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The Aquaporins: Regulator for Brain Pathophysiology

机译:水通道蛋白:脑病理生理调节剂。

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Water transport is a fundamental process contributing to human physiology and pathophysiology. Water is primarily needed for all cell types but the water does not sit in the cells it moves through in very organized way. This process of movement is occurring through aquaporins. Aquaporins (AQPs) are expressed in tissues in which edema and fluid imbalances are of major concern. Three major water-channel proteins (AQP1, AQP4, AQP9) are expressed in brain. Potential roles of AQPs in brain are water homeostasis, edema, angiogenesis, cell migration and development. Beside their physiological expression patterns in the brain, AQPs are abnormally expressed in some pathological conditions e.g. cancer, neuroinflammatory diseases and neurodegenerative diseases, in which preservation of brain homeostasis is at risk. In mammalian brain, AQP4 water channels are localised in astroglial cells at the blood-brain-barrier interface; AQP1 channels are expressed in choroid plexus and serve in cerebral spinal fluid secretion. Some of glial cells and neurons also show the expression of AQPs though the function is still not known. These aquaporins being integral membrane proteins have an important role in various neurodegenerative diseases, thereby signifying their therapeutic importance. Furthermore the enhanced expression of AQP4 increases the water permeability of blood vessels which could be an important aspect for understanding the ill effects of hypoxia. Research in this field has significantly in last few years, and the review focuses on functional roles of AQPs in brain related to physiology and pathophysiology.
机译:水的运输是促进人类生理和病理生理的基本过程。所有类型的细胞都主要需要水,但是水不会以有组织的方式存在于它穿过的细胞中。这种运动过程是通过水通道蛋白发生的。水通道蛋白(AQP)在水肿和体液失衡成为主要问题的组织中表达。脑中表达了三种主要的水通道蛋白(AQP1,AQP4,AQP9)。 AQP在大脑中的潜在作用是水体内稳态,水肿,血管生成,细胞迁移和发育。除了它们在大脑中的生理表达方式外,AQP在某些病理状况下异常表达,例如癌症,神经炎性疾病和神经退行性疾病,其中脑稳态的保持处于危险之中。在哺乳动物的大脑中,AQP4水通道位于血脑屏障界面的星形胶质细胞中。 AQP1通道在脉络丛中表达,并在脑脊髓液分泌中起作用。一些胶质细胞和神经元也显示了AQP的表达,尽管其功能尚不清楚。这些作为整体膜蛋白的水通道蛋白在各种神经退行性疾病中具有重要作用,从而表明其治疗重要性。此外,AQP4的表达增强会增加血管的透水性,这可能是了解缺氧不良反应的重要方面。在过去的几年中,该领域的研究取得了显着进展,并且本综述着重于AQP在大脑中与生理学和病理生理学有关的功能。

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