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Activated Caspase Detection in Living Tissue Combined with Subsequent Retrograde Labeling Immunohistochemistry or In Situ Hybridization in Whole-mounted Lamprey Brains

机译:活组织中活化的半胱天冬酶检测结合随后的逆行标记免疫组织化学或原位杂交在整个安装的南Lamp脑中

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摘要

In the lamprey brain, there are 18 pairs of identified spinal-projecting neurons whose regenerative abilities have been characterized. The “bad-regenerating” neurons show a very delayed form of apoptosis after axotomy (). Theoretically, this should provide a long window of opportunity to intervene therapeutically, so it would be helpful if we could identify the early stages of this process in vivo. Until now, there has been no method to link mRNA or protein expression directly to early-stages neuronal apoptosis in vivo. Here we describe a double-labeling protocol in whole-mounted lamprey brain for simultaneous detection of early stage apoptosis, using Fluorochrome-Labeled Inhibitors of Caspases (FLICA), and either mRNA, using in situ hybridization, or protein expression, using immunohistochemistry. To improve brain preservation, the working temperature during the FLICA stage was lowered from 37°C to 4°C (). Using this method, neurofilament protein was demonstrated by immunohistochemistry in neurons previously reacted by FLICA. The method also revealed that mRNA for the receptor protein tyrosine phosphatase PTPσ is expressed selectively in FLICA-positive neurons. In addition, our study showed that a retrograde labeling technique can be used in the context of FLICA labeling. FLICA label colocalized with TUNEL staining, confirming that FLICA labeling is a reliable marker of apoptosis in lamprey brain. Our results suggested that we can combine caspase detection with other techniques in vivo to investigate the roles and mechanisms of activated caspases and other molecules in retrograde cell deaths and regenerative abilities of neurons.
机译:在七lamp鳗大脑中,已鉴定出18对已鉴定出其再生能力的脊柱投射神经元。轴切术后,“再生不良”的神经元显示出非常延迟的凋亡形式。从理论上讲,这应该提供一个长远的机会来进行治疗干预,因此,如果我们能够在体内鉴定出该过程的早期阶段,将会很有帮助。到目前为止,还没有方法可以将mRNA或蛋白质表达直接与体内早期神经元凋亡联系起来。在这里,我们描述了在整个安装的七lamp鳗大脑中的双重标记方案,用于同时检测早期凋亡的凋亡,使用荧光染料标记的Caspases抑制剂(FLICA)和mRNA(使用原位杂交)或蛋白表达(使用免疫组织化学)。为了提高大脑的保存能力,FLICA阶段的工作温度从37°C降低到4°C()。使用这种方法,通过免疫组织化学在先前与FLICA反应的神经元中证明了神经丝蛋白。该方法还揭示了受体蛋白酪氨酸磷酸酶PTPσ的mRNA在FLICA阳性神经元中选择性表达。此外,我们的研究表明,逆行标记技术可以在FLICA标记的背景下使用。 FLICA标签与TUNEL染色共定位,证实FLICA标签是七lamp鳗脑中凋亡的可靠标记。我们的结果表明,我们可以将胱天蛋白酶检测与其他体内技术相结合,以研究活化的胱天蛋白酶和其他分子在逆行细胞死亡和神经元再生能力中的作用和机制。

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