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早产脑的神经保护

Neuroprotection of the preterm brain.

作者信息

Fleiss Bobbi, Gressens Pierre

机构信息

NeuroDiderot, INSERM, Université Paris Diderot, Sorbonne Paris Cité, Paris, France; Division of Imaging Sciences and Biomedical Engineering, Centre for the Developing Brain, King's College London, London, United Kingdom.

NeuroDiderot, INSERM, Université Paris Diderot, Sorbonne Paris Cité, Paris, France; Division of Imaging Sciences and Biomedical Engineering, Centre for the Developing Brain, King's College London, London, United Kingdom.

出版信息

Handb Clin Neurol. 2019;162:315-328. doi: 10.1016/B978-0-444-64029-1.00015-1.

Abstract

Despite notable advances in the care and survival of preterm infants, a significant proportion of preterm neonates will have life-long cognitive, behavioral, and motor deficits, and robustly effective neuroprotective strategies are still missing. These therapies must target the pathophysiologic mechanisms observed in contemporaneous infants and rely on modern epidemiology, imaging, and experimental models and assessment techniques. Two drugs, magnesium sulfate and caffeine, are already in use in several units, and although their targets are apnea of prematurity and myometrial contractility (respectively), they do offer improved odds of positive outcomes. Nevertheless, these drugs have limited efficacy, and NICU-to-NICU administration varies greatly. As such, there is an obvious need for additional specific neurotherapeutic strategies to further enhance the outcome of this very fragile population of neonates. The chapter reviews these issues, highlights bottlenecks that need to be solved for meaningful progress in the field, and proposes future innovative avenues for intervention, including delayed interventions.

摘要

尽管早产儿的护理和存活率取得了显著进展,但仍有相当比例的早产新生儿会出现终身认知、行为和运动缺陷,且目前仍缺乏强有力的有效神经保护策略。这些疗法必须针对同期婴儿中观察到的病理生理机制,并依赖现代流行病学、影像学、实验模型及评估技术。硫酸镁和咖啡因这两种药物已在多个单位使用,尽管它们的作用靶点分别是早产儿呼吸暂停和子宫肌层收缩,但确实提高了获得良好预后的几率。然而,这些药物疗效有限,且新生儿重症监护病房(NICU)之间的用药差异很大。因此,显然需要额外的特异性神经治疗策略,以进一步改善这一极其脆弱的新生儿群体的预后。本章回顾了这些问题,强调了该领域取得实质性进展所需解决的瓶颈,并提出了未来创新的干预途径,包括延迟干预。

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