ISOLUTE® SLE+ Supported Liquid Extraction Plates
ISOLUTE® SLE+ Supported Liquid Extraction plates offer an efficient alternative to traditional liquid-liquid extraction (LLE) for bioanalytical sample preparation more
The Biotage® Syro Wave™ system is the only programmable peptide synthesizer that is capable of both conventional room temperature parallel peptide synthesis and microwave assisted peptide synthesis. The system is fully automated and computer controlled utilizing a pipetting robot with a single arm.
The Syro Wave™ is a union of the Syro I and Biotage Initiator instruments, controlled by a single PC. The Intuitive Syro XP software controls the instrument functions and calculates all amounts and volumes of amino acids and reagents required. Each cycle of the synthesis can receive a completely different protocol. This flexibility allows not only single or multiple couplings, but also complete freedom in the choice of coupling strategies within any particular synthesis cycle.
Syro Wave™ offers the unique ability to make part of the peptide sequence using conventional solid phase peptide synthesis on the parallel reactor block and then transfer the reactor vial to the microwave cavity to drive difficult couplings to completion. With the Syro Wave™ peptide synthesizer, Biotage offers a system with a proven pedigree and history of performance and reliability, and a new addition to a range of peptide synthesis platforms utilizing either traditional room temperature or microwave technologies in both entry-level and high throughput configurations.
Advantages
Economically Synthesize Difficult Sequences
Use microwave irradiation and standard reagents to synthesize difficult sequences that are problematic or even impossible to synthesize using standard methods.
Save Time and Increase Productivity
Automated parallel operation allows for the synthesis of more peptides in shorter times resulting in the highest productivity. Reduce cycle times even further using microwave irradiation.
Increase Yield and Purity
Accurate dispensing of exact volumes of all reactants and vortexing of the reaction mixture, guarantee the optimal result in terms of yield and purity while minimizing waste and costs.
Detailed Reagent Calculation
The easy to use Syro XP software controls the instrument functions and calculates all amounts and volumes of amino acids and reagents required.
Reduce Coupling Costs
The use of a digital syringe pump and minimized flow paths lead to low amino acid and reagent consumption. This reduces coupling and running costs compared to other systems.
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Additional Information
ISOLUTE® SLE+ Supported Liquid Extraction Plates
ISOLUTE® SLE+ Supported Liquid Extraction plates offer an efficient alternative to traditional liquid-liquid extraction (LLE) for bioanalytical sample preparation more
Syro Wave™ - Automated Microwave and Parallel Peptide Synthesizer
The Biotage® Syro Wave™ system is the only programmable peptide synthesizer that is capable of both conventional room temperature parallel peptide synthesis and more
Biotage announced a collaborative research agreement with The Laboratory of Peptide & Protein Chemistry & Biology (PeptLab) located in Florence, Italy. The peptide research facility, led by Professor Anna Maria Papini, has agreed to contribute technical input towards the future development ... more
Biotage Awarded Patent for Flash Purification Method Development and Optimization
Biotage announced it has recently been awarded U.S. patent 7686959: Control system and Method for Flash Separation. The patented technology converts thin-layer chromatography (TLC) compound retention data into a linear gradient and also provides the user with sample loading estimates for an ... more
Biotage moves to 100% direct sales for SPE products in the UK
Biotage is expanding its direct sales coverage and will begin selling SPE products directly into non-pharma application areas within the UK starting January 18, 2010. Sales to non-pharmaceutical based markets and customers have previously been managed by a distributor. "This is a logical ... more