Quantifying species and age-dependent fibroblast morphologies on biomaterial surfaces via optical diffraction tomography
Artikel i vetenskaplig tidskrift, 2026

Fibroblasts are essential for maintaining tissue structure by producing the extracellular matrix (ECM) and collagen fibers. Their potential in regenerative medicine and personalized therapy has recently attracted attention, particularly for reprogramming into neuronal cells. Despite ongoing methodological advances aimed at fully exploiting the potential of fibroblasts, variability in their responses, driven by donor-specific factors such as species and age, remains poorly understood. In this study, we investigate fibroblasts differentiation in vitro , focusing on how biomaterial surfaces can guide cell growth, proliferation, and morphology through mechanical cues. We compare fibroblasts from two species (rodent and human) and, within the human donor group, across two distinct age ranges. By combining conventional morphological and cytoskeletal analyses with advanced three-dimensional (3D) label-free imaging techniques such as optical diffraction tomography (ODT), we characterize the morphological transformations of these cells cultured on two biomaterial surfaces, silk fibroin (SF) and Zinc-Aluminum hydrotalcite (HTlc), by measuring cell dry mass and projected area. Our findings provide insights into how substrate characteristics shape fibroblast morphology and introduce an effective strategy to identify substrates that preferentially promote neuron-like morphological shapes, an important feature for inducing neuronal reprogramming.

Optical diffraction tomography

Rodent and human fibroblasts

Biomaterial surfaces

Cell dry mass and area

Morphology

Författare

Francesco Formaggio

Universita di Bologna

Pooja Anantha

Johns Hopkins University

Federica Trebbi

Universita di Bologna

Vincenzo Palermo

Consiglo Nazionale Delle Richerche

Chalmers, Industri- och materialvetenskap, Material och tillverkning

Tamara Posati

Consiglo Nazionale Delle Richerche

Marianna Barbalinardo

Consiglo Nazionale Delle Richerche

Gioacchino Calandra Sebastianella

Consiglo Nazionale Delle Richerche

Simone Bonetti

Consiglo Nazionale Delle Richerche

Marco Caprini

Universita di Bologna

Jessica Chen

Johns Hopkins University

Giovanna Sotgiu

Consiglo Nazionale Delle Richerche

Maira Bacchiega

Schaefer

Roberto Zamboni

Consiglo Nazionale Delle Richerche

Annalisa Convertino

Consiglo Nazionale Delle Richerche

Ishan Barman

Johns Hopkins University

E. Saracino

Consiglo Nazionale Delle Richerche

Biomaterials Advances

2772-9508 (eISSN)

Vol. 189 215063

Ämneskategorier (SSIF 2025)

Cell- och molekylärbiologi

Medicinsk bioteknologi

Biomaterialvetenskap

DOI

10.1016/j.bioadv.2026.215063

Mer information

Senast uppdaterat

2026-08-14