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. August 12, 2019 - BioTek Instruments will be recognized as a 2019 Vermont Business Growth Award winner at a ceremony to be held September 17, 2019 at the Hilton Hotel Burlington, in Burlington, VT. This award is presented annually by Vermont Business Magazine and KeyBank, acknowledging twenty-five Vermont businesses that have experienced the greatest growth over the past five years. July 11, 2019 - SANTA CLARA, CA. Agilent Technologies Inc. (NYSE: A) today announced it has signed a definitive agreement to acquire privately-owned BioTek Instruments for $1.165 billion. With anticipated tax benefits for Agilent, the net purchase price is expected to be approximately $1.05 billion.
July 1, 2019 - BioTek Instruments continues to improve laboratory workflows while simplifying the user experience with the launch of their next generation 405 TS Microplate Washer. With new capabilities, 405 TS provides even more time-saving convenience and value for applications such as cell-based assays, ELISAs, bead washing and more. BioTek Instruments, Inc., soon to be part of, is a global leader in the development, manufacture and sale of life science instrumentation, including imaging & microscopy, multi-mode detection, liquid handling and automation systems. Our philosophy transcends conventional thinking and challenges the status quo. We develop fresh, original solutions by unifying concepts that often appear to be opposed. It means to shape and reshape.
To engineer, build, deliver and support products that best serve the marketplace by providing what you need, when you need it.Think Possible. It’s the difference between leading and following. June 26, 2019BioTek’s Synergy™ Neo2 Hybrid Multi-Mode Microplate Reader received expanded certification from Cisbio Bioassays for their proprietary HTRF® technology, a TR-FRET assay platform used in the Life Sciences. Synergy™ Neo2 was recently updated with an optional TRF laser.
The TRF laser provides ultra-fast measurement speed, along with optimal sensitivity for critical screening applications like Time-Resolved Fluorescence (TRF) and Time-Resolved Fluorescence Energy Transfer (TR-FRET) assays. Synergy Neo2 now offers HTRF certification with both its flash lamp and laser excitation modes and is an ideal solution for high throughput screening (HTS) and core labs facilitating ultra-fast processing of high-throughput biochemical and cell-based assay workflows. June 18, 2019BioTek is pleased to announce that its Synergy™ H1 and Synergy Neo2 Hybrid Multi-Mode Readers and its Cytation™ 1 and Cytation 5 Cell Imaging Multi-Mode Readers are validated for use with the MitoXpress and pH-Xtra Assays from Agilent Technologies. The assays may be used alone or combined to measure metabolism in live cells. Instructional Applications Bulletins are available for each multi-mode reader detailing the specific parameters for optimized TRF performance with MitoXpress Xtra Oxygen Consumption, MitoXpress Intracellular Oxygen and pH-Xtra Glycolysis products. October 16, 2018BioTek has released a Peltier Cooling Module for the Cytation™ Cell Imaging Multi-Mode Readers.
The compact module keeps internal temperature rise to less than one degree over ambient, regardless of fluctuations from external and internal factors. The module helps maintain and optimize stability for more consistent data in assays run at ambient temperature. The module also quickly reduces internal temperature after incubated assays for efficient transitions between multiple applications with different temperature requirements. September 25, 2019Quantification of purified nucleic acids and protein is a preliminary step for a multitude of downstream applications in a wide range of scientific fields of study. Depending on the sample and application, there is a need for a range of methods to best quantify the biomolecule of interest. Here we will discuss the various methods available to accurately and precisely determine a wide range of analyte concentrations typically found during purification. Methods will include the use of micro-volume, microplate and standard one-centimeter path length vessels using a range of detection methods available in microplate readers.
November 7, 2018In this webinar, we’ll describe how automated digital microscopy methods and high content image analysis tools frequently used in mammalian cell studies are applied to an array of microbial cell models common to bacteriology, virology, mycology, and mixed cell type co-cultures. Using live and fixed microorganisms, and a variety of stains, fluorescent probes and a label-free technique to demonstrate how downstream qualitative and quantitative data outcomes, such as cell counting and unit volume conversion, metabolic activity, strain differentiation, and morphology characterization, are obtained for each of a group of individual case studies.
Our goal is to provide tips and insights that can be broadly applied in microbial imaging applications beyond the examples shown. September 19, 2018Three dimensional (3D) spheroidal cell models have become a mainstay in life science research to provide the most in vivo-like environment. Performing media exchanges and washes with unattached spheroids can be problematic due to the risk of accidental spheroid removal. In this webinar we will introduce the MultiFlo™ FX's new AMX™ Automated Media Exchange Module, a novel automated, peristaltic pump-based tool that allows these procedures to be carried out in a controlled and consistent manner that eliminates spheroid disruption and removal, simplifying long-term 3D experimental procedures.
March 14, 2018Nucleic acids are the building blocks of life in all living things, from plants and animals to bacteria and viruses. In research, it’s important to quantify nucleic acids prior to downstream processes like sequencing, restriction enzyme digestions and ligations, PCR and qPCR along with many other applications. Along with determining nucleic acid concentrations, it’s also important to calculate the ratio of nucleic acid to protein to ascertain the purity of the nucleic acid before using the sample in subsequent analyses. November 29, 2017Phenotypic cellular analysis is a critical area of biological research.
Numerous applications require quantifying the number of “spots” per cell, including DNA damage, autophagosomes, endosomes, and mitochondria. These evaluations are often done by hand, which is highly subjective and can be tedious.
In this webinar we will describe using an automated image based approach for rapid, objective quantification of various assays that use object spot counting analysis including autophagy, mitochondria membrane potential, genotoxicity, and others. September 20, 2017Enzyme-linked immunosorbent assay (ELISA) is an antibody-based reaction that allows the detection and quantitation of numerous analytes with the same basic assay process. The reaction uses a solid surface, typically a microplate, to immobilize the analyte.
Once immobilized, unwanted materials can be removed by washing and the remaining analyte quantitated. The assay technology uses antibodies in conjunction with enzyme-catalyzed amplification to provide high specificity and high sensitivity. Here we will describe the basic process steps of ELISA, best laboratory practices along with troubleshooting tips for common problems. In addition, some of the devices and instrumentation used with this assay technology will be described. May 24, 2017The use of cells cultured into a three-dimensional (3D) configuration continues to gain acceptance within multiple areas of life science research and drug discovery. Assay procedures commonly performed with two-dimensional (2D) cultured cells are rapidly migrating to 3D because of the reestablishment of cell-cell and cell-extracellular matrix (ECM) interactions, and in vivo-like results these cell models afford. Examples include cell migration studies, stem cell differentiation, and toxicity assessments.
March 15, 2017Characterizing cell proliferation is a crucial aspect of biological research and therapeutic drug development. Most current cell proliferation assays rely on indirect biochemical metrics that are limited by artifacts or imaging-based endpoint measures. In this webinar, we will describe a continuous live-cell assay for determining cell proliferation profiles using high contrast brightfield imaging. This fully automated method enables long-term quantitative analysis of cell growth using non-invasive methods to directly count cells or assess% confluence. May 26, 2016BioTek's Lionheart™ FX Automated Live Cell Imager simplifies live cell imaging by providing a fully integrated solution. While the sample environment is effectively controlled to maintain cell health, all optical components are kept in separate conditions optimal for high resolution microscopy. The Lionheart FX also possesses versatile software allowing the easy creation of time-lapse movies and powerful image analysis enabling quantitative phenotypic assays.
These capabilities will be demonstrated in the webinar by several applications including perfusion and wound healing assays. March 17, 2016In this webinar we will demonstrate imaging and analysis procedures using the CometAssay® from Trevigen®. Following staining, automated imaging of each well is performed using the Cytation cell imaging multi-mode reader. Built in Gen5 software, used for analysis and instrument control, then carries out commonly accepted calculations; such as% DNA in the comet tail and tail moment. The combined process can then be used to generate automated, high throughput comet-based genotoxicity data. BioTek Instruments, Inc., headquartered in Winooski, VT, USA, is a worldwide leader in the design, manufacture, and distribution of innovative life science instrumentation. These products enable life science research by providing high performance, cost-effective analysis and quantification of biomolecules, biomolecular interactions and cellular structure and function across diverse applications.
BioTek espouses a 'Think Possible' approach that sets the tone for fresh ideas, unsurpassed customer service and original innovations.
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Product returned to a Canon USA repair facility or a Canon USA Authorized Service Facility ('ASF'), and proven to be defective upon inspection will be (a) repaired utilizing new, remanufactured, repaired and/or recycled parts (b) exchanged for new or; © exchanged for a refurbished Product, as determined by the Canon USA repair facility or the ASF. Warranty repair or replacement shall not extend the original warranty period of the Product. A dated proof of purchase is required at the time of warranty service. A copy of your dated bill of sale will satisfy this requirement. This warranty does not cover any accessories, or any consumables, such as paper or ink cartridges, as to which there shall be no warranty or replacement.This limited warranty shall only apply if the Product is used in conjunction with compatible computers, peripheral equipment and software. Canon USA shall have no responsibility for such items except for compatible Canon brand peripheral equipment covered by a separate warranty ('Separate Warranty'). Repairs of such Canon brand peripheral equipment shall be governed by the terms of the Separate Warranty.
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