Catalina Purificación, Cobo Fernando, Cortés José L, Nieto Ana I, Cabrera Carmen, Montes Rosa, Concha Angel, Menendez Pablo
Andalusian Stem Cell Bank (Bancelán), Instituto de Investigaciones Biomédicas, Parque Tecnológico de la Salud, Avda del Conocimiento s/n, 18014 Granada, Spain.
Cell Biol Int. 2007 Sep;31(9):861-9. doi: 10.1016/j.cellbi.2007.03.012. Epub 2007 Mar 20.
Regenerative medicine and cell therapy are emerging clinical disciplines in the field of stem cell biology. The most important sources for cell transplantation are human embryonic and adult stem cells. The future use of these human stem cell lines in humans requires a guarantee of exhaustive control with respect to quality control, safety and traceability. Genetic instability and chromosomal abnormalities represent a potential weakness in basic studies and future therapeutic applications based on these stem cell lines, and may explain, at least in part, their usual tumourigenic properties. So, the introduction of the cytogenetic programme in the determination of the chromosomal stability is a key point in the establishment of the stem cell lines. The aim of this review is to provide readers with an up-to-date overview of all the cytogenetic techniques, both conventional methods and molecular fluorescence methods, to be used in a stem cell bank or other stem cell research centres. Thus, it is crucial to optimize and validate their use in the determination of the chromosomal stability of these stem cell lines, and assess the advantages and limitations of these cutting-edge cytogenetic technologies.
再生医学和细胞疗法是干细胞生物学领域新兴的临床学科。细胞移植最重要的来源是人类胚胎干细胞和成体干细胞。这些人类干细胞系未来在人体中的应用需要在质量控制、安全性和可追溯性方面有详尽控制的保证。基因不稳定性和染色体异常是基于这些干细胞系的基础研究及未来治疗应用中的一个潜在弱点,并且可能至少部分地解释了它们通常的致瘤特性。因此,在确定染色体稳定性时引入细胞遗传学程序是建立干细胞系的关键点。本综述的目的是为读者提供关于所有细胞遗传学技术的最新概述,包括传统方法和分子荧光方法,这些技术将用于干细胞库或其他干细胞研究中心。因此,优化并验证它们在确定这些干细胞系染色体稳定性方面的应用,并评估这些前沿细胞遗传学技术的优缺点至关重要。