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- W2346249063 abstract "Understanding the chemical complexity of plants requires novel technologies to track metabolites at the highest spatial resolution. MSI is emerging as an advanced and essential molecular histology approach to map the distribution of plant molecules. Recent technical and methodological advances in MSI technology have permitted its application in various fields of plant research. Attaining high-resolution spatial information is a recurrent challenge in biological research, particularly in the case of small-molecule distribution. Mass spectrometry imaging (MSI) is an innovative molecular histology technique that could provide such information. It allows in situ and label-free measurement of both the abundance and distribution of a variety of molecules at the tissue or single cell level. The application of MSI in plant research has received considerable attention; thus, in this review, we describe the current state of MSI in plants. In particular, we present an overview of MSI approaches, highlight the recent technical and methodological developments, and discuss a range of applications contributing to the field of plant science. Attaining high-resolution spatial information is a recurrent challenge in biological research, particularly in the case of small-molecule distribution. Mass spectrometry imaging (MSI) is an innovative molecular histology technique that could provide such information. It allows in situ and label-free measurement of both the abundance and distribution of a variety of molecules at the tissue or single cell level. The application of MSI in plant research has received considerable attention; thus, in this review, we describe the current state of MSI in plants. In particular, we present an overview of MSI approaches, highlight the recent technical and methodological developments, and discuss a range of applications contributing to the field of plant science. a spatial resolution parameter used in 3D MSI. In the serial section-based 3D MSI, it refers to the tissue section thickness. In depth profiling-based 3D MSI, it refers to the profiling depth. a separation technique that enables a pool of different cells to be sorted one by one into one or more containers. The cells are typically sorted according to their specific light scattering and fluorescent characteristics. an analytical technique that separates gas-phase ions based on their size (m/z) and shape, analogous to electrophoresis in the condensed phase. an isolation technique that combines microscopy with laser beam technology, allowing for the isolation of target cells or tissue regions that need to be separated from others. a value used in mass spectrometry obtained by dividing the mass of an ion by its charge number. For example, if an ion has a mass of 100 and a charge number of 1, its m/z is 100. An ion with a mass of 200 and a charge number of 2 also has an m/z of 100. an analytical instrument capable of ionizing analytes, separating them based on their m/z, and detecting them to produce a mass spectrum. an MSI analysis approach where a compound that is capable of selectively reacting with analyte of interest is added into MSI (e.g., in the MALDI matrix or DESI spray solvent), allowing one to monitor the product of the reaction. This is usually carried out to increase the ionization yield of the target analyte or to isolate a specific isomer from a family of compounds." @default.
- W2346249063 created "2016-06-24" @default.
- W2346249063 creator A5002431398 @default.
- W2346249063 creator A5026316454 @default.
- W2346249063 creator A5052730484 @default.
- W2346249063 date "2016-08-01" @default.
- W2346249063 modified "2023-10-16" @default.
- W2346249063 title "More than Pictures: When MS Imaging Meets Histology" @default.
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