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Profil bibliographique

Daniele Pedroni

Informations fournies par OpenAlex. Research Africa ne déduit ni nationalité, ni poste, ni coordonnées personnelles.

5Publications signalées
0Citations signalées
4Affiliations récentes

Les institutions déclarées

Les domaines associés

3D Printing in Biomedical ResearchNanofabrication and Lithography TechniquesCellular Mechanics and InteractionsAdditive Manufacturing and 3D Printing TechnologiesCell Adhesion Molecules Research

Les publications récentes

Accès ouvert 2026 article OpenAlex

A combinative approach for the selective cellularization of human capillary-sized microchannels

Daniele Pedroni, Caroline Gaucher, Laurent Badie, Halima Alem

Abstract The controlled cellularization of enclosed microchannels with true capillary dimensions remains a major technical limitation in in vitro vascular models. While endothelial cell seeding is routinely achieved in microchannels with dimensions above several tens of micrometers, reliable and spatially selective endothelialization …

fr (code pays fourni par la source)

0 citations Biomedical Materials
Accès ouvert 2025 article OpenAlex

Micropatterning of Glass Substrates Using Electron‐Beam Lithography for Morphological Analysis of Human Umbilical Vein Endothelial Cells

Daniele Pedroni, Caroline Gaucher, Demba Ba, Laurent Badie et autres

This study presents a micropatterning technique for glass substrates aimed at investigating the morphological adaptations of human umbilical vein endothelial cells (HUVECs). This method employs electron‐beam lithography technology to produce sacrificial structures on glass prior to gas‐phase deposition of polyethylene glycol‐bearing silanes. …

fr (code pays fourni par la source)

0 citations Advanced Engineering Materials
Accès ouvert 2025 article OpenAlex

Single-Cell Confinement on Micropatterned Glass Substrates: An AFM Analysis of Cell Height and Topography

Daniele Pedroni, Caroline Gaucher, Halima Alem

In this study, we employed a surface micropatterning approach to isolate individual endothelial cells and examine how their topography is modulated by the available adhesion area. Human umbilical vein endothelial cells (HUVECs) were cultured on silanized glass substrates featuring bare-glass square islands …

fr (code pays fourni par la source)

0 citations Langmuir

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