Marín-Payá, JC.; Díaz-Benito, B.; Amaro Martins, L.; Clara Trujillo, S.; Cordón, L.; Lanceros-Méndez, S.; Gallego Ferrer, G.... (2021). Biomimetic 3D environment based on microgels as a model for the generation of drug resistance in multiple myeloma. Materials. 14(23):1-15. https://doi.org/10.3390/ma14237121
Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10251/181352
Title:
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Biomimetic 3D environment based on microgels as a model for the generation of drug resistance in multiple myeloma
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Author:
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Marín-Payá, Juan Carlos
Díaz-Benito, Blanca
Amaro Martins, Luis
Clara Trujillo, Sandra
Cordón, Lourdes
Lanceros-Méndez, Senentxu
Gallego Ferrer, Gloria
Sempere, Amparo
Gómez Ribelles, José Luís
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Issued date:
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Abstract:
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[EN] The development of three-dimensional environments to mimic the in vivo cellular response is a problem in the building of disease models. This study aimed to synthesize and validate three-dimensional support for culturing ...[+]
[EN] The development of three-dimensional environments to mimic the in vivo cellular response is a problem in the building of disease models. This study aimed to synthesize and validate three-dimensional support for culturing monoclonal plasma cells (mPCs) as a disease model for multiple myeloma. The three-dimensional environment is a biomimetic microgel formed by alginate microspheres and produced on a microfluidic device whose surface has been functionalized by a layer-by-layer process with components of the bone marrow's extracellular matrix, which will interact with mPC. As a proof of concept, RPMI 8226 cell line cells were cultured in our 3D culture platform. We proved that hyaluronic acid significantly increased cell proliferation and corroborated its role in inducing resistance to dexamethasone. Despite collagen type I having no effect on proliferation, it generated significant resistance to dexamethasone. Additionally, it was evidenced that both biomolecules were unable to induce resistance to bortezomib. These results validate the functionalized microgels as a 3D culture system that emulates the interaction between tumoral cells and the bone marrow extracellular matrix. This 3D environment could be a valuable culture system to test antitumoral drugs efficiency in multiple myeloma.
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Subjects:
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Biopolymers
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Biocomposites
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Multiple myeloma
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Microgel
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Hyaluronic acid
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Collagen
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Copyrigths:
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Reconocimiento (by)
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related items:
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https://riunet.upv.es/handle/10251/178310
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Source:
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Materials. (eissn:
1996-1944
)
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DOI:
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10.3390/ma14237121
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Publisher:
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MDPI AG
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Publisher version:
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https://doi.org/10.3390/ma14237121
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Project ID:
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info:eu-repo/grantAgreement/MINECO//CB16%2F12%2F00284/ES/CANCER/
Instituto de Salud Carlos III//PROMETEO%2F2016%2F063//Médula ósea artificial para personalizar el tratamiento de pacientes de cánceres de sangre/
...[+]
info:eu-repo/grantAgreement/MINECO//CB16%2F12%2F00284/ES/CANCER/
info:eu-repo/grantAgreement/European Regional Development Fund/
info:eu-repo/grantAgreement/FCT//UID%2FFIS%2F04650%2F2019/
info:eu-repo/grantAgreement/FCT//PTDC%2FBTM-MAT%2F28237%2F2017/
info:eu-repo/grantAgreement/FCT//PTDC%2FEMD-EMD%2F28159%2F2017/
Instituto de Salud Carlos III//PROMETEO%2F2016%2F063//Médula ósea artificial para personalizar el tratamiento de pacientes de cánceres de sangre/
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Thanks:
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Funding by the Generalitat Valenciana PROMETEO/2016/063 project is acknowledged. This work was partially financed with FEDER funds (CIBERONC (CB16/12/00284)). The CIBER-BBN initiative is funded by the VI National R&D&I ...[+]
Funding by the Generalitat Valenciana PROMETEO/2016/063 project is acknowledged. This work was partially financed with FEDER funds (CIBERONC (CB16/12/00284)). The CIBER-BBN initiative is funded by the VI National R&D&I Plan 2008-2011, Iniciativa Ingenio 2010, Consolider Program. CIBER actions are financed by the Instituto de Salud Carlos III with assistance from the European Regional Development Fund. Financial support from the Portuguese Foundation for Science and Technology (FCT) in the framework of the UID/FIS/04650/2019, PTDC/BTMMAT/28237/2017, and PTDC/EMD-EMD/28159/2017 projects and from the Basque Government Industry Departments under the ELKARTEK programs is also acknowledged.
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Type:
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Artículo
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