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August 14, 2026Pharmaceutical Research0 citationsOpen Access

Low Analytical Evaluation Threshold in Leachables Screening: Challenges, Potential Solutions and Alternative Approaches

PBP. BooijTNTarja NurmiGPGeorg Pour

Key Points

  • To identify industry challenges in achieving low Analytical Evaluation Thresholds (AETs) during leachables screening and establish scientifically justified alternative strategies to ensure patient safety.
  • Surveyed 23 member companies within the Extractables and Leachables Safety Information Exchange (ELSIE) Consortium regarding analytical hurdles and assessment practices.
  • Evaluated current analytical and regulatory strategies supplemented by case studies on limits of quantification across various matrix types.
  • Large dosing volumes (74%) and matrix complexity (68%) were identified as the primary drivers preventing standard screening methods from achieving required AETs.
  • Achievable limits of quantification ranged from < 10 parts per billion (ppb) in simple aqueous solutions to > 100 ppb in complex protein- or lipid-based matrices.
  • Recommended alternative strategies to maintain patient safety include targeted leachable testing, matrix-free simulation studies, predictive modelling, and less-than-lifetime risk assessments.

Abstract

Achieving the Analytical Evaluation Threshold (AET) for leachables is critical in quantification for patient safety evaluation but presents challenges for drug products with large dosing volumes or complex matrices. This paper reviews these challenges, presents industry perspectives, and proposes scientifically justified approaches to ensure patient safety where the AET is not analytically achievable. An industry-wide survey conducted by the Extractables and Leachables Safety Information Exchange (ELSIE) Consortium among 23 member companies identified common hurdles and alternative approaches used in leachables risk assessments. Findings were supplemented with case studies and a review of current analytical and regulatory strategies. The survey identified large dosing volumes (74% respondents) and matrix complexity (68% respondents) as the primary drivers for unachievable AETs. Matrix complexity was shown to significantly impact achievable limits of quantification (LOQs), with reported LOQs ranging from 100 ppb in complex matrices like protein-based or lipid-based formulations. Key analytical difficulties included identifying unknown leachables, background interference, and differentiating true leachables from analytical artifacts. When conventional screening methods cannot meet the AET, a robust, scientifically rationalized alternative approach is essential. Recommendations include implementing targeted leachable studies for enhanced sensitivity, using simulation studies to predict leachable profiles without matrix interference, and applying predictive modelling. For therapies addressing life-threatening conditions, a risk-benefit analysis leveraging the "less than lifetime" (LTL) concept may justify higher thresholds. Demonstrating rigorous method development efforts and providing scientific justification for the chosen strategy is crucial for regulatory alignment and ensuring patient safety.

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Cite This Study

Booij et al. (2026) studied this question.

synapsesocial.com/papers/6a7ec6eab70b84ec8b912ef0https://doi.org/10.1007/s11095-026-04151-y
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