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Enhancing osteoblast differentiation through small molecule-incorporated engineered nanofibrous scaffold

Authors :
Praveen R. Arany
Muhammad Tahir
Saba Shamim
Jeevithan Elango
Wenhui Wu
Maria Akhtar
Maryam Khan
Munazza Raza Mirza
Kyung Mi Woo
Saeed Ur Rahman
Source :
Akhtar, M, Woo, K M, Tahir, M, Wu, W, Elango, J, Mirza, M R, Khan, M, Shamim, S, Arany, P R & Rahman, S U 2022, ' Enhancing osteoblast differentiation through small molecule-incorporated engineered nanofibrous scaffold ', Clinical Oral Investigations, vol. 26, no. 3, pp. 2607-2618 . https://doi.org/10.1007/s00784-021-04230-x
Publication Year :
2021
Publisher :
Springer Science and Business Media LLC, 2021.

Abstract

ObjectiveThis study aimed to investigate the effect of small molecules incorporated into the engineered nanofibrous scaffold to enhance the osteoblast differentiationMaterials and methodsPoly-ε-caprolactone (PCL) nanofiber matrices with lithium chloride (LiCl) were fabricated using the electrospinning technique. Scaffolds were characterized using scanning electron microscopy (SEM) and energy-dispersive X-ray (EDX). Scaffolds were seeded with MC3T3-E1 cells and assessed using Western blots (β-catenin), alamarBlue assay (proliferation), qPCR (osteoblast differentiation), and mineralization (Alizarin Red staining).ResultsWe observed LiCl nanofiber scaffolds induced concentration-dependent cell proliferation that correlated with an increased β-catenin expression indicating sustained Wnt signaling. Next, we examined osteoblast differentiation markers such as osteocalcin (OCN) and Runt-related transcription factor 2 (Runx2) and noted increased expression in LiCl nanofiber scaffolds. We also noted increased bone morphogenetic protein (BMP-2, 4, and 7) expressions suggesting activated Wnt can promote cures to further osteogenic differentiation. Finally, Alizarin Red staining demonstrated increased mineral deposition in LiCl-incorporated nanofiber scaffolds.ConclusionsTogether, these results indicated that LiCl-incorporated nanofiber scaffolds enhance osteoblast differentiation.Clinical relevanceSmall molecule-incorporated nanofibrous scaffolds are an innovative clinical tool for bone tissue engineering.

Details

ISSN :
14363771 and 14326981
Volume :
26
Database :
OpenAIRE
Journal :
Clinical Oral Investigations
Accession number :
edsair.doi.dedup.....e5c985f5f7aec30f8c164013180fb583