Investigation of the Osteogenic Effects of ICA and ICSII on Rat Bone Marrow Mesenchymal Stem Cells

Author:

Yao Zhangshun1,Huang Weixiang1,Yang Yan1,Zou Leiyan1,Zhang Yunpeng1,Zhang Jing1,Luo Guangming1

Affiliation:

1. Kunming Medical University School and Hospital of Stomatology, Kunming

Abstract

Abstract ICA (icariin) serves as the primary biologically active compound in traditional Chinese medicine Epimedium, while Icariside II (ICSII) represents one of its gastrointestinal metabolites.Although ICA and ICSII have demonstrated osteogenic differentiation- promoting effects on BMSCs, there is limited literature comparing their effects and underlying mechanisms. This study aimed to compare the osteogenic effects of Icariin and Icarisin II, along with their respective osteogenic mechanisms. In this study, we initially determined the optimal concentrations of Icariin (10− 5 mol/L) and Icariin II (10− 6 mol/L) for inducing BMSC osteogenic differentiation using CCK8, ALP activity assay, and flow apoptosis assay. Subsequently, we compared the vascularization and osteogenic capacity of the two groups through alizarin red staining assay, ELISA assay, Western Blot, and RY-PCR. Subsequently, we assessed the phosphorylated and non-phosphorylated expression of JNK, ERK1/2, p38, and AKT at different time intervals. We observed their phosphorylated expression and the expression of angiogenic/osteogenic markers after blocking with their corresponding inhibitors. It was observed that both the Icariin and Icariin II groups promoted the expression of osteogenic/angiogenic markers Runx-2, OCN, OPN, VEGF, and Ang1. While there was no significant difference in their osteogenic abilities, ICSII exhibited a stronger promotion of angiogenic differentiation markers, Ang1 and VEGF, compared to ICA. Additionally, it was observed that both ICA and ICSII could activate ERK1/2 phosphorylation, thereby further promoting the osteogenic/angiogenic differentiation of rBMSCs through the activation of the MAPK/ERK1/2 signaling pathway.

Publisher

Research Square Platform LLC

Reference28 articles.

1. Yang, J. et al. Flavonoid-Loaded Biomaterials in Bone Defect Repair. Molecules 28, 6888 – 6882 https://www.mdpi.com/1420-3049/6828/6819/6888 (2023).

2. Fate decision of mesenchymal stem cells: adipocytes or osteoblasts?;Chen Q;Cell Death and Differentiation,2016

3. Bone regeneration strategies: Engineered scaffolds, bioactive molecules and stem cells current stage and future perspectives;Ho-Shui-Ling A;Biomaterials,2018

4. Nano-Hydroxyapatite Composite Scaffolds Loaded with Bioactive Factors and Drugs for Bone Tissue Engineering;Mo X;International Journal of Molecular Sciences,2023

5. Bone induction by biomimetic PLGA-(PEG-ASP)n copolymer loaded with a novel synthetic BMP-2-related peptide in vitro and in vivo;Lin Z-Y;Journal of Controlled Release: Official Journal of the Controlled Release Society,2010

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