Toxicological Assessment of Higher Olefins in OECD TG 422 Repeated Dose and Reproductive /Developmental Toxicity Screening Tests in Han Wistar Rats

Author:

Shi Quan1ORCID,Carrillo Juan-Carlos1,Penman Michael G.2,Shen Hua3,North Colin M.4,Jia Sophie5,Borsboom-Patel Tilly2,Tian Yuan6,Hubert Fabienne7,Manton Jason C.8,Boogaard Peter J.9

Affiliation:

1. Shell Product Stewardship, Shell Global Solutions International B.V., The Hague, The Netherlands

2. Penman Consulting Ltd., Wantage, UK

3. Shell USA, Inc., Houston, TX, USA

4. ExxonMobil Biomedical Sciences, Inc., Annandale, NJ, USA

5. Chevron Phillips Chemical Company, The Woodlands, TX, USA

6. Institute of Ophthalmology, University College London, London, UK

7. INEOS Oligomers, Lyndhurst, UK

8. Exponent International Limited, Harrogate, UK

9. Division of Toxicology, Wageningen University and Research, Wageningen, The Netherlands

Abstract

Higher olefins (HO) are used primarily as intermediates in the production of other chemicals, such as polymers, fatty acids, plasticizer alcohols, surfactants, lubricants, amine oxides, and detergent alcohols. The potential toxicity of five HO (i.e., 1-Octene, Nonene, Decene, Hexadecene, and 1-Octadecene) with carbon ranging from C8 to C18 was examined in a combined repeated dose and reproduction/developmental toxicity screening study (OECD TG 422). These five HO were administered to Han Wistar rats by gavage at 0 (controls), 100, 300, and 1000 mg/kg bw/day. As a group of substances, adaptive changes in the liver (liver weight increase without pathological evidence), as well as increased kidney weight in male rats, were observed in HO with carbon numbers from C8 to C10. The overall systemic no observed adverse effect level (NOAEL) for all HO was determined at 1000 mg/kg bw/day. In the reproductive/developmental toxicity assessment, offspring viability, size, and weights were reduced in litters from females treated with Nonene at 1000 mg/kg bw/day. The overall no observed effects level (NOEL) for reproductive toxicity was considered to be 300 mg/kg bw/day for Nonene and 1000 mg/kg bw/day for the other four HO, respectively. These data significantly enrich the database on the toxicity of linear and branched HO, allowing comparison with similar data published on a range of linear and branched HO. Comparisons between structural class and study outcome provide further supportive data in order to validate the read-across hypothesis as part of an overall holistic testing strategy.

Publisher

SAGE Publications

Subject

Toxicology

Reference40 articles.

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2. Epoxides as Obligatory Intermediates in the Metabolism of Olefins to Glycols

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1. The subchronic toxicity of higher olefins in Han Wistar rats;BMC Pharmacology and Toxicology;2024-09-06

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