98%
921
2 minutes
20
Neurogenesis and angiogenesis share regulatory factors that contribute to the formation of vascular networks and neuronal circuits in the brain. While crosstalk mechanisms between neural stem cells (NSCs) and the vasculature have been extensively investigated, recent studies have provided evidence that blood vessels also play an essential role in neuronal migration in the brain during development and regeneration. The mechanisms of the neuronal migration along blood vessels, referred to as "vascular-guided migration," are now being elucidated. The vascular endothelial cells secrete soluble factors that attract and promote neuronal migration in collaboration with astrocytes that enwrap the blood vessels. In addition, especially in the adult brain, the blood vessels serve as a migration scaffold for adult-born immature neurons generated in the ventricular-subventricular zone (V-SVZ), a germinal zone surrounding the lateral ventricles. The V-SVZ-derived immature neurons use the vascular scaffold to assist their migration toward an injured area after ischemic stroke, and contribute to neuronal regeneration. Here we review the current knowledge about the role of vasculature in neuronal migration and the molecular mechanisms controlling this process. While most of this research has been done in rodents, a comprehensive understanding of vasculature-guided neuronal migration could contribute to new therapeutic approaches for increasing new neurons in the brain after injury.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.1016/j.neuint.2019.03.001 | DOI Listing |
Adv Mater
September 2025
State Key Laboratory of Crystal Materials, Shandong University, Jinan, 250100, P. R. China.
Regulating the differentiation of implanted stem cells into neurons is crucial for stem cell therapy of traumatic brain injury (TBI). However, due to the migratory nature of implanted stem cells, precise and targeted regulation of their fate remains challenging. Here, neural stem cells (NSCs) are bio-orthogonally engineered with hyaluronic acid methacryloyl (HAMA) microsatellites capable of sustained release of differentiation modulators for targeted regulation of their neuronal differentiation and advanced TBI repair.
View Article and Find Full Text PDFCurr Alzheimer Res
September 2025
School of Biosciences, Faculty of Health and Medical Sciences, Taylor's University, 47500 Subang Jaya, Selangor, Malaysia.
Introduction: Alzheimer's disease is expressed as chronic neuroinflammation in the brain, which results in neuronal dysfunction, aberrant protein folding, and declining cognitive abilities. miR-146a-5p is a potent anti-inflammatory agent that can be used to treat several inflammatory diseases, as well as promote wound healing. Our research aimed to utilize network pharmacology to elucidate the therapeutic potential of miR-146a-5p in treating Alzheimer's disease using a biocomputational approach.
View Article and Find Full Text PDFNeurosci Biobehav Rev
September 2025
Instituto de Neurobiología, Universidad Nacional Autónoma de México.
Epigenetic mechanisms are essential in neurogenesis during development and adulthood. DNA methylation, histone post-translational modifications, and non-coding RNAs regulate gene expression to maintain the neural stem cell pool and direct the fate of newborn neurons by modulating cell proliferation, migration, differentiation, maturation, and survival. Adult neurogenesis exhibits bidirectional interactions with non-social and socio-sexual factors such as sexual behavior, mate recognition, pair bonding, parental behavior, and offspring recognition.
View Article and Find Full Text PDFNeuroimage
September 2025
Developing Brain Institute, Children's National Hospital, Washington, D.C. USA; Department of Radiology, The George Washington University School of Medicine and Health Sciences, Washington, D.C. USA; Department of Pediatrics, The George Washington University School of Medicine and Health Sciences, W
The purpose of this study was to compare brain metabolite concentrations between healthy and CHD neonates before and after cardiac surgery. Healthy term newborns and neonates with CHD were recruited prospectively. T-weighted brain images and MRS data were acquired in the cerebellum, right frontal lobe and basal ganglia.
View Article and Find Full Text PDFBrain Dev
September 2025
Department of Pediatrics, Kochi Medical School, Kochi University, Kohasu, Okoh-cho, Nankoku, Kochi 783-8505, Japan.
Fukuyama congenital muscular dystrophy (FCMD, a severe form of muscular dystrophy characterized by brain structural anomalies and ocular complications due to neuronal migration disorders, is notably limited mainly to Japan. Ninety percent of patients are unable to walk throughout their lives and die before the age of 20 due to respiratory failure and cardiomyopathy. At present, there is no cure.
View Article and Find Full Text PDF