首页> 美国卫生研究院文献>Frontiers in Neurology >Mild Traumatic Brain Injury in Adolescent Mice Alters Skull Bone Properties to Influence a Subsequent Brain Impact at Adulthood: A Pilot Study
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Mild Traumatic Brain Injury in Adolescent Mice Alters Skull Bone Properties to Influence a Subsequent Brain Impact at Adulthood: A Pilot Study

机译:一项初步研究表明青春期小鼠轻度颅脑外伤可改变颅骨特性从而影响随后的成年后脑部影响。

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摘要

Mild traumatic brain injuries (mTBI) are common during adolescence, and limited clinical evidence suggests that a younger age at first exposure to a mTBI may lead to worse long-term outcomes. In this study, we hypothesized that a mTBI during adolescence would predispose toward poorer neurobehavioral and neuropathological outcomes after a subsequent injury at adulthood. Mice received a mild weight drop injury (mTBI) at adolescence (postnatal day 35; P35) and/or at adulthood (P70). Mice were randomized to 6 groups: ‘sham’ (sham-surgery at P35 only); ‘P35’ (mTBI at P35 only); ‘P35 + sham’ (mTBI at P35 + sham at P70); ‘sham + P70’ (sham at P35 + mTBI at P70); ‘sham + sham’ (sham at both P35 and P70); or ‘P35 + P70’ (mTBI at both P35 and P70). Acute apnea and an extended righting reflex time confirmed a mTBI injury at P35 and/or P70. Cognitive, psychosocial, and sensorimotor function was assessed over 1-week post-injury. Injured groups performed similarly to sham controls across all tasks. Immunofluorescence staining at 1 week detected an increase in glial activation markers in Sham + P70 brains only. Strikingly, 63% of Sham + P70 mice exhibited a skull fracture at impact, compared to 13% of P35 + P70 mice. Micro computed tomography of parietal skull bones found that a mTBI at P35 resulted in increased bone volume and strength, which may account for the difference in fracture incidence. In summary, a single mTBI to the adolescent mouse brain did not exacerbate the cerebral effects of a subsequent mTBI in adulthood. However, the head impact at P35 induced significant changes in skull bone structure and integrity. These novel findings support future investigation into the consequences of mTBI on skull bone.
机译:轻度创伤性脑损伤(mTBI)在青春期很常见,并且有限的临床证据表明,初次接触mTBI的年龄较小可能会导致长期结局恶化。在这项研究中,我们假设青春期期间的mTBI会在成年后的继发性损伤后倾向于较差的神经行为和神经病理学结果。小鼠在青春期(出生后第35天; P35)和/或成年期(P70)受到轻度的体重减轻伤害(mTBI)。将小鼠随机分为6组:“假手术”(仅在P35进行假手术); “ P35”(仅限mPBI在P35); “ P35 + sham”(mTBI在P35 + sham在P70); “ sham + P70”(在P35 + mTBI在P70进行假); “ sham + sham”(在P35和P70上都为假);或“ P35 + P70”(在P35和P70处均为mTBI)。急性呼吸暂停和延长的翻身反射时间证实在P35和/或P70有mTBI损伤。在伤后1周内评估认知,社会心理和感觉运动功能。受伤的小组在所有任务中的表现均与假手术类似。 1周时的免疫荧光染色仅在Sham + P70脑中发现了神经胶质激活标记物的增加。令人惊讶的是,Sham + P70小鼠中有63%在撞击时表现出颅骨骨折,而P35 + P70小鼠中有13%。顶骨颅骨的显微计算机断层扫描发现,P35处的mTBI导致骨骼体积和强度增加,这可能解释了骨折发生率的差异。总之,青春期小鼠大脑的单个mTBI不会加剧成年期随后的mTBI的大脑作用。但是,P35处的头部撞击导致颅骨结构和完整性发生重大变化。这些新颖的发现支持对mTBI对颅骨后果的进一步研究。

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