首页> 外文会议>International ISA biomedical sciences instrumentation symposium;Annual rocky mountain bioengineering symposium >MEASUREMENTS OF LOW OXYGEN TENSION IN VITRO AND RESPONSE OF MACROPHAGES TO LEVELS APPLICABLE TO PERI-AND POSTOPERATIVE TREATMENT OF TRAUMATIC BRAIN INJURY
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MEASUREMENTS OF LOW OXYGEN TENSION IN VITRO AND RESPONSE OF MACROPHAGES TO LEVELS APPLICABLE TO PERI-AND POSTOPERATIVE TREATMENT OF TRAUMATIC BRAIN INJURY

机译:创伤性脑损伤的围手术期术后低氧强度的测量和巨噬细胞对水平的反应

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Established clinical guidelines for treatment of severe traumatic brain injury aim at maintaining intracranial and cerebral perfusion pressures. Recently, it has been shown that additional regulation of cerebral oxygen delivery helps to decrease patient mortality and leads to improved 6-month quality-of-life scores. However, eubaric oxygen-guided therapy is still controversial since it is well known that hyperoxia can cause unwanted secondary brain injury. Research studies are warranted to better understand the range of oxygen pressures that positively influence brain cell behavior. We perform such studies using a two-enzyme in vitro system that allows exposing tissue culture cells to various steady-state, or rapidly changing, oxygen pressures. Here, we present a mathematical model of the system and its validation by real-time monitoring of oxygen tensions. We additionally present preliminary evidence that human brain macrophages have a different oxygen tolerance compared to systemic macrophages and propose improvements to our in vitro system to make it applicable for data collection that aim at refining oxygen-guided therapy for patients with traumatic brain injury.
机译:建立的用于治疗严重外伤性脑损伤的临床指南旨在维持颅内和脑灌注压力。最近,已经显示出对脑氧输送的额外调节有助于降低患者死亡率并导致改善的6个月生活质量评分。然而,由于众所周知,高氧会导致不想要的继发性脑损伤,因此,以氧气为导向的氧疗法仍存在争议。有必要进行研究,以更好地了解对脑细胞行为产生积极影响的氧气压力范围。我们使用两种酶体外系统进行此类研究,该系统允许将组织培养细胞暴露于各种稳态或快速变化的氧气压力下。在这里,我们介绍了该系统的数学模型,并通过实时监测氧气的张力对其进行了验证。我们还提供了初步证据,证明人脑巨噬细胞与全身巨噬细胞具有不同的耐氧性,并提出了对我们体外系统的改进,以使其可用于数据收集,该数据收集旨在完善针对创伤性脑损伤患者的氧引导疗法。

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