Published July 25, 2024 | Version v1

Strategies to decouple cell micro-scale and macro-scale environments for designing multifunctional biomimetic tissues

  • 1. ROR icon Laboratório Associado CICECO – Instituto de Materiais de Aveiro
  • 2. ROR icon University of Aveiro

Description

The regulation of cellular behavior within a three-dimensional (3D) environment to execute a specific function remains a challenge in the field of tissue engineering. In native tissues, cells and matrices are arranged into 3D modular units, comprising biochemical and biophysical signals that orchestrate specific cellular activities. Modular tissue engineering aims to emulate this natural complexity through the utilization of functional building blocks with unique stimulation features. By adopting a modular approach and using well-designed biomaterials, cellular microenvironments can be effectively decoupled from their macro-scale surroundings, enabling the development of engineered tissues with enhanced multifunctionality and heterogeneity. We overview recent advancements in decoupling the cellular micro-scale niches from their macroenvironment and evaluate the implications of this strategy on cellular and tissue functionality.

Files

Revised-Strategies to decouple microscale and macroscale environments_revisions - Copy.pdf

Additional details

Identifiers

Funding

European Commission
PRISM-LT - PRInted Symbiotic Materials as a dynamic platform for Living Tissues production 101070913

Dates

Available
2024-07-25
Accepted
2024-07-15
Submitted
2024-03-03