Inhibitor-Tolerant qPCR & RT-qPCR Mixes 0525

Inhibitor-Tolerant qPCR Mix

• Ready-to-use qPCR mix engineered with a proprietary buffer system designed for overcoming common PCR inhibitors • Allows for DNA amplification direct from crude lysate or unprocessed samples such as urine, cerebrospinal fluid (CSF), milk and blood • Eliminates need for sample extraction and speeds up assay TAT • Lyo-ready master mix can be lyophilized, just add primers and probe to create an ambient temperature stable assay

PRODUCT

CAT NO.

VOLUME REACTIONS

5 mL 500 Rxns 100 mL 10,000 Rxns 500 Rxns 40 mL 10,000 Rxns 2 mL 5 mL 500 Rxns 50 mL 10,000 Rxns

Inhibitor-Tolerant qPCR Mix

MDX013

Inhibitor-Tolerant qPCR Mix, 5x

MDX073

Lyo-Ready Inhibitor- Tolerant qPCR Mix 4x

MDX184

High qPCR efficiency across a range of inhibitors

Reaction efficiencies were determined from reactions containing a variety of known PCR inhibitors ranging from whole blood to biofluids (20% in reaction). The results demonstrate that the reaction efficiency of the Inhibitor-Tolerant qPCR Mix (MDX013) remained within 90-110% in the presence of a wide range of common PCR inhibitors.

WHOLE BLOOD SPECIMENS

Amplification Plot A

Amplification Plot B

40.0

32.0 34.0 36.0 38.0

30.0

28.0

Amplification Plot C

26.0

Direct detection of (A) 25% (B) 46% and (C) 64% GC-rich DNA from 20% whole blood using MDX013 (green) and mixes from suppliers R (red) and T (blue).

20%

10%

1%

Percent Blood

Direct detection of GC-rich (64%) DNA from 1% to 20% whole blood using MDX013 (green) and mixes from other suppliers.

SPINAL FLUID, URINE AND MILK SPECIMENS

Amplification Plot

Amplification Plot

Amplification Plot

Cerebrospinal fluid

Urine

Cow milk

A 10-fold serial dilution of genomic DNA was spiked into cerebrospinal fluid, human urine or cow whole milk and the DNA was amplified, using MDX013 (green) and supplier R (red). The results illustrate that MDX013 is more sensitive than supplier R mix, as lower dilutions could be detected with better efficiencies, across all three sample types.

Powered by