Mass Microscopy to Reveal Distinct Localization of Heme B (m/z 616) in Colon Cancer Liver Metastasis
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概要
- 論文の詳細を見る
Imaging mass spectrometry (imaging MS) of tissue sections has become one of the main subjects in surface analysis. However, it is not easy to identify the molecular species present in imaged signals. We successfully performed imaging MS and tandem mass spectrometry (MSn) on the tissue section using a matrix-assisted laser desorption/ionization quadrupole-ion-trap time-of-flight mass spectrometer. We called the method “mass microscopy,” which is a combination of high spatial resolution imaging MS and MSn. This paper describes mass microscopy of a human liver section with metastatic colon cancer. The imaging result of m/z 616 showed low ion intensity in a cancerous region. To identify the molecule that is responsible for the generation of m/z 616, we performed MS2 and MS3 on the liver section. Considering the m/z value and peak pattern in MS2 and MS3 data, it was found that m/z 616 was generated from heme B. Heme B consists of an iron atom and porphyrin, and is known as a prosthetic group in hemoglobin, which is a protein in erythrocytes. Our results indicate the difference between the blood rich organ liver and ischemic metastatic colon cancer.
- 日本質量分析学会の論文
- 2007-06-01
著者
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Setou Mitsutoshi
Okazaki Institute Of Integrative Bioscience National Institutes Of Natural Sciences
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Setou Mitsutoshi
Okazaki Institute For Integrative Bioscience National Institutes Of Natural Sciences
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Shimma Shuichi
Okazaki Institute of Integrative Bioscience, National Institutes of Natural Sciences
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Shimma Shuichi
Okazaki Institute For Integrative Bioscience National Institutes Of Natural Sciences
関連論文
- S3c1-4 Mass Microscope; Merry Marriage of the biology and the particle physics(S3-c1: "Imaging Science for Biophysics",Symposia,Abstract,Meeting Program of EABS & BSJ 2006)
- Mass Microscopy to Reveal Distinct Localization of Heme B (m/z 616) in Colon Cancer Liver Metastasis
- A Novel Approach to in situ Proteome Analysis Using Chemical Inkjet Printing Technology and MALDI-QIT-TOF Tandem Mass Spectrometer
- MALDI-based imaging mass spectrometry revealed abnormal distribution of phospholipids in colon cancer liver metastasis
- Thin Sectioning Improves the Peak Intensity and Signal-to-Noise Ratio in Direct Tissue Mass Spectrometry