Neural Stem Cell Reactivation in Cultured Drosophila Brain Explants

被引:0
|
作者
Keliinui, Cami Naomi [1 ]
Doyle, Susan E. [1 ]
Siegrist, Sarah E. [1 ]
机构
[1] Univ Virginia, Biol Dept, Charlottesville, VA 22903 USA
来源
关键词
NEUROBLASTS; QUIESCENCE;
D O I
10.3791/63189
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Neural stem cells (NSCs) have the ability to proliferate, differentiate, undergo apoptosis, and even enter and exit quiescence. Many of these processes are controlled by the complex interplay between NSC intrinsic genetic programs with NSC extrinsic factors, local and systemic. In the genetic model organism, Drosophila melanogaster, NSCs, known as neuroblasts (NBs), switch from quiescence to proliferation during the embryonic to larval transition. During this time, larvae emerge from their eggshells and begin crawling, seeking out dietary nutrients. In response to animal feeding, the fat body, an endocrine organ with lipid storage capacity, produces a signal, which is released systemically into the circulating hemolymph. In response to the fat body-derived signal (FBDS), Drosophila insulin-like peptides (Dilps) are produced and released from brain neurosecretory neurons and glia, leading to downstream activation of PI3-kinase growth signaling in NBs and their glial and tracheal niche. Although this is the current model for how NBs switch from quiescence to proliferation, the nature of the FBDS extrinsic cue remains elusive. To better understand how NB extrinsic systemic cues regulate exit from quiescence, a method was developed to culture early larval brains in vitro before animal feeding. With this method, exogenous factors can be supplied to the culture media and NB exit from quiescence assayed. We found that exogenous insulin is sufficient to reactivate NBs from quiescence in whole-brain explants. Because this method is well-suited for large-scale screens, we aim to identify additional extrinsic cues that regulate NB quiescence versus proliferation decisions. Because the genes and pathways that regulate NSC proliferation decisions are evolutionarily conserved, results from this assay could provide insight into improving regenerative therapies in the clinic.
引用
收藏
页数:18
相关论文
共 50 条
  • [41] Live imaging of axonal transport in Drosophila pupal brain explants
    Caroline Medioni
    Anne Ephrussi
    Florence Besse
    Nature Protocols, 2015, 10 : 574 - 584
  • [42] Control of neural stem cell self-renewal and differentiation in Drosophila
    Kyung Hwa Kang
    Heinrich Reichert
    Cell and Tissue Research, 2015, 359 : 33 - 45
  • [43] Live imaging of axonal transport in Drosophila pupal brain explants
    Medioni, Caroline
    Ephrussi, Anne
    Besse, Florence
    NATURE PROTOCOLS, 2015, 10 (04) : 574 - 584
  • [44] Systematic Chromosomal Analysis of Cultured Mouse Neural Stem Cell Lines
    Diaferia, Giuseppe R.
    Conti, Luciano
    Redaelli, Serena
    Cattaneo, Monica
    Mutti, Cesare
    DeBlasio, Pasquale
    Dalpra, Leda
    Cattaneo, Elena
    Biunno, Ida
    STEM CELLS AND DEVELOPMENT, 2011, 20 (08) : 1411 - 1423
  • [45] RanGAP-mediated nucleocytoplasmic transport of Prospero regulates neural stem cell lifespan in Drosophila larval central brain
    Wu, Di
    Wu, Litao
    An, Huanping
    Bao, Hongcun
    Guo, Pengfei
    Zhang, Bei
    Zheng, Huimei
    Zhang, Fan
    Ge, Wanzhong
    Cai, Yu
    Xi, Yongmei
    Yang, Xiaohang
    AGING CELL, 2019, 18 (01)
  • [46] COMBINED IN VIVO BIOLUMINESCENCE AND MAGNETIC RESONANCE IMAGING OF ADHERENTLY CULTURED NEURAL STEM/PROGENITOR CELL IMPLANTS IN BRAIN OF MICE
    Reekmans, K.
    Tambuyzer, B.
    de Vocht, N.
    Bergwerf, I
    Daans, J.
    Baekelandt, V
    Jorens, P.
    Goossens, H.
    Ysebaert, D.
    Chatterjee, S.
    Van Marck, E.
    Van der Llinden, A.
    Berneman, Z.
    Ponsaerts, P.
    GLIA, 2009, 57 (13) : S76 - S76
  • [47] Epithelial cell characteristics of cultured human limbal explants
    Joseph, A
    Powell-Richards, AOR
    Shanmuganathan, VA
    Dua, HS
    BRITISH JOURNAL OF OPHTHALMOLOGY, 2004, 88 (03) : 393 - 398
  • [48] PHYSIOLOGICAL HETEROGENEITY IN STEM EXPLANTS OF PEARL-MILLET CULTURED INVITRO
    PRASAD, BL
    PRABHU, MSC
    SHANTHAMMA, C
    CURRENT SCIENCE, 1982, 51 (06): : 302 - 303
  • [49] Asymmetric cell division and proliferation control in Drosophila and mouse neural stem cells
    Knoblich, Juergen
    MECHANISMS OF DEVELOPMENT, 2009, 126 : S8 - S8
  • [50] Persistent regulation of cell cycle progression in neural stem cells by a conserved nuclear receptor, tail-less, in the Drosophila brain
    Maruyama, Yasushi
    Kurusu, Mitsuhiko
    Okabe, Masataka
    Furukubo-Tokunaga, Katsuo
    NEUROSCIENCE RESEARCH, 2006, 55 : S144 - S144