Redox-active tripeptide

Glutathione

Glutathione is studied in redox homeostasis and glutathione-peroxidase biology. The cited cell study examines glutathione depletion and ferroptosis regulation.

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Mechanism and findings

In vitro · Study formulation · Cancer-cell experiments

GPX4 and ferroptosis

The study examined glutathione depletion and GPX4 activity, not clinical administration of the catalog material.

Yang et al., 2014 →

Literature findings; refer to the model and formulation studied.

Mechanism of action

Glutathione — redox-active tripeptide. The literature identity must be matched to the documented chemical form and composition of the supplied material.

Glutathione availability contributes to peroxidase activity. The ferroptosis study examined glutathione depletion and GPX4 inhibition as distinct processes affecting cancer-cell survival. It was not a supplementation trial or a study administering this product.

  • GPX4 and redox biology

Yang et al., 2014

Studied findings 1
In vitro · Study formulation

GPX4 and ferroptosis

Cancer-cell experiments

The study examined glutathione depletion and GPX4 activity, not clinical administration of the catalog material.

View context
Study design
Original-study abstract; experimental design described in linked source
Sample scope / arm
Not extracted; consult original study
Comparator
See original-study context
Experimental context (not instructions for use)
Abstract-level extraction; full methods and tables still require review.
Source section / table / abstract
Abstract

Evidence concerns the studied material and model, not the supplied BLOPEP batch.

Yang et al., 2014

Sources and studies 2
  1. Glutathione — PubChem molecular identity

  2. Regulation of ferroptotic cancer cell death by GPX4.

    Yang WS, SriRamaratnam R, Welsch ME, Shimada K, Skouta R, Viswanathan VS, Cheah JH, Clemons PA, Shamji AF, Clish CB, Brown LM, Girotti AW, Cornish VW, Schreiber SL, Stockwell BR · 2014 · Cell

    DOI: 10.1016/j.cell.2013.12.010

Specifications and packaging

Nominal variant content; analytical results belong to the documented batch.

Material type
Peptide
Molecular formula (literature identity)
C10H17N3O6S
Molecular weight (literature identity)
307.33 g/mol

Quality and analyses

Review specifications, analytical results and documentation for published batches.

Purity
>99%
Type
Declared specification

Published batches

Batch results have not yet been published on this page.

Storage

Consult the specific conditions in the supplied material documentation.

Delivery and commercial terms

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