巨噬细胞极化
癌细胞
下调和上调
生物
癌症研究
人口
细胞
运动性
细胞生物学
细胞生长
流式细胞术
免疫学
癌症
巨噬细胞
内科学
医学
体外
遗传学
基因
环境卫生
生物化学
作者
Indrajit Poirah,Debashish Chakraborty,Pragyesh Dixit,Supriya Samal,Smaran Banerjee,Tathagata Mukherjee,S. Chattopadhyay,Gaurav Nath,Asima Bhattacharyya
摘要
Abstract Background The hypoxic microenvironment is a key component of the gastric tumour niche. Carcinoembryonic antigen‐related cell adhesion molecule 6 (CEACAM6) is upregulated in gastric cancer and is considered a novel biomarker for the disease. However, no prior studies have elaborated on the status of CEACAM6 and its role in the hypoxic gastric cancer niche. Methods In this short study, we evaluated the effect of hypoxia in modulating CEACAM6 level in gastric cancer cells (GCCs) through western blotting and determined the effect of CEACAM6 upregulation on gastric cancer progression through clonogenicity, cell proliferation and migration assays. The wound‐healing ability of GCCs was downregulated by siRNA‐mediated CEACAM6 silencing. Human gastric cancer biopsy samples were examined by immunofluorescence microscopy to assess the level of a hypoxia marker HIF1α and CEACAM6. The effect of empty vector or CEACAM6‐ expression on peripheral blood‐derived mononuclear cell (PBMC)‐derived macrophage polarization under normoxia or hypoxia was studied by incubating macrophages in conditioned medium collected from GCC cultures. Macrophage polarization status was observed using flow cytometry and fluorescence microscopy. Reactive oxygen species (ROS) generation by macrophages was evaluated using fluorescence microscopy. Results We identified that hypoxia promoted CEACAM6 in GCCs, and these cells acquired increased proliferative potential and migration ability. Moreover, the cell culture supernatant from hypoxia‐exposed CEACAM6‐overexpressing cells promoted an M2‐like macrophage population and discouraged the M1 phenotype. Conclusion This study established that hypoxia increased CEACAM6 which promoted gastric cancer progression by influencing GCC proliferation and motility as well as macrophage polarization.
科研通智能强力驱动
Strongly Powered by AbleSci AI