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Histopathology reveals correlative and unique phenotypes in a high-throughput mouse phenotyping screen

机译:组织病理学揭示高通量小鼠表型筛查中的相关和独特的表型。

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The Mouse Genetics Project (MGP) at the Wellcome Trust Sanger Institute aims to generate and phenotype over 800 genetically modified mouse lines over the next 5 years to gain a better understanding of mammalian gene function and provide an invaluable resource to the scientific community for follow-up studies. Phenotyping includes the generation of a standardized biobank of paraffin-embedded tissues for each mouse line, but histopathology is not routinely performed. In collaboration with the Pathology Core of the Centre for Modeling Human Disease (CMHD) we report the utility of histopathology in a high-throughput primary phenotyping screen. Histopathology was assessed in an unbiased selection of 50 mouse lines with ( n =30) or without ( n =20) clinical phenotypes detected by the standard MGP primary phenotyping screen. Our findings revealed that histopathology added correlating morphological data in 19 of 30 lines (63.3%) in which the primary screen detected a phenotype. In addition, seven of the 50 lines (14%) presented significant histopathology findings that were not associated with or predicted by the standard primary screen. Three of these seven lines had no clinical phenotype detected by the standard primary screen. Incidental and strain-associated background lesions were present in all mutant lines with good concordance to wild-type controls. These findings demonstrate the complementary and unique contribution of histopathology to high-throughput primary phenotyping of mutant mice.
机译:Wellcome Trust Sanger研究所的小鼠遗传学项目(MGP)旨在在未来5年内产生和表型800多种转基因小鼠系,以更好地了解哺乳动物的基因功能,并为科学界提供宝贵的资源,以供后续研究-学习。表型分析包括为每个小鼠品系生成石蜡包埋组织的标准化生物库,但是常规不进行组织病理学检查。与人类疾病建模中心(CMHD)的病理学核心合作,我们报告了组织病理学在高通量主要表型筛查中的效用。通过标准MGP一级表型筛选检测到的50种具有(n = 30)或无(n = 20)临床表型的小鼠系的无偏选择来评估组织病理学。我们的研究结果表明,组织病理学在30个品系中的19个品系(63.3%)中添加了相关的形态学数据,在这些品系中,初筛发现了一个表型。此外,在50个品系中,有七个(14%)表现出明显的组织病理学发现,这些发现与标准初筛无关或无法预测。通过标准的初筛,这七个系中的三个没有检测到临床表型。偶然和与菌株相关的背景损伤均存在于所有突变株中,与野生型对照具有良好的一致性。这些发现证明了组织病理学对突变小鼠高通量原发表型的补充和独特贡献。

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