Nonmulberry silk based ink for fabricating mechanically robust cardiac patches and endothelialized myocardium-on-a-chip application

Nonmulberry silk based ink for fabricating mechanically robust cardiac patches and endothelialized myocardium-on-a-chip application

Shreya Mehrotra, Bruna A. G. de Melo, Minoru Hirano, Wendy Keung, Ronald A. Li, Biman B. Mandal, Su Ryon Shin

ARTIGO

Inglês

Bioprinting holds great promise toward engineering functional cardiac tissue constructs for regenerative medicine and as drug test models. However, it is highly limited by the choice of inks that require maintaining a balance between the structure and functional properties associated with the...

FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULO - FAPESP

2017/02913‐4

Fechado

Nonmulberry silk based ink for fabricating mechanically robust cardiac patches and endothelialized myocardium-on-a-chip application

Shreya Mehrotra, Bruna A. G. de Melo, Minoru Hirano, Wendy Keung, Ronald A. Li, Biman B. Mandal, Su Ryon Shin

										

Nonmulberry silk based ink for fabricating mechanically robust cardiac patches and endothelialized myocardium-on-a-chip application

Shreya Mehrotra, Bruna A. G. de Melo, Minoru Hirano, Wendy Keung, Ronald A. Li, Biman B. Mandal, Su Ryon Shin

    Fontes

    Advanced functional materials

    (2020), n. art. 1907436