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Merck
CN

A-PLSC010

AnteoBind Biosensor

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NACRES:
NA.22
UNSPSC Code:
12352200
Form:
liquid
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form

liquid

availability

not available in Japan

General description

AnteoBind Biosensor is a ready-to-use activation reagent specifically developed for binding biomolecules onto planar surfaces including polystyrenes, certain cyclic olefin copolymers, microarray slides, silicon oxides, titanium oxides, ceramics and gold surfaces (excluding gold colloids in suspension).

AnteoBind Biosensor can modify the strength of binding, wettability and surface charge of base materials commonly used in biosensor applications. By using AnteoBind surface coatings, it is possible to control protein binding and improve the stability of bound biomolecules across a range of surfaces used in biosensors.

AnteoBind Biosensor has many advantages over methods such as EDC. AnteoBind is water based and replaces the dry chemicals you would use with the EDC method. Using AnteoBind instead of NHS/EDC chemistry can save up to 3-4 hours of lab time. Experiments have shown increased stability and functionality for antibodies and a decreased background. AnteoBind improves reproducibility between experiments by providing uniformity between surfaces.

Application

Activation and coupling of biosensor planar surfaces

Features and Benefits

  • Water based, activation and coupling reagent for biosensor planar surfaces
  • Modify the strength of binding, wettability and surface charge of base materials
  • An alternative to traditional chemistries such as NHS/EDC methods with an easier to use protocol
  • Reduce reagent preparation time by 3-4 hours
  • Increase antibody functionality
  • Low background noise
  • High reproducibility between experiments

Legal Information

Anteobind is a trademark of AnteoTech Ltd

存储类别

12 - Non Combustible Liquids

wgk

WGK 3

flash_point_f

Not applicable

flash_point_c

Not applicable

法规信息

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分析证书(COA)

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Marco Lindner et al.
Frontiers in chemistry, 6, 655-655 (2019-02-09)
Protein micropatterning has become an important tool for many biomedical applications as well as in academic research. Current techniques that allow to reduce the feature size of patterns below 1 μm are, however, often costly and require sophisticated equipment. We
Jiao Wu et al.
Advanced functional materials, 26(22), 4016-4025 (2016-08-16)
We for the first time demonstrate multi-functional magnetic particles based rare cell isolation combined with the downstream laser desorption/ionization mass spectrometry (LDI-MS) to measure the metabolism of enriched circulating tumor cells (CTCs). The characterization of CTCs metabolism plays a significant

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