Simplifying PA Quantification: A Unified Enrichment and Reduction Workflow for Retronecine-Based Quantification of Pyrrolizidine Alkaloids in Phyto Samples

Pyrrolizidine alkaloids (PAs) are a chemically diverse group of plant-derived toxins whose quantification in botanical materials remains analytically challenging. This study integrates previously established nano zirconium silicate (NZS) enrichment with one-pot lithium aluminium hydride reduction/hydrolysis and LC–HRMS determination of the resulting necine-base response. The workflow targets retronecine- and heliotridine-type PAs and their N-oxides, with results expressed as retronecine equivalents. In Radix Primulae, three independent samples were spiked at each of 200, 250 and 300 µg/kg retronecine equivalents and processed through the complete analytical workflow. Mean recoveries were 83.0%, 94.2% and 92.5%, with between-preparation RSDs of 3.12%, 1.55% and 1.96%, respectively. Matrix-matched regression was evaluated using six calibration levels (10, 100, 200, 300, 400, 500; Day-1 R2 = 0.99936). Calculated Day-1 LOD and LOQ estimates were 14.94 and 45.27 µg/L. Remeasurement of the same extracts after 24 h, using a separate daily calibration, gave paired concentration changes of −0.67% to +1.23%. Application to a naturally contaminated comfrey sample demonstrated the workflow’s applicability beyond spiked samples, with agreement between the conversion-based result and the summed intact-PA reference approach.

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Publication Details

Journal
Molecules
Published
2026-10-09
DOI
https://doi.org/10.3390/molecules31203590
Primary Topic
Plant Toxicity and Pharmacological Properties
Type
article
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article

Simplifying PA Quantification: A Unified Enrichment and Reduction Workflow for Retronecine-Based Quantification of Pyrrolizidine Alkaloids in Phyto Samples

Günther K. Bonn, Christian Wolfgang Huck, Thomas A. E. Jakschitz, Benedikt Schwarz et al.
Molecules
Plant Toxicity and Pharmacological Properties
article

Simplifying PA Quantification: A Unified Enrichment and Reduction Workflow for Retronecine-Based Quantification of Pyrrolizidine Alkaloids in Phyto Samples

Günther K. Bonn, Christian Wolfgang Huck, Thomas A. E. Jakschitz, Benedikt Schwarz, Moritz Rubner, Michael Popp
article en

Abstract

Pyrrolizidine alkaloids (PAs) are a chemically diverse group of plant-derived toxins whose quantification in botanical materials remains analytically challenging. This study integrates previously established nano zirconium silicate (NZS) enrichment with one-pot lithium aluminium hydride reduction/hydrolysis and LC–HRMS determination of the resulting necine-base response. The workflow targets retronecine- and heliotridine-type PAs and their N-oxides, with results expressed as retronecine equivalents. In Radix Primulae, three independent samples were spiked at each of 200, 250 and 300 µg/kg retronecine equivalents and processed through the complete analytical workflow. Mean recoveries were 83.0%, 94.2% and 92.5%, with between-preparation RSDs of 3.12%, 1.55% and 1.96%, respectively. Matrix-matched regression was evaluated using six calibration levels (10, 100, 200, 300, 400, 500; Day-1 R2 = 0.99936). Calculated Day-1 LOD and LOQ estimates were 14.94 and 45.27 µg/L. Remeasurement of the same extracts after 24 h, using a separate daily calibration, gave paired concentration changes of −0.67% to +1.23%. Application to a naturally contaminated comfrey sample demonstrated the workflow’s applicability beyond spiked samples, with agreement between the conversion-based result and the summed intact-PA reference approach.

MoleculesVol. 31(20)
Universität Innsbruck (AT), Bionorica (Germany) (DE), Austrian Drug Screening Institute (Austria) (AT)
Openalex Percentile: Top 23%
Plant Toxicity and Pharmacological Properties
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Simplifying PA Quantification: A Unified Enrichment and Reduction Workflow for Retronecine-Based Quantification of Pyrrolizidine Alkaloids in Phyto Samples — Günther K. Bonn, Christian Wolfgang Huck, et al. · Molecules (2026) | TGRS Research Map | TGRS