Department of Neurosurgery, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts 02115, United States.
Department of Radiology, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts 02115, United States.
Anal Chem. 2023 Aug 1;95(30):11243-11253. doi: 10.1021/acs.analchem.3c00803. Epub 2023 Jul 19.
Matrix-assisted laser desorption ionization mass spectrometry imaging (MALDI-MSI) is a powerful analytical technique that provides spatially preserved detection and quantification of analytes in tissue specimens. However, clinical translation still requires improved throughput, precision, and accuracy. To accomplish this, we created "Chemical QuantArray", a gelatin tissue microarray (TMA) mold filled with serial dilutions of isotopically labeled endogenous metabolite standards. The mold is then cryo-sectioned onto a tissue homogenate to produce calibration curves. To improve precision and accuracy, we automatically remove pixels outside of each TMA well and investigated several intensity normalizations, including the utilization of a second stable isotope internal standard (IS). Chemical QuantArray enables the quantification of several endogenous metabolites over a wide dynamic range and significantly improve over current approaches. The technique reduces the space needed on the MALDI slides for calibration standards by approximately 80%. Furthermore, removal of empty pixels and normalization to an internal standard or matrix peak provided precision (<20% RSD) and accuracy (<20% DEV). Finally, we demonstrate the applicability of Chemical QuantArray by quantifying multiple purine metabolites in 14 clinical tumor specimens using a single MALDI slide. Chemical QuantArray improves the analytical characteristics and practical feasibility of MALDI-MSI metabolite quantification in clinical and translational applications.
基质辅助激光解吸电离质谱成像(MALDI-MSI)是一种强大的分析技术,可提供组织标本中分析物的空间保留检测和定量。然而,临床转化仍需要提高通量、精度和准确性。为了实现这一目标,我们创建了“化学 QuantArray”,这是一种填充有同位素标记内源性代谢物标准品系列稀释液的明胶组织微阵列(TMA)模具。然后,将模具冷冻切片到组织匀浆上以产生校准曲线。为了提高精度和准确性,我们自动去除每个 TMA 孔外的像素,并研究了几种强度归一化方法,包括利用第二种稳定同位素内标(IS)。Chemical QuantArray 能够在较宽的动态范围内定量几种内源性代谢物,并显著优于当前方法。该技术将 MALDI 载玻片上校准标准品所需的空间减少了约 80%。此外,去除空像素并归一化为内标或基质峰提供了精度(<20%RSD)和准确性(<20%DEV)。最后,我们通过在单个 MALDI 载玻片上定量 14 个临床肿瘤标本中的多种嘌呤代谢物来证明 Chemical QuantArray 的适用性。Chemical QuantArray 提高了 MALDI-MSI 代谢物定量在临床和转化应用中的分析特性和实际可行性。