BPC-157 10mg

$59.99

Each vial contains 10mg of highly pure BPC-157.

BPC-157, short for Body Protection Compound 157, is a chain of fifteen amino acids with various mechanisms of action, including activating cells involved in tissue repair, including muscles, tendons, ligaments and the gastrointestinal tract, stimulating the synthesis of growth factors, and inhibiting inflammation.

BPC-157 5mg + TB-500 5mg

$69.99

Each vial contains 5mg of highly pure BPC-157.

BPC-157, short for Body Protection Compound 157, is a chain of fifteen amino acids with various mechanisms of action, including activating cells involved in tissue repair, including muscles, tendons, ligaments and the gastrointestinal tract, stimulating the synthesis of growth factors, and inhibiting inflammation.

CJC-1295 (no DAC) 10mg

$74.99

Each vial contains 10mg of highly pure CJC-1295 no DAC. Please note this batch is overdosed to closer to 12.5mg per vial per the Janoshik test report.

Overview
CJC-1295 no DAC is a synthetic peptide belonging to the growth hormone–releasing hormone (GHRH) analog class. Unlike the DAC (Drug Affinity Complex) version, the no-DAC form has a shorter half-life, making it more suitable for research into pulsatile growth hormone release and its downstream biological effects.

Melanotan-1 10mg

$44.99

Each vial contains 10mg of highly pure Melanotan-1 in lyophilized form.

Melanotan-1 is a synthetic peptide formulated to support the body’s natural pigmentation processes. Designed for subcutaneous administration under professional supervision, it is intended for use in controlled settings where modulation of melanin production is desired. Manufactured to high purity standards, it offers consistent quality for specialized applications.

NAD+ 500mg

$54.99

Each 10mL vial contains 500mg of lyophilized NAD+.

Overview:
High-purity NAD+ (Nicotinamide Adenine Dinucleotide) solution used in research on cellular energy, mitochondrial function, metabolic pathways, and stress responses.

Potential Benefits (Research Context Only):
Studies suggest NAD+ may:

  • Support cellular energy production (ATP generation)

  • Influence mitochondrial health and biogenesis

  • Play a role in DNA repair pathways

  • Affect cellular aging mechanisms (sirtuin activity)

  • Modulate oxidative stress responses