Hydrogel loaded with thiolated chitosan modified taxifolin liposome promotes osteoblast proliferation and regulates Wnt signaling pathway to repair rat skull defects

成骨细胞 紫杉醇 Wnt信号通路 壳聚糖 信号转导 化学 细胞生物学 颅骨 生物化学 解剖 生物 抗氧化剂 体外 类黄酮
作者
Qiteng Ding,Wencong Liu,Shuai Zhang,Shuwen Sun,Jiali Yang,Lifeng Zhang,Ning Wang,Shuang Ma,Guodong Chai,Liqian Shen,Yang Gao,Chuanbo Ding,Xinglong Liu
出处
期刊:Carbohydrate Polymers [Elsevier BV]
卷期号:336: 122115-122115 被引量:31
标识
DOI:10.1016/j.carbpol.2024.122115
摘要

To alleviate skull defects and enhance the biological activity of taxifolin, this study utilized the thin-film dispersion method to prepare paclitaxel liposomes (TL). Thiolated chitosan (CSSH)-modified TL (CTL) was synthesized through charge interactions. Injectable hydrogels (BLG) were then prepared as hydrogel scaffolds loaded with TAX (TG), TL (TLG), and CTL (CTLG) using a Schiff base reaction involving oxidized dextran and carboxymethyl chitosan. The study investigated the bone reparative properties of CTLG through molecular docking, western blot techniques, and transcriptome analysis. The particle sizes of CTL were measured at 248.90 ± 14.03 nm, respectively, with zeta potentials of +36.68 ± 5.43 mV, respectively. CTLG showed excellent antioxidant capacity in vitro. It also has a good inhibitory effect on Escherichia coli and Staphylococcus aureus, with inhibition rates of 93.88 ± 1.59 % and 88.56 ± 2.83 % respectively. The results of 5-ethynyl-2 ′-deoxyuridine staining, alkaline phosphatase staining and alizarin red staining showed that CTLG also had the potential to promote the proliferation and differentiation of mouse embryonic osteoblasts (MC3T3-E1). The study revealed that CTLG enhances the expression of osteogenic proteins by regulating the Wnt signaling pathway, shedding light on the potential application of TAX and bone regeneration mechanisms.
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