Peptides like NAD+, BPC-157, TB-500, and CJC-1295 + Ipamorelin help you recover faster, perform better, and keep your energy levels throughout the day
One more important point
A consultation allows us to assess your needs and determine if this treatment is suitable for you
(3) The peptide has been researched for its potential action across diverse functions, including tissue repair, pain perception, gastrointestinal regulation, and tendon, ligament, muscle, and bone cell reparations
That's a fancy way of saying it's three amino acids bound to a copper ion

The bioavailability problem Absorption comparison: Injection: 80-100% bioavailability (nearly all absorbed) Nasal spray: 30-70% bioavailability (varies by peptide) Oral: 0-5% bioavailability (most peptides destroyed) Why nasal lower than injection: Must penetrate nasal mucosa (barrier) Some drips down throat (swallowed = lost) Variable absorption efficiency Technique-dependent Individual variation high What this means: You need MORE peptide via nasal spray Typically 2-3x higher dose than injection Example: 1mg injection = 2-3mg nasal Increases cost significantly But still cheaper/easier than injection for some Conversion guidelines by peptide PT-141: Injection: 1.5-2mg typical dose Nasal equivalent: 3-5mg Conversion ratio: 2-3x Semax: Designed for nasal use (no conversion needed) Standard nasal dose: 200-600mcg per spray 2-3 sprays per nostril typical Follow product guidelines BPC-157 (if attempting nasal): Injection: 250-500mcg Nasal (estimated): 750-1500mcg But: Injection or oral likely better Nasal BPC-157 not well-studied General conversion approach: Start with 2-3x injection dose Assess results after 2-3 uses Increase by 25-50% if weak effects Find minimum effective nasal dose Individual variation significant Cost implications: Using 2-3x more peptide = 2-3x cost Nasal spray more expensive per dose Trade-off: Convenience vs cost Worth it for needle-phobic Not worth it if injections acceptable Use peptide cost calculator to compare routes
