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ultrafleXtreme™

Bruker DaltonicsAvailable: Worldwide

Experience Unmatched Sensitivity and Performance with Next-Generation MALDI-TOF and TOF/TOF Technology

Bruker Daltonics

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Reviews

Average Rating 4.3

|12Scientists have reviewed this product

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This is a wonderful piece of equipment. A great piece of equipment for analysis of proteins.

 

Average Rating 5.0

Application Area:

Protein and peptide analysis

Equipment has a user friendly interface. The software is easy to understand. Different experiments can be performed with this equipment. Very good results can be achieved.

Review Date: 24 Jan 2020 | Bruker Daltonics

Good results

 

Average Rating 3.3

Application Area:

biomarker discovery

Effective for application, easy to use, good customer support

Review Date: 13 Feb 2019 | Bruker Daltonics

High performance and flexibility for clinical and applied proteomics applications

 

Average Rating 4.3

Application Area:

Proteomics, MALDI-MSI, Mass Spectrometry Imaging

Bruker's Ultraflextreme MALDI-TOF is able to be used for conventional proteomic analyses as well as MALDI Mass Spectrometry Imaging. This versatile mass spectrometer is able to achieve 2 kHz speed in MS mode and 1 kHz in MS2 being able to analyse and process samples in a fast, reliable way. The UI of the software provided is user-friendly and, despite the parameter optimization being a complex procedure, the common user can achieve results after one month of training. I would definitely recommend it for laboratories interested in achieving consistent proteomics results: Bruker support is always available for troubleshooting and support. It's featured in countless publications, ranging from microbiology to plant proteomics, tumor heterogeneity and biomarker discovery studies.

Review Date: 31 Mar 2016 | Bruker Daltonics

Average Rating 4.3

Application Area:

Biotechnology, Proteomics

Two applications in particular, Imaging MS and Biotyper rank amongst top in comparison to all other models. You get the best quality results in the shortest time possible for those applications and it is pretty easy to program and to use in high-throughput applications. This comes highly recommended, especially since there has been an upgrade in the Biotyper identifications and the Smartbeam laser for higher resolution applications.

Review Date: 16 Oct 2015 | Bruker Daltonics

The instrument is easy to operate with detailed instructions in the manual, robust and stable. The software is user friendly. Service after sale is very good.

 

Average Rating 4.7

Application Area:

The product is best suited for imaging purpose in metabolomics and proteomics.

UltrafleXtreme is well suited for imaging and profiling of large biomolecules especially lipids, peptides and proteins. The instrument is easy to operate with detailed instructions in manual, robust and stable. The software is user friendly. Service after sale is very good. For European countries, service can be provided almost right away. Technicians from company can observe and check out the instrument via internet. Generally, this instrument is excellent for routine analyses in metabolomics and proteomics with spatial resolution of imaging not better than 20 micrometer.

Review Date: 28 Apr 2015 | Bruker Daltonics

Average Rating 4.0

Application Area:

Protemic & Glycomics reserarch

Very user friendly with a multipurpose interface. Can be used for peptides and proteins with extreme ease and reproducibility. Many user friendly options available for making it an easy to use machine. After sales care is ok and not up to the mark with a weak after sales service support. The machine is very robust and truly value for money. Overall the system is best suited for proteomics application.

Review Date: 31 Mar 2015 | Bruker Daltonics

Average Rating 4.0

Application Area:

Small Molecules

Bruker Utraflex MALDI-TOF/TOF-MS series are primarily designed for Proteomics application. It’s an outstanding easy to use instrument that works very stable for years long without significant problems and doesn't require many consumables. Flex analysis software generally required few minutes training to enable user to start acquiring spectra. Apart from Proteomics one by knowing the basics of LDI and TOF analyzers, can use instrument for the analysis of small molecules with extremely high throughput. Especially such instrument can be applied for species finger printing purposes with and without matrix approaches. It can deliver very sensitive and accurate measurements for small molecule if calibrated correctly. People working in areas like matrix development, matrix free LDI, solution free LDI can try many different options to efficiently ionize the molecules of interest but such application required advance knowledge of instrument design which is generally not given out by vendors!

Review Date: 22 Apr 2014 | Bruker Daltonics

Average Rating 4.3

Application Area:

Proteomics and Mass Spectrometry

Robust, easy to use, user friendly software. Compatible with diverse macro molecule applications.

Review Date: 5 Aug 2013 | Bruker Daltonics

Average Rating 4.3

Application Area:

Proteomics

The instrument is easy to use, has user friendly software and gives a good performance.

Review Date: 20 Jun 2012 | Bruker Daltonics

Average Rating 4.3

Easy to use, even for students.

Review Date: 18 Aug 2011 | Bruker Daltonics

Maximized Data Output: Cutting-edge technology enables the acquisition of complete MS/MS data sets at a rapid rate of up to 1000 Hz, even with low fmol levels, in a matter of seconds.

Precise Results: Advanced software analysis and visualization ensure accurate identification of high-content data, providing results with a high level of confidence.

Versatile Solution: The proprietary smartbeam-II laser provides unparalleled versatility, accommodating a range of analytical workflows and matrix options.


Application NoteLife Sciences

High-Speed MALDI-TOF/TOF Imaging of Mouse Brain Tissue Performed on Intact Proteins and After On-tissue Digestion

In this application note, the capability and flexibility of the MALDI-TOF/TOF system for imaging of intact proteins and tryptic peptides (after tissue digestion) is demonstrated. The on-tissue digestion approach benefits from significantly higher mass resolution and accuracy that can be achieved for tryptic peptides in reflector operation mode, as well as from aditional specificity provided by MS/MS analysis.


Application NoteSeparations

Full Validation of Therapeutic Antibody Sequences by Middle-Up Mass Measurements and Middle-Down Protein Sequencing

This application notes reports a novel middle-up LC-ESI-MS subunit analysis and middle-down LC-MALDI in-source decay (ISD) mass spectrometry method applied to cetuximab, panitumumab and natalizumab selected as representative FDA and EMA approved monoclonal antibodies (mAbs). The regulatory agencies require comprehensive primary sequence validation both for innovator and biosimilar monoclonal antibodies (mAbs). Full sequence coverage (SC) is typically obtained by the combination of multiple LC-MS/MS datasets from various protease digests.


Application NoteLife Sciences

High-Throughput Screening of Deubiquitylase Enzyme (DUB) Activity/Specificity and Inhibitor Screening by MALDI-TOF Mass Spectrometry

In biopharmaceutical laboratories, there is a growing need for high-throughput, yet sensitive methodologies to characterize deubiquitylase enzymes (DUBs) and DUB inhibitors. This application note demonstrates a sensitive and fast assay to quantify in vitro DUB enzyme activity using matrix-assisted laser desorption/ionization time-of-flight (MALDITOF) mass spectrometry, called MALDI-TOF DUB assay.




Application NoteSeparations

Comprehensive Study of O-linked Glycopeptides of Erythropoeitin

Protein glycosylation can effectively be analyzed on the glycopeptide level where site-specific modifications remain preserved. This application note introduces a new method allowing for automatic identification of unknown glycopeptides in one step without prior release of the glycans. MALDI-TOF/TOF technology combined with an integrated software solution is used to analyze and compare O-linked glycosylation of two erythropoietin samples of different origin. MALDI-specific fragmentation patterns are used to successfully find the glycopeptide spectra in a complete LC-MALDI dataset and identify glycan and peptide moieties.


Application NoteSpectroscopy

Automated Acquisition of MALDI-ISD Spectra for the N- and C-terminal Sequence Determination of Intact Proteins

For over 10 years, MALDI-Top-Down Sequencing (MALDI-TDS) of intact proteins has proved particularly useful for the determination of N- and C-terminal protein sequences. This technology note describes a procedure using the recently introduced 1,5-diaminonaphthalene (DAN) matrix and the new ultrafleXtreme™ MALDI-TOF/ TOF that automates the entire analysis - from sample preparation and data acquisition to N- and C-terminal sequence assignments.


Application NoteSpectroscopy

Precise MW Determination of Intact Proteins by Multiple Charge State Analysis of MALDI Generated Ions

This application note describes a new approach for the precise MW determination of intact protein proteins using multiple charge state analysis of MALDI generated ions. The combination of the new ultrafleXtreme with Bruker’s DHAP matrix provides very high accuracies for the MW determination of proteins in the 8-70 kDa range in a unique new concept of tracking advantage of highly resolved and multiple charged ions in a precisely calibrated m/z range.




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