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Total RNA Isolation Kit (Tissue)

The Total RNA Isolation Kit (Tissue) provides a fast, simple, and cost-effective method to isolated total RNA from tissue sample. Detergents and chaotropic salt are used to lyse cells and inactivate RNase. The specialized high-salt buffering system allows RNA species to bind to the glass fiber matrix of the spin column while contaminants pass through the column. Impurities are efficiently washed away, and the pure RNA is eluted with Buffer RE without phenol extraction or alcohol precipitation. RNA purified with The Total RNA Isolation Kit is suitable for a variety of routine applications including RT-PCR, cDNA Synthesis, Northern Blotting, Differential display, Primer Extension and mRNA Selection. The entire procedure can be completed within 25-40 minutes.
Sample: Up to 30 mg of fresh tissue Up to 25 mg of paraffin-embedded tissue

100 in stock

100 in stock

The Total RNA Isolation Kit (Tissue) provides a fast, simple, and cost-effective method to isolated total RNA from tissue sample. Detergents and chaotropic salt are used to lyse cells and inactivate RNase. The specialized high-salt buffering system allows RNA species to bind to the glass fiber matrix of the spin column while contaminants pass through the column. Impurities are efficiently washed away, and the pure RNA is eluted with Buffer RE without phenol extraction or alcohol precipitation. RNA purified with The Total RNA Isolation Kit is suitable for a variety of routine applications including RT-PCR, cDNA Synthesis, Northern Blotting, Differential display, Primer Extension and mRNA Selection. The entire procedure can be completed within 25-40 minutes.
Sample: Up to 30 mg of fresh tissue Up to 25 mg of paraffin-embedded tissue

NA021-0100
100 rxns
Ambient temperature
Room temperature

R.U.O

Mohanad, M., Yousef, H. F., & Bahnassy, A. A. (2022). Epigenetic inactivation of DNA repair genes as promising prognostic and predictive biomarkers in urothelial bladder carcinoma patients. Molecular Genetics and Genomics, 297(6), 1671-1687. Liu, C., Li, L., Hou, G., Lu, Y., Gao, M., & Zhang, L. (2022). HERC5/IFI16/p53 signaling mediates breast cancer cell proliferation and migration. Life Sciences, 303, 120692.

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Total RNA Isolation Kit (Tissue)

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