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Molecular mechanism of ischemic brain injuries and perspectives of drug therapies for neuroprotection

机译:神经保护缺血性脑损伤的分子机制及药物治疗的视角

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Ischemic brain injury is a critical condition in the management of patients during anesthesia and intensive care. It is not rare that pathological conditions such as cerebral ischemia, head trauma and low oxygen result in marked impairment of cerebral function, even if the patient's life is saved. We sometimes encounter sudden changes in a patient's condition not only during anesthesia, but also in intensive care unit with transient low-oxygen and ischemic conditions accompanying serious shock. We have been studying the mechanisms to counteract pathological conditions leading to neuronal cell death that have been exposed to such emergency conditions, and to discover therapeutic methods to minimize the brain damage after insult. With advances in the understanding of the mechanism of neuronal cell death, technology in intensive care for salvaging neuronal cell that are at the brink of death and for recovery of brain function has progressed. However, a breakthrough has not been achieved in the developmentof effective therapy. Protection of the brain from terminal impairment and preservation of function will be an important issue. To achieve this goal, it is critical to clarify the susceptible mechanisms causing ischemic brain damage. This report discusses the importance of the calcineurin/immunophilin signal transduction mechanism as a new mechanism that is involved in the induction of ischemic brain damage and refers the status-quo of cerebral protection by drug therapy.
机译:缺血性脑损伤是麻醉和密集护理期间患者管理的危急情况。即使患者的生命保存,脑缺血,头部创伤和低氧等病理条件也不罕见的是脑缺血,头部创伤和低氧损害。我们有时不仅在麻醉期间遇到患者病症的突然变化,也伴随着伴随着严重休克的瞬态低氧和缺血条件的重症监护室。我们一直在研究抵消已暴露于这种急诊病症的神经元细胞死亡的病理条件,并发现治疗方法以最小化侮辱后的脑损伤。随着了解神经元细胞死亡机制的进步,进展了在死亡边缘和脑功能恢复的神经元细胞中强化护理的技术。然而,在有效治疗的发展中尚未实现突破。保护大脑免受终端损伤和职能的保存将是一个重要问题。为了实现这一目标,阐明易感脑损伤的敏感机制至关重要。本报告讨论了钙素/免疫素信号转导机制作为涉及缺血性脑损伤诱导的新机制,并指药物治疗的地位脑保护的状态。

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