Dental and Periodontal Research Center, Faculty of Dentistry, Tabriz University of Medical Sciences, Daneshgah St, Golgasht St, Tabriz, Iran.
Department of Endodontics, Faculty of Dentistry, Tabriz University of Medical Sciences, Tabriz, Iran.
Sci Rep. 2023 Feb 6;13(1):2076. doi: 10.1038/s41598-023-28267-y.
Hesperetin (HS), a metabolite of hesperidin, is a polyphenolic component of citrus fruits. This ingredient has a potential role in bone strength and the osteogenic differentiation. The bone loss in the orofacial region may occur due to the inflammation response of host tissues. Nanotechnology applications have been harshly entered the field of regenerative medicine to improve the efficacy of the materials and substances. In the current study, the hesperetin nanocrystals were synthesized and characterized. Then, the anti-inflammatory and antioxidative effects of these nanocrystals were evaluated on inflamed human Dental Pulp Stem Cells (hDPSCs) and monocytes (U937). Moreover, the osteoinduction capacity of these nanocrystals was assessed by gene and protein expression levels of osteogenic specific markers including RUNX2, ALP, OCN, Col1a1, and BSP in hDPSCs. The deposition of calcium nodules in the presence of hesperetin and hesperetin nanocrystals was also assessed. The results revealed the successful fabrication of hesperetin nanocrystals with an average size of 100 nm. The levels of TNF, IL6, and reactive oxygen species (ROS) in inflamed hDPSCs and U937 significantly decreased in the presence of hesperetin nanocrystals. Furthermore, these nanocrystals induced osteogenic differentiation in hDPSCs. These results demonstrated the positive and effective role of fabricated nanocrystal forms of this natural ingredient for regenerative medicine purposes.
橙皮素(HS)是橙皮苷的代谢物,是柑橘类水果中的一种多酚成分。这种成分在增强骨骼强度和促进成骨分化方面具有潜在作用。口腔颌面部区域的骨质流失可能是由于宿主组织的炎症反应所致。纳米技术的应用已经强烈地进入了再生医学领域,以提高材料和物质的功效。在本研究中,合成并表征了橙皮素纳米晶体。然后,评估了这些纳米晶体对炎症人牙髓干细胞(hDPSCs)和单核细胞(U937)的抗炎和抗氧化作用。此外,通过检测成骨特异性标志物 runt 相关转录因子 2(RUNX2)、碱性磷酸酶(ALP)、骨钙素(OCN)、Ⅰ型胶原(Col1a1)和骨涎蛋白(BSP)的基因和蛋白表达水平,评估了这些纳米晶体在 hDPSCs 中的成骨诱导能力。还评估了在存在橙皮素和橙皮素纳米晶体的情况下钙结节的沉积情况。结果表明成功制备了平均粒径为 100nm 的橙皮素纳米晶体。在存在橙皮素纳米晶体的情况下,炎症 hDPSCs 和 U937 中的肿瘤坏死因子(TNF)、白细胞介素 6(IL6)和活性氧物质(ROS)水平显著降低。此外,这些纳米晶体诱导了 hDPSCs 的成骨分化。这些结果表明,这种天然成分的纳米晶体形式对再生医学具有积极有效的作用。