Dexters Labs ACP 105 5mg 90 Capsules
|
Feature |
Details |
|---|---|
| Chemical Name | ACP-105 |
| Molecular Formula | C16H19ClN2O |
| Molecular Weight | 290.79 g/mol |
| Form | Encapsulated compound (90 capsules) |
| Purity | ≥98% (HPLC Verified) |
| Solubility | DMSO, ethanol, organic solvents |
| Storage | Cool, dry place away from sunlight |
| Brand | Dexters Labs |
| Availability | Pakistan |
| Product Code | ACP-105 |
| Availability | In Stock |
| Type | Capsules |
| Size | 90 |
| Category | Peptide SARM |
| Brand | Dexters Labs |
| Shipping | 01 day shipping. (Free pickup today) |
Dexters Labs ACP-105 5mg 90 Capsules in Pakistan | Strength & Lean Muscle Support
Dexters Labs ACP-105 5mg 90 Capsules is a high-quality encapsulated research compound designed for advanced laboratory and experimental study applications. Each bottle contains 90 capsules with a precise 5mg dosage, ensuring consistency and accuracy in controlled research environments.
ACP-105 is widely referenced in scientific research settings involving androgen receptor interaction models and non-steroidal performance pathway studies. It is commonly included in experimental protocols focused on conditioning, strength-related mechanisms, and receptor binding behavior.
This capsule-based formulation provides ease of handling and accurate dosing for structured research applications. It is intended for advanced users involved in controlled scientific or experimental environments requiring reliable compound consistency.
Available in Pakistan through Velmora.pk with nationwide delivery service.
Key Features & Specifications
- High-purity ACP-105 research compound
- 5mg precise capsule formulation
- Encapsulated format for controlled dosing
- ≥98% purity (HPLC verified)
- Designed for advanced laboratory research
- Stable and consistent formulation
- Suitable for experimental study protocols
Research Applications
ACP-105 is commonly used in laboratory research involving:
- High-affinity androgen receptor binding studies
- Non-steroidal anabolic pathway research models
- Conditioning and performance mechanism studies
- SARMs synergy and stack interaction research
- Rapid-response experimental protocols
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