| Product Image | Description | Type | Catalogue Code |
|---|---|---|---|
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AHN myTube® SC 0.8 ml, GF-F2 | Filtration | 3-320-20-0 |
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AHN myTube® SC 0.8 ml, GF-N2 | Filtration | 3-321-20-0 |
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AHN myTube® SC 0.8 ml, PE 20-60 µm | Filtration | 3-340-10-0 |
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AHN myTube® SC 0.8 mL filter tube w/o filter, w/filter ring | Filtration | 3-331-50-0 |
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AHN myTube® RT 2.0 mL receiver tube | Filtration | 3-202-80-0 |
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AHN myPlate® FP 96-wells, 1 ml, GF/FF Filter | Filtration | 3-210-25-0 |
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AHN myPlate® FP 96-wells, 1 ml, GF/N Filter, 1.6 µm | Filtration | 3-210-25-2 |
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AHN myPlate® FP 96-wells, 1 ml, PE 20-60 µm | Filtration | 3-225-25-0 |
1. Comprehensive Design: Includes a 2.0 mL receiver tube paired with a 0.8 mL round-bottom filter tube for optimal functionality and convenience.
2. Premium Material: Manufactured from premium-grade, autoclavable, non-wettable virgin polypropylene to ensure durability and sample integrity.
3. Certified Purity: Free from RNase, DNase, human DNA, pyrogens, and PCR inhibitors, guaranteeing sterility with a Sterility Assurance Level (SAL) of 10⁻⁶.
4. High-Speed Performance: Designed to withstand up to 25,000 x g in a fixed-angle rotor and 30,000 x g in a swing-out rotor, enabling reliable use in high-speed applications.
5. Versatile Filter Options: Available with multiple filter types for diverse applications:
6. Advanced Manufacturing Standards: Produced in ISO 9001:2015 and ISO 13485:2016 certified cleanroom facilities to ensure stringent quality control and sterility.
7. Reliable Performance Across Applications: Suitable for molecular biology, biochemistry, and chromatography, providing excellent recovery rates in final elution volumes.
8. Flexible Packaging: Bulk packaging available with sets of 100 tube sets (2 pieces per set), simplifying storage and handling.
Comprehensive Kit: Each spin column kit includes a 2 mL receiver tube and a 0.8 mL round-bottom filter tube, ensuring convenience and compatibility with a variety of workflows.
Diverse Filter Options: Tailored for a range of biological applications, AHN Spin Columns are available with multiple filter types, including cellulose acetate, PVDF, glass fiber, PE, and more.
Versatile Applications: Perfect for biomolecule purification in research and diagnostic labs, these spin columns deliver consistent and reliable results for DNA, RNA, protein, and other sample types.
Enhanced Efficiency: Streamline your purification workflows with high-quality materials and precision engineering designed to maximize yield and maintain superior sample integrity.
AHN Spin Columns are built to give labs dependable purification performance, even under the kind of demanding conditions modern research often involves.
The optimized spin column design makes biomolecule purification simpler from start to finish. It cuts down on processing time without sacrificing sample recovery, and because it fits right into standard lab protocols, there’s no need to bring in extra equipment.
Performance stays reproducible experiment after experiment. Sample loss during purification and separation is kept to a minimum, which helps protect sample quality and supports accurate downstream analysis.
These columns work across a wide range of laboratory applications, including:
The columns are built to get the most out of every sample, preserving its integrity throughout purification. Elution is efficient too, which translates into better results once you move on to analysis.
AHN Spin Columns bring together precision engineering and application-focused design, so labs get performance they can count on, whether they’re doing research or diagnostics.
There’s more than one membrane option, so you can pick what fits your lab’s needs:
That range of choice means researchers can match the filtration media to whatever their purification goals happen to be.
Every batch is manufactured under tightly controlled conditions, so performance doesn’t vary from one lot to the next. That consistency is what makes repeatable experimental outcomes possible.
You’ll find AHN Spin Columns in use across:
Built to hold up in demanding lab environments, these columns work with standard centrifugation setups and help labs stay productive without cutting any corners on purification quality.
They’re used to purify, isolate, and separate biomolecules like DNA, RNA, and proteins, along with other biological samples, in molecular biology, biochemistry, and similar research settings.
It really comes down to your application, the type of sample you’re working with, and what filtration characteristics you’re after. The available membrane materials each support different needs, whether that’s binding, clarification, or finer filtration.
Yes. The standardized format and reliable performance mean they hold up just as well in everyday lab work as they do in high throughput research settings.
Yes, they’re designed to work seamlessly with the microcentrifuges most labs already use, so adopting them into existing workflows is straightforward.
A few things stand out: better workflow efficiency, consistent purification performance, strong sample recovery, flexible membrane choices, and reliable results across a broad range of biological applications.