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Electron Microscopy of Endocytic Pathways

Detailed insight into the fine structure and 3D-architecture of the complex and dynamic compartments of the endocytic system is essential for a morpho-functional analysis of retrograde traffic from the cell surface to different intracellular destinations. Here, we describe a cyto ...

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Cytochemical Detection of Peroxisomes and Mitochondria

Peroxisomes and mitochondria are essential subcellular organelles in mammals. Interestingly, recent studies have elucidated that these highly dynamic and plastic organelles exhibit a much closer interrelationship than previously assumed. Peroxisomes and mitochond ...

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Morphological Analysis of Autophagy

Autophagy is a bulk intracellular degradation process that is ubiquitous in eukaryotic cells and helps to recycle nutrients from catabolites by degrading proteins, lipids, and glycans, including organelles. Since autophagy has divergent physiological roles in cancer, infect ...

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Environmental Scanning Electron Microscopy Gold Immunolabeling in Cell Biology

Immunogold labeling (IGL) technique has been utilized by many authors in combination with scanning electron microscopy (SEM) and transmission electron microscopy (TEM) to obtain the identification/localization of receptors and antigens, both in cells and tissues. Environme ...

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Environmental Scanning Electron Microscopy in Cell Biology

Environmental scanning electron microscopy (ESEM) (1) is an imaging technique which allows hydrated, insulating samples to be imaged under an electron beam. The resolution afforded by this technique is higher than conventional optical microscopy but lower than conventional scan ...

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Histochemical Detection of Lipid Droplets in Cultured Cells

Cells store excess lipid as esters in the form of triglycerides and cholesterol esters. Most lipid esters are compartmentalized in globular structures called lipid droplets. Here we describe several methods of detecting lipid droplets by fluorescence microscopy. Lipid droplets c ...

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High-Pressure Freezing for Scanning Transmission Electron Tomography Analysis of Cellular Organelles

Using an electron microscope’s scanning transmission mode (STEM) for collection of tomographic datasets is advantageous compared to bright field transmission electron microscopic (TEM). For image formation, inelastic scattering does not cause chromatic aberration, since ...

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Epi-Fluorescence Microscopy

Epi-fluorescence microscopy is available in most life sciences research laboratories, and when optimized can be a central laboratory tool. In this chapter, the epi-fluorescence light path is introduced and the various components are discussed in detail. Recommendations are made for ...

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MALDI Imaging Mass Spectrometry for Direct Tissue Analysis

MALDI (Matrix-Assisted Laser Desorption/Ionization) Imaging mass spectrometry is a powerful new method for analyzing the spatial distribution of molecules in tissues. Several different classes of cellular constituents such as proteins, peptides, lipids, and small molecul ...

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Live-Cell Migration and Adhesion Turnover Assays

Fluorescence microscopy has revolutionized the way live-cell imaging is achieved. At the same time, it is also potentially harmful to a living specimen. Therefore, the specimen must be monitored for viability and health before, during, and after imaging sessions. Methods for monitoring c ...

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Multifluorescence Confocal Microscopy: Application for a Quantitative Analysis of Hemostatic Proteins in Human Venous Valves

Confocal laser scanning microscopy is commonly used to visualize and quantify protein expression. Visualization of the expression of multiple proteins in the same region via multifluorescence allows for the analysis of differential protein expression. The defining step of mult ...

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Colocalization Analysis in Fluorescence Microscopy

The measurement of colocalization requires images of two fluorophores that are aligned, with no cross talk, and that the intensities remain within the response range of the microscope. Quantitation depends upon differentiating between the presence and absence of fluorescence, and m ...

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A Time-Lapse Imaging Assay to Study Nuclear Envelope Breakdown

Real-time imaging coupled with a permeabilized cell system presents a very versatile platform to visualize the dynamic and intricate nature of nuclear envelope breakdown, one of the major morphological changes of mitosis. Here, we describe such a strategy in which the plasma membrane of ce ...

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Intravital Microscopy to Image Membrane Trafficking in Live Rats

Intravital microscopy is a powerful tool that enables imaging various biological processes in live animals. Here, we describe a series of procedures designed to image subcellular structures, such as endosomes and secretory vesicles in the salivary glands (SGs) of live rats. To this aim, we us ...

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Image-Based High-Throughput Screening for Inhibitors of Angiogenesis

Automated multicolor fluorescence microscopy facilitates high-throughput quantitation of cellular parameters of complex, organotypic systems. In vitro co-cultured vascular cells form capillary-like networks that model facets of angiogenesis, making it an attracti ...

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Light Sheet Microscopy in Cell Biology

Light sheet-based fluorescence microscopy (LSFM) is emerging as a powerful imaging technique for the life sciences. LSFM provides an exceptionally high imaging speed, high signal-to-noise ratio, low level of photo-bleaching, and good optical penetration depth. This unique combin ...

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Imaging Mass Spectrometry: Viewing the Future

Imaging mass spectrometry (IMS) technology is an effective tool that is able to assess complex molecular mixtures in cells, tissues, or other sample types with high chemical specificity, allowing concurrent analysis of a variety of molecular species in a wide mass range, from small metabol ...

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A Mass Spectrometry Primer for Mass Spectrometry Imaging

Mass spectrometry imaging (MSI), a rapidly growing subfield of chemical imaging, employs mass spectrometry (MS) technologies to create single- and multi-dimensional localization maps for a variety of atoms and molecules. Complimentary to other imaging approaches, MSI provides h ...

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Imaging of Metals, Metalloids, and Non-metals by Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICP-MS) in Biological Tissues

The determination of the localization and distribution of essential and beneficial metals (e.g., Cu, Fe, Zn, Mn, Co, Ti, Al, Ca, K, Na, Cr and others), toxic metals (like Cd, Pb, Hg, U), metalloids (e.g., As, Se, Sb), and non-metals (such as C, S, P, Cl, I) in biological tissues is a challenging task for life science studies. Over the ...

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Matrix-Assisted Laser Desorption/Ionization and Nanoparticle-Based Imaging Mass Spectrometry for Small Metabolites: A Practical Protocol

Matrix-assisted laser desorption/ionization (MALDI)-imaging mass spectrometry (IMS, also referred to as mass spectrometry imaging ) enables visualization of the distribution of biomolecules with varied and vast structures in tissue sections. This emerging imaging techn ...

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