PepScan Platform

ADVANCED PEPTIDE SYNTHESIS PLATFORM

Comprehensive service — from sequence to final product, with full quality control and fast turnaround times.

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Comprehensive Approach and Expertise in Synthesis

We possess extensive, many years of experience in custom peptide synthesis. All projects are executed with the highest quality standards, even for complex or unusual sequences. Our qualified and dedicated scientific team selects the most appropriate methods and techniques for each synthesis project.

Modifications

We provide a comprehensive and flexible approach to every synthesis

We offer a comprehensive approach to peptide synthesis — from simple sequences to the most demanding research projects. We combine advanced synthesis technologies with precise quality control, ensuring high purity, repeatability, and reliability of results. Regardless of the project scale or complexity, we deliver solutions tailored to your needs.

Diversity of Structures

From simple to complex, from linear to cyclic

Scalable Synthesis

From small to large scale synthesis

Purity Control

Purities: (from desalted to over 99%)

Extensive Modifications

Widest range of modifications

Flexible Purification

Purification at various scales

High Efficiency

Highest success rate on the market

Flexible approach

We offer a wide range of peptide modifications

Our team has experience in synthesizing high-quality peptides with diverse modifications. With extensive equipment, we can deliver peptides in both small (mg) and large (kg) scales, in a short time.

Modifications

N-TERM

Modifications

C-TERM

Modifications

Other modifications

Knowledge Base

Explore selected modifications

Discover the most commonly used peptide modifications that influence their stability, biological activity, and application possibilities. We offer a wide range of modifications — from simple changes to peptide termini to advanced labeling and cyclization — tailored to your research requirements.

ikona amidacja

Amidation and acetylation

If a peptide originates from an internal protein sequence, C-terminal amidation (–CONH₂) or N-terminal acetylation allows for charge removal, making it more similar to the natural structure.
ikona biotyna

Biotin and FITC

FITC labeling is performed at the N-terminus using an active fluorescein precursor. For efficiency, a six-carbon linker is used between the fluorophore and the N-terminus.
ikona Mostek disulfidowy

Disulfide bridges

Cyclic peptides can be formed via disulfide bridges between cysteine residues. For peptides with multiple cysteines, the process requires precise design.
ikona Fosforylacja peptydu w strukturze wektorowej

Phosphorylation

Phosphopeptides are crucial for studying the impact of phosphorylation on protein structure and regulation. Novazym synthesizes phosphorylated peptides on serine, threonine, and tyrosine...
ikona Methylacja peptydów w ilustracji cyfrowej

Methylation

Protein methylation plays an important role in regulating cellular processes such as transcription and cell differentiation. Novazym synthesizes peptides containing...
ikona Białko i łańcuch peptydowy

Conjugation with carrier proteins

Small peptides are weakly immunogenic, so they are often conjugated with large carrier proteins, such as BSA, OVA, or KLH. Conjugation is performed using the maleimide method, by adding cysteine...
Izotopowe znakowanie cząsteczki peptydu ikona

Isotopic labeling

For NMR studies, stable isotopes (²H, ¹⁵N, ¹³C) can be incorporated. Labeled peptides can be individually customized for the research project...
System MAPS w formie graficznej ikona

MAPS – Multiple Antigen Peptide System

The multiple antigen peptide system is based on using lysine residues as a scaffold to which multiple peptide chains are attached...
PEGylacja peptydów ikona

PEGylation

Involves the covalent conjugation of peptides or other macromolecules with polyethylene glycol (PEG). This increases solubility, bioavailability, circulation time in the body...
Highest quality

Applied analyses and quality control processes

We apply the principles of ISO 9001:2008 to ensure full customer satisfaction. MS and HPLC analyses are performed for all peptides. QC and QA procedures are conducted independently, providing a double guarantee of the highest quality for every delivered sample. Additionally, dedicated project managers support clients at every stage of implementation, ensuring constant access to information.

Our rating
5.0
According to our clients’ opinions.
Key areas

Key application areas of PepScan

Our peptides are used in a wide range of scientific research and development projects. We support academic institutions, biotechnology companies, and the pharmaceutical sector, providing solutions tailored to specific research and application needs.

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Pharmacy & medical diagnostics
Peptides play a key role in modern medicine and pharmaceuticals, forming the basis of many innovative therapies and diagnostic tools. Due to their high specificity,…
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Biotechnology and research
Peptides are one of the key tools used in modern biotechnology and scientific research. Thanks to the possibility of precise sequence design and a wide…
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Cosmetology and bioactive applications
The dynamic development of the cosmetic market makes peptides one of the most important ingredients in modern skin care products. Their versatility and effectiveness make…
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Proven expertise

Trusted by leaders in science and industry

We deliver high-quality peptides to scientific institutions, research units, and companies in the pharmaceutical and biotechnology sectors. Our experience and reliability are confirmed by projects for renowned research centers in Poland and Europe.

Our services have been utilized by, among others:

Blog

News and knowledge

Follow the latest information from the world of peptides, synthesis, and applications in science and industry. We share knowledge, practical tips, and current trends supporting research and development of new technologies.

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What are peptides and what are their uses?

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Peptide modifications – what is worth knowing?

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How does peptide synthesis proceed step by step?

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