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Citrate-Stabilized Gold Nanorods-Directed Osteogenic Differentiation of Multiple Cells

Yibo Zhang, Yawen Li, Wei Liao, Wenzao Peng, Jianghui Qin, Dongyang Chen, Liming Zheng, Wenjin Yan, Lan Li, Zhirui Guo, Peng Wang, Qing Jiang

2021International Journal of Nanomedicine25 citationsDOIOpen Access PDF

Abstract

OBJECTIVE: Gold nanorods (AuNRs) show great potential for versatile biomedical applications, such as stem cell therapy and bone tissue engineering. However, as an indispensable shape-directing agent for the growth of AuNRs, cetyltrimethylammonium bromide (CTAB) is not optimal for biological studies because it forms a cytotoxic bilayer on the AuNR surface, which interferes with the interactions with biological cells. METHODS: Citrate-stabilized AuNRs with various aspect-ratios (Cit-NRI, Cit-NRII, and Cit-NRIII) were prepared by the combination of end-selective etching and poly(sodium 4-styrenesulfonate)-assisted ligand exchange method. Their effects on osteogenic differentiation of the pre-osteoblastic cell line (MC3T3-E1), rat bone marrow mesenchymal stem cells (rBMSCs), and human periodontal ligament progenitor cells (PDLPs) have been investigated. Potential signaling pathway of citrate-stabilized AuNRs-induced osteogenic effects was also investigated. RESULTS: The experimental results showed that citrate-stabilized AuNRs have superior biocompatibility and undergo aspect-ratio-dependent osteogenic differentiation via expression of osteogenic marker genes, alkaline phosphatase (ALP) activity and formation of mineralized nodule. Furthermore, Wnt/β-catenin signaling pathway might provide a potential explanation for the citrate-stabilized AuNRs-mediated osteogenic differentiation. CONCLUSION: These findings revealed that citrate-stabilized AuNRs with great biocompatibility could regulate the osteogenic differentiation of multiple cell types through Wnt/β-catenin signaling pathway, which promote innovative AuNRs in the field of tissue engineering and other biomedical applications.

Topics & Concepts

NanorodBiocompatibilityWnt signaling pathwayMesenchymal stem cellCellular differentiationChemistryAlkaline phosphataseCell biologyStem cellMaterials scienceNanotechnologyBiophysicsSignal transductionBiochemistryBiologyEnzymeGeneOrganic chemistryGold and Silver Nanoparticles Synthesis and ApplicationsGraphene and Nanomaterials ApplicationsCollagen: Extraction and Characterization