Open Access Article
Giulia Simonciniab,
Fabio Marangib,
Ilaria Venturinoab,
Vito Vurrob,
Andrea Bartoluccicd,
Lorenzo Vannozzicd,
Ludovico Aloisiob,
Martina Rossie,
Paola Morettie,
Chiara Bertarellie,
Giuseppe Maria Paternò*ab and
Guglielmo Lanzani*ab
aDipartimento di Fisica, Politecnico di Milano, Milano, Italy
bCenter for Nano Science and Technology, Istituto Italiano di Tecnologia, Milano, Italy. E-mail: giuseppemaria.paterno@polimi.it
cThe BioRobotics Institute, Scuola Superiore Sant’Anna, Pisa, Italy
dDepartment of Excellence in Robotics and AI, Scuola Superiore Sant’Anna, Pisa, Italy
eDipartimento di Chimica, Materiali e Ingegneria Chimica “Giulio Natta” Politecnico di Milano, Milano, Italy
First published on 11th May 2026
Correction for ‘Electrospun polymeric scaffolds enable 3D tissue-like functionality and efficient photoinduced contraction’ by Giulia Simoncini et al., J. Mater. Chem. B, 2026, 14, 2832–2842, https://doi.org/10.1039/D5TB02640G.
Acknowledgements
V. V. and G. L. acknowledge Fondo Italiano per la Scienza project (ID FIS00001244). G. M. P. thanks the European Union for financial support (ERC, EOS, 101115925). This work was supported by #NEXTGENERATIONEU (NGEU) and funded by the Ministry of University and Research (MUR), National Recovery and Resilience Plan (NRRP), project MNESYS (PE0000006) A Multiscale Integrated Approach to the Study of the Nervous System in Health and Disease (DN. 1553 11.10.2022). G. L. acknowledges funding from Project RAISE – Spoke 2 “RAISE (Robotics and AI for Socio-economic Empowerment)” cod. ECS00000035 funded by NextGeneration EU PNRR MUR – M4C2 – Investimento 1.5 – Avviso “Ecosistemi dell’Innovazione” CUP J33C22001220001
The Royal Society of Chemistry apologises for these errors and any consequent inconvenience to authors and readers.
| This journal is © The Royal Society of Chemistry 2026 |