Mechanisms of Ellagic Acid (EA)-Mediated Osteogenic Differentiation of Human Dental Pulp-Derived Stem Cells

IF 3.7 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY ACS Omega Pub Date : 2025-04-13 DOI:10.1021/acsomega.4c1064210.1021/acsomega.4c10642
Prathyusha Naidu, Manjusri Das, Surajit Hansda, Prateeksha Prateeksha, Md Sariful Islam Howlader, Md Afjalus Siraj and Hiranmoy Das*, 
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Abstract

Ellagic acid (EA) is a potent antioxidant that reduces oxidative stress and promotes differentiation. By lowering the harmful levels of reactive oxygen species (ROS), EA fosters an environment conducive to the osteoblastic differentiation (OB) of stem cells. In addition, it promotes autophagy and mitophagy, which are vital for promoting differentiation. Effective autophagic activity recycles damaged organelles and proteins, meeting the energy required during differentiation and shielding from apoptosis. However, molecular mechanisms underlying the osteogenic differentiation of mesenchymal stem cells remain inadequately explored. Therefore, the current study aims to define the regulatory role of EA during the OB of dental pulp-derived stem cells (DPSC) and to study how autophagy and mitophagy are being modulated during this differentiation process. Herein, we showed that the expression level of osteoblast-specific markers, autophagy, and mitophagy-associated markers was significantly elevated during EA-mediated OB differentiation of DPSC. Moreover, we found that the EA induced the osteoblastic-specific markers through canonical BMP2 pathway molecules, reduced ROS in both basal and activated states, and induced autophagy and mitophagy molecules along with enhanced mitochondrial functions. Cell cycle analysis revealed that the G1 phase was arrested via phosphorylation of γ-H2AX, ATM, and CHK2 proteins. Furthermore, in silico analysis revealed that EA strongly binds with osteonectin, a crucial noncollagen protein involved in bone remodeling, and confirmed by Western blot analysis. These results support that EA could be a promising natural compound for bone repair and regeneration applications.

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鞣花酸介导人牙髓源性干细胞成骨分化的机制
鞣花酸(EA)是一种有效的抗氧化剂,减少氧化应激和促进分化。通过降低活性氧(ROS)的有害水平,EA营造了一个有利于干细胞成骨细胞分化(OB)的环境。此外,它还促进自噬和有丝自噬,这对促进分化至关重要。有效的自噬活性回收受损的细胞器和蛋白质,满足分化和保护细胞凋亡所需的能量。然而,间充质干细胞成骨分化的分子机制尚未得到充分探讨。因此,本研究旨在明确EA在牙髓源性干细胞(dental pulp-derived stem cells, DPSC)分化过程中的调节作用,并研究自噬和有丝自噬在这一分化过程中是如何被调节的。本研究表明,在ea介导的DPSC OB分化过程中,成骨细胞特异性标志物、自噬和自噬相关标志物的表达水平显著升高。此外,我们发现EA通过规范的BMP2途径分子诱导成骨细胞特异性标志物,减少基础和激活状态下的ROS,诱导自噬和线粒体自噬分子,增强线粒体功能。细胞周期分析显示,G1期通过磷酸化γ-H2AX、ATM和CHK2蛋白而被阻滞。此外,硅分析显示,EA与骨连接蛋白强结合,骨连接蛋白是一种参与骨重塑的重要非胶原蛋白,并通过Western blot分析证实。这些结果支持EA可能是一种很有前途的用于骨修复和再生的天然化合物。
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来源期刊
ACS Omega
ACS Omega Chemical Engineering-General Chemical Engineering
CiteScore
6.60
自引率
4.90%
发文量
3945
审稿时长
2.4 months
期刊介绍: ACS Omega is an open-access global publication for scientific articles that describe new findings in chemistry and interfacing areas of science, without any perceived evaluation of immediate impact.
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