Hydrogels for tissue engineering and regenerative medicine: from fundamentals to applications]
por: Silva-Correia, Joana
Publicado em: (2023) -
book Tissue engineering and regenerative medicine: past, present, and future
por: Salgado, A. J.
Publicado em: (2013) -
category Stromal vascular fraction cell sheets angiogenic potential for tissue engineering and regenerative medicine applications
por: Costa, M.
Publicado em: (2015) -
article Magnetic force-based tissue engineering and regenerative medicine
por: Castro, E.
Publicado em: (2013)