Literature DB >> 34116569

Support for Regulatory Assessment of Percutaneous Absorption of Retronecine-type Pyrrolizidine Alkaloids through Human Skin.

Alberto Plaza1, Frank Toner2, James Harris3, Peter Ottersbach1, Clive Roper4, Catherine Mahony5.   

Abstract

1,2-unsaturated pyrrolizidine alkaloids are found naturally in Symphytum officinale, well known as comfrey, which has a longstanding use for the topical treatment of painful muscle and joint complaints. Pyrrolizidine alkaloids (PA) are a relevant concern for the safety assessment due to their liver genotoxicity profile, and close attention is paid during manufacturing to minimizing their levels. Current regulatory risk assessment approaches include setting limits that derive from toxicity data coming from the oral route of exposure. This study investigated to what extent pyrrolizidine alkaloids are bioavailable following topical exposure, assessing penetration of retronecine-type PAs in an in vitro human skin model. A single comfrey root formulation was spiked with 3 different congeners (a 7R-monoester, an open-chained 7R-diester, and a cyclic diester) and percutaneous absorption measured per OECD guidelines and good laboratory practices. The measured penetration for all 3 PAs was low and compared favourably with existing in vitro data. Although consideration of different regulatory guidance influences the determination of dermally absorbed dose, these data facilitate the understanding of absorption differences following topical exposure, which in turn can be taken into account in the risk assessment. Thieme. All rights reserved.

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Year:  2021        PMID: 34116569     DOI: 10.1055/a-1505-8524

Source DB:  PubMed          Journal:  Planta Med        ISSN: 0032-0943            Impact factor:   3.352


  1 in total

1.  A new conceptional model for deriving average dermal absorption estimates from studies with multiple tested concentrations for non-dietary risk assessment of pesticides.

Authors:  Felix M Kluxen; Edgars Felkers; Steve McEuen; Philip Fisher; Christian Strupp; Christine Lorez; Jeanne Y Domoradzki; Christiane Wiemann
Journal:  Arch Toxicol       Date:  2022-06-15       Impact factor: 6.168

  1 in total

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