TransDetect® Cell Counting Kit (CCK)

细胞增殖及细胞毒性检测试剂盒

目录号规格单价
FC101-011 ml220
FC101-025 ml720
FC101-032×5 ml1290
FC101-046×5 ml3080
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产品详情介绍

TransDetect® Cell Counting Kit,是一种基于水溶性四唑盐的细胞增殖和细胞毒性检测试剂盒。它在电子耦合试剂1-Methoxy PMS存在的情况下,可以被线粒体内的脱氢酶还原为可溶性的橙黄色甲臜(formazan)。甲臜的数量与活细胞的数量成正比。细胞增殖越快、细胞毒性越小、细胞数量越多,则颜色越深,颜色的深浅与细胞数量呈现良好的线性关系。该产品细胞毒性小,对后续实验没有影响,与MTT,XTT,MTS和WST-1相比,此法检测灵敏度更高,线性范围更宽,适用于药物筛选,细胞增殖测定,细胞毒性测定和肿瘤药敏实验。 

产品组成

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实验数据

CCK灵敏度检测

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CCK对细胞毒性低

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References

1.Zhao M M, Zhu Y, Zhang L, et al. Novel cleavage sites identified in SARS-CoV-2 spike protein reveal mechanism for cathepsin L-facilitated viral infection and treatment strategies[J]. Cell Discovery, 2022.(IF 38.07) 

2.Liu Q, Huang Y, Li L, et al. Endogenous Enzyme‐Operated Spherical Nucleic Acids for Cell‐Selective Protein Capture and Localization Regulation[J]. Angewandte Chemie International Edition, 2023.(IF 16.60)

3.Liao N, Su L, Cao Y, et al. Tracking cell viability for adipose-derived mesenchymal stem cell-based therapy by quantitative fluorescence imaging in the second near-infrared window[J]. ACS nano, 2022.(IF 15.88) 

4.Liao N, Su L, Zheng Y, et al. In vivo tracking of cell viability for adoptive natural killer cell‐based immunotherapy by ratiometric NIR‐II fluorescence imaging[J]. Angewandte Chemie, 2021.(IF 15.34)

5.Zhao J, Chu H, Zhao Y, et al. A NIR light gated DNA nanodevice for spatiotemporally controlled imaging of microRNA in cells and animals[J]. Journal of the American Chemical Society, 2019.(IF 14.69)

6.Cai B, Li Z, Ma M, et al. Long noncoding RNA SMUL suppresses SMURF2 production-mediated muscle atrophy via nonsense-mediated mRNA decay[J]. Molecular Therapy Nucleic Acids, 2021(IF 11.45)

7.Cai B, Ma M, Zhang J, et al. LncEDCH1 improves mitochondrial function to reduce muscle atrophy by interacting with SERCA2[J]. Molecular Therapy Nucleic Acids, 2022.(IF 8.89)

8.Cai B, Ma M, Zhang J, et al. Long noncoding RNA ZFP36L2-AS functions as a metabolic modulator to regulate muscle development[J]. Cell Death & Disease, 2022.(IF 8.46)

9.Ma M, Cai B, Zhou Z, et al. LncRNA-TBP mediates TATA-binding protein recruitment to regulate myogenesis and induce slow-twitch myofibers[J]. Cell Communication and Signaling, 2023.(IF 7.52)

10.Zhong F, Liu J, Gao C, et al. Downstream regulatory network of MYBL2 mediating its oncogenic role in melanoma[J]. Frontiers in Oncology, 2022.(IF 6.24)

11.Cai B, Ma M, Chen B, et al. MiR-16-5p targets SESN1 to regulate the p53 signaling pathway, affecting myoblast proliferation and apoptosis, and is involved in myoblast differentiation[J]. Cell death & disease, 2018,(IF 5.64)

12.Yu J, Wang Z, Yang X, et al. LncRNA-FKBP1C regulates muscle fiber type switching by affecting the stability of MYH1B[J]. Cell Death Discovery, 2021.(IF 5.24)

13.Cai B, Ma M, Zhou Z, et al. circPTPN4 regulates myogenesis via the miR-499-3p/NAMPT axis[J]. Journal of Animal Science and Biotechnology, 2022.(IF 5.03)

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