Centre of Marine Sciences (CCMAR), University of Algarve, Campus de Gambelas, Faro, 8005-139, Portugal.
Cytotechnology. 2007 Sep;55(1):9-13. doi: 10.1007/s10616-007-9098-8. Epub 2007 Oct 11.
Fishes have been recently recognized as a suitable model organism to study vertebrate physiological processes, in particular skeletal development and tissue mineralization. However, there is a lack of well characterized in vitro cell systems derived from fish calcified tissues. We describe here a protocol that was successfully used to develop the first calcified tissue-derived cell cultures of fish origin. Vertebra and branchial arches collected from young gilthead seabreams were fragmented then submitted to the combined action of collagenase and trypsin to efficiently release cells embedded in the collagenous extracellular matrix. Primary cultures were maintained under standard conditions and spontaneously transformed to form continuous cell lines suitable for studying mechanisms of tissue mineralization in seabream. This simple and inexpensive protocol is also applicable to other calcified tissues and species by adjusting parameters to each particular case.
鱼类最近被认为是研究脊椎动物生理过程,特别是骨骼发育和组织矿化的合适模式生物。然而,缺乏经过充分特征描述的源自鱼类钙化组织的体外细胞系统。我们在这里描述了一种成功用于开发源自鱼类的第一种钙化组织衍生细胞培养物的方案。从小的金头鲷中收集的脊椎骨和鳃弓被分割,然后用胶原酶和胰蛋白酶的联合作用,有效地释放嵌入在胶原细胞外基质中的细胞。原代培养在标准条件下维持,并自发转化为连续细胞系,适合研究金头鲷组织矿化的机制。这种简单且廉价的方案也适用于其他钙化组织和物种,只需根据具体情况调整参数即可。