Tesofensine vs Follistatin 344
Side-by-side comparison of key properties, dosing, and research.
Fat Loss & Metabolic
TesofensineAnabolic & IGF
Follistatin 344- Summary
- Tesofensine is a triple monoamine reuptake inhibitor (TMRI) that blocks reuptake of serotonin, dopamine, and norepinephrine. Originally developed for Alzheimer's and Parkinson's disease, it was repurposed as a potent weight loss agent after clinical trials demonstrated substantial fat loss via appetite suppression and increased energy expenditure.
- Follistatin 344 is a recombinant form of the endogenous follistatin protein. It inhibits myostatin and activin — the primary negative regulators of muscle growth — potentially removing the genetic ceiling on muscle development. It is one of the most theoretically powerful anabolic compounds but is experimental with limited human data.
- Half-Life
- 8-10 days (exceptionally long; accumulates over weeks)
- ~24–36 hours
- Admin Route
- Oral
- SubQ, IM
- Research
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- Typical Dose
- 0.25-0.5 mg per day
- 100 mcg
- Frequency
- Once daily
- Once daily
- Key Benefits
- Potent appetite suppression via triple monoamine reuptake inhibition
- Significant weight loss (8-12% body weight in phase II trials at 0.5 mg)
- Increases basal metabolic rate and energy expenditure
- Reduces fat mass preferentially over lean mass
- Potential cognitive benefit via dopaminergic and noradrenergic enhancement
- Longer half-life than sibutramine allows once-daily dosing
- Inhibits myostatin — removes muscle growth ceiling
- Significant increases in muscle mass and strength
- Reduces fat mass
- Promotes bone density
- May stimulate hair follicle cycling
- Anti-fibrotic effects in muscle tissue
- Synergistic with IGF-1 and other anabolic peptides
- Side Effects
- Elevated heart rate and blood pressure (sympathomimetic)
- Dry mouth
- Insomnia and sleep disturbances
- Nausea
- +4 more
- Muscle soreness (from rapid hypertrophy)
- Potential reproductive effects (activin inhibition)
- Unknown long-term safety profile
- Possible esophageal effects at high doses (animal data)
- Stacks With
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