产品详情介绍
本试剂盒适用于从细胞和组织中提取总RNA,用TransZol Up裂解样品,加入RNA Extraction Agent后,溶液分为无色水相和粉红色有机相,RNA在水相中;用硅胶膜离心柱特异吸附水相中的RNA,与其它总RNA提取方法相比,既具有TransZol Up裂解能力强、提取量高,应用范围广的优点,又具有离心柱提取RNA纯度高的优点。

提取效果好

1.Fan Y H,Xu W C, Gao B Q,et al. Leveraging base excision repair for efficient adenine base editing of mitochondrial DNA[J]. Nature biotechnology, 2025(IF 33.10)
2.Li G, Chen G, Yuan G H, et al. Specific and efficient RNA A-to-I editing through cleavage of an ADAR inhibitor[J]. Nature Biotechnology, 2025(IF 33.10)
3.Du P, Li N, Xiong X, et al. A bivalent vaccine containing D614G and BA. 1 spike trimer proteins or a BA. 1 spike trimer protein booster shows broad neutralizing immunity[J]. Journal of Medical Virology, 2022.(IF 20.69)
4.Wang B, Tang X, Yao L, et al. Disruption of USP9X in macrophages promotes foam cell formation and atherosclerosis[J]. The Journal of Clinical Investigation, 2022.(IF 19.46)
5.Guo Z, Cao H, Zhao J, et al. A natural uORF variant confers phosphorus acquisition diversity in soybean[J]. Nature Communications, 2022.(IF 17.69)
6.Li X, Zhou L, Gao B Q, et al. Highly efficient prime editing by introducing same-sense mutations in pegRNA or stabilizing its structure[J]. Nature Communications, 2022.(IF 17.69)
7.Wang L, Xue W, Zhang H, et al. Eliminating base-editor-induced genome-wide and transcriptome-wide off-target mutations[J]. Nature Cell Biology, 2021.(IF 17.30)
8.Han W, Gao B Q, Zhu J, et al. Design and application of the transformer base editor in mammalian cells and mice[J]. Nature Protocols, 2023.(IF 14.80)
9.Jiang Q, Xie Y, Zhou B, et al. Nanomaterial inactivates environmental virus and enhances plant immunity for controlling tobacco mosaic virus disease[J]. Nature Communications, 2024.(IF 14.70)
10.Shan X, Zhao Z, Lai P, et al. RNA nanotherapeutics with fibrosis overexpression and retention for MASH treatment[J]. Nature communications, 2024.(IF 14.70)
11.Zhao Z, Ning J, Bao X, et al. Fecal microbiota transplantation protects rotenone-induced Parkinson’s disease mice via suppressing inflammation mediated by the lipopolysaccharide-TLR4 signaling pathway through the microbiota-gut-brain axis[J]. Microbiome, 2021.(IF 14.65)
12.Zhang M, Li F D, Li K, et al. Functional characterization and structural basis of an efficient di-C-glycosyltransferase from Glycyrrhiza glabra[J]. Journal of the American Chemical Society, 2020.(IF 14.40)
13.He L, Ma S, Ding Z, et al. Inhibition of NFAT5‐Dependent Astrocyte Swelling Alleviates Neuropathic Pain[J]. Advanced Science, 2024.(IF 14.30)
14.Zuo F, Jiang L, Su N, et al. Imaging the dynamics of messenger RNA with a bright and stable green fluorescent RNA[J]. Nature Chemical Biology, 2024.(IF 13.00)
15.Wang W Q, Xu D Y, Sui Y P, et al. A multiomic study uncovers a bZIP23-PER1A–mediated detoxification pathway to enhance seed vigor in rice[J]. Proceedings of the National Academy of Sciences, 2022.(IF 11.20)
16.Cao H R, Peng W T, Nie M M, et al. Carbon-nitrogen trading in symbiotic nodules depends on magnesium import[J]. Current Biology, 2022.(IF 10.90)
17.Zheng Z, Zhang X, Liu J, et al. GABAergic synapses suppress intestinal innate immunity via insulin signaling in Caenorhabditis elegans[J]. Proceedings of the National Academy of Sciences, 2021.(IF 9.50)
18.Song M, Yao H, Sun Z, et al. METTL3/YTHDC1-medicated m6A modification of circRNA3634 regulates the proliferation and differentiation of antler chondrocytes by miR-124486-5-MAPK1 axis[J]. Cellular & Molecular Biology Letters, 2023.(IF 9.20)
19.Zeng Y H, Cai Z H, Zhu J M, et al. Two hierarchical LuxR-LuxI type quorum sensing systems in Novosphingobium activate microcystin degradation through transcriptional regulation of the mlr pathway[J]. Water Research, 2020.(IF 9.13)
20.Chen J, Wang H, Yuan H, et al. Effects of dietary Clostridium autoethanogenum protein on the growth, disease resistance, intestinal digestion, immunity and microbiota structure of Litopenaeus vannamei reared at different water salinities[J]. Frontiers in Immunology, 2022.(IF 8.79)
21.Xiao K, Liu L, He R, et al. The Snf5‐Hsf1 transcription module synergistically regulates stress responses and pathogenicity by maintaining ROS homeostasis in Sclerotinia sclerotiorum[J]. New phytologist, 2024.(IF 8.30)
22.Liu Y, Zhou H, Fan J, et al. Potential mechanisms of different methylation degrees of pectin driving intestinal microbiota and their metabolites to modulate intestinal health of Micropterus salmoides[J]. International journal of biological macromolecules, 2023,(IF 8.20)
23.Liu Y, Fu X, Huang H, et al. High dietary histamine induces digestive tract oxidative damage in juvenile striped catfish (Pangasianodon hypophthalmus)[J]. Antioxidants, 2022,(IF 7.68)
24.Tan Y, Yan X, Sun J, et al. Genome‐wide enhancer identification by massively parallel reporter assay in Arabidopsis[J]. The Plant Journal, 2023.(IF 7.20)
25.Bian L, Zheng M, Chang T, et al. Degradation of Aflatoxin B1 by recombinant laccase extracellular produced from Escherichia coli[J]. Ecotoxicology and Environmental Safety, 2022.(IF 7.13)
26.Yang X, Feng P, Yin Y, et al. Cyclosporine biosynthesis in Tolypocladium inflatum benefits fungal adaptation to the environment[J]. MBio, 2018.(IF 6.69)
27.Su W, Raza A, Gao A, et al. Genome-wide analysis and expression profile of superoxide dismutase (SOD) gene family in rapeseed (Brassica napus L.) under different hormones and abiotic stress conditions[J]. Antioxidants, 2021.(IF 6.31)
28.Zhao Z, Bao X, Zhang Z, et al. Novel phloroglucinol derivative Compound 21 protects experimental autoimmune encephalomyelitis rats via inhibiting Th1/Th17 cell infiltration[J]. Brain, Behavior, and Immunity, 2020.(IF 6.17)
29.Raza A, Su W, Gao A, et al. Catalase (CAT) gene family in rapeseed (Brassica napus L.): Genome-wide analysis, identification, and expression pattern in response to multiple hormones and abiotic stress conditions[J]. International journal of molecular sciences, 2021.(IF 5.92)





