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Improved gold chloride staining method for anatomical analysis of sensory nerve endings in the shoulder capsule and labrum as examples of loose and dense fibrous tissues

机译:改进的氯化金染色方法用于解剖分析肩capsule囊和唇的感觉神经末梢例如松散和密集的纤维组织

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摘要

Consistency in gold chloride staining is essential for anatomical analysis of sensory nerve endings. The gold chloride stain for this purpose has been modified by many investigators, but often yields inconsistent staining, which makes it difficult to differentiate structures and to determine nerve ending distribution in large tissue samples. We introduce additional steps and major changes to the modified Gairns’ protocol. We controlled the temperature and mixing rate during tissue staining to achieve consistent staining and complete solution penetration. We subjected samples to sucrose dehydration to improve cutting efficiency. We then exposed samples to a solution containing lemon juice, formic acid and paraformaldehyde to produce optimal tissue transparency with minimal tissue deformity. We extended the time for gold chloride impregnation 1.5 fold. Gold chloride was reduced in the labrum using 25% formic acid in water for 18 h and in the capsule using 25% formic acid in citrate phosphate buffer for 2 h. Citrate binds gold nanoparticles, which minimizes aggregation in the tissue. We stored samples in fresh ultrapure water at 4° C to slow reduction and to maintain color contrast in the tissue. Tissue samples were embedded in Tissue Tek and sectioned at 80 and 100 μm instead of using glycerin and teasing the tissue apart as in Gairns’ modified gold chloride method. We attached sections directly to gelatin subbed slides after sectioning with a cryostat. The slides then were processed and coverslipped with Permount. Staining consistency was demonstrated throughout the tissue sections and neural structures were clearly identifiable.
机译:氯化金染色的一致性对于感觉神经末梢的解剖学分析至关重要。为此,许多研究人员对氯化金染色进行了修改,但常常产生不一致的染色,这使得难以区分结构并确定大型组织样本中神经末梢的分布。我们介绍了修改后的Gairns协议的其他步骤和主要更改。我们控制组织染色期间的温度和混合速率,以实现一致的染色和完全的溶液渗透。我们对样品进行了蔗糖脱水以提高切割效率。然后,我们将样品暴露于含有柠檬汁,甲酸和多聚甲醛的溶液中,以产生最佳的组织透明度,并使组织变形最小。我们将氯化金浸渍的时间延长了1.5倍。使用25%的甲酸水溶液在阴唇中将氯化金还原18小时,使用25%的柠檬酸磷酸盐缓冲液在胶囊中将氯化金还原2 h。柠檬酸盐结合金纳米颗粒,这使组织中的聚集最小化。我们将样品储存在4°C的新鲜超纯水中,以减慢还原速度并保持组织中的颜色对比。将组织样品包埋在Tissue Tek中,并切成80和100μm的切片,而不是像Gairns的改良氯化金法那样使用甘油并弄皱组织。用低温恒温器切片后,将切片直接连接到明胶底片上。然后处理载玻片,并用Permount盖玻片。整个组织切片均显示出染色一致性,并且神经结构清晰可辨。

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