Novel polychrome staining distinguishing osteochondral tissue and bone cells in decalcified paraffin sections

骨脱钙 染色 化学 病理 解剖 污渍 软骨 生物医学工程 藏红花红
作者
Teppei Nakamura,Kanako Sumi,Erika Tsuji,Marina Hosotani,Takashi Namba,Osamu Ichii,Takao Irie,Ken-ichi Nagasaki,Yasuhiro Kon,Takashi Mishima,Tomoji Yoshiyasu
出处
期刊:Cell and Tissue Research [Springer Science+Business Media]
卷期号:385 (3): 727-737
标识
DOI:10.1007/s00441-021-03516-6
摘要

The bone is a dynamic and metabolically active organ in which growth and resorption of the osteochondral matrix is orchestrated by osteoblasts and osteoclasts. For decalcified paraffin-embedded specimens, decalcifying agents alter the staining intensity, and excess decalcification interferes with bone staining. Robust bone staining methods independent of the decalcification conditions and animal species are lacking. In this study, we have developed a novel polychrome staining method, named JFRL staining, which stains the components of osteochondral tissue in different colors. With this staining we could visualize the hyaline cartilage as blue by alcian blue, osteoid as red by picrosirius red, and mineralized bone as green by picro-light green SF or picro-naphthol green B and easily distinguished osteoblasts, osteocytes, and osteoclasts. In mineralized bone, this staining revealed the obvious lamellar structures and woven bone. Notably, this staining was independent of the decalcification conditions and experimental animal species examined. To verify the usefulness of JFRL staining, we observed cotton rat tail which has shorter length and shows a false autotomy. The caudal vertebrae were normally developed via endochondral ossification without a fracture plane. At 6 months of age, the number of chondrocytes declined and the hypertrophic zone was absent at the epiphyseal plate, which might reflect the shorter tail. In conclusion, JFRL staining is the first method to simultaneously distinguish osteochondral matrix and bone cells in one section regardless of decalcifying conditions. This robust staining will provide new information for a wide number of biomedical fields, including bone development, physiology, and pathology.
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