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Intrada WP-RP - 단백질 등 생체고분자를 위한 광기공(Wide-Pore) 역상 컬럼

Intrada

<span class="featureDot">●</span> 30 nm 기공을 활용한 고분자량 역상 분리용 충전상

<span class="featureDot">●</span> 3 μm 실리카 입자로 고분리능 구현

<span class="featureDot">●</span> 새롭게 개발된 역상 리간드로 적절한 표면 극성 확보

<span class="featureDot">●</span> 수십만 Da 수준의 단백질 등 생체분자 분석에 적합

<span class="featureDot">●</span> 기존 C4 Wide-Pore 컬럼 대비 소수성 물질의 용출이 용이

Intrada WP-RP - 단백질 등 생체고분자를 위한 광기공(Wide-Pore) 역상 컬럼

Features

 30 nm 기공을 활용한 고분자량 역상 분리용 충전상

 3 μm 실리카 입자로 고분리능 구현

 새롭게 개발된 역상 리간드로 적절한 표면 극성 확보

 수십만 Da 수준의 단백질 등 생체분자 분석에 적합

 기존 C4 Wide-Pore 컬럼 대비 소수성 물질의 용출이 용이

SPECIFICATIONS

Main Specifications

단백질 등 생체고분자를 위한 광기공(Wide-Pore) 역상 컬럼

Intrada WP-RP는 30 nm의 넓은 기공과 3 μm 실리카 입자를 기반으로, 수십만 Da에 이르는 단백질 등 생체고분자의 역상(RP) 분리에 최적화된 컬럼입니다. 새롭게 개발된 역상 리간드를 통해 적절한 표면 극성을 확보하여, 기존 C4 Wide-Pore 컬럼 대비 소수성 물질을 더 쉽게 용출시킬 수 있습니다.

관련 애플리케이션 검색 (실시간 연동)

Intrada WP-RP로 진행된 모든 애플리케이션 데이터와 유저 리포트를 실시간으로 검색할 수 있습니다. (영문 사이트와 동일한 데이터베이스를 사용하여 새로운 자료가 등록되는 즉시 반영됩니다.)

Intrada WP-RP 애플리케이션 전체보기 →

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Separation Analysis of Adiponectin Multimers by High-performance Liquid Chromatography

Kyosuke NAGASHIMA, Hiroaki MINAMISAWA, Yasuhito NOBUSHI, Tatsuro NAKAGAMA, Kazunori SAITOH and Hiromichi ASAMOTO
Bulletin of the Society of Sea Water Science, Japan, 71, 354-360, 2017


Rapid, Sensitive and Simple LC-MS/MS Method Development and Validation for Estimation of Phenytoin in Human Plasma

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Asian Journal of Chemistry; 29, 10 , 2305-2310, 2017


Monitoring Quality of Critical Reagents Used in Ligand Binding Assays with Liquid Chromatography Mass Spectrometry (LC-MS)

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Protein Analysis using Mass Spectrometry: Accelerating Protein Biotherapeutics from Lab to Patient, John Wiley & Sons, 2017


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Cancer Chemotherapy and Pharmacology, 74, 6, 1125-1137, 2014


Straightforward proteomic analysis reveals real dynamics of proteins in cells

Tomoko Ichibangase, Kazuhiro Imai
Journal of Pharmaceutical and Biomedical Analysis, 101, 31-39, December 2014


Increased Concentrations of Apo A-I and Apo A-II Fragments in the Serum of Patients With Hepatocellular Carcinoma by Magnetic Beads--Assisted MALDI-TOF Mass Spectrometry

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American Journal of Clinical Pathology, 141, 1, 52-61, Jan 2014


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Brian J. Geist, Darryl Davis, Thomas McIntosh, Tong-Yuan Yang, Kenneth Goldberg, Chao Han, Charles Pendley and Hugh M. Davis
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Efficient chromatographic separation of intact proteins derivatized with a fluorogenic reagent for proteomics analysis

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Biomedical Chromatography, 27, 11, 1520-1523, 2013


Proteome analysis of altered proteins in streptozotocin-induced diabetic rat kidney using the fluorogenic derivatization-liquid chromatography-tandem mass spectrometry method

Pei-Yun Tsai, Shih-Ming Chen, Hsiang-Yin Chen, Yi-Chieh Li, Kazuhiro Imai, Kuang-Yang Hsu, Jen-Ai Lee
Biomedical Chromatography, 27, 3, 382-389, 2013


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PloS one, 7(9), e45483, 2012


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International Journal of Proteomics, Volume 2012, Article ID 108609, 2012


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