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An Improved Method for Measuring Absolute Metabolite Concentrations in Small Biofluid or Tissue Samples

机译:一种测量小型生物流体或组织样品中绝对代谢物浓度的改进方法

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The measurement of absolute metabolite concentrations in small samples remains a significant analytical challenge. This is particularly the case when the sample volume is only a few microliters or less and cannot be determined accurately via direct measurement. We previously developed volume determination with two standards (VDTS) as a method to address this challenge for biofluids. As a proof-of-principle, we applied VDTS to NMR spectra of polar metabolites in the hemolymph (blood) of the tiny yet powerful genetic model Drosophila melanogaster. This showed that VDTS calculation of absolute metabolite concentrations in fed versus starved Drosophila larvae is more accurate than methods utilizing normalization to total spectral signal. Here, we introduce paired VDTS (pVDTS), an improved VDTS method for biofluids and solid tissues that implements the statistical power of paired control and experimental replicates. pVDTS utilizes new equations that also include a correction for dilution errors introduced by the variable surface wetness of solid samples. We then show that metabolite concentrations in Drosophila larvae are more precisely determined and logically consistent using pVDTS than using the original VDTS method. The refined pVDTS workflow described in this study is applicable to a wide range of different tissues and biofluids.
机译:小样品中绝对代谢物浓度的测量仍然是显着的分析挑战。当样品体积仅为几微升或更小时,这是特别的情况,并且不能通过直接测量精确地确定。我们以前开发了用两个标准(VDT)作为一种解决生物流体的这种挑战的方法。作为原则证据,我们将VDT施加到微小且强大的遗传模型果蝇的血淋巴(血液)中北极映像中的北极代谢物的NMR光谱。这表明,饲喂与饥饿性果蝇的绝对代谢物浓度的VDTS计算比利用总光谱信号的归一化的方法更准确。这里,我们引入成对的VDT(PVDT),一种改进的生物流体的VDTS方法和实现成对控制和实验复制的统计力量的固体组织。 PVDT利用新的方程,该方程还包括通过固体样品的可变表面湿度引入的稀释误差的校正。然后,我们表明使用PVDT比使用原始VDTS方法更精确地确定果蝇幼虫的代谢物浓度更精确地确定和逻辑上一致。本研究中描述的精制PVDTS工作流程适用于各种不同的组织和生物流体。

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