关键词: AIDS Colocalization Cure Electron microscopy Eradication HIV-1 Mass spectrometry imaging Confocal

Mesh : Humans HIV Infections / virology HIV-1 / physiology Mass Spectrometry / methods Microscopy, Electron / methods Molecular Imaging / methods Disease Reservoirs / virology

来  源:   DOI:10.1007/978-1-0716-3862-0_7

Abstract:
Correlative light-electron microscopy (CLEM) has evolved in the last decades, especially after significant developments in sample preparation, imaging acquisition, software, spatial resolution, and equipment, including confocal, live-cell, super-resolution, and electron microscopy (scanning, transmission, focused ion beam, and cryo-electron microscopy). However, the recent evolution of different laser-related techniques, such as mass spectrometry imaging (MSI) and laser capture microdissection, could further expand spatial imaging capabilities into high-resolution OMIC approaches such as proteomic, lipidomics, small molecule, and drug discovery. Here, we will describe a protocol to integrate the detection of rare viral reservoirs with imaging mass spectrometry.
摘要:
相关的光电子显微镜(CLEM)在过去的几十年中发展起来,特别是在样品制备方面取得重大进展之后,成像采集,软件,空间分辨率,和设备,包括共焦,活细胞,超分辨率,和电子显微镜(扫描,传输,聚焦离子束,和低温电子显微镜)。然而,不同激光相关技术的最新发展,如质谱成像(MSI)和激光捕获显微切割,可以进一步扩展空间成像能力到高分辨率的OMIC方法,如蛋白质组学,脂质组学,小分子,和药物发现。这里,我们将描述一个协议,以整合罕见的病毒库的检测与成像质谱。
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