Applied Biosystems™ MagMAX™ Wastewater Ultra Nucleic Acid Isolation Kit with Virus Enrichment, 100 Rxn
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Specifications:
Application | Nucleic Acid Extraction | ||
Storage Temperature | 2-8°C | ||
Product Type | Sample Prep | Forms | Kit with Various components |
Product Brand | Thermo Fisher Scientific™, Applied Biosystems™ | ||
Product Grade | Molecular Biology | ||
High-Throughput Virus Enrichment & RNA/DNA Extraction from Wastewater Samples
The MagMAX™ Wastewater Ultra Nucleic Acid Isolation Kit with Virus Enrichment by Applied Biosystems™ enables automated, high-yield extraction of RNA and DNA from wastewater samples. Utilizing Dynabeads™ and MagMAX magnetic bead–based purification technology, this kit ensures efficient virus concentration, high sensitivity, and reproducible nucleic acid recovery, even from complex matrices such as wastewater and sewage.
Designed for use with KingFisher™ Flex, KingFisher™ Apex, and KingFisher™ Duo Prime systems, the kit provides automation-ready protocols that support the processing of up to 24 samples in 75 minutes, ideal for surveillance of SARS-CoV-2, influenza, norovirus, and other pathogens at community and institutional levels.
Key Features & Benefits
- ✅ Integrated Virus Enrichment & Extraction – Concentrates virus particles from up to 10 mL of wastewater
- ✅ Fast, Automated Workflow – Process up to 24 samples in just 75 minutes with KingFisher instruments
- ✅ High-Quality RNA & DNA Recovery – Magnetic bead-based technology offers superior yield and consistency
- ✅ MagMAX Magnetic Beads – Eliminates filter clogging, improves efficiency over glass-fiber filters
- ✅ Dynabeads MyOne Silane – High surface area and optimized chemistry for sensitive nucleic acid capture
- ✅ Flexible Elution Volume – Recover nucleic acids in 50–100 μL for downstream RT-qPCR, NGS, and more
- ✅ Automation-Ready Protocols – Optimized for plug-and-play integration with KingFisher systems
- ✅ Alternative Protocol Support – Kit available in non-enrichment version for workflows using filtration or ultracentrifugation
Product Specifications
Attribute | Details |
---|---|
Product Name | MagMAX Wastewater Ultra Nucleic Acid Isolation Kit with Virus Enrichment |
Catalog Number | A52610 |
Purification Method | Magnetic bead-based (MagMAX + Dynabeads MyOne Silane) |
Sample Type | Wastewater / Sewage |
Starting Material Volume | Up to 10–15 mL |
Elution Volume | 50–100 μL |
Final Product | RNA and DNA |
For Use With Instruments | KingFisher™ Flex, Apex, Duo Prime |
Throughput | Up to 24 samples per 75 min (automated) |
Downstream Applications | RT-PCR, qPCR, NGS, cDNA synthesis, microarrays, blotting, labeling |
Storage Conditions | Reagents at room temp (except Dynabeads at 4°C) |
Shipping | Room temperature |
Quantity | 100 preps |
Unit Size | Each |
Regulatory Status | For Research Use Only. Not for use in diagnostic procedures |
Kit Contents & Storage
Component | Quantity | Storage |
---|---|---|
Dynabeads Wastewater Virus Enrichment | 10 mL | 4°C |
Lysis Buffer | 80 mL | Room Temperature |
Binding Solution | 50 mL | Room Temperature |
Wash Buffer | 200 mL | Room Temperature |
Elution Solution | 25 mL | Room Temperature |
Proteinase K | 4 mL | Room Temperature |
DNA/RNA Binding Beads | 2 mL | Room Temperature |
Applications
🔬 Wastewater Epidemiology – Monitor community transmission of SARS-CoV-2 and emerging pathogens
🏥 Institutional Surveillance – Track infections in hospitals, dormitories, prisons, or facilities
🌎 Environmental Research – Analyze virus presence in urban or industrial wastewater systems
🧬 Public Health Studies – Preempt outbreaks through non-invasive pathogen detection
⚙️ Automation-Compatible Workflows – Maximize efficiency in routine surveillance labs
The MagMAX™ Wastewater Ultra Nucleic Acid Isolation Kit with Virus Enrichment delivers fast, reproducible, and automation-ready solutions for one of the most challenging sample types—wastewater. Backed by Thermo Fisher Scientific’s trusted magnetic bead technology, this kit ensures high-throughput laboratories can conduct sensitive viral surveillance and nucleic acid recovery at population scale with confidence.