Available
CJC-1295 No DAC
- Synthetic research peptide for in-vitro structure & function studies
- Independently HPLC-tested and batch-verified
- Batch-specific Certificate of Analysis included with every order
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Every vial is quality-checked to ensure purity and batch-to-batch consistency.
Verified lab quality
- HPLC-tested to ≥ 98% (HPLC) purity
- Batch-specific Certificate of Analysis
- Stored under controlled laboratory conditions
Research Use Only. Not for human or veterinary use. By purchasing you confirm you are a qualified researcher and accept responsibility for safe, lawful handling.
Introduction
CJC-1295 No DAC represents a synthetically developed peptide analog that has undergone significant study in relation to growth hormone axis research. This version of the peptide is different from the DAC version of the peptide as it does not contain the Drug Affinity Complex (DAC), thus becoming a very important control peptide when studying receptor actions, signaling processes and pharmacokinetics.
Investigation into the effects of CJC-1295 No DAC remains of increasing interest as researchers seek to understand endocrine regulation and peptide action and cellular communications. Experiments are often conducted under controlled conditions, requiring reliability and documentation of results in accordance with laboratory standards.
This product is suitable only for research purposes and is not available for any medical or veterinary uses..
About CJC-1295 No DAC
The CJC-1295 No DAC is a member of the GHRH analogue family that was created for the purpose of studying biological signalling through receptors. The Drug Affinity Complex being stripped off makes this compound different from the other form that stays in the body system for a long time.
In terms of biochemical experiments, the compound is frequently used to study the interactions between the GHRH receptor and the intracellular pathways that are triggered by the receptor. This experiment sheds light on endocrine signaling, but not on any kind of treatment result.
Analytically, this peptide is important due to the fact that it stays in the body for a shorter period of time than other compounds.
How It Is Studied
Studies done about CJC-1295 without DAC usually concentrate on molecular behavior rather than clinical outcomes. Experimental studies are conducted in such a way that receptor affinity, stability, and bioactivity are tested through lab methods.
Lab-based tests may include:
- Receptor binding assay
- Peptide stability test
- Signal transduction study
- Conducting comparative pharmacokinetics
- Studies about growth hormone axis pathway
- Cellular response test
- Study of structure of peptides
- Biochemical assays in vitro
Most experiments conducted in the literature usually compare No DAC drugs with prolonged peptides to understand the impact of modification on their circulation in receptor sites in lab systems.
These experiments continue to help in peptide chemistry and protein signaling studies.
Scientific Characteristics
The structural design of CJC-1295 No DAC has received much interest because of its well-designed modifications of specific amino acids that enhance resistance to enzymes without reducing its affinity to the GHRH receptor.
Some of the properties being studied include:
Molecular Stability
Controlled environmental studies enable researchers to evaluate peptide stability in relation to certain environmental parameters.
Structural Identity
Identity determination is usually performed through the use of analytical equipment that can be used to identify the actual compound and separate it from any contaminants or by-products of peptide synthesis.
Purity Assessment
Advanced analytical technologies can assist in the determination of purity as well as maintain consistency of batches in the laboratory setting.
Reproducibility
Consistency of batch production in the laboratory ensures reliable scientific research.
The above-mentioned properties are being used in ongoing research in the field of peptide chemistry and laboratory reproducibility.
Current Research Areas
Interest in studying CJC-1295 No DAC lies in many fields of the peptide science. Instead of concentrating on medical applications, modern studies focus on the molecular and biochemical behavior of the compound.
Continuing areas of scientific interest in regard to the compound include:
Growth Hormone Signalling
Studying the mechanisms of receptor activation associated with endocrine and intracellular signaling.
Peptide-Receptor Dynamics
Evaluation of the effects of structural changes on the mechanism of recognition and binding of receptors and further molecular events.
Comparative Peptide Research
The compound is often compared to other artificial GHRH analogues in order to compare biological persistence, receptor exposure, and signaling.
Protein and Peptide Engineering
Structural optimization methods that affect the stability of the compound are studied in order to preserve biological specificity.
Cellular Communication
Signals that are activated after receptor interaction are analyzed and studied in relation to general biochemical signaling pathways.
Pharmacokinetic Investigation
Peptide breakdown, clearance, and persistence are evaluated in experimental settings.
Modern studies help to expand scientific literature on peptides and molecular biology.
Research Quality & Testing
Sound laboratory research starts with thorough analytical verification. All research peptides must be thoroughly tested for quality prior to inclusion in any research.
High-quality CJC-1295 No DAC research peptides usually include:
- HPLC testing performed independently
- Liquid Chromatography Mass Spectrometry
- Certificate of Analysis for each batch
- Identity verification
- Purity verification
- Laboratory traceability
- Research documentation
- Laboratory lot records
- Process quality control
High-Performance Liquid Chromatography (HPLC) is one of the major analytical methods used to verify peptide purity through molecular separation in a sample. It allows labs to compare quality of production batches.
Liquid Chromatography-Mass Spectrometry (LC-MS) is a complimentary method used to verify peptide identity and molecular weight, thus ensuring that the synthesized peptide meets all specifications.
Batch COA is a document containing all analytical results on a certain production batch allowing researchers to check their purity, identity and laboratory information before starting experiments.
Laboratory Storage
Peptide integrity is best preserved through proper laboratory and environment handling.
Proper laboratory storage guidelines typically should consist of:
- Storage of lyophilized material in cooled laboratories where applicable.
- Holding storage containers away from direct light.
- Storing sealed vials until needed in laboratories.
- Reducing exposure to multiple environmental changes.
- Minimizing unnecessary handling.
- Conducting laboratory storage procedures in laboratory documentation.
- Conducting storage procedure tracking in batches within research facilities.
Sample integrity is preserved using proper storage procedures as well as proper laboratory handling procedures set by each research facility.
Conclusion
CJC-1295 No DAC still retains a significant standing in current peptide science due to its applicability in receptor research, endocrinology and chemical signaling studies. Its design gives scientists the ability to study peptide-receptor interactions under well-controlled laboratory circumstances by comparing the molecular behavior of molecules with other synthetic analogues.
When it comes to purchasing a high purity peptide, one needs to put more weight on analysis than the advertising. HPLC Tested Peptide, LC-MS Tested, comprehensive research information, Quality Control and batch Certificate of Analysis all together make up the transparency that can be expected in a professional laboratory setting.
Whether it is purchased from a UK peptide supplier specializing in peptides or used in any other laboratory research project, adhering to research standards, tracking the batch, and proper handling of the product in the laboratory are all essential.
Frequently asked questions
This is investigated in laboratory experiments studying the interactions between growth hormone-releasing hormone receptor and peptide. This product is for Research Use Only.
The No DAC version does not have the Drug Affinity Complex and is thus ideal for comparative laboratory studies involving analysis of receptor function, signaling time period and pharmacokinetics.
Independent HPLC analysis facilitates evaluation of peptide purity for quality assessment prior to any laboratory research.
LC-MS analysis facilitates evaluation of peptide molecular identity and the expected molecular mass.
The batch-specific Certificate of Analysis (COA) offers analytical data concerning the specific production batch such as the peptide purity and molecular identity.
No. CJC-1295 No DAC manufactured by UK research peptide manufacturers is intended for use in laboratory research only. It is not intended for therapeutic, diagnostic, veterinary and clinical use.
Technical specifications
The CJC-1295 No DAC research peptide is for use in the laboratory environment under controlled scientific study conditions. Prior to using this product in experiments, researchers must carefully check both the product label and the relevant batch documents.
| Chemical name | CJC-1295 No DAC |
| CAS number | 863288-34-0 |
| Molecular formula | C152H251N43O43 |
| Molecular weight | 3369.1 g/mol |
| Purity | ≥ 98% (HPLC) |
| Form | Lyophilised powder |
| Storage | 2°C to 8°C (refrigerated), protect from light |
All specifications, including purity values and analytical test results, should be checked against the Certificate of Analysis for the specific batch supplied.
Certificate of Analysis
Every batch of CJC-1295 No DAC is independently analysed by HPLC, with mass-spec for identity. A batch-specific Certificate of Analysis is supplied with your order, confirming the exact purity of the vial you receive.
Download CJC-1295 No DAC CoA (PDF)


