Macropinosome Ph

Macropinosome pH refers to the acidity within macropinosomes, large, fluid-filled vesicles formed when cells internalize extracellular material by macropinocytosis. After formation, these compartments typically acidify as vacuolar ATPases pump protons across the membrane, while maturation and interactions with endosomal pathways influence their changing chemical environment. In immunology, macropinosome pH helps determine how antigenic material is processed and presented, whereas infectious microbes may exploit or resist this environment after uptake by host cells. Measuring or manipulating macropinosome acidity can therefore clarify vesicle maturation, pathogen survival, and immune-cell function.

Macropinosome Ph - Related Videos

Research

JoVE Journal - Biology

Automated Imaging and Analysis for the Quantification of Fluorescently Labeled Macropinosomes

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Cited by 8 •

2021

Automated assays using multi-well microplates are advantageous approaches for identifying pathway regulators by allowing the assessment of a multitude of conditions in a single experiment. Here, we have adapted the well-established macropinosome imaging and quantification protocol to a 96-well microplate format and provide a comprehensive outline for automation using a multi-mode plate reader.

Measuring the pH, Redox Chemistries, and Degradative Capacity of Macropinosomes using Dual-Fluorophore Ratiometric Microscopy

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Cited by 1 •

2021

We describe protocols for measuring pH, oxidative events, and protein digestion in individual macropinosomes in live cells. An emphasis is placed on dual-fluorophore ratiometric microscopy and the advantages it offers over population-based techniques.

Culture of Macrophage Colony-stimulating Factor Differentiated Human Monocyte-derived Macrophages

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Cited by 58 •

2016

A protocol is presented for cell culture of macrophage colony-stimulating factor (M-CSF) differentiated human monocyte-derived macrophages. The protocol utilizes cryopreservation of monocytes coupled with their bulk differentiation into macrophages. Then harvested macrophages can then be seeded into culture wells at required cell densities for carrying out experiments.

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