Oligo Resuspension & Dilution Calculator
Professional calculator for oligonucleotide preparation. Calculate resuspension volumes, C₁V₁=C₂V₂ dilutions, and pool-specific concentrations with instant printable protocols.
Professional calculator for oligonucleotide preparation. Calculate resuspension volumes, C₁V₁=C₂V₂ dilutions, and pool-specific concentrations with instant printable protocols.
Use for: Initial reconstitution of lyophilized oligos from vendor. Input received nmol, get buffer volume for target stock (typically 100 µM).
Use for: Preparing working solutions from stocks using C₁V₁=C₂V₂. Common: 100 µM stock → 10 µM working solution for PCR.
Use for: CRISPR libraries and oligo pools requiring equimolar representation. Calculate per-oligo concentration (standard: 0.5-2 nM each).
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When you receive synthesized oligonucleotides from a vendor, they typically arrive as a lyophilized (freeze-dried) pellet or in a concentrated stock solution. Before using them in experiments, you need to resuspend (if lyophilized) and dilute them to the correct working concentration. Incorrect oligo concentration is one of the most common causes of PCR failure, qPCR variability, and CRISPR library unevenness.
Our Dilution Calculator handles two common scenarios: (1) Resuspension — calculating the volume of buffer to add to a lyophilized oligo to achieve a desired stock concentration (typically 100 µM), and (2) Serial dilution — using the C1V1 = C2V2 formula to dilute from stock concentration to working concentration (typically 10 µM for PCR primers or 0.1-1 µM for oligo pools).
This page is the primary oligo dilution and resuspension workspace on OligoPool. Use it when the search task is to calculate stock preparation, C1V1=C2V2 dilution, primer working concentration, or pool resuspension protocols; use PCR and assay workflow pages as support when you still need design or validation context.
For oligo pools, concentration calculation is more nuanced because the pool contains many different sequences. The calculator accounts for the total nmol of the pool, the number of unique sequences, and provides per-sequence concentration to help you achieve adequate representation. This is critical for CRISPR library screening where each sgRNA must be represented at a minimum copy number.
Calculate MW and extinction coefficient needed for accurate concentration determination.
After preparing your primers, verify Tm to set the correct PCR annealing temperature.
Quality-check your oligo pool sequences before resuspension and library preparation.
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