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Merck
CN

SNAP2IHC

SNAP id® 2.0 Protein Detection System

Single IHC

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UNSPSC代码:
41116010
eCl@ss:
42029053
NACRES:
NB.23
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产品名称

SNAP i.d. 2.0 Protein Detection System-Single IHC,

产品线

SNAP id®

技术

immunohistochemistry: suitable (paraffin)
immunohistochemistry: suitable (tissue)
immunohistochemistry: suitable

一般描述

This system includes the SNAP id® 2.0 Base, IHC frame and incubation cover, assembly fixture, vacuum tubing, and a Quick Start Guide.

应用

The SNAP id® 2.0 System for IHC introduces a streamlined, medium through-put IHC capability to our SNAP id® 2.0 family. The frame and slide holders enable you to process up to 12 tissue slides, while our unique vacuum technology evenly removes

其他说明

Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial

法律信息

SNAP id is a registered trademark of Merck KGaA, Darmstadt, Germany

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相关内容

"Immunohistochemistry (IHC) is a biochemical method used for the detection, localization and identification of biomarkers in tissue samples. Although IHC is used worldwide and many automated systems exist for handling large numbers of slides, research labs that manage small to medium numbers of slides at a time typically use the manual method, which can be tedious and timeconsuming, and the antibody used cannot be recovered for future use. The new SNAP i.d.® 2.0 Protein Detection System for immunohistochemistry is a versatile, vacuum-driven system that can process from 1 to 24 slides with formalin-fixed paraffin embedded tissue (FFPE) samples as well as fresh frozen samples. The system can accommodate any typical manual protocol, and eliminates the need for a Pap pen."

There’s so much room for experimental variability in traditional immunodetection workflows. For your peace of mind – and ours – we designed the SNAP i.d.® 2.0 system to streamline your Western blot and immunohistochemistry experiments. The concept is simple: a vacuum-driven flow of blocking, antibody, and washing solutions reduces slide and membrane handling. That means a lot less shaking, dipping, pouring and waiting. And now you can process multiple blots and slides in parallel, so it’s easy to apply consistent conditions across experiments.

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