Oxymatrine boosts hematopoietic regeneration by modulating MAPK/ERK phosphorylation after irradiation-induced hematopoietic injury

生物 氧化苦参碱 MAPK/ERK通路 造血 细胞凋亡 细胞生物学 信号转导 磷酸化 癌症研究 细胞周期蛋白D1 再生(生物学) 第1周 细胞周期检查点 细胞周期 干细胞 药理学 细胞周期蛋白依赖激酶1 生物化学
作者
Lijing Yang,Yukai Lu,Zihao Zhang,Yin Chen,Naicheng Chen,Fang Chen,Yan Qi,Changhao Han,Yang Xu,Mo Chen,Mingqiang Shen,Song Wang,Hao Zeng,Yongping Su,Mengjia Hu,Junping Wang
出处
期刊:Experimental Cell Research [Elsevier BV]
卷期号:427 (2): 113603-113603 被引量:4
标识
DOI:10.1016/j.yexcr.2023.113603
摘要

Hematopoietic toxicity due to ionizing radiation (IR) is a leading cause of death in nuclear incidents, occupational hazards, and cancer therapy. Oxymatrine (OM), an extract originating from the root of Sophora flavescens (Kushen), possesses extensive pharmacological properties. In this study, we demonstrate that OM treatment accelerates hematological recovery and increases the survival rate of mice subjected to irradiation. This outcome is accompanied by an increase in functional hematopoietic stem cells (HSCs), resulting in enhanced hematopoietic reconstitution abilities. Mechanistically, we observed significant activation of the MAPK signaling pathway, accelerated cellular proliferation, and decreased cell apoptosis. Notably, we identified marked increases in the cell cycle transcriptional regulator Cyclin D1 (Ccnd1) and the anti-apoptotic protein BCL2 in HSCs after OM treatment. Further investigation revealed that the expression of Ccnd1 transcript and BCL2 levels were reversed upon specific inhibition of ERK1/2 phosphorylation, effectively negating the rescuing effect of OM. Moreover, we determined that targeted inhibition of ERK1/2 activation significantly counteracted the regenerative effect of OM on human HSCs. Taken together, our results suggest a crucial role for OM in hematopoietic reconstitution following IR via MAPK signaling pathway-mediated mechanisms, providing theoretical support for innovative therapeutic applications of OM in addressing IR-induced injuries in humans.
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