Department of Onco-haematology, Gene & Cell Therapy, Bambino Gesù Children's Hospital-IRCCS, Rome, 00146, Italy.
Multifactorial & Complex Phenotypes Research Area, Bambino Gesù Children's Hospital-IRCCS, Rome, 00146, Italy.
Biotechniques. 2021 Jun;70(6):327-335. doi: 10.2144/btn-2021-0001. Epub 2021 May 10.
3D models are increasingly used to study mechanisms driving tumor progression and mimicking processes such as invasion and migration. However, there is a need to establish more protocols based on 3D culture systems that allow for downstream molecular biology investigations. Here we present a method for optimal RNA extraction from highly aggressive primary glioma cells invading into Matrigel. The method has been established by comparing previously reported protocols, available commercial kits and optimizing specific steps for matrix dissociation, RNA separation and purification. The protocol allows RNA extraction from cells embedded into Matrigel, with optimal yield, purity and integrity suitable for subsequent sequencing analysis of both high and low molecular weight RNA.
3D 模型越来越多地被用于研究驱动肿瘤进展的机制,并模拟侵袭和迁移等过程。然而,有必要建立更多基于 3D 培养系统的方案,以允许进行下游分子生物学研究。在这里,我们提出了一种从侵入 Matrigel 的高度侵袭性原发性神经胶质瘤细胞中提取最佳 RNA 的方法。该方法通过比较以前报道的方案、现有的商业试剂盒并优化特定步骤,如基质解离、RNA 分离和纯化,来建立。该方案允许从嵌入 Matrigel 的细胞中提取 RNA,具有最佳的产量、纯度和完整性,适用于随后对高分子量和低分子量 RNA 的测序分析。