Iodide Leaving Group

An iodide leaving group is an iodine-containing substituent that departs from an organic molecule during a substitution or elimination reaction, allowing a new bond or multiple bond to form. Iodide leaves as a stable I− ion because the carbon–iodine bond is relatively weak and iodide is highly polarizable, making it an effective leaving group in many polar reactions. Its performance depends on the substrate, solvent, nucleophile or base, and reaction conditions. In organic chemistry, iodide leaving groups support nucleophilic substitution, facilitate carbon–carbon and carbon–heteroatom bond formation, and help researchers predict reaction rates, selectivity, and synthetic pathways.

Iodide Leaving Group - Related Videos

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JoVE Science Education - Advanced Biology

Annexin V and Propidium Iodide Labeling

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2023

Staining with annexin V and propidium iodide (PI) provides researchers with a way to identify different types of cell death—either necrosis or apoptosis. This technique relies on two components. The first, annexin V, is a protein that binds certain phospholipids called phosphatidylserines, which normally occur only in the inner, cytoplasm-facing leaflet of a cell’s membrane, but become “flipped” to the outer leaflet during the early stages of apoptosis. The second component is the DNA-binding...

Leaving Groups

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2023

The nature of leaving groups strongly influences the outcome of a nucleophilic substitution reaction. In general, in a nucleophilic substitution reaction, a nucleophile displaces a functional group, called the leaving group, from the substrate to give a substituted product. A leaving group departs the substrate molecule through heterolytic cleavage, taking the pair of electrons with it to become a relatively stable weak base in the form of an anion or a neutral molecule. In a nucleophilic...

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JoVE Journal - Biology
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Modified Annexin V/Propidium Iodide Apoptosis Assay For Accurate Assessment of Cell Death

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Cited by 543 •

2011

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 models.

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JoVE Journal - Biology
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Detection of Histone Modifications in Plant Leaves

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Cited by 22 •

2011

A reliable and useful approach to detect histone modifications on specific plant genes is described. The approach combines chromatin immunoprecipitation (ChIP) and real-time quantitative PCR. It allows detection of histone modifications on specific genes with a role in diverse physiological processes.

Differential Nuclear Staining Assay: An Assay to Determine Mitocan Cytotoxicity by Propidium Iodide and Hoechst Double Staining

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2025

This video demonstrates a nuclear staining method to detect the cytotoxic effect of mitocan on drug-sensitive cancer cells and healthy variants. The double staining with DNA-binding dyes such as propidium iodide and Hoechst dye provides a clear distinction between the dead and live cells, thus helping to assess the cytotoxicity of the drug.

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