The State Key Laboratory Breeding Base of Basic Science of Stomatology (Hubei-MOST) & Key Laboratory of Oral Biomedicine Ministry of Education, School & Hospital of Stomatology, Wuhan University, China.
Biomed Res Int. 2020 Jul 8;2020:2125656. doi: 10.1155/2020/2125656. eCollection 2020.
This study is aimed at determining how oral squamous cell carcinoma (OSCC) regulates the angiogenesis of HUVECs through miR-210-3p expression and exploring the relationship among miR-210-3p, its target protein, and the possible mechanism of angiogenesis regulation. miR-210-3p expression was detected in OSCC tissues and juxta cancerous tissues (JCT), and the relationship among miR-210-3p, microvessel density (MVD), and histopathologic features was analyzed. A conditioned medium (CM) of the OSCC cell line CAL27 was collected to stimulate human umbilical vein endothelial cells (HUVECs), and the miR-210-3p levels and tube formation capability of HUVECs were measured. The target protein level of miR-210-3p was altered; then, PI3K/AKT pathway activation in HUVECs was detected. miR-210-3p was tested in exosomes separated from CAL27 CM, and the transfer of miR-210-3p from OSCC exosomes to HUVECs was verified. Then, we found that the OSCC tissues had higher miR-210-3p levels than the JCT, and miR-210-3p level was positively correlated with MVD and tumor grade. CAL27 CM was able to elevate miR-210-3p levels in HUVECs and promoted tube formation. EFNA3 was the target gene of miR-210-3p, and ephrinA3 protein level was able to influence the migration and proliferation of HUVECs. The levels of phosphorylated AKT in the HUVECs increased when ephrinA3 was downregulated, and the upregulation of ephrinA3 resulted in the suppression of the PI3K/AKT pathway. miR-210-3p was detected in exosomes isolated from the CM of CAL27 cells, and miR-210-3p level in the HUVECs was elevated after absorbing the OSCC exosomes. In conclusion, miR-210-3p was more overexpressed in OSCC tissues than in the JCT. The exosomes secreted by OSCC cells were able to upregulate miR-210-3p expression and reduce ephrinA3 expression in HUVECs and promoted tube formation through the PI3K/AKT signaling pathway.
本研究旨在通过 miR-210-3p 表达确定口腔鳞状细胞癌 (OSCC) 如何调节 HUVEC 的血管生成,并探讨 miR-210-3p 与其靶蛋白之间的关系以及血管生成调节的可能机制。检测 OSCC 组织和癌旁组织 (JCT) 中的 miR-210-3p 表达水平,并分析 miR-210-3p 与微血管密度 (MVD) 和组织病理学特征之间的关系。收集 OSCC 细胞系 CAL27 的条件培养基 (CM) 以刺激人脐静脉内皮细胞 (HUVEC),并测量 HUVEC 的 miR-210-3p 水平和管形成能力。改变 miR-210-3p 的靶蛋白水平;然后检测 HUVEC 中 PI3K/AKT 通路的激活情况。在从 CAL27 CM 中分离的外泌体中检测 miR-210-3p,并验证 OSCC 外泌体中 miR-210-3p 的转移到 HUVEC 中。结果发现,OSCC 组织中的 miR-210-3p 水平高于 JCT,并且 miR-210-3p 水平与 MVD 和肿瘤分级呈正相关。CAL27 CM 能够提高 HUVEC 中的 miR-210-3p 水平并促进管形成。EFNA3 是 miR-210-3p 的靶基因, EphrinA3 蛋白水平能够影响 HUVEC 的迁移和增殖。下调 EphrinA3 后,HUVEC 中磷酸化 AKT 的水平增加,而上调 EphrinA3 则抑制了 PI3K/AKT 通路。在从 CAL27 细胞 CM 中分离的外泌体中检测到 miR-210-3p,并且吸收 OSCC 外泌体后 HUVEC 中的 miR-210-3p 水平升高。总之,OSCC 组织中的 miR-210-3p 表达高于 JCT。OSCC 细胞分泌的外泌体能够上调 HUVEC 中的 miR-210-3p 表达并降低 EphrinA3 表达,通过 PI3K/AKT 信号通路促进管形成。