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CleanCap EGFP mRNA【L-7601-100】

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  • ¥4935.84
  • TriLink已认证
  • 美国
  • L-7601-100
  • 2025年07月16日
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    • 详细信息
    • 询价记录
    • 文献和实验
    • 技术资料
    • 保存条件

      At or Below -40°C

    • 保质期

      包装说明

    • 英文名

      CleanCap EGFP mRNA

    • 库存

      大量

    • 供应商

      欣博盛生物科技有限公司

    • 规格

      100 ug

    本文是关于CleanCap® EGFP mRNA - (L-7601)产品信息的详细介绍,如您在浏览本文的过程中,对产品有任何疑问,可联系TriLink独家代理商欣博盛生物,欢迎您前来查阅和提出宝贵的意见。

    EGFP mRNA表达了一个增强型绿色荧光蛋白,该蛋白最初从维多利亚水母中获得。EGFP是一种哺乳动物细胞中常用的可直接检测的报告基因,可产生明亮的绿色荧光,发射峰为509nm。

    EGFP mRNA使用了TriLink特有的共转录加帽试剂CleanCap进行加帽,该加帽试剂可产生Cap 1结构,并具有高效的加帽效率。EGFP mRNA是多聚腺苷酸化的,并针对哺乳动物系统进行了优化,模仿完全加工的成熟mRNA。

     

    产品信息:

    货号:L-7601

    规格:100 µg,1 mg,5 x 1 mg

    纯度:通过琼脂糖凝胶迁移实验

    保存温度:-40℃或以下

    长度:996个核苷酸

    溶液:1 mM 柠檬酸钠溶液,pH 6.4

    浓度:1.0 mg/ml

    碱基组成:未修饰的碱基

    换算系数:40 µg/OD260

    应用:报告基因

    QC检测:特性与纯度

                  琼脂糖凝胶迁移率:通过 

                  浓度: ± 6% 通过

    CleanCap® EGFP mRNA - (L-7601)产品信息图文对照:

    产品细节图片1

     

    关于Trilink:

    TriLink BioTechnologies公司1996年成立于美国加州圣地亚哥,是世界著名的核酸修饰技术领域的研究者。TriLink致力于高品质核酸修饰产品的研发和生产,可为科研、诊断、OEM和医疗机构提供包括核苷酸、常规及特殊修饰的寡核苷酸产品,可广泛应用于基因治疗,核苷类化疗,寡核苷酸治疗和诊断领域。此外,TriLink还可提供定制、合同研究服务和ISO/ QSR标准的cGMP生产设施。TriLink完善的产品及研发服务解决方案有助于推动药物发现和生物医学研究
     

    深圳欣博盛生物技术公司是TriLink独家代理商,购买、产品咨询都可联系欣博盛生物。

     

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    代理品牌网站: www.neobioscience.com 

    自主品牌网站: www.neobioscience.net

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    图标文献和实验
    该产品被引用文献
    1. Castanotto, Daniela; Lin, Min; Kowolik, Claudia; Koch, Troels; Hansen, Bo Rode; Oerum, Henrik; Stein, Cy A. . Protein Kinase C-α is a Critical Protein for Antisense Oligonucleotide-mediated Silencing in Mammalian Cells.
    2. Carlsten, Mattias; Levy, Emily; Karambelkar, Amrita; Li, Linhong; Reger, Robert; Berg, Maria; Peshwa, Madhusudan V.; Childs, Richard W. . Efficient mRNA-Based Genetic Engineering of Human NK Cells with High-Affinity CD16 and CCR7 Augments Rituximab-Induced ADCC against Lymphoma and Targets NK Cell Migration toward the Lymph Node-Associated Chemokine CCL19.
    3. Luo, X.; Li, B.; Zhang, X.; Zhao, W.; Bratasz, A.; Deng, B.; McComb, D. W.; Dong, Y. . Dual-functional lipid-like nanoparticles for delivery of mRNA and MRI contrast agents.
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    5. Kauffman, Kevin J.; Oberli, Matthias A.; Dorkin, J. Robert; Hurtado, Juan E.; Kaczmarek, James C.; Bhadani, Shivani; Wyckoff, Jeff; Langer, Robert; Jaklenec, Ana; Anderson, Daniel G. . Rapid, Single-Cell Analysis and Discovery of Vectored mRNA Transfection In Vivo with a loxP-Flanked tdTomato Reporter Mouse.
    6. Olden, Brynn R.; Cheng, Yilong; Yu, Jonathan L.; Pun, Suzie H. . Cationic polymers for non-viral gene delivery to human T cells.
    7. Wu, CC;Peterson, A;Zinshteyn, B;Regot, S;Green, R; . Ribosome Collisions Trigger General Stress Responses to Regulate Cell Fate
    8. Schmiderer, L;Subramaniam, A; . Efficient and nontoxic biomolecule delivery to primary human hematopoietic stem cells using nanostraws
    9. Ayad, C;Libeau, P;Lacroix-Gimon, C;Ladavi . LipoParticles: Lipid-Coated PLA Nanoparticles Enhanced In Vitro mRNA Transfection Compared to Liposomes
    10. Li, L;Long, J;Sang, Y;Wang, X;Zhou, X;Pan, Y;Cao, Y;Huang, H;Yang, Z;Yang, J;Wang, S; . Rational preparation and application of a mRNA delivery system with cytidinyl/cationic lipid
    11. Linares-Fern . Combining an optimized mRNA template with a double purification process allows strong expression of in
    12. Ahn, M;Song, J;Hong, B; . Facile Synthesis of N-Doped Graphene Quantum Dots as Novel Transfection Agents for mRNA and pDNA
    13. Zhang, C;Delawary, M;Huang, P;Korchak, JA;Suda, K;Zubair, AC; . IL-10 mRNA Engineered MSCs Demonstrate Enhanced Anti-Inflammation in an Acute GvHD Model
    14. Palacio-Casta . Mimicking the Biology of Engineered Protein and mRNA Nanoparticle Delivery Using a Versatile Microfluidic Platform
    15. Meyer, RA;Patrick Hussmann, G;Peterson, NC;Luis Santos, J;Tuesca, AD; . A scalable and robust cationic lipid/polymer hybrid nanoparticle platform for mRNA delivery
    16. Loo, J;Sicher, I;Goff, A;Kim, O;Clary, N;Alexeev, A;Sulchek, T;Zamarayeva, A;Han, S;Calero-Garcia, M; . Microfluidic transfection of mRNA into human primary lymphocytes and hematopoietic stem and progenitor cells using ultra-fast physical deformations
    17. Larson, NR;Hu, G;Wei, Y;Tuesesca, A;Forrest, ML;Middaugh, CR; . pH-Dependent Phase Behavior and Stability of Cationic Lipid-mRNA Nanoparticles
    18. Tanaka, H;Miyama, R;Sakurai, Y;Tamagawa, S;Nakai, Y;Tange, K;Yoshioka, H;Akita, H; . Improvement of mRNA Delivery Efficiency to a T Cell Line by Modulating PEG-Lipid Content and Phospholipid Components of Lipid Nanoparticles
    19. R . Acid-Sensitive Surfactants Enhance the Delivery of Nucleic Acids
    20. Huang, P;Zhang, C;Delawary, M;Korchak, JA;Suda, K;Zubair, AC; . Development and evaluation of IL-6 overexpressing mesenchymal stem cells (MSCs)
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    22. Duggal, R;Santara, S;Gordon, M;Kilgallon, A;Hermanson, D;Childs, R;O'Dwyer, M; . Promising Preliminary Activity of Optimized Affinity, CD38 CAR NK Cells Generated Using a Non-Viral Engineering Approach in Gene Edited Cord Blood Derived NK Cells for the Treatment of Multiple Myeloma
    23. Li, J;Men, K;Gao, Y;Wu, J;Lei, S;Yang, Y;Pan, H; . Single Micelle Vectors based on Lipid/Block Copolymer Compositions as mRNA Formulations for Efficient Cancer Immunogene Therapy
    24. Ren, J;Cao, Y;Li, L;Wang, X;Lu, H;Yang, J;Wang, S; . Self-assembled polymeric micelle as a novel mRNA delivery carrier
    25. Joo, B;Hur, J;Kim, GB;Yun, SG;Chung, AJ; . Highly Efficient Transfection of Human Primary T Lymphocytes Using Droplet-Enabled Mechanoporation

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      1. 应用说明 AcGFP1是从水母(Aequorea coerulescens)中分离出来的荧光蛋白,是EGFP的优良的代替品。AcGFP1的特性与EGFP相似,AcGFP1的激发波峰为475nm,发射波峰为505nm。此外,AcGFP1与EGFP在核酸水平上有94%的同源性。AcGFP1的特点是具有进行了人类密码子优化的开放阅读框。这不仅提高了AcGFP1 mRNA的转化

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