Remote‐Controlled Magnetic Stimulation of Cell‐Based Bioengineered Tissues for In Situ Bone Regeneration

L Lúcia F. Santos (Chemical Department and CICECO University of Aveiro Aveiro 3810‐193 Portugal) M Maria C. Mendes (Chemical Department and CICECO University of Aveiro Aveiro 3810‐193 Portugal) J João A. Pereira (Chemical Department and CICECO University of Aveiro Aveiro 3810‐193 Portugal) I Isabel R. Dias (Department of Veterinary Sciences and CECAV School of Agrarian and Veterinary Sciences University of Trás‐os‐Montes e Alto Douro Quinta de Prados Vila Real 5000‐801 Portugal) C Carlos A. Viegas (Department of Veterinary Sciences and CECAV School of Agrarian and Veterinary Sciences University of Trás‐os‐Montes e Alto Douro Quinta de Prados Vila Real 5000‐801 Portugal) C Carlos O. Amorim (Physics Department and i3N University of Aveiro Aveiro 3810‐193 Portugal) J JoãoS. Amaral (Physics Department and CICECO University of Aveiro Aveiro 3810‐193 Portugal) L Liebert P. Nogueira (Oral Research Laboratory Institute of Clinical Dentistry Faculty of Dentistry University of Oslo Oslo 0317 Norway) H Håvard J. Haugen A A. Sofia Silva (Chemical Department and CICECO University of Aveiro Aveiro 3810‐193 Portugal) J João F. Mano

Abstract

Abstract The native cell microenvironment activates signaling pathways through mechanotransduction mechanisms, influencing cells’ physiological and functional outcomes. Magnetic fields are explored to manipulate these environments, and magnetic nanoparticles (MNPs) are highlighted as nano‐instructive agents capable of activating key signaling pathways, presenting exciting possibilities in tissue engineering. Still, the ability to precisely control the assembly and differentiation of stem cells within a dynamically responsive microenvironment, crucial for effective tissue regeneration, remains unexplored. This study showcases a novel method wherein MNPs facilitate the precise assembly of magnetically responsive cells into complex 3D tissue structures upon internalization and exposure to temporally defined cyclic magnetic fields. By remotely stimulating these constructs, it is demonstrated for the first time the possibility of remote‐controlled modulation of stem cell fate in vivo without biochemical supplementation. Notably, this approach led to ectopic bone formation, highlighting the ability of magnetic actuation to drive osteogenesis in non‐bone environments. MNP‐driven mechanical stimulation of implanted tissues functions as a bioresponsive system guiding osteogenic differentiation of human adipose‐derived stem cells. The in vivo model further illustrates accelerated construct integration, enhanced osteogenic differentiation, and minimal local inflammation, underscoring the potential of this less invasive, remotely controllable platform to advance regenerative strategies for bone engineering.

Article Details

Volume / Issue Vol. 37, Issue 39
Published October 01, 2025
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (11)

L

Lúcia F. Santos

Chemical Department and CICECO University of Aveiro Aveiro 3810‐193 Portugal

M

Maria C. Mendes

Chemical Department and CICECO University of Aveiro Aveiro 3810‐193 Portugal

J

João A. Pereira

Chemical Department and CICECO University of Aveiro Aveiro 3810‐193 Portugal

I

Isabel R. Dias

Department of Veterinary Sciences and CECAV School of Agrarian and Veterinary Sciences University of Trás‐os‐Montes e Alto Douro Quinta de Prados Vila Real 5000‐801 Portugal

C

Carlos A. Viegas

Department of Veterinary Sciences and CECAV School of Agrarian and Veterinary Sciences University of Trás‐os‐Montes e Alto Douro Quinta de Prados Vila Real 5000‐801 Portugal

C

Carlos O. Amorim

Physics Department and i3N University of Aveiro Aveiro 3810‐193 Portugal

J

JoãoS. Amaral

Physics Department and CICECO University of Aveiro Aveiro 3810‐193 Portugal

L

Liebert P. Nogueira

Oral Research Laboratory Institute of Clinical Dentistry Faculty of Dentistry University of Oslo Oslo 0317 Norway

H

Håvard J. Haugen

A

A. Sofia Silva

Chemical Department and CICECO University of Aveiro Aveiro 3810‐193 Portugal

J

João F. Mano