Supermacroporous Polymer Microspheres for High-Capacity Virus & VLP Purification

Biovanix supermacroporous ion exchange chromatography media deliver 10× the loading capacity of conventional agarose resins — engineered for precise control of pore sizes from 100 nm to 400 nm, preserving viral particle integrity at high flow rates.

10× Capacity vs. Agarose

Flow Rates up to 1,200 cm/h

Virus-Grade Pore Control

PS-DVB & PMMA Platforms

What Are Supermacroporous Polymer Microspheres?

Supermacroporous polymer microspheres are advanced chromatography media featuring interconnected macropores ranging from 100 nm to 400 nm. These pores are large enough to allow intact virus particles and viral-like particles (VLPs) to enter the bead interior and bind to ion exchange functional groups throughout the entire volume of the particle — not just on the surface.

Um zentrale Herausforderungen bei der Reinigung von Viren und Viruspartikeln zu bewältigen, hat Biovanix stets mutig in die Erforschung von Prozesstechnologien und Produktentwicklung investiert. Durch Forschung und Produktion von supermakroporösen Ionenaustausch-Chromatographiemedien ist eine präzise Kontrolle der Porengröße der Chromatographiemedien gelungen. Im Vergleich zu herkömmlichen Chromatographiemedien weist dieses eine bessere Leistung hinsichtlich Beladungskapazität und Verarbeitungsgeschwindigkeit auf. Es ist förderlicher für die Erhaltung der Struktur von viralen Vektoren und virusähnlichen Partikeln.

Biovanix Polymer Microspheres at a Glance

√ 10× loading capacity compared to conventional agarose media; 2× capacity vs. standard polymer media

√ Pore size range: 100 nm – 400 nm, precisely controlled across four series (S / M / G / V)

√ Two matrix platforms: PS-DVB (polystyrene-divinylbenzene) and PMMA (polymethyl methacrylate)

√ Four functional groups: SP (strong cation), Q (strong anion), CM (weak cation), DEAE (weak anion)

√ Flow rates: up to 1,200 cm/h (PS-DVB) and 750 cm/h (PMMA)

√ pH stability: 1–12 (PS-DVB), 2–12 (PMMA)

√ Applications: virus purification, VLP purification, large-molecule protein separation, gene therapy vectors

Five Key Advantages of Supermacroporous Polymer Microspheres

Engineered to overcome the limitations of conventional chromatography media for biologics purification.

01

Full Pore Accessibility for Viruses & Large Particles

Large molecules or viral particles can easily enter the pores for binding. The supermacroporous structure with pores from 100–400 nm allows intact viral vectors, VLPs, and protein complexes to access the entire internal surface area, not just the outer shell.

02

10× Loading Capacity vs. Agarose Media

The load capacity is more than 10 times that of conventional agarose media and twice that of conventional polymer media. This dramatic increase in binding capacity reduces column volume requirements and process time per batch.

03

Preserves Structural Integrity of Target Proteins

It can maintain the integrity of the structure of large molecular proteins, obtaining high yield and high activity of the target protein. Gentle binding kinetics and optimized ligand density minimize denaturation and aggregation during capture.

04

Low Non-Specific Adsorption, High Mechanization

After hydrophilic modification of the microsphere surface and the bonding of ion exchange groups, non-specific adsorption is low, and the degree of mechanization is high. This ensures reproducible results and scalable manufacturing processes.

05

Fast Mass Transfer at High Flow Rates

The molecular mass transfer rate is fast, and better separation can be achieved at higher flow rates. With flow rates up to 1,200 cm/h for PS-DVB series, these media deliver productivity gains without sacrificing resolution or binding capacity.

Two Chromatography Media Platforms

Choose the matrix material that best fits your purification process requirements.

PS-DVB Microspheres

Polystyrene-Divinylbenzene Matrix

Particle Size: 15 µm / 30 µm / 50 µm

Porengröße: 100–400 nm (4 series)

Maximaldruck: up to 8.0 MPa

pH-Stabilität: 1–12

Flow Rate: up to 1,200 cm/h

Series: Poly15, Poly 50M, 50G, 50V

PMMA Microspheres

Polymethyl Methacrylate Matrix

Particle Size: 70 µm

Porengröße: 100–400 nm (4 series)

Maximaldruck: up to 1.0 MPa

pH-Stabilität: 2–12

Flow Rate: up to 750 cm/h

Series: PM 70S, 70M, 70G, 70V

Need Help Selecting the Right Media for Your Application?

Our chromatography scientists can recommend the optimal product based on your target molecule, particle size, and process requirements.

Complete Product Specifications

All technical parameters for Biovanix supermacroporous polymer chromatography media.

PSDVB Particle Selection

Support-Matrix Poly(styrol/divinylbenzol) (PS-DVB)
Ligand Rekombinantes Protein A
Ave. Partikelgröße 50µm
Dynamische Bindungskapazität (DBC) Ca. 40 mg humanes IgG/ml Medium (bestimmt beim 10%-Durchbruch mittels Frontalanalyse bei einer Mobilphasengeschwindigkeit von 500 cm/h in einer Säule mit einer Bett Höhe von 5 cm, Verweilzeit 0,6 min)
Schwinden/Quellen < 1% aus 1-100% organischem Lösungsmittel
pH-Bereich (Langzeit) pH 2-10
Maximaler Betriebsdruck 1500 psi (100 bar / 10 MPa)
Reinigungsmittel 0,1-0,5 M NaOH
Temperaturstabilität 4-40 °C
Lieferbedingungen 20% Ethanol (2–8 °C)
Produkt Poly15 SP Poly15 Q Poly30 SP Poly30 Q
Matrix Monodisperses PS-DVB
Partikelgröße 15 µm 30 µm
Funktionsgruppe (-CH2)SO3- -CH2N+(CH3)3 (-CH2)SO3- -CH2N+(CH3)3
Ligandenkonzentration 0,22 milläquivalente/ml 0,24 mÄq/ml 0,15 mÄq/ml 0,18 mÄq/ml
Kapazität 80mg Lys/mL 45 mg BSA/ml 60 mg Lys/mL 30mg BSA/ml
Durchflussmenge 150-800 cm/h 250–1000 cm/h
Max. Druck 8,0 MPa 5.0MPa
PHP-Stabilität 2-12
  Chemische Beständigkeit Alle gängigen Puffer, 1 M Essigsäure, 1 M Natriumoxychlorid, 1 M Salzsäure, 70% Ethanol, 30% Isopropylalkohol, 30% Acetonitril, 1%SDS, 6 M Guanidinhydrochlorid, 8 M Harnstoff sowie andere häufig verwendete organische Lösungsmittel; Vermeiden Sie den Kontakt mit starken Oxidationsmitteln.
Betriebstemperatur 4-30°C
Lagerung 2–30 °C, 20% Ethanol
Produkt Poly 50M
Matrix SP Q CM DEAE
Partikelgröße PS-DVB
Funktionsgruppe 50um
Porengröße 100–150 nm
Ligandenkonzentration 0,15 mÄq/ml 0,16 meq/ml 0,15 mg/ml 0,16 mg/ml
Kapazität >80mgLys >100mg Rinderserumalbumin >80mgLys >90mg BSA
Durchflussmenge 300–1200 cm/h
Maximaler Druck 3,0 MPa
PHP-Stabilität 1-12
Chemische Beständigkeit Alle gängigen Puffer, 1 M Essigsäure, 1 M Natriumoxychlorid, 1 M Salzsäure, 70% Ethanol, 30% Isopropylalkohol, 30% Acetonitril, 1%SDS, 6 M Guanidinhydrochlorid, 8 M Harnstoff und andere häufig verwendete organische Lösungsmittel; Vermeiden Sie den Kontakt mit starken Oxidationsmitteln.
Betriebstemperatur 4-30°C
Lagerung 2–30 °C, 20% Ethanol
Produkt Poly 50G
Matrix SP SP SP SP
Partikelgröße PS-DVB
Funktionsgruppe 50um
Porengröße 150-300 nm
Ligandenkonzentration 0,14 mg/ml 0,14 mg/ml 0,14 mg/ml 0,14 mg/ml
Kapazität >70mg Lys >70mg Lys >70mg Lys >70mg Lys
Durchflussmenge 300–1200 cm/h
Maximaler Druck 2,0 MPa
PHP-Stabilität 1-12
Chemische Beständigkeit Alle gängigen Puffer, 1 M Essigsäure, 1 M Natriumoxychlorid, 1 M Salzsäure, 70% Ethanol, 30% Isopropylalkohol, 30% Acetonitril, 1%SDS, 6 M Guanidinhydrochlorid, 8 M Harnstoff und andere häufig verwendete organische Lösungsmittel; Vermeiden Sie den Kontakt mit starken Oxidationsmitteln.
Betriebstemperatur 4-30°C
Lagerung 2–30 °C, 20% Ethanol
Produkt Poly 50V
Matrix SP SP SP SP
Partikelgröße PS-DVB
Funktionsgruppe 50um
Porengröße 300-400 nm
Ligandenkonzentration 0,12 ME pro ml 0,12 ME pro ml 0,12 ME pro ml 0,12 ME pro ml
Kapazität >70mg Lys >70mg Lys >70mg Lys >70mg Lys
Durchflussmenge 300–1200 cm/h
Maximaler Druck 1,0 MPa
PHP-Stabilität 1-12
Chemische Beständigkeit Alle gängigen Puffer, 1 M Essigsäure, 1 M Natriumoxychlorid, 1 M Salzsäure, 70% Ethanol, 30% Isopropylalkohol, 30% Acetonitril, 1%SDS, 6 M Guanidinhydrochlorid, 8 M Harnstoff und andere häufig verwendete organische Lösungsmittel; Vermeiden Sie den Kontakt mit starken Oxidationsmitteln.
Betriebstemperatur 4-30°C
Lagerung 2–30 °C, 20% Ethanol

PMMA Partikelauswahl

Produkt PM 70S
Matrix SP Q CM DEAE
Partikelgröße PMMA
Funktionsgruppe 70 µm
Porengröße 100 nm
Ligandenkonzentration 0,18 meq/mL 0,12 mÄq/ml 0,21 meq/ml 0,15 mÄq/ml
Kapazität 115 mg Lys 80mg BSA 105 mg Lys 80mg BSA
Durchflussmenge 150~750 cm/h
Maximaler Druck 1,0 MPa
PHP-Stabilität 2-12
Chemische Beständigkeit Alle gängigen Puffer, 1 M Essigsäure, 1 M Natriumoxychlorid, 1 M Salzsäure, 70% Ethanol, 30% Isopropylalkohol, 30% Acetonitril, 1%SDS, 6 M Guanidinhydrochlorid, 8 M Harnstoff und andere häufig verwendete organische Lösungsmittel; Vermeiden Sie den Kontakt mit starken Oxidationsmitteln.
Betriebstemperatur 4-30°C
Lagerung 2–30 °C, 20% Ethanol

 

Produkt PM 70M
Matrix SP Q CM DEAE
Partikelgröße PMMA
Funktionsgruppe 70 µm
Porengröße 100–150 nm
Ligandenkonzentration 0,15 mÄq/ml 0,12 m Äq/ml 0,22 meq/ml 0,11 mÄq/ml
Kapazität 115 mg Lys 80m g BSA 105mg Lys 80mg BSA
Durchflussmenge 150~750 cm/h
Maximaler Druck 0,8 MPa
PHP-Stabilität 2-12
Chemische Beständigkeit Alle gängigen Puffer, 1 M Essigsäure, 1 M Natriumoxychlorid, 1 M Salzsäure, 70% Ethanol, 30% Isopropylalkohol, 30% Acetonitril, 1%SDS, 6 M Guanidinhydrochlorid, 8 M Harnstoff und andere häufig verwendete organische Lösungsmittel; Vermeiden Sie den Kontakt mit starken Oxidationsmitteln.
Betriebstemperatur 4-30°C
Lagerung 2–30 °C, 20% Ethanol

 

Produkt PM 70G
Matrix SP Q CM DEAE
Partikelgröße PMMA
Funktionsgruppe 70 µm
Porengröße 150-300 nm
Ligandenkonzentration 0,11 mÄq/ml 0,12 mÄq/ml 0,10 mÄq/ml 0,09 meq/ml
Kapazität 70 mg Lys 75mg BSA 70 mg Lys 60 mg BSA
Durchflussmenge 150~750 cm/h
Maximaler Druck 0,5 MPa
PHP-Stabilität 2-12
Chemische Beständigkeit Alle gängigen Puffer, 1 M Essigsäure, 1 M Natriumoxychlorid, 1 M Salzsäure, 70% Ethanol, 30% Isopropylalkohol, 30% Acetonitril, 1%SDS, 6 M Guanidinhydrochlorid, 8 M Harnstoff und andere häufig verwendete organische Lösungsmittel; Vermeiden Sie den Kontakt mit starken Oxidationsmitteln.
Betriebstemperatur 4-30°C
Lagerung 2–30 °C, 20% Ethanol

 

Produkt PM 70V
Matrix SP Q CM DEAE
Partikelgröße PMMA
Funktionsgruppe 70 µm
Porengröße 300-400 nm
Ligandenkonzentration 0,11 mÄq/ml 0,12 mÄq/ml 0,10 mÄq/ml 0,09 mÄq/ml
Kapazität 70 mg Lys 75mg BSA 70m g Lys 60 mg BSA
Durchflussmenge 150~750 cm/h
Maximaler Druck 0,5 MPa
PHP-Stabilität 2-12
Chemische Beständigkeit Alle gängigen Puffer, 1 M Essigsäure, 1 M Natriumoxychlorid, 1 M Salzsäure, 70% Ethanol, 30% Isopropylalkohol, 30% Acetonitril, 1%SDS, 6 M Guanidinhydrochlorid, 8 M Harnstoff und andere häufig verwendete organische Lösungsmittel; Vermeiden Sie den Kontakt mit starken Oxidationsmitteln.
Betriebstemperatur 4-30°C
Lagerung 2–30 °C, 20% Ethanol

Product Selection Guide

Use this guide to choose the optimal polymer microsphere for your purification application.

PS-DVB vs. PMMA: Matrix Comparison

Property PS-DVB PMMA
Particle Sizes 15 / 30 / 50 µm 70 µm
Maximaler Druck Up to 8.0 MPa Up to 1.0 MPa
PHP-Stabilität 1–12 2–12
Maximale Durchflussmenge Up to 1,200 cm/h Up to 750 cm/h
Chemische Beständigkeit Excellent (harsh CIP) Good (standard CIP)
Am besten für High-pressure, aggressive cleaning, broad pH Biocompatible, gentle processing

Pore Size Selection by Target Particle

Series Code Porengröße Recommended Application
S (Small) 100 nm Small viruses, proteins, protein complexes
M (Medium) 100–150 nm Medium viral vectors (AAV, lentivirus)
G (Large) 150–300 nm Large VLPs, enveloped viruses
V (Very Large) 300–400 nm Baculoviruses, plant viruses, large gene therapy vectors

Anwendungen

Supermacroporous polymer microspheres are purpose-built for challenging biologics purification workflows.

Virusreinigung

Purify intact viral particles including AAV, lentivirus, adenovirus, and baculovirus with high recovery and preserved infectivity. The supermacroporous structure ensures full particle access to binding sites.

VLP Purification

Capture and purify virus-like particles (VLPs) used in vaccine development. Maintain structural integrity and antigenicity while achieving high yield through optimized pore sizes and gentle binding conditions.

Large-Molecule Protein Separation

Separate antibodies, antibody-drug conjugates (ADCs), fusion proteins, and other large protein complexes that cannot effectively penetrate conventional media pores.

Gene Therapy Vector Processing

Purify gene therapy delivery vectors at scale with chromatography media designed to handle the full size range of viral and non-viral vectors while maintaining biological activity.

Frequently Asked Questions

Common questions about supermacroporous polymer chromatography media.

What are supermacroporous polymer microspheres?

Supermacroporous polymer microspheres are advanced chromatography media featuring interconnected macropores ranging from 100 nm to 400 nm. These pores are large enough to allow intact virus particles and viral-like particles (VLPs) to enter and bind to ion exchange functional groups within the pores, delivering over 10 times the loading capacity of conventional agarose media. Biovanix produces these media in two matrix platforms: PS-DVB and PMMA.

PS-DVB (polystyrene-divinylbenzene) microspheres offer superior chemical resistance, wider pH stability (1–12), and higher pressure tolerance (up to 8.0 MPa), making them ideal for aggressive cleaning and high-flow applications. PMMA (polymethyl methacrylate) microspheres provide biocompatible surfaces suited for sensitive biological samples and moderate operating conditions up to 1.0 MPa.

Select pore size based on the diameter of your target particle: S series (100 nm) for small viruses and proteins, M series (100–150 nm) for medium-sized viral vectors such as AAV and lentivirus, G series (150–300 nm) for large VLPs and enveloped viruses, and V series (300–400 nm) for the largest viral particles such as baculoviruses and certain plant viruses.

Supermacroporous polymer microspheres deliver loading capacities exceeding 10 times that of conventional agarose media and twice that of standard polymer media. For example, PS-DVB Poly15 SP achieves 80 mg Lys/mL capacity, while PMMA PM 70S achieves 115 mg Lys/mL. The exact capacity depends on the product series, pore size, and functional group selected.

Yes. The supermacroporous structure allows large-molecule proteins, antibodies, and protein complexes to access internal binding sites, maintaining structural integrity while achieving high yield and high activity recovery. The hydrophilic surface modification minimizes non-specific adsorption, ensuring clean separations even for sensitive biomolecules.

Four functional group options are available across both platforms: SP (strong cation exchange, -CH₂SO₃⁻), Q (strong anion exchange, -CH₂N⁺(CH₃)₃), CM (weak cation exchange, carboxymethyl), and DEAE (weak anion exchange, diethylaminoethyl). Strong ion exchangers (SP, Q) are recommended for most virus purification applications due to their pH-independent binding characteristics.

Flow rates range from 150 cm/h for the Poly15 series up to 1,200 cm/h for the Poly 50M/50G/50V PS-DVB series. The PMMA series operates at 150–750 cm/h. The fast mass transfer kinetics of supermacroporous microspheres enable efficient separation even at these elevated flow rates, significantly improving process throughput.

Ready to Optimize Your Purification Process?

Contact Biovanix for pricing, sample requests, or technical consultation on supermacroporous polymer microspheres.

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