细胞外
DNA
生物
体内
DNA损伤
癌症
细胞生物学
生物标志物
细胞凋亡
间隙
癌细胞
癌症研究
临床意义
体外
基因组不稳定性
化学
突变
分子生物学
循环肿瘤DNA
免疫学
DNA修复
氧化磷酸化
循环肿瘤细胞
作者
Zihang Zeng,Zongbi Yi,J. Hu,Jiali Li,Yu Xu,Xiuli Guo,Qian Ji,Kaixiang Feng,Ying Zhang,Sirui Bai,Yushuang Tan,Yufei Yan,Linzhi Han,Jing Jiang,Tengfei Wang,Xiang Wang,Ziqing Zhan,Ruiying Huang,JinFang Zhang,Conghua Xie
标识
DOI:10.1002/advs.202511408
摘要
Mature red blood cells (RBCs), the most abundant anucleate cells in humans, have long been overlooked as DNA carriers. Recent evidence implicates RBC-derived DNA (rbcDNA) as a potential biomarker for cancer diagnostics, yet its origin and how RBCs acquire tumor DNA remain poorly understood. Here, we find that mature RBCs harbor short DNA fragments distinct from genomic DNA. Both in vivo and in vitro experiments confirm that RBCs can internalize extracellular DNA and reflect tumor burden. Oxford Nanopore sequencing of rbcDNA reveals that short rbcDNA fragments are homologous to extracellular cell-free DNA (cfDNA). We identify apoptotic bodies (apoBDs) as key mediators of extracellular DNA uptake by RBCs, triggering RBC deformation, Heinz body formation, oxidative stress, and vesiculation. Tumor apoBD-treated RBCs are rapidly cleared in vivo via a partly macrophage-dependent effect, causing local immunosuppression in the spleen. Clinically, rbcDNA shows no advantage in detecting driver mutations compared with cfDNA, but its abundance significantly correlates with tumor burden and treatment response. Overall, our findings offer novel insights into RBC biology and support rbcDNA's clinical application in liquid biopsy.
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