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基于SIP-NanoSIMS衍生同位素比率计算单细胞同化率:一种综合方法

Calculation of Single Cell Assimilation Rates From SIP-NanoSIMS-Derived Isotope Ratios: A Comprehensive Approach.

作者信息

Stryhanyuk Hryhoriy, Calabrese Federica, Kümmel Steffen, Musat Florin, Richnow Hans H, Musat Niculina

机构信息

Department of Isotope Biogeochemistry, Helmholtz Centre for Environmental Research-UFZ, Leipzig, Germany.

出版信息

Front Microbiol. 2018 Oct 3;9:2342. doi: 10.3389/fmicb.2018.02342. eCollection 2018.

Abstract

The nanoSIMS-based chemical microscopy has been introduced in biology over a decade ago. The spatial distribution of elements and isotopes analyzed by nanoSIMS can be used to reconstruct images of biological samples with a resolution down to tens of nanometers, and can be also interpreted quantitatively. Currently, a unified approach for calculation of single cell assimilation rates from nanoSIMS-derived changes in isotope ratios is missing. Here we present a comprehensive concept of assimilation rate calculation with a rigorous mathematical model based on quantitative evaluation of nanoSIMS-derived isotope ratios. We provide a detailed description of data acquisition and treatment, including the selection and accumulation of nanoSIMS scans, defining regions of interest and extraction of isotope ratios. Next, we present alternative methods to determine the cellular volume and the density of the element under scrutiny. Finally, to compensate for alterations of original isotopic ratios, our model considers corrections for sample preparation methods (e.g., air dry, chemical fixation, permeabilization, hybridization), and when known, for the stable isotope fractionation associated with utilization of defined growth substrates. As proof of concept we implemented this protocol to quantify the assimilation of C-labeled glucose by single cells of . In addition, we provide a calculation template where all protocol-derived formulas are directly available to facilitate routine assimilation rate calculations by nanoSIMS users.

摘要

基于纳米二次离子质谱的化学显微镜技术在十多年前就已引入生物学领域。通过纳米二次离子质谱分析的元素和同位素的空间分布可用于重建分辨率低至几十纳米的生物样品图像,并且还能进行定量解释。目前,缺少一种从纳米二次离子质谱得出的同位素比率变化来计算单细胞同化率的统一方法。在此,我们基于对纳米二次离子质谱得出的同位素比率的定量评估,通过一个严谨的数学模型,提出了一种同化率计算的综合概念。我们详细描述了数据采集和处理过程,包括纳米二次离子质谱扫描的选择和累积、感兴趣区域的定义以及同位素比率的提取。接下来,我们介绍了确定细胞体积和所研究元素密度的替代方法。最后,为补偿原始同位素比率的变化,我们的模型考虑了对样品制备方法(如空气干燥、化学固定、通透化、杂交)的校正,以及在已知情况下,对与特定生长底物利用相关的稳定同位素分馏的校正。作为概念验证,我们实施了该方案来量化[具体物种]单细胞对碳标记葡萄糖的同化作用。此外,我们提供了一个计算模板,其中所有源自该方案的公式都可直接获取,以方便纳米二次离子质谱用户进行常规的同化率计算。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59b4/6178922/318973530771/fmicb-09-02342-g0001.jpg

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