Nabavizadeh Sara S, Shadi Mehri, Khorraminejad-Shirazi Mohammadhossein, Daneshi Sajad, Tavanafar Saeid, Naseri Reyhaneh, Abbaspour Alireza, Alaei-Jahromi Keivan, Talaei-Khozani Tahereh
Department of Otolaryngology, Otolaryngology Research Center, Shiraz University of Medical Sciences, Shiraz, Iran.
Anatomy Department, Shiraz Medical School, Histomorphometry and Stereology Research Center, Shiraz University of Medical Sciences, Shiraz, Iran.
J Maxillofac Oral Surg. 2024 Dec;23(6):1391-1404. doi: 10.1007/s12663-023-02094-0. Epub 2024 Feb 4.
Moldable hydrogel-based techniques loaded with osteoinductive agents such as metformin have become a promising field for reconstructing critical-sized bone defects, particularly in those with irregular shapes. Here, we used metformin incorporated in an alginate/hydroxyapatite hydrogel to accelerate the repair of the rabbit critical-sized mandibular defect.
Cytotoxicity and osteoinduction of the metformin-loaded alginate/hydroxyapatite hydrogel were evaluated by culturing the osteosarcoma cell line (MG63). Moreover, in vivo bone formation was assessed in a rabbit bone defect model using computed tomography and histomorphometric analysis to compare the effects of alginate/hydroxyapatite hydrogel with or without metformin.
The data showed that the scaffolds were not cytotoxic and enhanced osteogenic characteristics of the cells, as manifested by augmented alkaline phosphatase activity and calcium deposition In vivo studies indicated that all the treated groups exhibited more osteogenesis with a significant increase in bone-specific cell population and less residual scaffold remnant at the defect sites compared with the control group, which was significantly prominent in the group treated with alginate/hydroxyapatite/metformin. Moreover, computed tomography scan analysis also confirmed better bone filling in all the treated groups, especially in the defects treated with alginate/hydroxyapatite/metformin hydrogel.
Both In vitro and in vivo experiments revealed that locally loaded metformin with the easy size- and shape-adapted alginate/hydroxyapatite hydrogel has proper biocompatibility and osteogenesis properties. Moreover, our study highlighted the synergistic effect of metformin and hydroxyapatite on osteogenesis.
负载有二甲双胍等骨诱导剂的可塑形水凝胶技术已成为修复临界尺寸骨缺损,特别是不规则形状骨缺损的一个有前景的领域。在此,我们使用负载二甲双胍的海藻酸盐/羟基磷灰石水凝胶来加速兔临界尺寸下颌骨缺损的修复。
通过培养骨肉瘤细胞系(MG63)评估负载二甲双胍的海藻酸盐/羟基磷灰石水凝胶的细胞毒性和成骨诱导作用。此外,在兔骨缺损模型中使用计算机断层扫描和组织形态计量分析评估体内骨形成,以比较含或不含二甲双胍的海藻酸盐/羟基磷灰石水凝胶的效果。
数据显示该支架无细胞毒性,并增强了细胞的成骨特性,表现为碱性磷酸酶活性增强和钙沉积增加。体内研究表明,与对照组相比,所有治疗组均表现出更多的骨生成,骨特异性细胞群显著增加,缺损部位的残余支架残余物减少,这在海藻酸盐/羟基磷灰石/二甲双胍治疗组中尤为显著。此外,计算机断层扫描分析也证实所有治疗组均有更好的骨填充,特别是在海藻酸盐/羟基磷灰石/二甲双胍水凝胶治疗的缺损部位。
体外和体内实验均表明,局部负载二甲双胍且尺寸和形状易于适配的海藻酸盐/羟基磷灰石水凝胶具有良好的生物相容性和成骨特性。此外,我们的研究突出了二甲双胍和羟基磷灰石在成骨方面的协同作用。