Leung Lai Yee, VandeVord Pamela J, Dal Cengio Alessandra Leonardi, Bir Cynthia, Yang King H, King Albert I
Department of Biomedical Engineering, Wayne State University, Detroit, Michigan, USA.
Mol Cell Biomech. 2008 Sep;5(3):155-68.
Historically, blast overpressure is known to affect primarily gas-containing organs such as the lung and ear. More recent interests focus on its ability to cause damage to solid organs such as the brain, resulting in neurological disorders. Returning veterans exposed to blast but without external injuries are being diagnosed with mild traumatic brain injury (Warden 2006) and with cortical dysfunction (Cernak et al 1999). Decades of studies have been conducted to elucidate the effects of primary blast wave on the central nervous system. These studies were mostly concerned with systemic effects (Saljo et al 2000-2003; Kaur et al 1995-1997, 1999; Cernak et al 1996, 2001). The molecular mechanism of blast-induced neurotrauma is still poorly understood. This paper reviews studies related to primary blast injury to the nervous system, particularly at the cellular level. It starts with a general discussion of primary blast injury and blast wave physics, followed by a review of the literature related to 1) the blast wave/body interaction, 2) injuries to the peripheral nervous system, 3) injuries to the central nervous system, and 4) injury criteria. Finally, some of our preliminary data on cellular injury from in vitro and in vivo studies are presented. Specifically, we report on the effects of overpressure on astrocytes. In the discussion, possible mechanisms of blast-related brain injury are discussed, as well as the concerns and limitations of the published studies. A clearer understanding of the injury mechanisms at both the molecular and macroscopic (organ) level will lead to the development of new treatment, diagnosis and preventive measures.
从历史上看,已知冲击波超压主要影响含气器官,如肺和耳朵。最近的研究兴趣集中在其对实体器官(如大脑)造成损伤的能力上,这会导致神经紊乱。接触过冲击波但没有外部损伤的退伍军人被诊断患有轻度创伤性脑损伤(沃登,2006年)和皮质功能障碍(切尔纳克等人,1999年)。数十年来,人们进行了大量研究以阐明原发性冲击波对中枢神经系统的影响。这些研究大多关注全身影响(萨尔约等人,2000 - 2003年;考尔等人,1995 - 1997年、1999年;切尔纳克等人,1996年、2001年)。冲击波诱导的神经创伤的分子机制仍知之甚少。本文综述了与神经系统原发性冲击波损伤相关的研究,特别是在细胞水平上的研究。首先对原发性冲击波损伤和冲击波物理学进行了一般性讨论,随后回顾了与以下方面相关的文献:1)冲击波与身体的相互作用,2)外周神经系统损伤,3)中枢神经系统损伤,以及4)损伤标准。最后,展示了我们在体外和体内研究中关于细胞损伤的一些初步数据。具体而言,我们报告了超压对星形胶质细胞的影响。在讨论中,探讨了与冲击波相关的脑损伤的可能机制,以及已发表研究的关注点和局限性。对分子和宏观(器官)水平损伤机制的更清晰理解将有助于开发新的治疗、诊断和预防措施。