Literature DB >> 16375722

The function and integrity of the neurovascular unit rests upon the integration of the vascular and inflammatory cell systems.

Hyung Soo Han1, Kyoungho Suk.   

Abstract

The neurovascular unit is composed of a microvascular endothelium, neuron, and glial cell elements that are in physical proximity to the endothelium. The vascular system provides oxygen, glucose, and hormones for brain cells and guides the cells to appropriately respond to the local environment. Conversely, the brain cells, especially glial cells, can regulate the function of blood vessels in response to local requirements. The disruption of the neurovascular coordination was observed in a variety of inflammation-related diseases in brain, such as infectious diseases, stroke, vascular dementia, and multiple sclerosis. Inflammatory responses resulting from infections or injury of the brain activate the endothelium and glial cells to various degrees depending on the type, titer, or strength and duration of exposure to the agents or insults. The activation of endothelial and microglial cells may be modulated by the action of cytokines or other substances secreted from these cells. In an effort to understand the pathogenesis and find rational treatments against inflammatory disorders in brain, studies have been separately carried out using either endothelial cells or microglia. Increasing evidence, however, indicates that a crosstalk between these two cell types is important for the brain inflammation. Here, we review recent advances that provide insights into the coordinated interaction between the vascular and microglial systems, including the role of the specialized endothelium in regulating the immune response that occurs within CNS, the influence of microglial cells on the properties of endothelial cells, and the effects of endothelium on the state of microglial activation.

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Year:  2005        PMID: 16375722     DOI: 10.2174/156720205774962647

Source DB:  PubMed          Journal:  Curr Neurovasc Res        ISSN: 1567-2026            Impact factor:   1.990


  25 in total

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4.  The cellular response in neuroinflammation: The role of leukocytes, microglia and astrocytes in neuronal death and survival.

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Journal:  Clin Neurosci Res       Date:  2006-12

5.  Delirium after elective surgery among elderly patients taking statins.

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6.  Neuroprotective and neurorestorative effects of thymosin β4 treatment following experimental traumatic brain injury.

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Review 7.  Neuroprotective Mechanisms of Melatonin in Hemorrhagic Stroke.

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Review 8.  The Neuro-Immune-Regulators (NIREGs) Promote Tissue Resilience; a Vital Component of the Host's Defense Strategy against Neuroinflammation.

Authors:  Yosra Bedoui; Jim W Neal; Philippe Gasque
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9.  Transcriptional activation of endothelial cells by TGFβ coincides with acute microvascular plasticity following focal spinal cord ischaemia/reperfusion injury.

Authors:  Richard L Benton; Melissa A Maddie; Toros A Dincman; Theo Hagg; Scott R Whittemore
Journal:  ASN Neuro       Date:  2009-08-26       Impact factor: 4.146

10.  Griffonia simplicifolia isolectin B4 identifies a specific subpopulation of angiogenic blood vessels following contusive spinal cord injury in the adult mouse.

Authors:  Richard L Benton; Melissa A Maddie; Danielle R Minnillo; Theo Hagg; Scott R Whittemore
Journal:  J Comp Neurol       Date:  2008-03-01       Impact factor: 3.215

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