CJC-1295 NO DAC (MOD GRF 1-29) For Sale
- Batch and lot coded with publicly visible lab reports to ensure quality and transparency.
- Free of adulterants, excipients and flow agents to ensure purity.
- Tamper-proof seal to ensure safety in transit.
- RTF vials are Washed, Depyrogented, and ETO Sterilized.
- Aliquot injectable vials are fully sterilized and filtered.
Cas Number
446262-90-4
PubChem CID
91976842
Molecular Weight
3367.9 g/mol
Molecular Formula
C152H252N44O42
Synonyms
L-Lysinamide,L-tyrosyl-D-alanyl-L-a-aspartyl-L-alanyl-L-isoleucyl-L-phenylalanyl-L-threonyl-L-glutaminyl-L-seryl-L-tyrosyl-L-arginyl-L-lysyl-L-valyl-L-leucyl-L-alanyl-L-glutaminyl-L-seryl-L-alanyl-L-arginyl-L-lysyl-L-leucyl-L-leucyl-L-glutaminyl-L-a-aspartyl-L-isoleucyl-L-leucyl-L-seryl-L-arginyl-N6-[3-(2,5-dihydro-2,5-dioxo-1H-
Storage (Lyophilized)
Cool, Dry, and dark place. Refrigerated after reconstituted.
CJC-1295 NO DAC (Mod GRF 1-29) – 2mg | Buy CJC-1295 USA & Canada
CJC-1295 NO DAC, also known as Mod GRF 1-29, is a modified growth hormone releasing hormone (GHRH) analog designed for short-acting activity in research settings. Unlike the DAC version, this peptide provides rapid stimulation of growth hormone (GH) release with a shorter half-life, making it ideal for controlled and pulsatile research applications.
At StrateLabs, CJC-1295 NO DAC is supplied as a high-purity research peptide, handled with strict quality standards to ensure consistency and reliability. Customers looking to buy CJC-1295 NO DAC online in the USA or Canada benefit from fast shipping, secure packaging, and a seamless ordering experience.
Key Features & Highlights
- Short-acting GHRH analog (Mod GRF 1-29)
- Designed for pulsatile GH release research
- Greater control over timing in experimental studies
- High-purity peptide for consistent research outcomes
- Widely used in growth hormone pathway studies
Research Applications
CJC-1295 NO DAC is commonly used in research involving growth hormone secretion, metabolic function, and recovery analysis. Due to its shorter half-life, it allows researchers to study controlled GH pulses and timing-specific effects.
It is frequently included in research alongside compounds such as Ipamorelin to explore synergistic effects on GH release. This makes it a key peptide in studies focused on hormone regulation, performance optimization, and metabolic pathways.




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