1. Academic Validation
  2. Reconstituting neurovascular unit with primary neural stem cells and brain microvascular endothelial cells in three-dimensional matrix

Reconstituting neurovascular unit with primary neural stem cells and brain microvascular endothelial cells in three-dimensional matrix

  • Brain Pathol. 2021 Sep;31(5):e12940. doi: 10.1111/bpa.12940.
Hongjin Wang 1 2 3 Huan Yang 1 2 3 Yuhong Shi 1 2 3 Yaping Xiao 1 2 3 Yue Yin 1 2 3 Baoxiang Jiang 1 2 3 Huijing Ren 1 2 3 Weihai Chen 4 Qiang Xue 5 Xiaoyu Xu 1 2 3
Affiliations

Affiliations

  • 1 College of Pharmaceutical Sciences & Chinese Medicine, Southwest University, Chongqing, China.
  • 2 Chongqing Key Laboratory of New Drug Screening from Traditional Chinese Medicine, Chongqing, China.
  • 3 Pharmacology of Chinese Materia Medica-the Key Discipline Constructed by the State Administration of Traditional Chinese Medicine, Chongqing, China.
  • 4 Faculty of Psychology, Southwest University, Chongqing, China.
  • 5 Chongqing Medical and Pharmaceutical College, Chongqing, China.
Abstract

Neurovascular dysfunction is a primary or secondary cause in the pathogenesis of several cerebrovascular and neurodegenerative disorders, including stroke. Therefore, the overall protection of the neurovascular unit (NVU) is a promising therapeutic strategy for various neurovascular diseases. However, the complexity of the NVU limits the study of the pathological mechanisms of neurovascular dysfunction. Reconstituting the in vitro NVU is important for the pathological study and drug screening of neurovascular diseases. In this study, we generated a spontaneously assembled three-dimensional NVU (3D NVU) by employing the primary neural stem cells and brain microvascular endothelial cells in a Matrigel extracellular matrix platform. This novel model exhibits the fundamental structures and features of the NVU, including neurons, astrocytes, oligodendrocytes, vascular-like structures, and blood-brain barrier-like characteristics. Additionally, under oxygen-glucose deprivation, the 3D NVU exhibits the neurovascular- or oxidative stress-related pathological characteristics of cerebral ischemia and the injuries can be mitigated, respectively, by supplementing with the vascular endothelial growth factor or edaravone, which demonstrated that the availability of 3D NVU in ischemic stroke modeling. Finally, the 3D NVU promoted the angiogenesis and neurogenesis in the brain of cerebral ischemia rats. We expect that the proposed in vitro 3D NVU model will be widely used to investigate the relationships between angiogenesis and neurogenesis and to study the pathology and pharmacology of neurovascular diseases.

Keywords

brain microvascular endothelial cells; neural stem cells; neurovascular unit; reconstituting; three-dimensional.

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