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Quantitative Multispectral Analysis Following Fluorescent Tissue Transplant for Visualization of Cell Origins Types and Interactions

机译:荧光组织移植后用于细胞起源类型和相互作用的可视化的多光谱定量分析

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摘要

With the desire to understand the contributions of multiple cellular elements to the development of a complex tissue; such as the numerous cell types that participate in regenerating tissue, tumor formation, or vasculogenesis, we devised a multi-colored cellular transplant model of tumor development in which cell populations originate from different fluorescently colored reporter gene mice and are transplanted, engrafted or injected in and around a developing tumor. These colored cells are then recruited and incorporated into the tumor stroma. In order to quantitatively assess bone marrow derived tumor stromal cells, we transplanted GFP expressing transgenic whole bone marrow into lethally irradiated RFP expressing mice as approved by IACUC. 0ovarian tumors that were orthotopically injected into the transplanted mice were excised 6-8 weeks post engraftment and analyzed for bone marrow marker of origin (GFP) as well as antibody markers to detect tumor associated stroma using multispectral imaging techniques. We then adapted a methodology we call MIMicc- Multispectral Interrogation of Multiplexed cellular compositions, using multispectral unmixing of fluoroprobes to quantitatively assess which labeled cell came from which starting populations (based on original reporter gene labels), and as our ability to unmix 4, 5, 6 or more spectra per slide increases, we've added additional immunohistochemistry associated with cell lineages or differentiation to increase precision. Utilizing software to detect co-localized multiplexed-fluorescent signals, tumor stromal populations can be traced, enumerated and characterized based on marker staining.1
机译:渴望了解多种细胞因子对复杂组织发展的贡献;例如参与再生组织,肿瘤形成或血管生成的众多细胞类型,我们设计了一种肿瘤发展的多色细胞移植模型,其中细胞群来自不同的荧光报告基因小鼠,并被移植,植入或注射以及正在发展的肿瘤周围。然后募集这些有色细胞并将其掺入肿瘤基质中。为了定量评估源自骨髓的肿瘤基质细胞,我们将表达GFP的转基因全骨髓移植到经IACUC批准的经致命照射的表达RFP的小鼠中。植入后6-8周将原位注入移植小鼠的0卵巢肿瘤切除,并使用多光谱成像技术分析骨髓起源标记(GFP)以及抗体标记以检测与肿瘤相关的基质。然后,我们采用一种称为MIMicc-多路复用细胞组成的多光谱询问的方法,使用氟探针的多光谱解混来定量评估哪个标记细胞来自哪个起始种群(基于原始报告基因标签),并作为我们解混4、5的能力。 ,每张玻片可增加6个或更多光谱,我们添加了与细胞谱系或分化相关的其他免疫组织化学以提高精度。利用软件检测共定位的多重荧光信号,可以基于标记染色来追踪,计数和表征肿瘤基质群。 1

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