Developmental regulation of barrier- and non-barrier blood vessels in the CNS

被引:35
作者
Ben-Zvi, A. [1 ]
Liebner, S. [2 ,3 ,4 ]
机构
[1] Hebrew Univ Jerusalem, Inst Med Res IMRIC, Fac Med, Dept Dev Biol & Canc Res, Jerusalem, Israel
[2] Goethe Univ Frankfurt, Univ Hosp, Edinger Inst, Inst Neurol, Heinrich Hoffmann Str 7, D-60528 Frankfurt, Germany
[3] Excellence Cluster Cardiopulm Syst ECCPS, Partner Site Frankfurt, Frankfurt, Germany
[4] German Ctr Cardiovasc Res DZHK, Partner Site Rhine Main, Frankfurt, Germany
关键词
BBB heterogeneity; blood-brain barrier; circumventricular organs; differentiation; tight junctions; Wnt/beta-catenin signalling; BRAIN-BARRIER; ENDOTHELIAL-CELLS; VASCULAR DEVELOPMENT; TIGHT JUNCTIONS; CANDIDATE GENE; RETINOIC ACID; VEGF; ANGIOGENESIS; PERMEABILITY; PERICYTES;
D O I
10.1111/joim.13263
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The blood-brain barrier (BBB) is essential for creating and maintaining tissue homeostasis in the central nervous system (CNS), which is key for proper neuronal function. In most vertebrates, the BBB is localized to microvascular endothelial cells that acquire barrier properties during angiogenesis of the neuroectoderm. Complex and continuous tight junctions, and the lack of fenestrae combined with low pinocytotic activity render the BBB endothelium a tight barrier for water-soluble molecules that may only enter the CNS via specific transporters. The differentiation of these unique endothelial properties during embryonic development is initiated by endothelial-specific flavours of the Wnt/beta-catenin pathway in a precise spatiotemporal manner. In this review, we summarize the currently known cellular (neural precursor and endothelial cells) and molecular (VEGF and Wnt/beta-catenin) mechanisms mediating brain angiogenesis and barrier formation. Moreover, we introduce more recently discovered crosstalk with cellular and acellular elements within the developing CNS such as the extracellular matrix. We discuss recent insights into the downstream molecular mechanisms of Wnt/beta-catenin in particular, the recently identified target genes like Foxf2, Foxl2, Foxq1, Lef1, Ppard, Zfp551, Zic3, Sox17, Apcdd1 and Fgfbp1 that are involved in refining and maintaining barrier characteristics in the mature BBB endothelium. Additionally, we elute to recent insight into barrier heterogeneity and differential endothelial barrier properties within the CNS, focussing on the circumventricular organs as well as on the neurogenic niches in the subventricular zone and the hippocampus. Finally, open questions and future BBB research directions are highlighted in the context of taking benefit from understanding BBB development for strategies to modulate BBB function under pathological conditions.
引用
收藏
页码:31 / 46
页数:16
相关论文
共 118 条
  • [51] Wnt/β-catenin signaling regulates VE-cadherin-mediated anastomosis of brain capillaries by counteracting S1pr1 signaling
    Huebner, Kathleen
    Cabochette, Pauline
    Dieguez-Hurtado, Rodrigo
    Wiesner, Cora
    Wakayama, Yuki
    Grassme, Kathrin S.
    Hubert, Marvin
    Guenther, Stefan
    Belting, Heinz-Georg
    Affolter, Markus
    Adams, Ralf H.
    Vanhollebeke, Benoit
    Herzog, Wiebke
    [J]. NATURE COMMUNICATIONS, 2018, 9
  • [52] Gene expression profiles of brain endothelial cells during embryonic development at bulk and single-cell levels
    Hupe, Mike
    Li, Minerva Xueting
    Kneitz, Susanne
    Davydova, Daria
    Yokota, Chika
    Kele-Olovsson, Julianna
    Hot, Belma
    Stenman, Jan M.
    Gessler, Manfred
    [J]. SCIENCE SIGNALING, 2017, 10 (487)
  • [53] Neurovascular development uses VEGF-A signaling to regulate blood vessel ingression into the neural tube
    James, Jennifer M.
    Gewolb, Cara
    Bautch, Victoria L.
    [J]. DEVELOPMENT, 2009, 136 (05): : 833 - 841
  • [54] A Stem Cell Niche for Intermediate Progenitor Cells of the Embryonic Cortex
    Javaherian, Ashkan
    Kriegstein, Arnold
    [J]. CEREBRAL CORTEX, 2009, 19 : I70 - I77
  • [55] Ligand-Selective Wnt Receptor Complexes in CNS Blood Vessels: RECK and GPR124 Plugged In
    Junge, Harald J.
    [J]. NEURON, 2017, 95 (05) : 983 - 985
  • [56] TSPAN12 Regulates Retinal Vascular Development by Promoting Norrin- but Not Wnt-Induced FZD4/β-Catenin Signaling
    Junge, Harald J.
    Yang, Stacey
    Burton, Jeremy B.
    Paes, Kim
    Shu, Xiao
    French, Dorothy M.
    Costa, Mike
    Rice, Dennis S.
    Ye, Weilan
    [J]. CELL, 2009, 139 (02) : 299 - 311
  • [57] The origins of the circumventricular organs
    Kiecker, Clemens
    [J]. JOURNAL OF ANATOMY, 2018, 232 (04) : 540 - 553
  • [58] Semaphorin 3E-Plexin-D1 signaling regulates VEGF function in developmental angiogenesis via a feedback mechanism
    Kim, Jiha
    Oh, Won-Jong
    Gaiano, Nicholas
    Yoshida, Yutaka
    Gu, Chenghua
    [J]. GENES & DEVELOPMENT, 2011, 25 (13) : 1399 - 1411
  • [59] Development of blood-brain barrier tight junctions in the rat cortex
    Kniesel, U
    Risau, W
    Wolburg, H
    [J]. DEVELOPMENTAL BRAIN RESEARCH, 1996, 96 (1-2): : 229 - 240
  • [60] KORNOVSK.MJ, 1967, J CELL BIOL, V35, P213