Chang Tzu-Ching, Lin Chao-Feng, Lu Yi-Jhu, Liang Shu-Man, Wei Jia-Yi, Chin Chih-Hui, Shyue Song-Kun, Kuo Cheng-Chin, Liou Jun-Yang
Institute of Cellular and System Medicine, National Health Research Institutes, Zhunan, Taiwan.
Department of Medicine, MacKay Medical College, New Taipei City, Taiwan.
Heliyon. 2024 Nov 1;10(21):e40026. doi: 10.1016/j.heliyon.2024.e40026. eCollection 2024 Nov 15.
Enhanced angiogenesis following myocardial infarction (MI) is beneficial to preserve cardiac function. The present study aimed to investigate whether acetylated derivatives of cordycepin altered its original antitumor properties and exerted cardioprotective effects by promoting angiogenesis and .
Cordycepin and its derivatives with single (DA), double (DAA), and triple acetyl groups (DAAA) were assessed. The cell viability of leukemia U937 cells, malignant hepatoma Huh-7 cells, and human umbilical vascular endothelial cells (HUVECs) treated with cordycepin, DA, DAA, and DAAA were determined. The expression of β-catenin in U937 cells, as well as the expression of p65, p38 and other related signal regulators in HUVECs elicited by lipopolysaccharides (LPS) were also observed. Angiogenesis was determined by tube formation in HUVECs and Matrigel plug assay in mice. Cardiac function following administration of DAAA was evaluated in mice MI model simulated by coronary artery ligation.
The inhibitory effects of cordycepin and its acetylated derivatives on U937 cells, Huh-7 cells, HUVECs, and the expression of β-catenin in U937 cells were mitigated with increasing acetylation. Intriguingly, DAAA preserved the cell viability of HUVECs compared to other acetylated derivatives. Although DAAA had a significantly diminished antitumor effect compared to cordycepin, it promoted angiogenesis in mice and tube formation in HUVECs and attenuated LPS-induced phosphorylation of p65 and p38. Additionally, administration of DAAA improved cardiac function following coronary artery ligation in mice.
DAAA could be considered a promising adjunctive therapy to prevent post-MI heart failure through promoting angiogenesis.
心肌梗死(MI)后增强血管生成有利于保护心脏功能。本研究旨在探讨虫草素的乙酰化衍生物是否改变其原有的抗肿瘤特性,并通过促进血管生成发挥心脏保护作用。
评估了虫草素及其具有单乙酰基(DA)、双乙酰基(DAA)和三乙酰基(DAAA)的衍生物。测定了用虫草素、DA、DAA和DAAA处理的白血病U937细胞、恶性肝癌Huh-7细胞和人脐静脉血管内皮细胞(HUVECs)的细胞活力。还观察了U937细胞中β-连环蛋白的表达,以及脂多糖(LPS)诱导的HUVECs中p65、p38和其他相关信号调节因子的表达。通过HUVECs中的管腔形成和小鼠体内的基质胶栓塞试验测定血管生成。在通过冠状动脉结扎模拟的小鼠MI模型中评估给予DAAA后的心脏功能。
随着乙酰化程度的增加,虫草素及其乙酰化衍生物对U937细胞、Huh-7细胞、HUVECs的抑制作用以及对U937细胞中β-连环蛋白表达的抑制作用均减弱。有趣的是,与其他乙酰化衍生物相比,DAAA保留了HUVECs的细胞活力。尽管与虫草素相比,DAAA的抗肿瘤作用明显减弱,但它促进了小鼠体内的血管生成和HUVECs中的管腔形成,并减弱了LPS诱导的p65和p38磷酸化。此外,给予DAAA可改善小鼠冠状动脉结扎后的心脏功能。
DAAA可被认为是一种有前途的辅助治疗方法,通过促进血管生成预防心肌梗死后心力衰竭。