At a glance
A tripeptide explored in vascular and cellular regulation models.
This profile separates the compound’s scientific background from specification-specific preparation and source schedules. Begin with the research findings and limitations, then select the formulation you want to examine.
How it works
Potential benefits & side effects
Interpret each outcome in the context of the study population, formulation and evidence type. Research findings do not establish a personal treatment outcome.
Potential benefits & research findings
The source discusses vascular and related experimental outcomes. Changes in cell markers do not establish improved circulation or a clinical vascular treatment.[2][3][5]
Read the original publications to see the measured endpoints, comparator, duration and uncertainty. Mechanistic plausibility and a favorable experimental result are different from demonstrated clinical benefit.
Side effects & evidence limitations
Interpret the reported adverse effects together with the study population, route and observation period. Small or short studies can miss uncommon and delayed harms. Evidence from a related compound does not establish the safety of Vesugen (Lys-Glu-Asp).
Source-reported adverse effects and cautions
Sources are available for independent reading. Individual claims and research schedules have not yet undergone an independent clinical review by Pep Science.
- Editorial responsibility
- Pep Science editorial desk
- Last independent review
- Not yet recorded
SPECIFICATIONS & SOURCE SCHEDULES
Explore a vial size
Select the exact formulation. Vial content, target dose and prepared concentration are different measurements.
Showing 20 mg · 1 source tables
Standard / Gradual Approach (3 mL = ~6.67 mg/mL)
| Week | Daily Dose (mcg) | Units (per injection) (mL) |
|---|---|---|
| Week 1 | 500 mcg (0.5 mg) | 7.5 units (0.075 mL) |
| Week 2 | 1000 mcg (1.0 mg) | 15 units (0.15 mL) |
| Week 3 | 1500 mcg (1.5 mg) | 22.5 units (0.225 mL) |
| Weeks 4–8+ | 1500–2000 mcg (1.5–2.0 mg) | 22.5–30 units (0.225–0.30 mL) |
Frequency: Inject once daily subcutaneously. For ≤10-unit (≤0.10 mL) administrations, consider 30- or 50-unit insulin syringes for improved readability. Note that Week 1 dosing falls at 7.5 units; a 50-unit syringe with 0.5-unit graduations improves accuracy.
Additional schedule context & duration
Concise summary of the once-daily regimen.
- Goal: Support vascular endothelial function and cellular renewal over time[2].
- Schedule: Daily subcutaneous injections for 8–12 weeks (extend to 16 weeks if desired).
- Dose Range: 500–2000 mcg daily with gradual titration.
- Reconstitution: 3.0 mL per 20 mg vial (~6.67 mg/mL) for accurate unit measurements.
- Storage: Lyophilized frozen; reconstituted refrigerated; avoid repeated freeze–thaw.
Suggested daily titration approach.
- Start: 500 mcg daily; increase by ~500 mcg weekly as tolerated.
- Target: 1500–2000 mcg daily by Weeks 3–8+.
- Frequency: Once per day (subcutaneous).
- Cycle Length: 8–12 weeks; optional extension to 16 weeks.
- Timing: Any consistent time; rotate injection sites.
Preparation
Reconstitution Steps
Storage Instructions
Proper storage preserves peptide quality[8].
- Lyophilized: Store at −20 °C (−4 °F) in dry, dark conditions; minimize moisture exposure.
- Reconstituted: Refrigerate at 2–8 °C (35.6–46.4 °F); prepare aliquots if needed and avoid freeze–thaw.
- Allow vials to reach room temperature before opening to reduce condensation uptake.
Injection Technique
General subcutaneous guidance from clinical best-practice resources[9].
- Clean the vial stopper and skin with alcohol; allow to dry.
- Pinch a skinfold; insert the needle at 45–90° into subcutaneous tissue[9][10].
- Do not aspirate for subcutaneous injections; inject slowly and steadily[9].
- Rotate sites systematically (abdomen, thighs, upper arms) to avoid lipohypertrophy[10].
Materials & quantity planning
Source materials checklist · 20 mg
Plan based on an 8–16 week daily protocol with gradual titration (targeting ~1500 mcg/day maintenance).
-
Peptide Vials (Vesugen, 20 mg each):
- 8 weeks (~84 mg total) ≈ 5 vials
- 12 weeks (~126 mg total) ≈ 7 vials
- 16 weeks (~168 mg total) ≈ 9 vials
-
Insulin Syringes (U-100):
- Per week: 7 syringes (1/day)
- 8 weeks: 56 syringes
- 12 weeks: 84 syringes
- 16 weeks: 112 syringes
-
Bacteriostatic Water (10 mL bottles): Use ~3.0 mL per vial for reconstitution.
- 8 weeks (5 vials): 15 mL → 2 × 10 mL bottles
- 12 weeks (7 vials): 21 mL → 3 × 10 mL bottles
- 16 weeks (9 vials): 27 mL → 3 × 10 mL bottles
-
Alcohol Swabs: One for the vial stopper + one for the injection site each day.
- Per week: 14 swabs (2/day)
- 8 weeks: 112 swabs → recommend 2 × 100-count boxes
- 12 weeks: 168 swabs → recommend 2 × 100-count boxes
- 16 weeks: 224 swabs → recommend 3 × 100-count boxes
Calculate a phased quantity
Enter each finite phase from the schedule you are studying. Open-ended phases need an explicit duration. Calculation uses 20 mg per vial and 3 mL per vial.
Complete each phase to calculate totals.
Quantity estimates exclude preparation losses and expiry. Follow the formulation’s handling and disposal requirements.
FOLLOW THE EVIDENCE
References & further reading
Original publications and source documents cited across this product’s variants. A listed source is not an independent endorsement of a dosing schedule.
- 01
Research publication
Bull Exp Biol Med (2016) — Short Peptides Regulate Gene Expression (Khavinson et al.) (opens in a new tab)pubmed.ncbi.nlm.nih.gov
Back to overview ↑ - 02
Research publication
Adv Gerontol (2014) — Epigenetic aspects of peptidergic regulation of vascular endothelial cell proliferation during aging (opens in a new tab)pubmed.ncbi.nlm.nih.gov
Back to overview ↑ - 03
Research publication
Molecules (2021) — Peptide Regulation of Gene Expression: A Systematic Review (MDPI) (opens in a new tab)pubmed.ncbi.nlm.nih.gov
Back to overview ↑ - 04
Research publication
Adv Gerontol (2016) — Molecular aspects of vasoprotective peptide KED activity during atherosclerosis and restenosis (opens in a new tab)pubmed.ncbi.nlm.nih.gov
Back to overview ↑ - 05
Research publication
Bull Exp Biol Med (2021) — Peptide KED: Molecular-Genetic Aspects of Neurogenesis Regulation in Alzheimer’s Disease (opens in a new tab)pubmed.ncbi.nlm.nih.gov
Back to overview ↑ - 06
Research publication
Bull Exp Biol Med (2017) — Tripeptides Restore the Number of Neuronal Spines under Conditions of In Vitro Modeled Alzheimer’s Disease (opens in a new tab)pubmed.ncbi.nlm.nih.gov
Back to overview ↑ - 07
Public health resource
DailyMed — Bacteriostatic Water injection, solution (FDA labeling) (opens in a new tab)dailymed.nlm.nih.gov
Back to overview ↑ - 08
Research publication
PMC (2024) — Practical advice in the development of a lyophilized protein drug product (opens in a new tab)pmc.ncbi.nlm.nih.gov
Back to overview ↑ - 09
Public health resource
MedlinePlus — Subcutaneous (SQ) injections: technique and site guidance (opens in a new tab)medlineplus.gov
Back to overview ↑ - 10
Public health resource
NCBI Bookshelf — Best practices for injection (WHO guidelines) (opens in a new tab)www.ncbi.nlm.nih.gov
Back to overview ↑ - 11
Research publication
Int J Mol Sci (2022) — Neuroepigenetic Mechanisms of Action of Ultrashort Peptides in Alzheimer’s Disease (opens in a new tab)pubmed.ncbi.nlm.nih.gov
Back to overview ↑ - 12
Research publication
Pharmaceuticals (2021) — Neuroprotective Effects of Tripeptides-Epigenetic Regulators in Mouse Model of Alzheimer’s Disease (opens in a new tab)pubmed.ncbi.nlm.nih.gov
Back to overview ↑ - 13
Public health resource
CDC — Vaccine administration: subcutaneous injection technique (opens in a new tab)www.cdc.gov
Back to overview ↑ - 14
Research publication
Biogerontology (2010) — Peptide bioregulation of aging: Results and prospects (Anisimov & Khavinson) (opens in a new tab)pubmed.ncbi.nlm.nih.gov
Back to overview ↑ - 15
Research publication
Stem Cell Rev Rep (2020) — Peptide Regulation of Cell Differentiation (opens in a new tab)pubmed.ncbi.nlm.nih.gov
Back to overview ↑
Continue exploring
Related topics are not interchangeable compounds or formulations.