TMT10PLEX LABEL REAGENT SET 1 X 0.8 MG, 10-RXN SET,90110,赛默飞世尔

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订货号 6TB6434
品牌型号 赛默飞世尔 90110
货期 询货期
最小订货量 1套
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产品介绍 Product Description
规格
Label Type: Tandem Mass Tag™ (TMT) Labels
Product Line: TMT10plex™
Workflow Step: Protein Labeling
Detection Method: Mass Spectrometry
Final Product Type: Protein
For Use With (Equipment): Mass Spectrometer
Starting Material: Cell Lysate
Product Type: TMT10plex Isobaric Label Reagent Set
Quantity: 10 Reaction Set
储存
Sufficient For: One 10-plex (1 x 10-way) experiment
• TMT10-126 Label Reagent, 1 x 0.8 mg
• TMT10-127N Label Reagent, 1 x 0.8 mg
• TMT10-127C Label Reagent, 1 x 0.8 mg
• TMT10-128N Label Reagent, 1 x 0.8 mg
• TMT10-128C Label Reagent, 1 x 0.8 mg
• TMT10-129N Label Reagent, 1 x 0.8 mg
• TMT10-129C Label Reagent, 1 x 0.8 mg
• TMT10-130N Label Reagent, 1 x 0.8 mg
• TMT10-130C Label Reagent, 1 x 0.8 mg
• TMT10-131 Label Reagent, 1 x 0.8 mg

Store at -20°C
描述

Amine-reactive Thermo Scientific TMT10plex™ Isobaric Mass Tag Labeling Reagents Sets enable multiplexed protein identification and quantitative analysis by tandem mass spectrometry (MS).

This Tandem Mass Tag™ (TMT™) 10-plex reagent set contains ten different isobaric compounds with the same mass and chemical structure (i.e., isotopomeric) composed of an amine-reactive NHS-ester group, a spacer arm and a mass reporter. The reagent set enables up to ten different peptide samples prepared from cells or tissues to be labeled in parallel and then combined for analysis. For each sample, a unique reporter mass (i.e., TMT10 126-131Da) in the low-mass region of the high-resolution MS/MS spectrum is used to measure relative protein expression levels during peptide fragmentation and tandem mass spectrometry.

Features of this TMT10plex Isobaric Label Reagent Set:

Powerful – concurrent MS analysis of multiple samples increases sample throughput and enables relative quantitation of up to ten different samples derived from cells, tissues or biological fluids
Consistent – identical reagent structure and performance among TMTzero™, TMTduplex™, TMTsixplex™ and TMT10plex™ reagents allows efficient transition from method development to multiplex quantitation, enabling biomarker discovery research across platforms and datasets
Robust – increased multiplex capability results in fewer missing quantitative values among samples and higher confidence among replicates
Efficient – amine-reactive, NHS-ester-activated reagents ensure efficient labeling of all peptides regardless of protein sequence or proteolytic enzyme specificity
Compatible – optimized for use with high resolution Thermo Scientific MS/MS platforms, such as the Q Exactive, Orbitrap Elite™ and Orbitrap Fusion™ Tribrid™ instruments with data analysis fully supported by Proteome Discoverer™ 1.4

Applications:
• Protein identification and quantitation from multiple samples of cells, tissue or biological fluids
• Protein expression profiling of normal vs. disease states or control vs. treated
• Multiplex up to ten different samples concurrently in a single experiment
• Quantitative analysis of proteins for which no antibodies are available
• Identification and quantitation of membrane and post-translationally modified proteins
• Identification and quantification of hundreds to thousands of proteins in a single experiment

The Tandem Mass Tag (TMT) Reagents are specially designed to enable identification and quantitation of proteins in different samples using tandem mass spectrometry. The TMT10plex Label Reagents share an identical structure with TMTzero, TMTduplex, and TMTsixplex Reagents but contain different numbers and combinations of 13C and 15N isotopes in the mass reporter. The different isotopes result in a 10-plex set of tags that have mass differences in the reporter that can be detected using high resolution Orbitrap MS instruments.

Advantages of the TMT10plex Label Reagents include increased multiplex relative quantitation, increased sample throughput, and fewer missing quantitative values among samples. TMT10plex Label Reagents are ideal for analysis of multiple protein samples from inhibitor dose response experiments, time course experiments or biological replicates.

TMT Reagents are prov

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