Cariaga-Martínez Ariel, Gutierrez Kilian Jesús, Regidor Ignacio, Del Álamo Marta, Saiz-Ruiz Jerónimo, Alelú-Paz Raúl
Medical School, Universidad Alfonso X, 28691 Madrid, Spain.
Biological Research Laboratory Professor Giacomo Rizzolatti, Madrid Scientific Park, 28049 Madrid, Spain.
Methods Protoc. 2025 Jun 5;8(3):61. doi: 10.3390/mps8030061.
Epigenetic research has made notable progress in recent years, yet our ability to explore the human brain at a cellular level remains limited. One of the main obstacles has been the difficulty of isolating specific neuronal populations from postmortem tissue-particularly interneurons, which play a central role in many psychiatric disorders. In this study, we present a practical and reproducible protocol for isolating GAD-positive interneurons from human brain samples. We isolate permeabilized cell-like structures suitable for downstream epigenetic analysis. To ensure specificity, we validated the isolated cells by comparing them with interneurons derived from human iPSCs. This approach allows for high-quality DNA extraction suitable for downstream epigenetic analysis, including methylation-specific PCR. By targeting a well-defined neuronal subtype, our method provides a solid foundation for studying the molecular changes associated with disorders such as schizophrenia and autism. This protocol opens new doors for cell-specific investigations in brain tissue, a step forward in understanding how epigenetic mechanisms contribute to neuropsychiatric pathophysiology.
近年来,表观遗传学研究取得了显著进展,但我们在细胞水平上探索人类大脑的能力仍然有限。主要障碍之一是难以从死后组织中分离出特定的神经元群体,尤其是中间神经元,它们在许多精神疾病中起着核心作用。在本研究中,我们提出了一种从人脑样本中分离GAD阳性中间神经元的实用且可重复的方案。我们分离出适合下游表观遗传分析的通透化细胞样结构。为确保特异性,我们通过将分离出的细胞与源自人类诱导多能干细胞的中间神经元进行比较来验证这些细胞。这种方法能够提取适合下游表观遗传分析的高质量DNA,包括甲基化特异性PCR。通过靶向明确的神经元亚型,我们的方法为研究与精神分裂症和自闭症等疾病相关的分子变化提供了坚实的基础。该方案为脑组织中的细胞特异性研究打开了新的大门,朝着理解表观遗传机制如何导致神经精神病理生理学迈出了一步。