Endocrine signaling research
CJC-1295 No DAC
Péptido de investigación de señalización endocrina liofilizado para revisión de sistemas
CJC-1295 No DAC is a short-acting GHRH analog studied as a pituitary GH-axis signaling reference.
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Get catalog updatesFor laboratory research use only. Not for human or veterinary use. Not intended to diagnose, treat, cure, mitigate, or prevent disease.
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Contexto de investigación
Perfil de investigación de CJC-1295 No DAC
CJC-1295 No DAC is used as a shorter-acting GHRH analog reference in pituitary GH-axis research. Studies focus on GHRH-receptor activation, stimulated GH release, pulse timing, downstream IGF-1 markers, and comparisons with longer-acting analogs. The “No DAC” designation separates this material from CJC-1295 versions designed with a drug-affinity complex for albumin binding and prolonged exposure. It is generally selected when the experimental design values shorter signaling windows or direct comparison with sermorelin and secretagogue compounds. Nomenclature for modified GRF and CJC-related peptides can vary, so sequence identity, amount, and batch documents are important parts of product selection.
Mecanismo propuesto
A short-acting GHRH-receptor agonist concept, often associated in commerce with modified GRF(1-29). GHRH receptor activation increases cyclic AMP in pituitary somatotrophs and promotes pulsatile growth-hormone release.
Efectos reportados en estudios
- GHRH analog studies report acute increases in GH release and downstream IGF-1-related signaling, depending on analog and exposure.
- Shorter exposure is expected to produce a different release profile from albumin-binding CJC-1295 with DAC.
- The label "CJC-1295 No DAC" is used inconsistently and may not describe the same sequence studied under the original CJC-1295 name.
Criterios de investigación comunes
Sequence confirmation, GHRH receptor activity, cyclic AMP, GH pulse amplitude and duration, IGF-1, pituitary responsiveness, degradation, and comparison with DAC-modified material.
Evidencia y limitaciones
GHRH biology is established, but direct evidence is weakened by naming and identity ambiguity. Sequence and batch documentation are especially important.
External reading
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