FOXO4-DRI 2mg
Size: 2mg | 99% Purity
M.Wt: ~5850
Formula: Retro-inverso D-amino acid peptide
Solubility: H2O
Purity: >99%
Storage: -20°C / 3 years
Half life: Not established
| Purity (HPLC) | >99% |
|---|---|
| Molecular weight | ~5850 g/mol |
| Synonyms | FOXO4-DRI, FOX04-DRI, FOXO4 D-Retro-Inverso |
| Solubility | H2O |
| Storage | -20°C / 3 years |
HPLC and MS verified by UKAS-accredited laboratories.
Royal Mail 24 and DPD Next Day options.
COA and batch number on every vial.
Description
Size: 2mg | 99% Purity
M.Wt: ~5850
Formula: Retro-inverso D-amino acid peptide
Solubility: H2O
Purity: >99%
Storage: -20°C / 3 years
Half life: Not established
*(This is a lyophilised powder and will need reconstitution — We also supply Sterile Water for Reconstitution separately.)
Reconstitution
For peptides supplied as lyophilised powder, reconstitute in bacteriostatic water or sterile saline at the concentration appropriate to your protocol. Allow the vial to come to room temperature before opening, add solvent slowly down the inside wall (do not directly onto the powder), and gently invert until clear. Do not vortex.
Reconstituted solutions are typically stable at 2–8°C for the durations published in the corresponding peer-reviewed reference. For long-term storage, aliquot and freeze at −20°C; avoid repeated freeze–thaw cycles.
Research literature
Selected peer-reviewed publications from PubMed referencing this compound. Provided for research orientation — not an endorsement of any clinical application. Each citation links to the canonical PubMed record.
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FOXO4-DRI induces keloid senescent fibroblast apoptosis by promoting nuclear exclusion of upregulated p53-serine 15 phosphorylation.
Kong YX et al. · Communications biology · 2025
PubMed PMID 39994346 -
FOXO4-DRI improves spermatogenesis in aged mice through reducing senescence-associated secretory phenotype secretion from Leydig cells.
Li Y et al. · Experimental gerontology · 2024
PubMed PMID 39025385 -
FOXO4-DRI alleviates age-related testosterone secretion insufficiency by targeting senescent Leydig cells in aged mice.
Zhang C et al. · Aging · 2020
PubMed PMID 31959736
