Kato Takamitsu A
Department of Environmental & Radiological Health Sciences, Colorado State University, Fort Collins, CO, USA.
Methods Mol Biol. 2023;2519:99-104. doi: 10.1007/978-1-0716-2433-3_11.
Some types of chromosome aberrations are not easily identified by the traditional Giemsa staining. It usually needs some banding technique and skilled person's eye. Whole chromosome painting FISH probe can stain designated entire chromosomes or domains in metaphase chromosomes or interphase nuclei, respectively. It allows to visually identify translocations, deletions, or amplifications of specific chromosomes. Once chromosomes are stained, even non-skilled researchers can easily identify those chromosome aberrations. Whole chromosome painting FISH has higher sensitivity to detect chromosome aberrations. This chapter introduces the method for whole chromosome painting FISH staining.
某些类型的染色体畸变不易通过传统的吉姆萨染色来识别。通常需要一些显带技术和专业人员的眼力。全染色体涂染荧光原位杂交(FISH)探针可以分别在中期染色体或间期细胞核中对指定的整条染色体或染色体区域进行染色。它能够直观地识别特定染色体的易位、缺失或扩增。一旦染色体被染色,即使是不熟练的研究人员也能轻松识别这些染色体畸变。全染色体涂染FISH在检测染色体畸变方面具有更高的灵敏度。本章介绍全染色体涂染FISH染色的方法。