Pinsino Annalisa, Alijagic Andi
Consiglio Nazionale delle Ricerche, Istituto di Biomedicina e Immunologia Molecolare 'A. Monroy', Via Ugo La Malfa 153, 90146 Palermo, Italy
Consiglio Nazionale delle Ricerche, Istituto di Biomedicina e Immunologia Molecolare 'A. Monroy', Via Ugo La Malfa 153, 90146 Palermo, Italy.
Biol Open. 2019 Mar 5;8(3):bio039289. doi: 10.1242/bio.039289.
The sea urchin is an emergent model system for studying basic and translational immunology. Here we report a new method for the harvesting and maintenance of primary immune cells isolated from adult , a common Mediterranean sea urchin species. This optimised method uses coelomocyte culture medium, containing a high-affinity Ca chelator, as the ideal harvesting and anti-clotting vehicle and short-term culture medium (≤48 h), and artificial seawater as the master medium that maintains cell survival and physiological homeostasis over 2 weeks. Gradually reducing the amount of anticoagulant solution in the medium and regularly replacing the medium led to improved culture viability. Access to a robust and straightforward system will expedite our understanding of deuterostome immunity as well as underscore the potential of sea urchin with respect to biomedicine and regulatory testing.This article has an associated First Person interview with the first author of the paper.
海胆是用于研究基础免疫学和转化免疫学的新兴模型系统。在此,我们报告一种从成年地中海海胆(一种常见的海胆物种)中分离原代免疫细胞并进行收获和维持培养的新方法。这种优化方法使用含有高亲和力钙螯合剂的体腔细胞培养基作为理想的收获和抗凝血载体以及短期培养基(≤48小时),并使用人工海水作为在两周内维持细胞存活和生理稳态的主要培养基。逐渐减少培养基中抗凝溶液的量并定期更换培养基可提高培养活力。获得一个强大且直接的系统将加快我们对后口动物免疫的理解,并突出海胆在生物医学和监管测试方面的潜力。本文配有对该论文第一作者的相关第一人称访谈。