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使用基质辅助激光解吸电离质谱对无脊椎动物神经节进行空间分析。

Spatial profiling invertebrate ganglia using MALDI MS.

作者信息

Kruse Rebecca, Sweedler Jonathan V

机构信息

Department of Chemistry and the Beckman Institute, University of Illinois, Urbana, Illinois 61801, USA.

出版信息

J Am Soc Mass Spectrom. 2003 Jul;14(7):752-9. doi: 10.1016/S1044-0305(03)00288-5.

Abstract

The ability of MALDI TOF MS to spatially map peptides and proteins directly from a tissue is an exciting advance to imaging mass spectrometry. Recent advances in instrumentation for MS have resulted in instruments capable of achieving several micron spatial resolution while acquiring high-resolution mass spectra. Currently, the ability to obtain high quality mass spectrometric images depends on sample preparation protocols that often result in limited spatial resolution. A number of sample preparation and matrix deposition protocols are evaluated for spatial profiling of Aplysia californica exocrine gland and neuronal tissues. Such samples are different from mammalian tissues, but make good targets for method optimization because of the wealth of biochemical information available on neuropeptide processing and distribution. Electrospray matrix deposition and a variety of freezing methods have been found to be optimum for these invertebrate tissues, with the exact protocols being tissue dependent.

摘要

基质辅助激光解吸电离飞行时间质谱(MALDI TOF MS)直接从组织中对肽和蛋白质进行空间映射的能力是成像质谱技术的一项令人兴奋的进展。质谱仪的最新进展使得仪器能够在获取高分辨率质谱的同时实现几微米的空间分辨率。目前,获得高质量质谱图像的能力取决于样品制备方案,而这些方案往往会导致空间分辨率有限。我们评估了多种样品制备和基质沉积方案,用于加州海兔外分泌腺和神经组织的空间分析。这类样品与哺乳动物组织不同,但由于在神经肽加工和分布方面有丰富的生化信息,因此是方法优化的良好目标。已发现电喷雾基质沉积和多种冷冻方法对这些无脊椎动物组织最为适宜,具体方案因组织而异。

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