Quatromoni Jon G, Singhal Sunil, Bhojnagarwala Pratik, Hancock Wayne W, Albelda Steven M, Eruslanov Evgeniy
Departments of *Surgery and Medicine, University of Pennsylvania School of Medicine, and Department of Pathology and Laboratory Medicine, Children's Hospital of Philadelphia and University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania, USA.
Departments of *Surgery and Medicine, University of Pennsylvania School of Medicine, and Department of Pathology and Laboratory Medicine, Children's Hospital of Philadelphia and University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania, USA
J Leukoc Biol. 2015 Jan;97(1):201-9. doi: 10.1189/jlb.5TA0814-373. Epub 2014 Oct 30.
Careful preparation of human tissues is the cornerstone of obtaining accurate data in immunologic studies. Despite the essential importance of tissue processing in tumor immunology and clinical medicine, current methods of tissue disaggregation have not been rigorously tested for data fidelity. Thus, we critically evaluated the current techniques available in the literature that are used to prepare human lung tumors for immunologic studies. We discovered that these approaches are successful at digesting cellular attachments and ECMs; however, these methods frequently alter the immune cell composition and/or expression of surface molecules. We thus developed a novel approach to prepare human lung tumors for immunologic studies by combining gentle mechanical manipulation with an optimized cocktail of enzymes used at low doses. This enzymatic digestion cocktail optimized cell yield and cell viability, retrieved all major tumor-associated cell populations, and maintained the expression of cell-surface markers for lineage definition and in vivo effector functions. To our knowledge, we present the first rigorously tested disaggregation method designed for human lung tumors.
精心制备人体组织是在免疫学研究中获取准确数据的基石。尽管组织处理在肿瘤免疫学和临床医学中至关重要,但目前的组织解离方法尚未经过严格的数据保真度测试。因此,我们严格评估了文献中用于制备人体肺肿瘤以进行免疫学研究的现有技术。我们发现这些方法在消化细胞附着物和细胞外基质方面是成功的;然而,这些方法经常改变免疫细胞组成和/或表面分子的表达。因此,我们开发了一种新的方法,通过将温和的机械操作与低剂量使用的优化酶混合物相结合,来制备用于免疫学研究的人体肺肿瘤。这种酶消化混合物优化了细胞产量和细胞活力,回收了所有主要的肿瘤相关细胞群体,并维持了用于谱系定义和体内效应功能的细胞表面标志物的表达。据我们所知,我们提出了第一种经过严格测试的针对人体肺肿瘤的解离方法。