Ferrous Iron

Ferrous iron is the divalent form of iron, Fe2+, an essential metal ion that supports oxygen transport, energy production, and numerous biological reactions. Its two available oxidation states allow it to participate in reversible redox reactions, transfer electrons in proteins such as cytochromes, and bind oxygen through heme groups in hemoglobin and myoglobin. Cells carefully regulate ferrous iron through storage, transport, and incorporation into enzymes because uncontrolled Fe2+ can promote reactive oxygen species formation. Studying ferrous iron is therefore important for understanding cellular respiration, iron homeostasis, anemia, oxidative stress, and diseases associated with disrupted iron metabolism.

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JoVE EoE - Assay Techniques

Caco-2 Cell Bioassay: An In Vitro Method for Measuring Iron Bioavailability in Complex Food Sources

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2025

This video demonstrates an in vitro technique to assess iron bioavailability in complex food sources. The technique combines the simulation of human digestion along with iron uptake by differentiated Caco-2 cells. Intracellular ferritin formation acts as a marker for cellular iron uptake.

Quantitating Iron Transport Across the Mouse Placenta In Vivo Using Nonradioactive Iron Isotopes

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Cited by 3 •

2022

This article demonstrates how to prepare and administer transferrin-bound nonradioactive isotopic iron for studies of iron transport in mouse pregnancy. The approach for quantifying isotopic iron in fetoplacental compartments is also described.

Isolation of Ammonium-Oxidizing Iron Reducers from a Wetland Soil–Derived Enrichment Culture

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2025

Begin with a wetland soil-derived enrichment culture containing bacterial communities.The culture exhibits Feammox activity, ammonium oxidation coupled to ferric iron reduction, indicating the enrichment of a bacterium capable of this metabolic process.Serially dilute the culture using media.Streak the diluted samples onto test agar plates supplemented with ferric iron and ammonium.Use control plates that lack either ferric iron or ammonium, or contain ferric iron with organic carbon instead of...

Fabrication of a Functionalized Magnetic Bacterial Nanocellulose with Iron Oxide Nanoparticles

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Cited by 42 •

2016

Here, we present a protocol to make a bacterial nanocellulose (BNC) magnetic for applications in damaged blood vessel reconstruction. The BNC was synthesized by G. xylinus strain. On the other hand, magnetization of the BNC was realized through in situ precipitation of Fe2+ and Fe3+ ferrous ions inside the BNC mesh.

Bathophenanthroline Sulfonate-Based Colorimetric Assay: A Simple and Rapid Method for Quantitation of Non-Heme Iron in Mouse Liver Tissue

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2025

In this video, we describe a colorimetric-based method to determine non-heme iron content in mouse liver tissue. Bathophenanthroline sulfonate is used as the chromogenic substrate in the presence of a reducing agent, which converts ferric iron to chelatable ferrous iron.

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