Shorter time period: 45 minutes or less (NAD+ may take up to 2 hours)
78,399 AZD3965 has already finished a Phase I/II clinical trial (NCT01791595) in patients with solid tumors diffuse large B-cell lymphoma, 76,79 which reveals its pharmacokinetic characteristics and adverse effects and suggests that AZD3965 is tolerated at doses that produce target engagement

FOXO4-DRI Key Research Facts Full name: FOXO4 D-Retro-Inverso peptide (FOXO4-DRI) Classification: Cell-penetrating senolytic peptide FOXO4/p53 protein-protein interaction inhibitor Design: D-retro-inverso isoform of FOXO4s p53-binding domain reversed sequence with all D-amino acids Binding target: p53 transactivation domain 2 (TAD2) displaces FOXO4 from the FOXO4-p53 complex Mechanism: FOXO4-DRI binds p53 TAD2 p53 nuclear exclusion p53 mitochondrial translocation BAX activation caspase-3 cleavage senescent cell-selective apoptosis Selectivity basis: FOXO4 is upregulated in senescent cells but expressed at low levels in most non-senescent adult cells selectivity is mechanistically conferred D-amino acid advantage: Proteolytic stability resistant to intracellular peptidases that would rapidly degrade equivalent L-amino acid sequences Structural characterisation: NMR structural models of FOXO4-DRI/p53TAD2 complex resolved (Nature Communications, 2025) confirms disordered-to-ordered transition upon binding Research cell types studied: IMR90 fibroblasts, TM3 Leydig cells, endothelial cells, chondrocytes, keloid fibroblasts, HCT116 cancer cells In vitro working concentration: 25 M used in multiple published studies for senescent cell apoptosis induction What Does FOXO4-DRI Do in Research

In some embodiments, low viscosity formulations or devices contain from about 5% to about 10% of a viscosity enhancing agent or viscosity modulating agent (e.g., gelling components such as polyoxyethylene-polyoxypropylene copolymers)
These cells carry oxygen