Novel technology for enrichment of biomolecules from cell-free body fluids and subsequent DNA sizing

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Abstract

Circulating cell-free DNA (ccfDNA) is a promising diagnostic tool and its size fractionation is of interest. However, kits for isolation of ccfDNA available on the market are designed for small volumes hence processing large sample volumes is laborious. We have tested a new method that enables enrichment of ccfDNA from large volumes of plasma and subsequently allows size-fractionation of isolated ccfDNA into two fractions with individually established cut-off levels of ccfDNA length. This method allows isolation of low-abundant DNA as well as separation of long and short DNA molecules. This procedure may be important e.g., in prenatal diagnostics and cancer research that have been already confi rmed by our primary experiments. Here, we report the results of selective separation of 200- and 500-bp long synthetic DNA fragments spiked in plasma samples. Furthermore, we size-fractionated ccfDNA from the plasma of pregnant women and verifi ed the prevalence of fetal ccfDNA in all fractions.

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Patel, V., Celec, P., Grunt, M., Schwarzenbach, H., Jenneckens, I., & Hillebrand, T. (2016). Novel technology for enrichment of biomolecules from cell-free body fluids and subsequent DNA sizing. Advances in Experimental Medicine and Biology, 924, 165–169. https://doi.org/10.1007/978-3-319-42044-8_30

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