Genetic diversity drives extreme responses to traumatic brain injury and post-traumatic epilepsy

遗传多样性导致对创伤性脑损伤和创伤后癫痫的极端反应

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作者:Tyler Shannon, Christopher Cotter, Julie Fitzgerald, Samuel Houle, Noah Levine, Yuyan Shen, Noora Rajjoub, Shannon Dobres, Sidharth Iyer, James Xenakis, Rachel Lynch, Fernando Pardo-Manuel de Villena, Olga Kokiko-Cochran, Bin Gu

Abstract

Traumatic brain injury (TBI) is a complex and heterogeneous condition that can cause wide-spectral neurological sequelae such as behavioral deficits, sleep abnormalities, and post-traumatic epilepsy (PTE). However, understanding the interaction of TBI phenome is challenging because few animal models can recapitulate the heterogeneity of TBI outcomes. We leveraged the genetically diverse recombinant inbred Collaborative Cross (CC) mice panel and systematically characterized TBI-related outcomes in males from 12 strains of CC and the reference C57BL/6J mice. We identified unprecedented extreme responses in multiple clinically relevant traits across CC strains, including weight change, mortality, locomotor activity, cognition, and sleep. Notably, we identified CC031 mouse strain as the first rodent model of PTE that exhibit frequent and progressive post-traumatic seizures after moderate TBI induced by lateral fluid percussion. Multivariate analysis pinpointed novel biological interactions and three principal components across TBI-related modalities. Estimate of the proportion of TBI phenotypic variability attributable to strain revealed large range of heritability, including >70% heritability of open arm entry time of elevated plus maze. Our work provides novel resources and models that can facilitate genetic mapping and the understanding of the pathobiology of TBI and PTE.

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