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How to Reconstitute SS-31: Concentration Comparison

Different reconstitution volumes produce different final concentrations, which directly affect dosing precision and injection volume per administration. The table below shows standard bacteriostatic water volumes, resulting SS-31 concentrations, and typical us

This comparison does not assign a generated winner or score.

  • Different reconstitution volumes produce different final concentrations, which directly affect dosing precision and injection volume per administration. The table below shows standard bacteriostatic water volumes, resulting SS-31 concentrations, and typical use cases for each.
  • 1ml
  • 5mg/ml
  • 0.5mg
  • 0.2ml
  • High-concentration protocols requiring minimal injection volume. Suitable for small-animal models or protocols with strict volume limits
  • Highest concentration. Requires precise measurement to avoid dosing error
  • 2ml
  • 2.5mg/ml
  • 0.25mg
  • 0.4ml
  • Standard research concentration. Balances dosing precision with manageable injection volumes
  • Most commonly used concentration across mitochondrial function studies
  • 2.5ml
  • 2mg/ml
  • 0.2mg
  • 0.5ml
  • Lower concentration for protocols requiring larger injection volumes or dose titration flexibility
  • Easier volumetric dosing for multi-dose protocols
  • 5ml
  • 1mg/ml
  • 0.1mg
  • Maximum dilution. Reduces dosing error risk but requires larger syringes and increases per-dose injection volume significantly
  • Best for protocols prioritising dosing accuracy over injection volume
  • Choose your reconstitution volume based on your dosing protocol and syringe precision. Insulin syringes (0.3ml–1ml) marked in 0.01ml increments allow for accurate measurement at concentrations between 2–5mg/ml. Larger volumes (5ml) require 3ml syringes with coarser gradation, which increases measurement error unless you're using calibrated pipettes.