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首页> 外文期刊>Brain research >Precise coexistence of regulatory peptides in the nerve fibers of the amphibian carotid labyrinth demonstrated by a combination of double immunofluorescence labelling and a multiple dye filter.
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Precise coexistence of regulatory peptides in the nerve fibers of the amphibian carotid labyrinth demonstrated by a combination of double immunofluorescence labelling and a multiple dye filter.

机译:双重免疫荧光标记和多重染料滤光片的结合证明了调节肽在两栖颈动脉迷宫的神经纤维中的精确共存。

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摘要

An application of double-immunolabelling in combination with a multiple dye filter system demonstrated new findings regarding the distribution pattern of peptidergic fibers in the carotid labyrinth to addition to our previous findings shown by the individual filter system. In high magnification images of about 10% of the yellowish fibers which represent the coexistence of two neuropeptides, there was a definite difference in localization between the fluorescence originating from rhodamine (substance P fibers) and from FITC (vasoactive intestinal polypeptide and neuropeptide Y fibers), but it was clear that they are intertwined within a single nerve bundle. This combination method was able to discriminate two different peptidergic fibers which run side by side. The coexistence suggested previously by the individual filter system may actually be due to the phenomenon described above. This means that it is necessary to apply the multiple dye filter system for reliable evidence of coexistence of different two substances in a single nerve fiber.
机译:双重免疫振铃技术与多种染料过滤器系统结合使用,除了单独过滤器系统先前的发现以外,还证明了有关肽能纤维在颈动脉迷宫中分布模式的新发现。在代表两种神经肽共存的约10%的微黄色纤维的高放大倍率图像中,源自若丹明(P物质纤维)和FITC(血管活性肠多肽和神经肽Y纤维)的荧光存在明显的局部差异。 ,但是很明显它们是缠绕在单个神经束中的。该组合方法能够区分并排延伸的两种不同的肽能纤维。各个过滤器系统先前建议的共存实际上可能是由于上述现象。这意味着有必要应用多染料过滤器系统,以可靠地证明单根神经纤维中两种不同物质共存。

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