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绵羊、牛和猪骨骼肌单切片中三种纤维类型的同步组织化学测定

Simultaneous histochemical determination of three fiber types in single sections of ovine, bovine and porcine skeletal muscle.

作者信息

Solomon M B, Dunn M C

机构信息

Meat Sci. Res. Lab., U.S. Department of Agriculture, Beltsville, Maryland 20705.

出版信息

J Anim Sci. 1988 Jan;66(1):255-64. doi: 10.2527/jas1988.661255x.

Abstract

Classification of muscle fiber types involves tedious comparisons of serial muscle tissue sections. Procedures that would incorporate pertinent histochemical properties into one simplified assay for the successful differentiation and determination of fiber types were evaluated using muscle samples from three different species (ovine, bovine and porcine). For ovine and porcine muscle tissue, the best staining procedure involved initial preincubation of the tissue section at 4.35 (for ovine) and 4.30 (for porcine) followed by incubating for succinate dehydrogenase (SDH) activity, then staining for myofibrillar adenosine triphosphatase (ATPase) activity after an acid preincubation and, finally, counterstaining with hematoxylin. For bovine muscle tissue, the procedure involves first incubating for SDH activity, after which the section is incubated at pH 4.15 and then stained for myofibrillar ATPase activity after an acid preincubation, with a concluding counterstaining using hematoxylin. These procedures permit successful differentiation and identification of three fiber types (beta R, alpha R and alpha W) from a single section of muscle tissue with approximately a 65% saving in time and materials. The results of histochemically typing muscle fibers in a single tissue section stained with these techniques were similar to those obtained with the traditional methods comparing serial sections.

摘要

肌纤维类型的分类涉及对连续肌肉组织切片进行繁琐的比较。我们使用来自三种不同物种(绵羊、牛和猪)的肌肉样本,评估了将相关组织化学特性纳入一种简化检测方法以成功区分和确定纤维类型的程序。对于绵羊和猪的肌肉组织,最佳染色程序包括将组织切片先在4.35(绵羊)和4.30(猪)下预孵育,然后孵育以检测琥珀酸脱氢酶(SDH)活性,在酸预孵育后再染色检测肌原纤维三磷酸腺苷酶(ATPase)活性,最后用苏木精复染。对于牛的肌肉组织,该程序首先孵育以检测SDH活性,之后将切片在pH 4.15下孵育,然后在酸预孵育后染色检测肌原纤维ATPase活性,最后用苏木精复染。这些程序能够从单个肌肉组织切片成功区分和识别三种纤维类型(βR、αR和αW),可节省约65%的时间和材料。用这些技术对单个组织切片进行肌纤维组织化学分型的结果与传统方法比较连续切片所获得的结果相似。

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