DT-109 for Health & Longevity - Quick Reference Sheet

DT-109 for Health & Longevity

Created on 09/09/2026 – Quick Reference based on Evidence Review created using AI4L / Opus 5 Audit

DT-109 is a three-part amino acid chain built to deliver glycine more efficiently than glycine itself. In mice and monkeys it reduced liver fat, liver injury, arterial plaque and arterial calcium. It has never been administered to a human in a published study, the animal record contradicts itself, and every finding comes from one group. (Full Review)

Protocol

Arithmetic human-equivalent extrapolation
~3 g daily at 70 kg
Mouse conversion factor 12.3 on the effective 0.5 mg/g dose gives roughly 40 mg/kg daily; the monkey factor 3.1 gives roughly 48 mg/kg. No human protocol exists.
Single versus split dosing
One daily dose in animals
The short time to peak and the gram-scale load argue for splitting, which would also reduce gastrointestinal intolerance; neither pattern has been tested in humans.
Best time of day
Not established
The animal work dosed in the morning, while the sedative property of a glycine load argues for evening. No timing comparison exists in any species.
Time to effect
Liver histology and arterial plaque
3–5 months
Required continuous dosing in animals.
Glucose and lipid changes
Weeks
Reported in animal dosing only.
Liver glutathione
1–2 hours
Rose after a single animal dose.

Benefits

Contraindications
  • History of calcium oxalate kidney stones, or primary hyperoxaluria of any type
  • Chronic kidney disease with an eGFR below 30 mL/min/1.73 m²
  • Cirrhosis of Child-Pugh Class B or C
  • Any diagnosed urea cycle disorder
  • Clozapine treatment
  • Pregnancy and lactation
  • Under 18 years of age
Key Interactions
  • Glucose-lowering agents (metformin, glipizide, insulin, empagliflozin)
  • Antipsychotics (olanzapine, risperidone)
  • Sedatives and sleep agents (zolpidem, benzodiazepines such as lorazepam)
  • Sedating antihistamines (diphenhydramine, doxylamine) and melatonin
  • High-dose vitamin C (1 g/day or more) and other oxalate precursors
  • Glycine, collagen and gelatin supplements
  • Leucine, branched-chain and essential amino acid blends
  • Berberine and other glucose-lowering supplements
  • Lipid-lowering drugs (atorvastatin, ezetimibe)
  • N-acetylcysteine
  • Glucagon-like peptide-1 receptor agonists (semaglutide, tirzepatide)
  • Prolonged fasting and ketogenic diets

Risk & Side Effects

  • Speculative: Absence of any human safety data; oxalate load and kidney stone risk; gastrointestinal intolerance; sedation and lowered core temperature; leucine-driven mTOR activation; nitrogen load in liver or kidney impairment; long-term suppression of resident gut clostridia; blunted adaptive signaling from sustained glutathione elevation

Monitoring

Marker Target Why
ALT 10–26 U/L (men), 8–22 U/L (women) Liver cell injury; the endpoint DT-109 lowered in animals
AST 10–26 U/L Second liver enzyme; confirms an ALT signal
GGT <20 U/L (men), <15 U/L (women) Oxidative stress and bile duct strain; tracks glutathione demand
Liver fat fraction <5% by MRI-PDFF; CAP <248 dB/m Direct measure of the primary animal endpoint
HbA1c 4.8–5.3% Three-month average blood sugar; the compound's original target
Fasting insulin and HOMA-IR Insulin 2–5 µIU/mL; HOMA-IR <1.0 Detects insulin resistance earlier than glucose alone
ApoB and triglycerides ApoB <80 mg/dL; triglycerides <80 mg/dL The lipid claim is the most contested one in the animal record
hs-CRP <0.5 mg/L Cheapest proxy for the anti-inflammatory claim
eGFR and serum creatinine eGFR >90 mL/min/1.73 m² Kidney filtration, the organ exposed to the oxalate load
24-hour urinary oxalate <25 mg/24 h Tracks the specific mechanistic stone risk of a glycine load
Plasma ammonia 15–45 µmol/L Tests the gut-liver mechanism and the nitrogen-load safety question
Whole-blood glutathione No established target exists; the change from the individual's own baseline is what can be tracked The proposed proximate mechanism of every claimed benefit

Cadence: Baseline before any exposure, then four weeks, twelve weeks, then every three to six months, with kidney markers repeated sooner if any stone symptom appears.

Qualitative Assessment

  • Energy and post-meal alertness — the subjective correlate of the glucose claim
  • Sleep onset and depth — the most likely noticeable effect of a glycine load
  • Digestive tolerance — bloating, stool consistency and nausea, the expected dose-limiting complaints
  • Exercise recovery and session quality — the place a blunted adaptation signal would first show
  • Cognitive clarity — daytime drowsiness would be the counterpart of the sleep effect