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We describe the detection of NLRP3 inflammasome activation on cellular basis using fluorescence microscopy and staining for active caspase-1 and the adaptor, ASC. A lactate dehydrogenase release assay is presented to detect pyroptotic lysis on a population basis. These techniques can be adapted to study many aspects of inflammasome...
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Examination of Pyroptosis by Flow Cytometry05:14

Examination of Pyroptosis by Flow Cytometry

This article describes the identification of pyroptotic cells using flow cytometry after dual staining with antibodies against the N-terminal fragment of chicken GSDME (chGSDME-NT) and propidium iodide...
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An Introduction to Cell Death10:06

An Introduction to Cell Death

Necrosis, apoptosis, and autophagic cell death are all manners in which cells can die, and these mechanisms can be induced by different stimuli, such as cell injury, low nutrient levels, or signaling proteins. Whereas necrosis is considered to be an “accidental” or unexpected form of cell death, evidence exists that apoptosis and autophagy are both programmed and “planned” by cells.In this introductory video, JoVE highlights key discoveries pertaining to cell death,...
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LPS and ATP-induced Death of PMA-differentiated THP-1 Macrophages and its Validation06:12

LPS and ATP-induced Death of PMA-differentiated THP-1 Macrophages and its Validation

This protocol is based on LPS and ATP-induced death of PMA-differentiated THP-1 macrophages. We use flow cytometry to analyze Annexin V and 7-AAD double staining to detect cell death, using the whole cell and employing scanning electron microscopy to observe the cell membrane...
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Modified Annexin V/Propidium Iodide Apoptosis Assay For Accurate Assessment of Cell Death07:34

Modified Annexin V/Propidium Iodide Apoptosis Assay For Accurate Assessment of Cell Death

An accurate method for the assessment of cell death is described. The protocol improves upon conventional Annexin V/ propidium iodide (PI) protocols, which display up to 40% false- positive events in cell lines and primary cells from a broad range of animal...
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Separation of Avian Preovulatory Follicle Granulosa and Theca Cell Layers for Downstream Applications05:04

Separation of Avian Preovulatory Follicle Granulosa and Theca Cell Layers for Downstream Applications

Here, we describe a protocol for separating yolk, granulosa cells, and theca cells in avian preovulatory follicles. This precision handling enables critical investigations into the role of these layers in reproductive function, aiding the understanding of follicular development, hormonal regulation, and disease research for enhanced agricultural yield and biomedical insights.
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