Ferroptosis Assays

Ferroptosis Assays

Cell Health & Death

Ferroptosis assay kits

Ferroptosis is iron-dependent cell death driven by lipid peroxidation. Measure each node of the pathway, from iron and lipid peroxides to the glutathione/GPX defence system.

Lipid peroxidationIronGSH & GPX
In this category

Assay every step of ferroptosis

Drivers

Iron and lipid peroxides (TBARS/MDA), plus phospholipid and cholesterol assays.

Defences

Glutathione peroxidase activity, GSH/GSSG and GST activity report whether the antioxidant brake is intact.

Metabolic context

Glutamate, glutamine, citrate and other metabolites place ferroptosis in its metabolic setting.

Background

What is ferroptosis?

Ferroptosis is a regulated, iron-dependent form of cell death defined by the accumulation of lipid peroxides. It is distinct from apoptosis and necrosis, and is implicated in cancer, neurodegeneration and ischaemia-reperfusion injury.

Labile iron catalyses reactive oxygen species that peroxidise membrane phospholipids. The glutathione-dependent enzyme GPX4 normally neutralises these lipid peroxides, so when glutathione is depleted or GPX4 is inhibited the cell tips into ferroptosis.

Workflow

Building a ferroptosis read-out

1

Confirm lipid peroxidation

Quantify MDA or lipid peroxides with a TBARS assay to establish ferroptotic damage.

2

Check the iron driver

Measure iron to link peroxidation to the chemistry that fuels it.

3

Assess the defence

Track GPX activity and GSH/GSSG to see whether the antioxidant brake is intact.

4

Add context

Profile cholesterol, amino acids or TCA metabolites alongside.

FAQs

Ferroptosis assay FAQs

How is ferroptosis measured?

By assaying its drivers and defences: lipid peroxidation (TBARS/MDA), iron, and the glutathione/GPX antioxidant system, usually on a plate reader.

Which assay is the best marker of ferroptosis?

Lipid peroxidation is the defining feature, so a TBARS (MDA) assay is the most direct marker. Pairing it with an iron assay and a glutathione or GPX measurement gives a fuller picture.

How does glutathione relate to ferroptosis?

GPX4 uses glutathione to reduce toxic lipid peroxides. When glutathione is depleted or GPX4 is inhibited, lipid peroxides accumulate and drive ferroptosis.

What sample types are supported?

Compatibility varies by kit and commonly includes serum, plasma, tissue homogenates and cultured cells. Each product page lists its validated samples.

Ferroptosis Assays Product listing