Xin Shanshan, Li Shao-Ming, Gao Ling, Zheng Jing-Jing, Wu Yan-Wei, Shao Chang-Lun, Ren Wen-Hao, Zhi Keqian
Department of Oral and Maxillofacial Surgery, The Affiliated Hospital of Qingdao University, Qingdao, China.
School of Stomatology, Qingdao University, Qingdao, China.
Front Cell Dev Biol. 2021 Dec 21;9:779287. doi: 10.3389/fcell.2021.779287. eCollection 2021.
Periodontitis is a chronic and progressive disease accompanied by bone loss. It is still a challenge to restore the bone structure. The osteogenic differentiation of bone marrow mesenchymal stem cells (BMSCs) plays a decisive role in bone restoration and regeneration. Marine natural products (MNPs) have multiple biological activities, including anti-tumor and anti-inflammatory properties. However, the exploration of MNPs in osteogenesis is far from sufficient. We obtained a series of derivatives through structural optimization from 4-phenyl-3,4-dihydroquinolin-2(1H)-one alkaloid isolated from sp. Some preliminary cytological experiments showed that CHNQD-00603, obtained by adding a methoxy group to the position C3 and a hydroxyl group to the position C4 of 4-phenyl-3,4-dihydroquinolin-2(1H)-one, might promote the osteogenic differentiation of BMSCs. To further investigate the effects of CHNQD-00603 on BMSCs, we performed a CCK-8 assay and qRT-PCR, alkaline phosphatase staining (ALP), and alizarin red S staining to assess the cytotoxicity and the ability of osteogenic differentiation of CHNQD-00603. The autophagy level was assessed and validated by WB, qRT-PCR, and transmission electron microscopy. Then, 3-methyladenine (3-MA) was added to further examine the role of autophagy. Based on the expression of autophagy-related genes, we predicted and examined the potential miRNAs by bioinformatics. CCK-8 assay showed that CHNQD-00603 at 1 µg/ml did not influence BMSCs activity. However, the proliferation rate decreased from the seventh day. qRT-PCR, ALP staining, ALP activity assay, and Alizarin red S staining showed that the best concentration of CHNQD-00603 to promote osteogenic differentiation was 1 µg/ml. Further investigations indicated that CHNQD-00603 activated autophagy, and the inhibition of autophagy by 3-MA attenuated CHNQD-00603-enhanced osteogenic differentiation. Subsequently, the findings from bioinformatics and qRT-PCR indicated that miR-452-3p might be a regulator of autophagy and osteogenesis. Furthermore, we transfected BMSCs with miR-452-3p NC and mimics separately to further determine the function of miR-452-3p. The data showed that the overexpression of miR-452-3p moderated the level of autophagy and osteogenic differentiation of CHNQD-00603-treated BMSCs. Our data suggested that CHNQD-00603 promoted the osteogenic differentiation of BMSCs by enhancing autophagy. Meanwhile, miR-452-3p played a regulatory role in this process.
牙周炎是一种伴有骨质流失的慢性进行性疾病。恢复骨结构仍然是一项挑战。骨髓间充质干细胞(BMSCs)的成骨分化在骨修复和再生中起决定性作用。海洋天然产物(MNPs)具有多种生物活性,包括抗肿瘤和抗炎特性。然而,MNPs在成骨方面的探索还远远不够。我们通过对从 sp. 分离出的 4-苯基-3,4-二氢喹啉-2(1H)-酮生物碱进行结构优化获得了一系列衍生物。一些初步的细胞学实验表明,通过在4-苯基-3,4-二氢喹啉-2(1H)-酮的C3位添加甲氧基和在C4位添加羟基得到的CHNQD-00603可能促进BMSCs的成骨分化。为了进一步研究CHNQD-00603对BMSCs的影响,我们进行了CCK-8测定、qRT-PCR、碱性磷酸酶染色(ALP)和茜素红S染色,以评估CHNQD-00603的细胞毒性和成骨分化能力。通过WB、qRT-PCR和透射电子显微镜评估并验证自噬水平。然后,添加3-甲基腺嘌呤(3-MA)以进一步研究自噬的作用。基于自噬相关基因的表达,我们通过生物信息学预测并检测了潜在的miRNA。CCK-8测定表明,1μg/ml的CHNQD-00603不影响BMSCs活性。然而,从第七天起增殖率下降。qRT-PCR、ALP染色、ALP活性测定和茜素红S染色表明,促进成骨分化的CHNQD-00603的最佳浓度为1μg/ml。进一步的研究表明,CHNQD-0060激活了自噬,3-MA对自噬的抑制减弱了CHNQD-00603增强的成骨分化。随后,生物信息学和qRT-PCR的结果表明,miR-452-3p可能是自噬和成骨的调节因子。此外,我们分别用miR-452-3p NC和模拟物转染BMSCs,以进一步确定miR-452-3p的功能。数据表明,miR-452-3p的过表达降低了CHNQD-00603处理的BMSCs的自噬水平和成骨分化。我们的数据表明,CHNQD-00603通过增强自噬促进BMSCs的成骨分化。同时,miR-452-3p在此过程中发挥调节作用。