Product Usage Guide
Essential instructions, handling procedures, and reference protocols for IASP Superpharma products.
DIY BAC Water
This guide is provided for educational purposes only. IASP Superpharma assumes no responsibility for misuse, improper handling, or outcomes resulting from the use of this information.
Introduction
Bacteriostatic (BAC) water is commonly used for peptide reconstitution and multi-use sterile preparations.
While pre-made BAC water is available for purchase, some users may prefer preparing small quantities independently.
Materials Needed
- • Clean distilled or bottled water
- • Insulin syringe
- • Benzyl Alcohol (99.5% or higher)
- • Alcohol wipes or swabs
- • Empty sterile vial(s)
Avoid using contaminated or questionable water sources. Distilled or sealed bottled water is generally preferred.
BAC Water Ratio
BAC water is typically prepared as a solution containing approximately 0.9% benzyl alcohol.
Reference conversions: 100 units = 1 mL, 1 unit = 0.01 mL, 1 mL = 1 cc.
Basic Preparation Steps
- 1. Sanitize vial tops using alcohol wipes.
- 2. Measure the appropriate amount of benzyl alcohol.
- 3. Draw sterile water into the vial.
- 4. Add the measured benzyl alcohol solution.
- 5. Store the prepared vial appropriately.
Updated on August 12, 2022
Extracting Oil From Stealth Bottles
This guide is provided for informational and educational purposes only. IASP Superpharma assumes no responsibility for misuse, contamination, improper handling, or outcomes resulting from these procedures.
Introduction
IASP Superpharma states that stealth oils are packaged using sterile handling procedures and sealed in controlled environments prior to shipment.
The following methods outline common approaches users may take when transferring oils from stealth packaging into more practical storage formats for personal use.
General Sterility Guidelines
Sterility and cleanliness are essential during handling procedures.
- • Wear gloves and a surgical mask whenever possible
- • Use sterile syringes and clean equipment only
- • Disinfect vial tops and surfaces before handling
- • Store oils in cool, dry, and dark environments
- • Avoid exposing products to unnecessary contaminants
Method 1: Prefilling Syringes
Some users choose to preload sterile syringes in advance for convenience and injection schedule management.
This method involves carefully transferring oil into sterile syringes while minimizing contamination exposure.
After filling, users commonly replace the original drawing needle with a fresh sterile needle before storage or use.
Preloaded syringes should be stored in a clean, cool, and dry environment away from direct sunlight.
Method 2: Keeping Oil in the Original Bottle
Some users prefer leaving the oil inside the original stealth container and withdrawing product only when needed.
Proper sterile handling procedures remain important each time the container is opened or accessed.
Method 3: Re-Filtering and Re-Bottling
Re-filtering and transferring oil into sterile glass vials is commonly considered the most controlled handling option.
This process may involve sterile filtration equipment, vacuum-assisted filtering systems, and properly sterilized glass containers and rubber stoppers.
Users performing this process should ensure all materials are fully dry and sanitized before use.
Filtering equipment and sterile handling procedures require proper technical knowledge. Incorrect handling may result in contamination or product damage.
Additional Notes
IASP Superpharma recommends using only appropriate sterilization products such as denatured alcohol or isopropyl alcohol solutions intended for laboratory or medical cleaning applications.
Additional information may be available through the FAQ and Product Usage Guide sections.
Updated on March 19, 2022
Extracting Oil From Stealth Sachets
This guide is provided for educational and informational purposes only. IASP Superpharma assumes no responsibility for contamination, misuse, improper handling, or outcomes resulting from these procedures.
Introduction
IASP Superpharma stealth sachets are designed for discreet transport and storage of oil-based products while maintaining sterility and product integrity.
Each sachet is designed to hold approximately 10mL of liquid and is packaged in a sealed sterile environment.
Materials Needed
- • 10mL sterile syringe
- • 21G or 23G sterile needle
- • Alcohol wipes or swabs
- • Sterile glass vial (optional but recommended)
Always work in a clean environment and wash hands thoroughly before handling sterile equipment.
Step 1: Sterilize the Sachet
Wipe one corner of the sachet thoroughly using an alcohol wipe.
If transferring into a vial, sterilize the vial stopper as well and allow surfaces to dry completely before proceeding.
Step 2: Draw the Oil
- 1. Attach the sterile needle to the syringe.
- 2. Pierce the sterilized corner of the sachet carefully.
- 3. Insert the needle slightly into the sachet opening.
- 4. Slowly draw the oil into the syringe.
- 5. Continue until the sachet is emptied completely.
Storage Options
After extraction, the product may be stored in either:
Storage Recommendations
Store oils in a cool, dry, and dark environment away from excessive heat or direct sunlight.
Refrigeration or freezing is generally discouraged as it may affect oil consistency or stability.
Ethyl Oleate (EO) Preparations
Products containing Ethyl Oleate (EO) may interact with syringe plungers during extended storage periods.
For EO-based products intended for long-term storage, transferring the oil into sterile glass vials is strongly recommended.
Updated on March 13, 2022
Fixing Crashed Gear
This guide is provided for informational purposes only. IASP Superpharma assumes no responsibility for misuse, improper handling, or damage resulting from these procedures.
What Is “Crashed” Gear?
“Crashing” occurs when active ingredients separate from the oil solution and form visible crystal or solid deposits inside the vial.
This commonly appears as cloudiness, particles, or sediment collecting at the bottom of the container.
Is Crashed Gear Unsafe?
Crashed gear is not necessarily damaged or unusable.
In many cases, the product may return to normal appearance once gently reheated using proper methods.
What Causes Gear to Crash?
Some compounds have limited solubility in oil-based solutions and require solvents to remain stable.
Crashing is more likely to occur under the following conditions:
- • Low storage temperatures
- • Reduced solvent concentration
- • High concentration formulations
Why Some Pharmaceutical Products Rarely Crash
Certain pharmaceutical-grade products contain higher concentrations of solvents designed to improve long-term solubility and stability.
However, increased solvent use may also increase irritation or discomfort for some users.
How to Reheat Crashed Oil
Crashed oil may sometimes return to normal clarity after gentle warming.
- 1. Boil water in a pot or pan.
- 2. Remove the water from direct heat.
- 3. Place the vial inside a sealed plastic bag.
- 4. Submerge the bag partially into the warm water.
- 5. Allow the vial to warm gradually until the oil clears.
- 6. Remove carefully and allow it to cool naturally.
- 7. Store at room temperature afterward.
Do not microwave vials or expose products to direct flame or excessive heat during reheating procedures.
Continued Issues
If the product continues to show abnormal appearance after reheating attempts, contact customer support for further assistance.
Updated on March 18, 2022
Peptides Dose & Use Cheatsheet
Peptides Dose & Use Cheatsheet
The following information is provided for educational and reference purposes only. Dosages and protocols shown below are based on publicly available research, clinical studies, and experimental data.
Always consult a qualified healthcare professional before using any peptide, hormone, or performance-enhancing compound.
Healing & Repair
| Peptide | Primary Use | Typical Research Protocol |
|---|---|---|
| BPC-157 | Healing | 250–500 mcg/day for 4–12 weeks |
| TB-500 | Regeneration | 4–8 mg/week loading, then 2–5 mg/week |
| GHK-Cu | Collagen Support | 1–2 mg/day SC or topical |
| KPV | Anti-Inflammatory | 250–500 mcg/day |
| LL-37 | Antimicrobial | 100–500 mcg/day |
GH & Performance
| Peptide | Primary Use | Typical Research Protocol |
|---|---|---|
| Sermorelin | Natural GH Support | 200–500 mcg bedtime SC |
| Tesamorelin | Visceral Fat Reduction | 2 mg nightly SC |
| CJC-1295 DAC | Sustained GH Release | 1–2 mg/week SC |
| Ipamorelin | Clean GH Release | 200–300 mcg 2–3x/day |
| IGF-1 LR3 | Hypertrophy | 20–100 mcg post-workout |
Fat Loss & Metabolic
| Peptide | Primary Use | Typical Research Protocol |
|---|---|---|
| AOD-9604 | Lipolysis | 300–600 mcg AM fasted |
| HGH Fragment 176-191 | Fat Burn | 250–500 mcg fasted/pre-cardio |
| MOTS-c | Mitochondrial Support | 5–15 mg 2–3x/week |
| Semaglutide | GLP-1 Weight Loss | 0.25–2.4 mg/week |
| Tirzepatide | Dual Agonist | 2.5–15 mg/week |
Cognitive & Nootropic
| Peptide | Primary Use | Typical Research Protocol |
|---|---|---|
| Semax | Focus | 300–600 mcg/day nasal or SC |
| Selank | Anxiety Support | 250–500 mcg/day nasal or SC |
| DSIP | Sleep Support | 100–250 mcg before bed |
| Dihexa | Synaptogenesis | 10–30 mg oral |
Immune, Longevity & Sexual Health
| Peptide | Primary Use | Typical Research Protocol |
|---|---|---|
| Thymosin Alpha-1 | Immune Support | 1.6 mg twice weekly |
| Epitalon | Longevity | 5–10 mg/day for 10–20 days |
| PT-141 | Libido | 0.5–2 mg as needed |
| Melanotan II | Tanning | 0.25–1 mg/day |
| Collagen Peptides | Skin & Joint Support | 10–20 g orally daily |
Research protocols summarized from publicly available clinical, preclinical, and experimental literature.
Re-Bottling Bulk Peptide Powder
This guide is provided for informational and educational purposes only. IASP Superpharma assumes no responsibility for misuse, contamination, improper handling, or outcomes resulting from these procedures.
Introduction
Bulk peptide powders are commonly supplied in sealed powder form for long-term storage and flexible dosing applications.
The following information outlines commonly discussed methods for preparing or rebottling peptide powders into usable storage formats.
Method 1: Kitchen Top Rebottling
The “kitchen top” approach involves manually measuring powder quantities into sterile vials using microgram scales and custom measuring tools.
This method is generally favored for simplicity, flexibility, and lower equipment requirements.
- • Microgram scale
- • Sterile empty vials
- • Protective gloves and mask
- • Custom measuring scoop
- • Optional small vacuum pump setup
Proper sterile handling practices are strongly recommended throughout the entire process.
Understanding Powder Weight
Lyophilized peptide powders often contain additional stabilizing materials such as mannitol alongside the active ingredient.
As a result, total powder weight may be significantly higher than the actual active peptide content alone.
Accurate measuring equipment is recommended when preparing individual dose quantities.
Method 2: Laboratory Lyophilization
Professional pharmaceutical manufacturers commonly use lyophilization (freeze-drying) systems to produce stable, vacuum-sealed peptide vials.
This process requires specialized laboratory equipment, environmental controls, and technical expertise.
- • Extended shelf stability
- • Improved storage convenience
- • Reduced moisture exposure
- • Professional pharmaceutical presentation
Storage Recommendations
Peptide powders should generally be stored in cool, dry, and protected environments away from moisture, excessive heat, and direct sunlight.
Proper sealing and sterile handling are important to help preserve product stability over time.
Additional Notes
Some users may prefer vacuum-sealed storage methods to reduce air exposure before long-term storage.
Laboratory-grade procedures typically provide the highest level of consistency and stability for commercial-scale production.
Updated on March 19, 2022
Storage / Expiration Dates
Proper storage conditions may help preserve product stability, sterility, and overall shelf life. Exposure to heat, light, moisture, and oxygen may accelerate degradation.
Oil-Based Injectables
IASP Superpharma states that most standard injectable products use grapeseed oil (GSO) as the carrier base.
When stored correctly and handled using sterile procedures, unopened oil-based products may remain stable for extended periods.
Factors That Affect Shelf Life
Recommended Storage Conditions
Oil-based injectables are generally best stored in a cool, dry, and dark environment away from direct sunlight.
Refrigeration is usually unnecessary and may increase the likelihood of product crystallization or “crashing.”
Typical Shelf Life Estimates
Glycol-Based Products
Some specialty injectable products use glycol-based carriers, which may demonstrate improved oxidation resistance compared to traditional oil-based carriers.
IASP Superpharma states that these products may remain stable for extended periods when stored properly.
Peptides (Lyophilized Powder)
Lyophilized (freeze-dried) peptide powders generally maintain long shelf stability while unopened and stored correctly.
Once peptides have been reconstituted with liquid, refrigeration is strongly recommended.
Additional Notes
Avoid repeated temperature fluctuations, direct sunlight, and unnecessary exposure to open air whenever possible.
Products showing unusual odor, discoloration, contamination, or instability should not be used.
Updated on March 13, 2022
Why Do I Feel Like Shit?
The information below is provided for educational purposes only and should not be interpreted as medical advice, diagnosis, or treatment recommendations.
Why Do I Feel Terrible?
Many factors can influence how someone feels while using performance-enhancing compounds, including dosage, recovery, training intensity, nutrition, hydration, sleep quality, and general health.
Individual response varies significantly, and what works for one person may not work for another.
Common Factors That May Contribute
Training & Lifestyle Considerations
Symptoms may sometimes result from a mismatch between recovery, nutrition, training volume, and compound dosage.
Factors such as insufficient sleep, excessive stress, dehydration, or inadequate cardiovascular activity may negatively affect overall wellbeing.
More Is Not Always Better
Higher doses do not automatically produce better outcomes.
Many users report improved performance, recovery, and general wellbeing when using more moderate and sustainable protocols.
If you experience persistent side effects, unusual symptoms, or health concerns, discontinue use and consult a licensed healthcare professional immediately.
Bloodwork & Monitoring
Routine blood testing and medical monitoring may help identify issues such as elevated blood pressure, abnormal hematocrit, liver strain, lipid imbalance, or hormone irregularities.
Additional Notes
IASP Superpharma does not provide physician consultations, individualized medical guidance, bloodwork interpretation, or personalized training and nutrition programs.
Customers are encouraged to educate themselves thoroughly and make informed health decisions responsibly.
Updated on March 11, 2026