免疫系统
生物
遗传建筑学
全基因组关联研究
辐射敏感性
数量性状位点
人口
基因组
放射治疗
遗传学
免疫学
基因型
医学
单核苷酸多态性
基因
内科学
环境卫生
作者
Li He,Chenhan Zhong,Hang Chang,Jamie L. Inman,S Celniker,Myrsini Ioakeim‐Ioannidou,Kevin X. Liu,Daphne A. Haas‐Kogan,Shannon M. MacDonald,David W. Threadgill,Scott C. Kogan,Jianhua Mao,Antoine M. Snijders
标识
DOI:10.1016/j.xgen.2023.100422
摘要
Hematologic toxicity is a common side effect of multimodal cancer therapy. Nearly all animal studies investigating the causes of radiotherapy-induced hematologic toxicity use inbred strains with limited genetic diversity and do not reflect the diverse responses observed in humans. We used the population-based Collaborative Cross (CC) mouse resource to investigate the genetic architecture of the acute and persistent immune response after radiation exposure by measuring 22 immune parameters in 1,720 CC mice representing 35 strains. We determined relative acute and persistent radiation resistance scores at the individual strain level considering contributions from all immune parameters. Genome-wide association analysis identified quantitative trait loci associated with baseline and radiation responses. A cross-species radiation resistance score predicted recurrence-free survival in medulloblastoma patients. We present a community resource of immune parameters and genome-wide association analyses before and after radiation exposure for future investigations of the contributions of host genetics on radiosensitivity.
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