首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >Matrix vapor deposition/recrystallization and dedicated spray preparation for high-resolution scanning microprobe matrix-assisted laser desorption/ionization imaging mass spectrometry (SMALDI-MS) of tissue and single cells
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Matrix vapor deposition/recrystallization and dedicated spray preparation for high-resolution scanning microprobe matrix-assisted laser desorption/ionization imaging mass spectrometry (SMALDI-MS) of tissue and single cells

机译:用于组织和单个细胞的高分辨率扫描微探针基质辅助激光解吸/电离成像质谱(SMALDI-MS)的基质气相沉积/重结晶和专用喷雾制备

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Matrix preparation techniques such as air spraying or vapor deposition were investigated with respect to lateral migration, integration of analyte into matrix crystals and achievable lateral resolution for the purpose of high-resolution biological imaging. The accessible mass range was found to be beyond 5000 a with sufficient analytical sensitivity. Gas-assisted spraying methods (using oxygen-free gases) provide a good compromise between crystal integration of analyte and analyte migration within the sample. Controlling preparational parameters with this method, however, is difficult. Separation of the preparation procedure into two steps, instead, leads to an improved control of migration and incorporation. The first step is a dry vapor deposition of matrix onto the investigated sample. In a second step, incorporation of analyte into the matrix crystal is enhanced by a controlled recrystallization of matrix in a saturated water atmosphere. With this latter method an effective analytical resolution of 2 mu m in the x and y direction was achieved for scanning microprobe matrix-assisted laser desorption/ionization imaging mass spectrometry (SMALDI-MS). Cultured A-498 cells of human renal carcinoma were successfully investigated by high-resolution MALDI imaging using the new preparation techniques.
机译:针对高分辨率生物成像的目的,针对横向迁移,将分析物整合到基质晶体中以及可实现的横向分辨率方面,研究了诸如空气喷涂或气相沉积等基质制备技术。发现可达到的质量范围超过5000 a,并具有足够的分析灵敏度。气体辅助喷涂方法(使用无氧气体)在分析物的晶体整合与样品中的分析物迁移之间提供了很好的折衷方案。但是,用这种方法控制准备参数是困难的。相反,将制备过程分为两个步骤可改善对迁移和掺入的控制。第一步是将基质干气相沉积到研究的样品上。在第二步骤中,通过在饱和水气氛中对基质进行可控的重结晶来增强分析物向基质晶体中的掺入。使用后一种方法,可以在扫描微探针基质辅助的激光解吸/电离成像质谱(SMALDI-MS)上实现x和y方向有效的2微米解析分辨率。使用新的制备技术,通过高分辨率MALDI成像成功地研究了人类肾癌培养的A-498细胞。

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