RESEARCH REFERENCE

Common Peptide Reconstitution Chart

Common BAC Water Volumes by Peptide

The following chart provides common reference reconstitution volumes for popular research peptides. These examples are intended to create practical working concentrations and are based on commonly used vial sizes and reconstitution practices. Actual reconstitution volumes may vary depending on research goals, desired concentration, and measurement preferences.

PeptideCommon Vial SizeCommon BAC Water AdditionNotes
Retatrutide5 mg1 mLPractical for smaller research amounts
Retatrutide10 mg2 mLCommon reference concentration
Retatrutide15 mg3 mLKeeps concentration easy to calculate
Retatrutide20 mg2 mLMore concentrated to avoid larger draw volumes
Retatrutide30 mg2 mLCommonly kept concentrated for larger research amounts
Tirzepatide5 mg1 mLPractical for smaller vial sizes
Tirzepatide10 mg2 mLCommon reference concentration
Tirzepatide15 mg3 mLEasy reference concentration
Tirzepatide30 mg2–3 mLHigher vial size; concentration preference may vary
Semaglutide5 mg1–2 mLUsually kept fairly concentrated
Semaglutide10 mg2 mLCommon practical reference
Cagrilintide5 mg1 mLPractical small-vial reference
Cagrilintide10 mg2 mLKeeps measurement straightforward
BPC-1575 mg1–2 mLCommonly kept concentrated
BPC-15710 mg1–2 mL1–2 mL is often more practical than over-dilution
TB-5005 mg1–2 mLCommon practical range
TB-50010 mg2 mLKeeps draw volumes manageable
GHK-Cu50 mg2–3 mLOften diluted more to improve comfort
GHK-Cu100 mg3 mLHigher volume may reduce concentration-related discomfort
CJC-1295 (No DAC)5 mg1–2 mLCommon small-vial reference
CJC-1295 (No DAC)10 mg2 mLPractical for larger vial size
CJC-1295 DAC5 mg1–2 mLCommon small-vial reference
CJC-1295 DAC10 mg2 mLPractical for larger vial size
Ipamorelin5 mg1–2 mLCommon small-vial reference
Ipamorelin10 mg2 mLKeeps concentration easy to work with
Sermorelin5 mg1–2 mLCommon practical range
Sermorelin10 mg2 mLEasy reference concentration
Tesamorelin5 mg1–2 mLCommon practical range
Tesamorelin10 mg2 mLEasy reference concentration
AOD-96045 mg1–2 mLCommonly kept fairly concentrated
AOD-960410 mg2 mLPractical larger-vial reference
HGH Frag 176-1915 mg1–2 mLCommon practical range
HGH Frag 176-19110 mg2 mLKeeps concentration straightforward
MOTS-c10 mg1–2 mLCommon practical range
MOTS-c20 mg2 mLEasy reference concentration
MOTS-c40 mg2–3 mLHigher vial size may need more volume
5-Amino-1MQ30 mg2–3 mLHigher mg vial; practical concentration range
5-Amino-1MQ50 mg3 mLCommon upper-end reference volume
Epitalon10 mg1–2 mLCommon practical range
Epitalon50 mg2–3 mLLarger vial size; often needs more volume
Kisspeptin-105 mg1 mLSimple small-vial reference
Kisspeptin-1010 mg1–2 mLCommon practical range
PT-14110 mg1–2 mLOften kept concentrated
Melanotan II10 mg1–2 mLOften kept concentrated
DSIP5 mg1 mLSimple small-vial reference
Selank10 mg1–2 mLCommon practical range
Semax10 mg1–2 mLCommon practical range
Thymosin Alpha-15 mg1–2 mLCommon small-vial reference
Thymosin Alpha-110 mg2 mLEasy reference concentration
Thymulin10 mg1–2 mLCommon practical range
LL-375 mg1 mLCommonly kept concentrated
SS-3110 mg1–2 mLCommon practical range
KPV10 mg1–2 mLCommon practical range
KLOW80 mg3 mLLarger vial; 3 mL keeps concentration practical
NAD+500 mg3–5 mLHigher volume range often used due to larger vial size
NAD+1000 mg5–10 mLLarger-volume exception compared with most peptide vials

Need a Different Concentration?

These examples represent common reference volumes only. If you need a custom concentration or want to calculate exact U-100 syringe unit conversions, use the Peptide Reconstitution Calculator.

Peptide Reconstitution Calculator

Important Note

Reconstitution volume can vary based on research objectives, desired concentration, vial size, and measurement preferences. This chart is intended as a general reference resource and should not be interpreted as a required or universal reconstitution standard.

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