Blotting membranes

Introduction to the features of BM Blotting Membranes, : Pore size and applicable protein type 0.1μm suitable for proteins with molecular weight less than 7kDa 0.22μm suitable for proteins with molecular weight less than 20kDa 0.45μm suitable for proteins with molecular weight greater than 20kDa Main protein binding principles Static electricity and hydrophobicity Applicable transfer conditions and detection methods Chemiluminescence Fluorescence detection radiolabeled probe direct dyeing Enzyme-linked antibody Advantage 

1.Low background, high sensitivity

2.No need for alcohol reagent pre-wetting

3.Unique surface structure and properties create excellent signal-to-noise ratio The material is derived from natural fibers, is environmentally friendly, and can keep the bound protein active for a long time.


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Blot Analysis in Biopharmaceutical, Medical and Other Fields

The “14th Five-Year Plan” Bioeconomy Development Plan proposes that the bioeconomy should be driven by the development and progress of life sciences and biotechnology, based on the protection, development and utilization of biological resources, and based on the extensive and deep integration of medicine, health, agriculture, forestry, and energy. , environmental protection, materials and other industries; it is clear that the development of bio-economy is an important direction to comply with the accelerated evolution trend of global biotechnology and achieve high-level scientific and technological self-reliance. It is an important measure to cultivate and expand the bio-industry and promote high-quality economic development. Meeting the rapid growth of life and health needs and satisfying the people’s yearning for a better life is an important guarantee for strengthening national biosecurity risk prevention and control and promoting the modernization of the national governance system and governance capabilities.

 

In response to the national call, BM is committed to conquering high-end film production technology and gradually realizing the import substitution of high-value consumables in the field of life sciences. In May 2023, mass production of immunochromatography NC membranes was successfully achieved and applied to various rapid detection reagents. At present, NC film has been used in domestic in vitro diagnostics, food safety, drug rapid testing and other fields, and has achieved reverse export and competes with international giants in the market! After completing the NC film market talk, after several months of technical research by our technical team, in response to the urgent needs of users in the global life sciences field to reduce the cost of core high-value consumables, we successfully launched the blotting membranes, which is suitable for biopharmaceuticals, medicine and other fields. Western blot analysis(Western Blotting, WB)

 

Introduction to the features of BM Blotting Membranes, : Pore size and applicable protein type 0.1μm suitable for proteins with molecular weight less than 7kDa 0.22μm suitable for proteins with molecular weight less than 20kDa 0.45μm suitable for proteins with molecular weight greater than 20kDa Main protein binding principles Static electricity and hydrophobicity Applicable transfer conditions and detection methods Chemiluminescence Fluorescence detection radiolabeled probe direct dyeing Enzyme-linked antibody Advantage 

1.Low background, high sensitivity

2.No need for alcohol reagent pre-wetting

3.Unique surface structure and properties create excellent signal-to-noise ratio The material is derived from natural fibers, is environmentally friendly, and can keep the bound protein active for a long time.

Introduction to WB analysis technology WB analysis technology is a technology widely used in the fields of molecular biology, biochemistry, immunology and other fields. This technology uses the specific binding of antibodies to specific proteins in tissue or cell samples to achieve protein identification and expression analysis based on the position and intensity of the color band, that is, qualitative and semi-quantitative analysis. It was first proposed by Harry Towbin of the Friedrich Miescher Institute in Switzerland in 1979. It has been more than 40 years ago and has become a very classic and effective protein research method.

 

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