How We Test — OPTMZ Peptides
The Principle — OPTMZ Peptides
The Principle

Research-grade peptides demand absolute clarity.

At OPTMZ Peptides, every product we sell undergoes rigorous third-party laboratory testing for purity verification and quality assurance. Test results are published directly on every product page and in the public Lab Results archive. The COA travels with the vial.

This is not standard in the industry. Most peptide suppliers rely on in-house testing claims, manufacturer-supplied certificates, or unverified purity statements. We do not. Our entire model is built on the assumption that the buyer should be able to verify every claim — independently, and without our help.

The Difference — OPTMZ Peptides
The Difference

Radical transparency over opacity.

We test our own products. So does every other peptide supplier. The difference is what we do with the results.

// What the industry does

Hidden testing

  • Test in-house — but keep results secret or share only with select customers
  • Publish unverified claims — "99% pure" with no supporting documentation
  • Hide testing methodology — proprietary protocols customers can't verify
  • No verification pathway — customers must trust claims blindly
  • Hard to audit — testing-lab contact information unavailable or withheld
// What OPTMZ Peptides does

Published & verifiable

  • Test every batch — using HPLC, mass spectrometry, and a five-method contamination panel
  • Publish complete Certificates of Analysis — not summaries, the actual COAs
  • Name the testing laboratory — Krause Analytical, DEA-registered, Austin TX
  • Encourage customer verification — call Krause directly to confirm any batch
  • Show our work — purity %, batch numbers, methods, test dates, analyst signatures
The Process — OPTMZ Peptides
The Process

Five steps. One chain of evidence.

Every batch we ship has been through this process. Every result is documented in the Certificate of Analysis that travels with the vial.

01 / Sample

Acquisition & Preparation

Representative sample drawn from the batch. Unique batch number assigned. Chain-of-custody documented from supplier to lab.

02 / HPLC

Purity Quantification

High-Performance Liquid Chromatography. Measures the percentage of intact, target peptide in the sample. The primary purity metric.

03 / MS

Identity Confirmation

Mass Spectrometry. Confirms the molecular weight matches the target peptide's theoretical mass. Identity, not just purity.

04 / Panel

Contamination Screens

Endotoxin (LAL), heavy metals (ICP-MS), microbial bioburden, pH stability, and visual inspection. Five layers of safety verification.

05 / COA

Certificate of Analysis

Krause Analytical generates the COA. We publish it on the product page and in the Lab Results archive. The receipt for every claim.

The Two Primary Methods — OPTMZ Peptides
The Two Primary Methods

HPLC measures purity.
Mass spec confirms identity.

Together, they provide complete quality verification: your peptide is both pure AND correct. Each batch is run through both before release.

Method 01

High-Performance Liquid Chromatography.

HPLC is the gold standard for peptide purity verification. It is the primary method used to measure what percentage of your sample is intact, target peptide.

How HPLC works
  • The peptide sample is dissolved and injected into the HPLC system
  • A liquid mobile phase carries the sample through a stationary-phase column
  • Different compounds separate from one another based on their chemical properties
  • A detector measures each compound as it elutes — the output is a chromatogram, a graph of every compound present and how much of each
What HPLC tells us about your batch
  • Peptide purity percentage — exactly how much of the sample is the desired, intact peptide
  • Related peptide impurities — slightly modified versions present (oxidized, truncated, etc.)
  • Degradation products — evidence of damage from heat, light, or chemical breakdown
  • Foreign contaminants — compounds that should not be present
  • Batch consistency — whether all samples in the batch meet the specification
What we accept
OPTMZ Peptides specifies a minimum 98% HPLC purity threshold for release. Most batches test between 98.5% and 99.9%. Batches below 98% are rejected and never enter inventory.
Method 02

Mass Spectrometry.

Mass spectrometry is the confirmatory test that verifies the identity of your peptide. While HPLC tells us how pure the sample is, mass spectrometry tells us we have the correct compound.

How mass spectrometry works
  • The peptide sample is ionized — given an electrical charge
  • The resulting ions are separated based on their mass-to-charge ratio
  • A detector measures the mass of each ion individually
  • The output is a mass spectrum — peaks showing the molecular weights present in the sample
What mass spec confirms about your batch
  • Correct molecular weight — observed mass matches the peptide's theoretical mass within ±1–2 Da tolerance
  • Identity verification — the compound is the peptide it claims to be, not a similar substance
  • No mislabeled compounds — rules out batch mix-ups or substitution errors
  • Structural integrity — indicates the peptide chain is intact and not degraded
Why both methods, every batch

HPLC alone tells you purity, but not identity. Mass spec alone tells you identity, but not purity. Run together, they make the COA's claims complete.

HPLC

Tells us: how pure (e.g. 99.7%)

Doesn't tell us: which compound

+
Mass Spec

Tells us: which compound (correct molecular weight)

Doesn't tell us: how pure

Additional Tests — OPTMZ Peptides
Additional Tests

Five additional contamination and stability screens.

Beyond purity and identity, every batch is screened for contamination and stability across five additional dimensions. The full panel is documented in every Certificate of Analysis.

Test What it screens for Why it matters

Endotoxin (LAL)

Method

Bacterial endotoxin presence using Limulus amebocyte lysate testing.

Critical for research workflows requiring sterility. Endotoxin contamination invalidates downstream protocols.

Microbial Bioburden

USP <1111>

Bacterial and fungal colony counts, total aerobic and yeast/mold limits.

Essential for sensitive laboratory applications. Confirms absence of contamination from synthesis or handling.

Heavy Metals (ICP-MS)

ICH Q3D

Trace metal contamination across Pb, Cd, As, Hg, Ni and other elemental impurities.

Required for high-purity research. Heavy metal contamination is a known issue in peptide synthesis byproducts.

pH Stability

Method

Verification of solution stability at standard storage pH conditions.

Confirms the peptide remains structurally stable at expected research storage conditions. A stability indicator beyond purity alone.

Visual Inspection

QC

Lyophilized cake integrity, color, particulate matter, and physical form.

Final visual QC step before release. Catches issues that analytical methods alone might miss.

The Certificate of Analysis — OPTMZ Peptides
The Certificate of Analysis

The COA is the receipt.

Once Krause Analytical completes the analytical panel, they generate a formal Certificate of Analysis. We don't file these away — we publish them directly on every product page and in the public Lab Results archive.

What every COA contains
Certificate of Analysis● Verified
  • Product name, batch number, and lot identification
  • Test date and testing laboratory name (Krause Analytical)
  • HPLC purity percentage — primary quality metric
  • Molecular weight confirmation via mass spectrometry
  • Test methods used and equipment specifications
  • Specifications vs. actual results comparison
  • Endotoxin, microbial, heavy metals, pH stability, visual screens
  • Laboratory registration: DEA registration number
  • Analyst signature and lab director approval
  • Laboratory contact information for independent verification
How we publish them

We don't gate access to test results. The Certificate of Analysis is published in three places, all freely accessible:

On the product page

A "Verified Lab Analysis" card displays purity %, batch number, test date, and a download link. Visible without login.

In the Lab Results archive

Every batch ever released. Searchable by the batch number printed on your vial label. Browse the archive →

Downloadable as PDF

The complete Certificate of Analysis. Yours to keep, archive, share with your institution, or attach to your research records.

Reading a COA — OPTMZ Peptides
Reading a COA

Six steps to verify your specific batch.

Every Certificate of Analysis follows the same structure. Once you know what to look for, verification takes about ninety seconds.

01

Verify the batch number

The batch number printed on your vial must match the batch number on the COA. This confirms you received the exact batch that was tested. If they differ, contact us immediately — that should never happen.

02

Check the test date

Confirm the test date is recent — ideally within one to three months of your purchase date. Older results may indicate storage delays or a stale batch.

03

Read the HPLC purity result

Look for the line labeled "HPLC Assay" or "Purity %." Compare the actual result to the specification. If actual is greater than or equal to the specification, the batch meets standards.

Assay (HPLC): Target ≥98.0% Actual 99.7% PASS
04

Confirm the molecular weight

Look for the line labeled "Molecular Weight" or "Mass Spectrometry." The theoretical MW should match the observed MW within ±1–2 Da. This is the identity confirmation — proof you have the correct compound, not just a pure something.

Molecular Weight: Theoretical 1419.54 Observed 1419.51 PASS
05

Review additional test results

Verify the contamination and stability panel results: endotoxin, microbial, heavy metals, pH stability, visual. Each should show "PASS" or values within the specified range. Any "FAIL" result means the batch did not meet standards — and we did not ship it.

06

Verify lab credentials

The bottom of every COA includes Krause Analytical's name, DEA registration number, the analyst signature, and direct contact information. If you want to verify the result independently, you can call the lab and confirm the batch result. We encourage it.

Understanding Purity — OPTMZ Peptides
Understanding Purity

What "99.7% pure" actually means.

When Krause Analytical reports a peptide as "99.7% pure," that is a precise, lab-verified measurement. The remaining 0.3% is composed of impurities, degradation products, or carrier material. Higher purity means cleaner, more reliable research data.

Purity grading across the industry

Research Grade

95–98%

Exploratory research, proof-of-concept work where small impurity profiles are tolerable. Lowest cost. Most commonly available across the industry.

Ultra-High Purity

99.5%+

Demanding research applications and publication-quality work. Higher cost. Many OPTMZ batches naturally test in this range — see the rolling 90-day average on the homepage.

Common impurity types and what they indicate

When reviewing your COA, you may see references to specific impurity classes. Understanding these helps you interpret results:

Impurity TypeCauseSignificance
Oxidized forms

Exposure to oxygen during synthesis, handling, or storage

Indicates potential storage or supplier-handling issues. Usually low-percent.

Truncated peptides

Incomplete synthesis or partial degradation

Can skew research results if present in high amounts. Watch for >1%.

Related peptides

Similar compounds from synthesis byproducts

Usually minimal impact unless very high. Documented when present.

Residual solvents

Incomplete removal during purification

Safety consideration; analytical labs screen for this. Should be undetectable in the final lyophilized product.

Salts & buffers

Necessary for peptide stability during synthesis

Expected. Documented in the COA as "carrier material" or counted toward the 0.x% non-peptide fraction.

Solution pH drift

Subtle changes to the reconstituted-solution pH over time

Detected via our pH stability test. Drift indicates the peptide may be approaching the end of its usable solution life.

Industry Standards, Storage & FAQ — OPTMZ Peptides
Industry Standards

The frameworks our testing methods reference.

OPTMZ Peptides' testing program references recognized pharmacopeial and regulatory frameworks, even though research-use peptides are not subject to FDA drug-approval review.

// Pharmacopeial Standards

Methodological references

  • USP (United States Pharmacopeia) — analytical methods for pharmaceutical-grade testing
  • BP (British Pharmacopoeia) — European pharmaceutical standards
  • Ph. Eur. (European Pharmacopoeia) — international standards for pharmaceutical quality
  • ICH Q3D — heavy metals limits for elemental impurities
// Laboratory Registration

Krause Analytical credentials

  • DEA registration — Krause Analytical operates as a DEA-registered analytical laboratory in Austin, TX
  • Independent operation — Krause is not owned by, or financially aligned with, peptide manufacturers or suppliers
  • Multi-supplier testing — Krause tests for multiple research-supply customers, eliminating single-supplier conflicts of interest
  • Direct verification — Krause's contact information appears on every COA. You can verify any batch result by calling them directly
Storage & Stability

The COA's purity holds only if storage holds.

The purity documented in your Certificate of Analysis applies when the peptide is stored correctly. Improper storage can degrade peptides and reduce purity over time. The guidelines below apply to every product in the catalog unless the COA specifies otherwise.

Lyophilized (powder) form

Long-term
−20°C, freezer-stable in original sealed vial
Short-term
2–8°C refrigerated, typically 1–2 months
Environment
Cool, dry, light-protected; avoid moisture
Avoid
Repeat freeze-thaw cycles (degrades peptide chains)
Stability
1–3 years at −20°C; specific stability data on each COA

Reconstituted solution

Temperature
2–8°C refrigerated
Duration
Use within 1–2 weeks of reconstitution
Container
Sterile, sealed vial; protect from light
Avoid
Room temperature exposure (accelerates degradation)
Stability
Varies by peptide; specific guidance on each COA
How temperature affects purity over time
Storage ConditionEffect on Peptide StabilityRecommendation
Frozen (−20°C)

Peptides remain stable; documented purity maintained over 1–3 years.

Long-term storage standard
Refrigerated (2–8°C)

Acceptable for short-term storage; slight degradation over weeks to months.

Short-term only
Room temperature (20–25°C)

Rapid degradation; purity declines within days to weeks.

Do not store
Heat (>25°C)

Very rapid degradation; structural integrity compromised quickly.

Avoid entirely
Researcher Questions

Frequently asked about our testing.

The most common questions about our testing methodology, COA interpretation, and laboratory partnership.

How long does testing take from sample receipt to COA?

Typically 5–10 business days. HPLC and MS testing each take 1–2 days; the additional contamination panel (endotoxin, microbial, heavy metals) may add 3–5 days. The COA is generated and published before the batch ships, so you receive it with your product.

Can I request custom or additional testing?

Reach out to research support with the specific method you need — we'll confirm feasibility and turnaround with Krause Analytical.

What if my peptide's purity is below the listed specification?

Contact us immediately with the batch number. Any confirmed discrepancy is handled directly and the batch is investigated with the lab.

Is Krause Analytical accredited?

Krause Analytical is a DEA-registered analytical laboratory based in Austin, TX, operating independently of peptide manufacturers and suppliers.

Can I verify a COA's authenticity?

Yes — every COA lists Krause Analytical's direct contact information. You can call and confirm any batch result independently.

Can I download the COA for institutional records?

Yes, every Certificate of Analysis is available as a downloadable PDF from the product page and the Lab Results archive.

How do I interpret different testing methods on my COA?

See the "Reading a COA" and "Understanding Purity" sections above for a full field-by-field walkthrough.

Our Commitment & Research Support — OPTMZ Peptides
Our Commitment

Rigorous, independent, publicly verifiable.

Every batch undergoes third-party testing at Krause Analytical.

Every Certificate of Analysis is published on the product page.

Every purity percentage is lab-verified — never claimed.

The testing laboratory is independent and named.

Every result is downloadable and independently verifiable.

Batches below 98% HPLC purity are rejected — never shipped.

Browse the Lab Results Archive →
Need Help?

Questions about your test results?

If you have questions about testing procedures, how to interpret your COA, what specific results mean for your application, or you need custom testing arrangements, our research support team is the right place to start.

Typical response: under 2 business hours