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Differential Gene Expression of Wharton's Jelly-derived Mesenchymal Cells Mediated by Graphene Oxide in Basal and Osteo-induced Media

Overview
Journal Mol Biol Rep
Specialty Molecular Biology
Date 2024 Mar 3
PMID 38433142
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Abstract

Background: Graphene oxide (GO) is widespread in scaffold engineering owing to its extraordinary properties such as multiple oxygen functional groups, high hydrophilicity ability and biocompatibility. It is known to promote differentiation in mesenchymal stem cells, but concomitant comparison of its modulation on the expression profiles of Wharton's jelly (WJ)-MSC surface markers, lineage differentiation, and epigenetic regulatory genes in basal and induced condition are still lacking. Unraveling the fundamental mechanisms is essential for the effective utilization of WJ-MSCs incorporated with GO in therapy. This study aims to explore the unique gene expression profiles and epigenetic characteristics of WJ-MSCs influenced by GO.

Methods And Results: The characterized GO-coated coverslip served as a substrate for culturing WJ-MSCs. In addition to investigating the impact of GO on cell proliferation and differentiation, we conducted a gene expression study using PCR array, while epigenetic control was assessed through bisulfite sequencing and Western blot analysis. Our findings indicate that the presence of GO maintained the proliferation and survival of WJ-MSCs. In the absence of induction, GO led to minor lipid and glycosaminoglycan deposition in WJ-MSCs. This was evidenced by the sustained expression of pluripotency and lineage-specific genes, demethylation at the OCT4 promoter, and a decrease in H3K9 methylation. In osteo-induced condition, the occurrence of osteogenesis appeared to be guided by BMP/TGF and ERK pathway activation, accompanied by the upregulation of osteogenic-related genes and downregulation of DNMT3b.

Conclusions: GO in osteo-induced condition create a favorable microenvironment that promotes the osteogenesis of WJ-MSCs by influencing genetic and epigenetic controls. This helps in advancing our knowledge on the use of GO as priming platform and WJ-MSCs an alternate source for bone repair and regeneration.

Citing Articles

Effect of DNA methylation on the osteogenic differentiation of mesenchymal stem cells: concise review.

Lai Z, Shu Q, Song Y, Tang A, Tian J Front Genet. 2024; 15:1429844.

PMID: 39015772 PMC: 11250479. DOI: 10.3389/fgene.2024.1429844.

References
1.
Kassem D, Kamal M . Wharton's Jelly MSCs: Potential Weapon to Sharpen for Our Battle against DM. Trends Endocrinol Metab. 2020; 31(4):271-273. DOI: 10.1016/j.tem.2020.01.001. View

2.
Oliveira A, Machado M, Silva G, Bitoque D, Ferreira J, Abegao Pinto L . Graphene Oxide Thin Films with Drug Delivery Function. Nanomaterials (Basel). 2022; 12(7). PMC: 9000550. DOI: 10.3390/nano12071149. View

3.
Ghulam A, Dos Santos O, Hazeem L, Pizzorno Backx B, Bououdina M, Bellucci S . Graphene Oxide (GO) Materials-Applications and Toxicity on Living Organisms and Environment. J Funct Biomater. 2022; 13(2). PMC: 9224660. DOI: 10.3390/jfb13020077. View

4.
Ahmadi A, Mazloomnejad R, Kasravi M, Gholamine B, Bahrami S, Sarzaeem M . Recent advances on small molecules in osteogenic differentiation of stem cells and the underlying signaling pathways. Stem Cell Res Ther. 2022; 13(1):518. PMC: 9652959. DOI: 10.1186/s13287-022-03204-4. View

5.
Xin T, Yu T, Yang R . DNA methylation and demethylation link the properties of mesenchymal stem cells: Regeneration and immunomodulation. World J Stem Cells. 2020; 12(5):351-358. PMC: 7280864. DOI: 10.4252/wjsc.v12.i5.351. View