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引用本文的文献

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Slicing the Embryonic Chicken Auditory Brainstem to Evaluate Tonotopic Gradients and Microcircuits.胚胎鸡听觉脑干切片评估音位梯度和微电路。
J Vis Exp. 2022 Jul 12(185). doi: 10.3791/63476.
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Evaluation of Auditory Brainstem Response in Chicken Hatchlings.鸡胚听觉脑干反应评估。
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Applications of Gene Editing in Chickens: A New Era Is on the Horizon.基因编辑在鸡中的应用:新时代即将来临。
Front Genet. 2018 Oct 9;9:456. doi: 10.3389/fgene.2018.00456. eCollection 2018.

本文引用的文献

1
Avian adeno-associated virus vector efficiently transduces neurons in the embryonic and post-embryonic chicken brain.禽腺相关病毒载体有效地转导胚胎期和胚胎后期鸡脑中的神经元。
PLoS One. 2012;7(11):e48730. doi: 10.1371/journal.pone.0048730. Epub 2012 Nov 7.
2
TrkB downregulation is required for dendrite retraction in developing neurons of chicken nucleus magnocellularis.TrkB 下调对于鸡脑桥大细胞核发育神经元树突回缩是必需的。
J Neurosci. 2012 Oct 3;32(40):14000-9. doi: 10.1523/JNEUROSCI.2274-12.2012.
3
Preparation and culture of chicken auditory brainstem slices.鸡听觉脑干切片的制备与培养。
J Vis Exp. 2011 Mar 21(49):2527. doi: 10.3791/2527.
4
Mechanisms of sound localization in mammals.哺乳动物的声音定位机制。
Physiol Rev. 2010 Jul;90(3):983-1012. doi: 10.1152/physrev.00026.2009.
5
Neural timing is linked to speech perception in noise.神经时间与噪声中的语音感知有关。
J Neurosci. 2010 Apr 7;30(14):4922-6. doi: 10.1523/JNEUROSCI.0107-10.2010.
6
Windowing chicken eggs for developmental studies.为进行发育研究而对鸡蛋进行开窗处理。
J Vis Exp. 2007(8):306. doi: 10.3791/306. Epub 2007 Oct 1.
7
Emergence of hearing in the chicken embryo.鸡胚听觉的出现。
J Neurophysiol. 2006 Jul;96(1):128-41. doi: 10.1152/jn.00599.2005. Epub 2006 Apr 5.
8
The analysis of interaural time differences in the chick brain stem.雏鸡脑干听觉时间差分析
Physiol Behav. 2005 Oct 15;86(3):297-305. doi: 10.1016/j.physbeh.2005.08.003. Epub 2005 Oct 3.
9
Plasmid-based short-hairpin RNA interference in the chicken embryo.鸡胚中基于质粒的短发夹RNA干扰
Genesis. 2004 Jun;39(2):73-8. doi: 10.1002/gene.20028.
10
EphA4 signaling promotes axon segregation in the developing auditory system.EphA4信号传导促进发育中的听觉系统中的轴突分离。
Dev Biol. 2004 May 1;269(1):26-35. doi: 10.1016/j.ydbio.2004.01.002.

鸡听觉脑干中的卵内电穿孔

In Ovo Electroporation in the Chicken Auditory Brainstem.

作者信息

Lu Ting, Cohen Ariel Loren, Sanchez Jason Tait

机构信息

Roxelyn and Richard Pepper Department of Communication Sciences and Disorders, Northwestern University.

Roxelyn and Richard Pepper Department of Communication Sciences and Disorders, Northwestern University; Knowles Hearing Research Center, Northwestern University; Department of Neurobiology, Northwestern University;

出版信息

J Vis Exp. 2017 Jun 9(124):55628. doi: 10.3791/55628.

DOI:10.3791/55628
PMID:28654036
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5608351/
Abstract

Electroporation is a method that introduces genes of interest into biologically relevant organisms like the chicken embryo. It is long established that the chicken embryo is an effective research model for studying basic biological functions of auditory system development. More recently, the chicken embryo has become particularly valuable in studying gene expression, regulation and function associated with hearing. In ovo electroporation can be used to target auditory brainstem regions responsible for highly specialized auditory functions. These regions include the chicken nucleus magnocellularis (NM) and nucleus laminaris (NL). NM and NL neurons arise from distinct precursors of rhombomeres 5 and 6 (R5/R6). Here, we present in ovo electroporation of plasmid-encoded genes to study gene-related properties in these regions. We show a method for spatial and temporal control of gene expression that promote either gain or loss of functional phenotypes. By targeting auditory neural progenitor regions associated with R5/R6, we show plasmid transfection in NM and NL. Temporal regulation of gene expression can be achieved by adopting a tet-on vector system. This is a drug inducible procedure that expresses the genes of interest in the presence of doxycycline (Dox). The in ovo electroporation technique - together with either biochemical, pharmacological, and or in vivo functional assays - provides an innovative approach to study auditory neuron development and associated pathophysiological phenomena.

摘要

电穿孔是一种将感兴趣的基因导入鸡胚等生物相关生物体的方法。长期以来,鸡胚一直是研究听觉系统发育基本生物学功能的有效研究模型。最近,鸡胚在研究与听力相关的基因表达、调控和功能方面变得特别有价值。卵内电穿孔可用于靶向负责高度专业化听觉功能的听觉脑干区域。这些区域包括鸡的大细胞神经核(NM)和层状神经核(NL)。NM和NL神经元分别起源于菱脑节5和6(R5/R6)的不同前体。在此,我们展示了通过卵内电穿孔质粒编码基因来研究这些区域中与基因相关的特性。我们展示了一种用于基因表达时空控制的方法,该方法可促进功能表型的获得或丧失。通过靶向与R5/R6相关的听觉神经祖细胞区域,我们展示了在NM和NL中的质粒转染。基因表达的时间调控可以通过采用四环素诱导型载体系统来实现。这是一种药物诱导程序,在强力霉素(Dox)存在的情况下表达感兴趣的基因。卵内电穿孔技术——与生化、药理学和/或体内功能测定一起——为研究听觉神经元发育及相关病理生理现象提供了一种创新方法。