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首页> 外文期刊>The journal of histochemistry and cytochemistry >Novel Immunohistochemical Techniques Using Discrete Signal Amplification Systems for Human Cutaneous Peripheral Nerve Fiber Imaging
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Novel Immunohistochemical Techniques Using Discrete Signal Amplification Systems for Human Cutaneous Peripheral Nerve Fiber Imaging

机译:使用离散信号放大系统进行人类皮肤外周神经纤维成像的新型免疫组织化学技术

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Confocal imaging uses immunohistochemical binding of specific antibodies to visualize tissues, but technical obstacles limit more widespread use of this technique in the imaging of peripheral nerve tissue. These obstacles include same-species antibody cross-reactivity and weak fluorescent signals of individual and co-localized antigens. The aims of this study were to develop new immunohistochemical techniques for imaging of peripheral nerve fibers. Three-millimeter punch skin biopsies of healthy individuals were fixed, frozen, and cut into 50-μm sections. Tissues were stained with a variety of antibody combinations with two signal amplification systems, streptavidin-biotin-fluorochrome and tyramide-horseradish peroxidase-fluorochrome , used simultaneously to augment immunohistochemical signals. The combination of the TSA and sABC amplification systems provided the first successful co-localization of sympathetic adrenergic and sympathetic cholinergic nerve fibers in cutaneous human sweat glands and vasomotor and pilomotor systems. Primary antibodies from the same species were amplified individually without cross-reactivity or elevated background interference. The confocal fluorescent signal-to-noise ratio increased, and image clarity improved. These modifications to signal amplification systems have the potential for widespread use in the study of human neural tissues.
机译:共聚焦成像使用特异性抗体的免疫组织化学结合来可视化组织,但是技术障碍限制了这种技术在外周神经组织的成像中的更广泛使用。这些障碍包括相同物种抗体交叉反应性和个体和共聚抗原的弱荧光信号。本研究的目的是开发用于成像外周神经纤维的新免疫组织化学技术。将健康个体的三毫米拳打皮肤活组织检查固定,冷冻,切成50微米的部分。用各种抗体组织染色两种信号扩增系统,链霉抗生物素蛋白 - 生物素 - 荧光素和酪蛋白过氧化物酶 - 荧光磷酸酶 - 荧光染料,同时使用加强免疫组化信号。 TSA和SABC扩增系统的组合提供了一种在皮肤人汗腺和激素和血管运动系统中的交感神经肾上腺素能和交感神经和交感神经胆碱能神经纤维的第一个成功的共定位。来自相同物种的原代抗体在没有交叉反应性或升高的背景干扰的情况下单独扩增。共聚焦荧光信噪比增加,图像清晰度提高。对信号放大系统的这些修改具有在人类神经组织的研究中广泛使用的可能性。

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