Nature-derived epoxy resins: Synthesis, allergenicity, and thermosetting properties of pinoresinol diglycidyl ether

Author:

O’Boyle Niamh M1ORCID,Niklasson Ida B1,Ponting David J1,Ortega Miguel A1,Seifert Tina2,Natsch Andreas3,Luthman Kristina2,Karlberg Ann-Therese1ORCID

Affiliation:

1. Department of Chemistry and Molecular Biology, Dermatochemistry and Skin Allergy, University of Gothenburg, Gothenburg, Sweden

2. Department of Chemistry and Molecular Biology, Medicinal Chemistry, University of Gothenburg, Gothenburg, Sweden

3. Givaudan Schweiz AG, Duebendorf, Switzerland

Abstract

We describe a novel nature-derived epoxy resin monomer (ERM) derived from the plant lignan pinoresinol. Epoxy resins are thermosetting materials in global usage owing to their excellent technical properties such as flexibility and durability. However, their adverse health effects are often not considered and affect users of epoxy resins worldwide. Components of epoxy resin systems are strong skin sensitizers and cause allergic contact dermatitis. The reported prevalence attributable to epoxy chemicals is between 11.7 and 12.5% of all cases of occupational allergic contact dermatitis. We are committed to developing epoxy resins with reduced allergenic effect, while maintaining their excellent properties. The novel ERM, pinoresinol diglycidyl ether (PinoDGE), was synthesized in one step from pinoresinol and epichlorohydrin in 88% yield. It was not classified as a skin sensitizer in the in vivo local lymph node assay, at concentrations up to 0.17 m, as it did not cause a stimulation index >3 compared to control. Pinoresinol diglycidyl ether reacted with the model peptide AcPHCKRM in a reactivity assay and was predicted to be a skin sensitizer in the KeratinoSens assay. Preliminary cross-linking studies indicate that it has promising properties compared to commercially used ERMs. Pinoresinol diglycidyl ether could be seen as a lead compound for further development of alternative ERMs with a better safety profile based on natural and renewable sources for construction of epoxy resin polymers.

Publisher

SAGE Publications

Subject

Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health,Toxicology

Reference42 articles.

1. Allied Market Research (2020) Epoxy Resin Market Size. Hanover Square, London, United Kingdom: Share. Industry Analysis & Forecast, pp. 2020–2027. Available at: www.alliedmarketresearch.com/epoxy-resins-market

2. Contact allergy to epoxy resins

3. Estrogenic activity of lignin-derivable alternatives to bisphenol A assessed via molecular docking simulations

4. Contact allergy to epoxy resin: risk occupations and consequences

5. Evaluation of the skin sensitizing potency of chemicals by using the existing methods and considerations of relevance for elicitation

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