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英文名字:EpiQuik Nuclear Extraction Kit(100 assays)

中文名称:核蛋白提取试剂盒(100次抽提)

供应商: Epigentek

产品货号:OP-0002-1

目录价: 3009.6

规格:100Assays

名称:核蛋白提取试剂盒/EpiQuik Nuclear Extraction Kit
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·产品描述

EpiQuik核蛋白提取试剂盒提供了一种简单而应用广泛的方法以及相应的试剂提取各种用途的核蛋白.我们针对细胞和组织样品设计了专利核蛋白分离缓冲液.经过预溶解和溶解缓冲液处理之后,核蛋白可以简单地提取出来,并立即用到后续实验中去,或者储存起来.该核蛋白提取试剂盒内主要产品组份包括:NE1 (10X Pre-Extraction Buffer) NE2 (Extraction Buffer) 1000X DTT Solution 1000X Protease Inhibitor Cocktail (PIC) 用户指南手册


·产品特点

1、操作十分快捷,1小时内可完成;

2、应用广泛,可用于多种样本的核蛋白提取


·产品说明书


Product Overview

The EpiQuik™ Nuclear Extraction Kit is a complete set of optimized reagents to provide a simple and ive method for isolating nuclear proteins used for a variety of applications in just 60 minutes. These applications may include Western blot, protein-DNA binding assays, nuclear enzyme assays, and any other procedures requiring optimized nuclear proteins. The protocol is fast and easy-to-use, and also isolates very abundant yields of nuclear extract from mammalian cells or tissue samples. The kit is also specifically designed to meet the requirements of nuclear extracts used in various other epigenetic products from Epigentek, including DNMTHDAC, and HAT assays. Some of the kit's highlighted features include the following:

The EpiQuik™ Nuclear Extraction Kit has the following highlighted advantages and features: 

  • Fast - Pre-optimized and simple step-wise 1-hour protocol.
  • Convenient – The kit includes all essential reagents to carry out a nuclear extraction.
  • High Yield – Total yield can be up to 100 µg per optimal extraction (results may vary depending on cell or tissue type).
  • Consistent - Standardized procedure for reproducible results.
  • Quality Controlled – EpiGentek guarantees the performance of the EpiQuik™ Nuclear Extraction kit in the manner described in the provided product instructions

Background
Nuclear extraction is the procedure of parting the nuclear and cytoplasmic portions of the cell. The process can be beneficial in examining the molecules that specifically interact with the nucleus, such as transcription factors which bind DNA.

Effective nuclear protein extraction is a vital step in applications revolving around nuclear, epigenetic, or genetic processes. This step helps provide high-quality starting materials for the characterization of the function, structure, and interactions of the nuclear proteins as well as allowing for various downstream analyses.  

What used to be done by following a non-standardized protocol of combining various standard lab ingredients has been made quick and easy with the introduction of kits like the EpiQuik™ Nuclear Extraction kit, which provides all materials necessary for the procedure and takes as little as an hour for the entire process to complete.

Principle & Procedure
The EpiQuik™ Nuclear Extraction Kit simply applies our proprietary nuclear protein isolation buffers to cell/tissues. After treatment with pre-lysis and lysis buffers, the nuclear proteins are easily extracted for immediate use or storage at proper conditions.

Starting Materials & Yield
A total of 100 standard extractions (using 10^7 cells or 20 mg tissues) can be isolated from mammalian cells or tissue samples with this kit. 


Product Citations

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Luo H et. al. (August 2020). High-Glucose Concentration Aggravates TNF-alpha-Induced Cell Viability Reduction in Human CD146-Positive Periodontal Ligament Cells via TNFR-1 Gene Demethylation. Cell Biol Int.

Varela RB et. al. (July 2020). Role of epigenetic regulatory enzymes in animal models of mania induced by amphetamine and paradoxical sleep deprivation. Eur J Neurosci.

Chelladurai P et. al. (July 2020). Isoform-specific characterization of class I histone deacetylases and their therapeutic modulation in pulmonary hypertension. Sci Rep. 10(1):12864.

Takeshima H et. al. (July 2020). TET repression and increased DNMT activity synergistically induce aberrant DNA methylation. J Clin Invest.

Aggarwal et. al. (July 2020). Functional succinate dehydrogenase deficiency is a pathognomonic adverse feature of clear cell renal cancer biorxiv.

Afify H et. al. (July 2020). The modulatory effects of cinnamaldehyde on uric acid level and IL-6/JAK1/STAT3 signaling as a promising therapeutic strategy against benign prostatic hyperplasia. Toxicol Appl Pharmacol. 402:115122.

Nouriemamzaden F et. al. (July 2020). Modulation of Estrogen α and Progesterone Receptors in Triple Negative Breast Cancer Cell Lines: The Effects of Vorinostat and Indole-3-Carbinol In Vitro. Anticancer Res. 40(7):3669-3683.

Huq S et. al. (June 2020). Repurposing the FDA-Approved Antiviral Drug Ribavirin as Targeted Therapy for Nasopharyngeal Carcinoma. Mol Cancer Ther.

Zhang L et. al. (June 2020). DCLK1 inhibition attenuates tumorigenesis and improves chemosensitivity in esophageal squamous cell carcinoma by inhibiting β-catenin/c-Myc signaling. Pflugers Arch.

Zhang J et. al. (June 2020). A moderate physiological dose of benzyl butyl phthalate exacerbates the high fat diet-induced diabesity in male mice Toxicology Research.

Wang Y et. al. (June 2020). NAP1-RELATED PROTEIN1 and 2 negatively regulate H2A.Z abundance in chromatin in Arabidopsis. Nat Commun. 11(1):2887.

Abdel-Maged AE et. al. (June 2020). Repurposing of Secukinumab as Neuroprotective in Cuprizone-Induced Multiple Sclerosis Experimental Model via Inhibition of Oxidative, Inflammatory, and Neurodegenerative Signaling. Mol Neurobiol.