Modulating the Behavior of Schwann Cells with NGF Exposure Combined with Different Energy Densities of Photobiomodulation Cultured on Polyhydroxybutyrate (PHB) Scaffolds

Quidel-Necul, BE; Martínez-Rodríguez, P; Sanchéz, KG; Nascimento G.C.; de Paula, BB; Borie E.; Dias F.J.

Keywords: nerve growth factor, ngf, scaffold, nerve regeneration, schwann cells, Polyhydroxybutyrate, PHB, LLLT, low-level laser, MTT assay crystal violet assay, SEM-Scanning Electron Microscopy

Abstract

This study evaluated the effect of irradiation of different energy densities in low-level laser therapy (LLLT) and exogenous nerve growth factor (NGF) on Schwann cells (SCs). SCs (SCL 4.1/F7) exposed to LLLT (4 or 80 J/cm2) and NGF (25 ng/mL) were evaluated on days 1, 3, and 7. Cell viability (MTT), proliferation (crystal violet) and morphology (SEM—Scanning Electron Microscopy) on the polyhydroxybutyrate (PHB) scaffold were compared among five study groups: Control; L4. 4 J/cm2 LLLT; L80. 80 J/cm2 LLLT; L4N. 4 J/cm2 LLLT + NGF; and L80N. 80 J/cm2 LLLT + NGF. Viability and proliferation increased over time in groups treated exclusively with LLLT, with 4 J/cm2 reduced cell viability on the third day. The NGF exposition showed a reduction in cell viability and proliferation. The SCs remained attached to the PHB scaffold during the 7 days analyzed. The LLLT energy densities did not modify SC behavior, except for a reduction in cell viability after irradiation of 4 J/cm2 on the third day. Consistently, SC exposure to exogenous NGF significantly reduced proliferation and viability in all periods analyzed. Morphological changes were observed, and NGF exposure appears to have helped cells intertwine with PHB scaffold fibers. © 2025 by the authors.

Más información

Título según WOS: Modulating the Behavior of Schwann Cells with NGF Exposure Combined with Different Energy Densities of Photobiomodulation Cultured on Polyhydroxybutyrate (PHB) Scaffolds
Título de la Revista: Polymers
Volumen: 17
Número: 21
Editorial: Multidisciplinary Digital Publishing Institute (MDPI)
Fecha de publicación: 2025
Idioma: English
DOI:

10.3390/polym17212900

Notas: ISI