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Identifying Differentiation Stage of Individual Primary Hematopoietic Cells from Mouse Bone Marrow by Multivariate Analysis of TOF-Secondary Ion Mass Spectrometry Data

机译:通过TOF-次离子质谱数据的多变量分析鉴定小鼠骨髓中单个原代造血细胞的分化阶段

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The ability to self-renew and differentiate into multiple types of blood and immune cells renders hematopoietic stem and progenitor cells (HSPCs) valuable for clinical treatment of hematopoietic pathologies and as models of stem cell differentiation for tissue engineering applications. To study directed hematopoietic stem cell (HSC) differentiation and identify the conditions that recreate the native bone marrow environment, combinatorial biomaterials that exhibit lateral variations in chemical and mechanical properties are employed. New experimental approaches are needed to facilitate correlating cell differentiation stage with location in the culture system. We demonstrate that multivariate analysis of time-of-flight secondary ion mass spectrometry (TOF-SIMS) data can be used to identify the differentiation state of individual hematopoietic cells (HCs) isolated from mouse bone marrow. Here, we identify primary HCs from three distinct stages of B cell lymphopoiesis at the single cell level: HSPCs, common lymphoid progenitors, and mature B cells. The differentiation state of individual HCs in a test set could be identified with a partial least-squares discriminant analysis (PLS-DA) model that was constructed with calibration spectra from HCs of known differentiation status. The lowest error of identification was obtained when the intrapopulation spectral variation between the cells in the calibration and test sets was minimized. This approach complements the traditional methods that are used to identify HC differentiation stage. Further, the ability to gather mass spectrometry data from single HSCs cultured on graded biomaterial substrates may provide significant new insight into how HSPCs respond to extrinsic cues as well as the molecular changes that occur during cell differentiation.
机译:自我更新并分化为多种类型的血液和免疫细胞的能力使造血干细胞和祖细胞(HSPC)对于临床治疗造血病理和作为组织工程应用的干细胞分化模型具有重要意义。为了研究定向造血干细胞(HSC)的分化并确定重建天然骨髓环境的条件,采用了在化学和机械性能方面表现出横向变化的组合生物材料。需要新的实验方法来促进细胞分化阶段与培养系统中的位置相关。我们证明飞行时间二次离子质谱(TOF-SIMS)数据的多变量分析可用于识别从小鼠骨髓分离的单个造血细胞(HCs)的分化状态。在这里,我们从单个细胞水平上的B细胞淋巴细胞生成的三个不同阶段中识别出主要的HC:HSPC,常见的淋巴祖细胞和成熟的B细胞。可以使用偏最小二乘判别分析模型(PLS-DA)识别测试集中各个HC的分化状态,该模型使用来自已知分化状态的HC的校准光谱构建。当校准和测试组中细胞之间的种群内光谱变化最小时,获得的鉴定误差最低。该方法是用于鉴定HC分化阶段的传统方法的补充。此外,从分级的生物材料基质上培养的单个HSC收集质谱数据的能力可能为HSPC如何响应外部信号以及细胞分化过程中发生的分子变化提供重要的新见解。

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