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Total RNA Isolation Kit

The Total RNA Isolation Kit provides a fast, simple, and cost-effective method for the isolation of total RNA from the whole blood, mammalian cells and bacterial cells. Detergents and chaotropic salt are used to lyse cells and inactivate RNase. The specialized high-salt buffering system allows RNA species bases 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 the RE Buffer without phenol extraction or alcohol precipitation. The RNA purified with the Total RNA Isolation Kit is suitable for a variety of routine applications, including the RT-PCR, cDNA synthesis, Northern Blotting, differential display, primer extension, and mRNA selection. The entire procedure can be completed within 25-40 minutes.
Sample: Whole blood (up to 300 μl) Mammalian cells (up to 1 x 107) Bacterial cells (up to 1 x 109) Fungus Cells (up to 1 x 108)

100 in stock

100 in stock

The Total RNA Isolation Kit provides a fast, simple, and cost-effective method for the isolation of total RNA from the whole blood, mammalian cells and bacterial cells. Detergents and chaotropic salt are used to lyse cells and inactivate RNase. The specialized high-salt buffering system allows RNA species bases 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 the RE Buffer without phenol extraction or alcohol precipitation. The RNA purified with the Total RNA Isolation Kit is suitable for a variety of routine applications, including the RT-PCR, cDNA synthesis, Northern Blotting, differential display, primer extension, and mRNA selection. The entire procedure can be completed within 25-40 minutes.
Sample: Whole blood (up to 300 μl) Mammalian cells (up to 1 x 107) Bacterial cells (up to 1 x 109) Fungus Cells (up to 1 x 108)

NA017-0100
100 rxns
Ambient temperature
Room temperature

R.U.O

Liang, I. C., Ko, W. C., Hsu, Y. J., Lin, Y. R., Chang, Y. H., Zong, X. H., … & Hung, C. F. (2021). The anti-inflammatory effect of hydrogen gas inhalation and its influence on laser-induced choroidal neovascularization in a mouse model of neovascular age-related macular degeneration. International Journal of Molecular Sciences, 22(21), 12049.

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Total RNA Isolation Kit

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