Know How to Regrow-Axon Regeneration in the Zebrafish Spinal Cord

被引:16
|
作者
Tsata, Vasiliki [1 ]
Wehner, Daniel [2 ,3 ]
机构
[1] Acad Athens, Biomed Res Fdn, Expt Surg Clin & Translat Res Ctr, Athens 11527, Greece
[2] Max Planck Inst Sci Light, D-91058 Erlangen, Germany
[3] Max Planck Zentrum Phys & Med, D-91058 Erlangen, Germany
关键词
zebrafish; spinal cord injury; axon regeneration; functional recovery; OLIGODENDROCYTE PRECURSOR CELLS; CENTRAL-NERVOUS-SYSTEM; PROMOTES REGENERATION; REACTIVE ASTROCYTES; FUNCTIONAL RECOVERY; GENE-EXPRESSION; GLIAL-CELLS; INJURY; TRANSECTION; REPAIR;
D O I
10.3390/cells10061404
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The capacity for long-distance axon regeneration and functional recovery after spinal cord injury is poor in mammals but remarkable in some vertebrates, including fish and salamanders. The cellular and molecular basis of this interspecies difference is beginning to emerge. This includes the identification of target cells that react to the injury and the cues directing their pro-regenerative responses. Among existing models of successful spinal cord regeneration, the zebrafish is arguably the most understood at a mechanistic level to date. Here, we review the spinal cord injury paradigms used in zebrafish, and summarize the breadth of neuron-intrinsic and -extrinsic factors that have been identified to play pivotal roles in the ability of zebrafish to regenerate central nervous system axons and recover function.
引用
收藏
页数:17
相关论文
共 50 条
  • [31] Neutrophil immune profile guides spinal cord regeneration in zebrafish
    de Sena-Tomas, Carmen
    Lameira, Leonor Rebola
    da Costa, Mariana Rebocho
    Taborda, Patricia Naique
    Laborde, Alexandre
    Orger, Michael
    de Oliveira, Sofia
    Saude, Leonor
    BRAIN BEHAVIOR AND IMMUNITY, 2024, 120 : 514 - 531
  • [32] Integrin-Driven Axon Regeneration in the Spinal Cord Activates a Distinctive CNS Regeneration Program
    Cheah, Menghon
    Cheng, Yuyan
    Petrova, Veselina
    Cimpean, Anda
    Jendelova, Pavla
    Swarup, Vivek
    Woolf, Clifford J.
    Geschwind, Daniel H.
    Fawcett, James W.
    JOURNAL OF NEUROSCIENCE, 2023, 43 (26): : 4775 - 4794
  • [33] Role of Axon Guidance Molecules in Ascending and Descending Paths in Spinal Cord Regeneration
    Vartak, Alisha
    Goyal, Divya
    Kumar, Hemant
    NEUROSCIENCE, 2023, 533 : 36 - 52
  • [34] Extrinsic and Intrinsic Regulation of Axon Regeneration by MicroRNAs after Spinal Cord Injury
    Li, Ping
    Teng, Zhao-Qian
    Liu, Chang-Mei
    NEURAL PLASTICITY, 2016, 2016
  • [35] Axon regeneration and exercise-dependent plasticity after spinal cord injury
    Houle, John D.
    Cote, Marie-Pascale
    NEURONS, CIRCUITRY, AND PLASTICITY IN THE SPINAL CORD AND BRAINSTEM, 2013, 1279 : 154 - 163
  • [36] Progenitor-derived glia are required for spinal cord regeneration in zebrafish
    Zhou, Lili
    McAdow, Anthony R.
    Yamada, Hunter
    Burris, Brooke
    Shaw, Dana Klatt
    Oonk, Kelsey
    Poss, Kenneth D.
    Mokalled, Mayssa H.
    DEVELOPMENT, 2023, 150 (10):
  • [37] Forced Remyelination Promotes Axon Regeneration in a Rat Model of Spinal Cord Injury
    Zawadzka, Malgorzata
    Yeghiazaryan, Marine
    Niedziolka, Sylwia
    Miazga, Krzysztof
    Kwasniewska, Anna
    Bekisz, Marek
    Slawinska, Urszula
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2023, 24 (01)
  • [38] L1.1 is involved in spinal cord regeneration in adult zebrafish
    Becker, CG
    Lieberoth, BC
    Morellini, F
    Feldner, J
    Becker, T
    Schachner, M
    JOURNAL OF NEUROSCIENCE, 2004, 24 (36): : 7837 - 7842
  • [39] A therapeutic vaccine approach to stimulate axon regeneration in the adult mammalian spinal cord
    Huang, DW
    McKerracher, L
    Braun, PE
    David, S
    NEURON, 1999, 24 (03) : 639 - 647
  • [40] Oligodendroglial regeneration and functional recovery upon spinal cord lesion in zebrafish
    Tsata, V.
    Reimer, M. M.
    GLIA, 2017, 65 : E518 - E518