SKU: 186008057
Oasis PRiME HLB 6 cc Vac Cartridge, 200 mg Sorbent per Cartridge, 30/pk

Oasis PRiME HLB 6 cc Vac Cartridges | 186008057


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Product Description

Oasis PRiME HLB sets the new performance standard for solid phase extraction cleanup in routine analysis. This sorbent will provide reversed-phase cleanup of acidic, basic and neutral compounds form complex sample matrices. Oasis PRiME HLB has been designed to simplify SPE with easy to follow protocols. It also produces cleaner samples by removing greater than 95% of common matrix interferences such as salts, proteins and phospholipids. Additionally, viscous samples can be processed with faster flows through the device and and less plugging. Based on the Oasis HLB sorbent technology, this water-wettable sorbent does not require conditioning and equilibration to provide excellent recoveries.

Specifications

  • UNSPSC

    41115712

  • Brand

    Oasis

  • Product Type

    Solid Phase Extraction

  • Units per Package

    30 pk

  • Chemistry

    PRiME HLB

  • Endcapped

    No

  • Format

    Vac Cartridge

  • Mass Spec Compatibility

    Yes

  • Mode

    Reversed Phase

  • Sorbent Weight

    200 mg

  • Water Wettable

    Yes

  • pH Range Min

    1 pH

  • pH Range Max

    12 pH

  • Material

    Polypropylene

  • Barrel Size

    6 cc

Product Support

Documents

Documents



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Oasis PRiME HLB 6 cc Vac Cartridge, 200 mg Sorbent per Cartridge, 30/pk

Designed to make solid-phase extraction (SPE) easy to implement into routine use, the Oasis PRiME HLB 6 cc Vac Cartridge provides generic, simple methods to remove 95% of common matrix interferences including phospholipids, fats, salts, and proteins. This technology produces the cleanest sample eluates with a simple two or three-step protocol. The first choice for all matrices, the Oasis PRiME HLB 6 cc Vac Cartridge is designed for reversed-phase SPE cleanup of samples in routine analysis.

As a first of its kind SPE sorbent, Oasis Prime HLB (hydrophilic lipophilic balanced) sorbent sets a new performance standard for routine analyses with the unique and proprietary sorbent that provides cleaner samples with less time and less effort. Oasis HLB sorbent is a macroporous copolymer, made from a balanced ratio of two monomers, the lipophilic divinylbenzene and the hydrophilic N-vinylpyrrolidone. This allows it to provide reversed-phase capability with a special polar hook for enhanced capture of polar analytes and superior wettability. Scientists can benefit from the ability to concentrate analytes, faster and more predictable analysis time, and removal of 95% of common matrix interferences.

The Oasis Prime copolymer is uniquely water-wettable, which makes it possible to eliminate the condition and equilibration steps that are essential in silica-based and other polymeric sorbents. This allows scientists to save valuable sample processing time as well as avoid costly solvent purchase and disposal. Flow times are also 30-50% faster for urine and plasma, achieving desired and superior flow rates with less vacuum or positive pressure than other SPE devices require.

Using the Oasis PRiME HLB 6 cc Vac Cartridge, scientists are able to choose the sample preparation method that meets the analytical needs of each experiment. Cartridges have faster, easier flow and produce cleaner samples, and scientists are able to achieve higher capacity while using less sorbent- 30 mg of Oasis HLB offers capacity equivalent to 100 mg of C18.

Explore Waters full selection of lab equipment and related products, such as the Oasis Method Development 1 cc Sorbent Selection Kit, 30 mg Sorbent per Cartridge, 30 µm, 40/pk.

What is SPE?

SPE refers to solid-phase extraction, in which compounds that are dissolved or suspended in a liquid mixture are separated from other compounds in the same mixture according to the chemical and physical properties present. This is commonly done in laboratories to concentrate or purify samples to improve analysis.

What are the benefits of SPE?

SPE allows for four main benefits to scientists: · Simplification of complex sample matrices in addition to compound purification. · Reduction of ion suppression or enhancement in MS applications. · Trace concentration enrichment of very low-level compounds. · Ability to fractionate sample matrices to analyze compounds by class.