Best New Life Sciences Product of 2015 Winner Announced

BioTek Instruments, Inc. presented with Scientists' Choice Award® at AACR

18 Apr 2016
Lynsey Forsyth
Post Doc / Research Fellow

Editorial article

SelectScience® Editor-in-Chief Kerry Parker presented Lenore Buehrer, Senior Product Manager at BioTek Instruments, Inc., with the Award for Best New Life Sciences Product

The Scientists' Choice Awards® The annual Scientists' Choice Awards® celebrate the laboratory products and manufacturers that make a difference to the industry. Scientists are invited to nominate, vote and review online.

Best New Life Sciences Product of 2015 Winner

SelectScience® was delighted to present BioTek Instruments, Inc. with the award for its Synergy™ Neo2 Multi-Mode Reader during a special ceremony at the AACR annual meeting in New Orleans, USA.

Do you use this system? Review the Synergy™ Neo2 Multi-Mode Reader now.

Runner Up Nominees

The Best New Life Sciences Product of 2015 nominees

Most Successful Video of the Year

Scientists' Choice Award for Most Successful Video of the Year

The Most Successful Video of 2015 was Labcyte for its video interview with Dr Allan Jordan, Head of Chemistry, Drug Discovery Unit, Cancer Research UK Manchester Institute. Watch the video to learn how acoustic liquid handling solutions from Labcyte are accelerating drug discovery research.

Dr Allan Jordan, Head of Chemistry, Drug Discovery Unit, Cancer Research UK Manchester Institute, and Chris Grimley, Vice President, Marketing, Labcyte, accepted the award for Most Successful Video of the Year 

Visit the BRAND NEW Scientists' Choice Awards website for more information.

NanoBiT® PPI Starter Systems

Promega Corp.

NanoLuc® Binary Technology (NanoBiT) is a two-subunit system based on NanoLuc® luciferase that can be applied to the intracellular detection of protein:protein interactions (PPIs) in live cells. The NanoBiT® system is composed of two small subunits, Large BiT (LgBiT; 18kDa) and Small BiT (SmBiT; 11 amino acid peptide), that are expressed as fusions to target proteins of interest. The LgBiT and SmBiT subunits have been independently optimized for stability and minimal self-association. Interaction of the target proteins facilitates subunit complementation to give a bright, luminescent enzyme. The NanoBiT® PPI Starter Systems provide the vectors required to create the LgBiT and SmBiT protein fusions, a PRKACA:PRKAR2A constitutively interacting positive control pair and a negative control vector. Starter systems also include the Nano-Glo® Live Cell Assay System, a single-addition, non-lytic detection reagent used for monitoring NanoBiT® luminescence in living cells. The reagent is prepared by diluting the Nano-Glo® Live Cell Substrate with the Nano-Glo® LCS Dilution Buffer to make the Nano-Glo® Live Cell Reagent. Both substrate and buffer solutions are optimized to provide enhanced stability and reduce autoluminescence in the presence or absence of serum, increasing the sensitivity for detection of low levels of NanoBiT® luminescence. The FKBP:FRB pair is provided separately as an inducible positive control. Expression is driven by HSV-TK promoter, providing constitutive, low-level expression in mammalian cells. Using the NanoBiT® MCS Starter System, you can generate N- and C-terminal LgBiT and SmBiT fusions to proteins of interest using traditional cloning with a multiple cloning site (MCS). Using the NanoBiT® Flexi® Starter System, you can generate N- and C-terminal LgBiT and SmBiT fusions using the Flexi® Vector Cloning System, a directional cloning method based on two rare-cutting restriction enzymes, SgfI and PmeI, that provides a rapid, efficient and high-fidelity way to transfer protein-coding regions between Flexi® Vectors without the need to resequence. Utilize Find My Gene™ to obtain your ORF clones already in Flexi® format for simple creation of fusions.   Features: Obtain Greater Sensitivity: Bright signal and reduced background improve sensitivity, signal:background ratio and dynamic range. More Accurately Model PPI Biology: Minimize artifacts with small tags and low, natural expression levels; perform real-time kinetic analysis in live cells. Precisely Measure Interaction Dynamics: Low affinity of tags minimizes spontaneous LgBiT:SmBiT association; complementation is easily reversible allowing accurate analysis of protein association and disassociation. Perform Simple Measurement: Bright luminescent output is ideal for any luminometer with no specific filter or injector requirements. Scale Your Assays: Assays can be scaled from bench to HTS, allowing use with any plate size up to 1,536-well format; detection reagent has been optimized for benchtop stability. Applications: Real-time measurements of PPI dynamics. Single-copy or single-cell measurements of PPI. PPI modulator screens in 384- or 1536-well formats.

(13)

Thermo Fisher Scientific™ Ion S5™ system

Thermo Fisher Scientific

  The Ion S5™ next-generation sequencing system enables a simple targeted sequencing workflow for your lab at an affordable price, without compromising on performance or reliability. The Ion S5 System leverages the speed of semiconductor sequencing with impressive on-board computing power, to enable the production of high quality sequencing data in as little as 2.5 hours and enable you to go from DNA library to data in as little as 24 hours with only 45 minutes of total hands-on time on the Ion Chef™ System and the Ion S5 System. The Ion S5 System is simple to use with cartridge-based reagents and offers superior scalability and throughput flexibility to support a broad range of sequencing applications, from microbial genomes and gene panels to exomes and transcriptomes, using our 5 Series chips.   Features: Get results in as little as 24 hours (with a 2.5-4 hour sequencer run time and overnight Ion Chef System run) Can use as little as 1 ng input DNA or RNA Three different sequencing chip types, so your lab has the throughput flexibility to do multiple targeted sequencing applications on a single system Torrent Suite™ Software and Ion Reporter™ Software enables simple and streamlined analysis of next-generation sequencing data  

(16)

DS-11 Series Spectrophotometer / Fluorometer

DeNovix

DeNovix takes spectrophotometry to a whole new level of performance with the DS-11 Series. This easy-to-use, compact spectrophotometer delivers full spectrum UV-Vis analysis and fluorescence capability, making it ideal for rapid nucleic acid and protein quality control.

(498)

Links

Tags

Capillary ElectrophoresisCapillary electrophoresis (CE) is used to separate molecules based on charge, size and hydrophobicity. Pressure, voltage or a vacuum is used to introduce the sample to fused silica capillaries. Fluorescence, UV/Vis, UV or diode array detectors are used to visualize components. Types of CE systems include capillary electrochromatography (CEC), capillary zone electrophoresis and capillary gel electrophoresis. Find the best capillary electrophoresis equipment in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.ElectrophoresisElectrophoresis equipment is used to separate mixtures of protein, DNA or RNA, based on their electric charge, size and other physical characteristics, by passing them through a medium such as a polyacrylamide gel, an agarose gel or a capillary tube. Electrophoresis equipment includes horizontal and vertical gel electrophoresis chambers, isoelectric focusing systems, 2D electrophoresis and capillary electrophoresis instruments. Precast gels with a gradient can be used or gels can be hand cast. Samples are run alongside ladders or markers to identify the approximate size of a molecule. Separated proteins and nucleic acids in the gel can be stained or probed with fluorescent markers and then imaged and detected using gel documentation instruments, transilluminators, densitometers and scanners. Find the best electrophoresis equipment in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.UHPLC and HPLCHigh performance liquid chromatography (HPLC) and ultra high performance liquid chromatography (UHPLC), also known as UPLC, are analytical techniques used to separate, identify and quantitate components of complex mixtures including biological samples such as proteins and lipids as well as chemical mixtures of pesticides, drugs and oils. Both techniques are liquid chromatographic methods but differ by operating pressures (HPLC < 6000 psi < UHPLC ). Components of HPLC and UHPLC systems include columns, detectors, pumps, autosamplers and column heaters. Explore a range of UHPLC and HPLC columns for your specific sample needs including reverse phase, normal phase, ion exchange, HILIC, ion exclusion and size exclusion columns. For more specialized HPLC, explore FPLC, countercurrent LC and simulated moving bed systems. Find the best UHPLC and HPLC equipment in our peer reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Mass SpectrometryMass spectrometry (MS) is a powerful analytical technique used to identify and quantify molecules based on the mass-to-charge ratio of gas-phase ions. It provides detailed information about the structure, composition, and properties of compounds and is widely used across fields such as environmental monitoring, materials science, drug discovery and development, food and beverage testing, and wider chemical research. Key MS techniques include tandem mass spectrometry (MS/MS), liquid chromatography–mass spectrometry (LS-MS) and inductively coupled plasma (ICP-MS). Choosing from these wide range of techniques and technologies can be a daunting task, so keep up to date with scientific applications, performance expectations, and customer reviews here all in one place. Visit our product directory to receive quotes direct from the manufacturer. UV-Visible SpectroscopyUltraviolet-visible (UV-Vis) spectrophotometers are used to measure the interaction of UV and visible light with a sample, including transmission, reflectance & absorbance. The two major instrument classes are single-beam or double-beam spectrophotometers. More specialized equipment includes colorimeters, spectroradiometers and refractometers. Portable and microvolume spectrophotometers are also available. For the modular spectroscopy lab, explore a range of light sources for combination with a spectrograph/spectrometer and optics. Find the best UV-Vis spectroscopy products in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.AntibodiesAntibodies are used in techniques such as confocal and fluorescence microscopy, flow cytometry, ELISA, ELISPOT, immunohistochemistry, western blotting and immunopreciptation. Select specific antigen reactivity, high specific affinity, low non-specific binding, monoclonal or polyclonal, primary or secondary antibodies and associated conjugates such as an enzyme or dye for visualization.BiosensorsBiosensors are devices used to detect an analyte using biological molecules specific to the analyte coupled to a detector. Biosensor instruments may be photometric, typically using surface plasma resonance (SPR), electrochemical or QCM (quartz crystal microbalance) biosensors. Biosensors should be selective, portable, robust and sensitive and have a fast response time. Systems may be manual or automated and usually have associated software.Western BlottingWestern blotting equipment is used to transfer and identify specific proteins within a sample, reveal protein modifications, as well as give a semi-quantitative estimation of their concentration. Western blotting equipment includes all apparatus necessary to transfer proteins from gel to membrane and subsequent processing steps. Protein transfer can be performed by electroblotting with wet, semi-dry and dry transfer systems onto nitrocellulose and PVDF membranes. Blocking, washing and labeling of membranes follows, involving buffers, blocking reagents, blotting / incubation trays, labeling reagents, immunoblotting assays, antibodies and conjugates. Automated equipment for these steps is available to accelerate your lab workflow. Finally, detection and imaging of proteins can be conducted using gel documentation and imaging systems. Find the best western blotting equipment in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Cell Adhesion AssaysCell adhesion assays are used to quantitate attachment and analyze the molecular mechanisms for extracellular matrix adhesion, cell migration and sensitivity to inhibitors. Find the best cell adhesion assay equipment in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Cell / Tissue CultureCell culture or tissue culture is used to study the biology of cells or tissues and to isolate cellular products in an environment which can be manipulated and well defined. Accurately control your culture environment with bioreactors or culture incubators, bind your cells to a surface or together with an extracellular matrix. Distinguish cell types with differential media or proliferate cells with certain characteristics using selective media. Enrich your media with supplements such as growth factors, sera and vitamins. Find the best cell and tissue culture products, kits and equipment in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Genome AnalysisGenomics, the study of genomes, includes functional genomics, evolutionary genomics and comparative genomics. There are many genomic technologies such as DNA sequencing of whole genomes, computational biology and bioinformatics. DNA and nucleic acids must be isolated and concentrated from cells for analysis with kits, automated analyzers and software. Other useful technologies for studying genomics include PCR, microarrays and electrophoresis.ELISAEnzyme-linked immunosorbent assays (ELISA), also known as enzyme immunoassays (EIA), are used for the detection and quantification of proteins, peptides and antibodies in a sample. ELISA often comes in kit format, with pre-selected antibody pairs to detect specific proteins or biomarkers of diseases such as diabetes and obesity, or cardiovascular and neurological disorders. Detection is made possible with chemiluminescent, fluorescent or colorimetric substrates and detection instruments such as microplate / ELISA readers. Other kits available include: Enzyme-linked immunospot (ELISPOT) assays for the quantification of protein-producing cells and chemiluminescent immunoassays (CLIA) kits. Find the best ELISA kits and products in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.GlycobiologyGlycobiology encompasses research into the biological functions, synthesis and structures of glycans, including glycoproteins, glycolipids, proteoglycans and free oligosaccharides. Mass spectrometers and their software are commonly used in the study of glycobiology, along with structure predicting tools, chromatography and NMR.MicroplatesMicroplates are multi-well plates used to increase the throughput of biological investigations. The number of wells microplates contain can range from 6 to 3243 wells, with the 96-well format being the most commonly used. Microplates can come tailored for a range of applications including cell culture, PCR, filtration, storage, non-binding surface, protein crystallization, as well as pre-coated, deep well and normal Standard microplates. Additionally, options for microplate colors include clear , black, white or black with clear bottom and white with clear bottom for absorbance microplate reader applications. Find the best microplates for your lab in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.OligonucleotidesOligonucleotides are small nucleic acid polymers, usually less than 20 bases in length. Oligonucleotides can be made via enzymatic cleavage or more commonly by chemical synthesis with polymerases. Their use includes FISH, southern blots, microarrays and as primers in PCR. High fidelity synthesis kits and detection systems are available for easy production and detection, respectively.