qPCR 384-Well Plate, 40 uL | ||||||||||||
Overview | ||||||||||||
The Rose 40uL 384-Well qPCR Plate made of high-quality polypropylene and is designed to be compatible with most thermal cyclers.
The plate has an ultra thin wall design, its clear bottom allows for better visualization of sample wells and its conical well design ensures even sample distribution. The Rose 384 well plate qPCR has a uniform flat surface and is designed to prevent evaporation and cross contamination. Its flat-bottom wells maximize sample volume. The Rose 384-well plate has an anti-skid feature so that plates stay in place during PCR cycling. A qPCR 384-well plate typically has a well volume of 30-40 microliters. This 384 well plate volume range is ideal for conducting quantitative polymerase chain reaction (qPCR) experiments, providing a small but sufficient space for the reaction mixture. The small well size allows for high-throughput analysis of samples while conserving precious reagents. Additionally, the 384-well format is compatible with automated liquid handling systems, further streamlining the workflow for qPCR assays.
The Rose qPCR 384-Well Plates have these advantages: 1. Smaller reaction volumes. Can improve PCR efficiency by increasing the reaction surface area and reducing the amount of reagents used. 2. Minimize the distance between the reaction and the thermal cycler block: Can reduce the time needed to reach the desired temperature and therefore improve qPCR 384-well plate efficiency. 3. Optimized reaction conditions: Can improve the efficiency in qPCR by optimizing conditions such as the amount of primer and template, the concentration of MgCl2 and the reaction temperature. 4. Use pre-dispensed reagents: Can reduce the risk of contamination and improve the efficiency of the PCR reaction. 5. Use high-quality reagents: Smaller volumes of 384-well plates make economic use of expensive reagents and can improve the efficiency of the PCR reaction by reducing the risk of contamination and ensuring that the reaction conditions are optimal. 6. Use improved thermal cyclers: Thermal cyclers with a faster ramping rate and a more accurate temperature control can improve the efficiency of the PCR reaction in 384-well plate qPCR. | ||||||||||||
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