Long-acting anti-coagulant rodenticides (LAARs) are well characterized with respect to inhibition of vitamin K1 synthesis and effects on blood coagulation. However, the effects of LAARs on the microbiome have not been explored. We administered brodifacoum (BDF), one of the more potent LAARs, to adult male New Zealand White rabbits, and carried out 16S RNA sequencing on cecal samples collected after different times. Samples were also obtained from rabbits treated with the bile sequestrant cholestyramine (CSA) which accelerates BDF clearance from the body, and from CSA-only treated rabbits. Changes at both the phylum and genus levels in relative abundance were observed after 2- and 3-days exposure to BDF. The majority of those microbiota changes were prevented by co-treatment with CSA. Identification of metabolic pathways potentially altered by BDF using Picrust2 identified several L-arginine-related pathways. Exposure to BDF caused increases in plasma L-arginine concentration as well as nitrites, suggesting increased activity of nitric oxide synthase. We also observed increases due to BDF in plasma concentrations of L-arginine-related molecules including L-citrulline, L-ornithine, and methylated L-arginines. These results demonstrate that LAAR poisoning can induce microbiome dysbiosis and influence metabolic pathways and metabolites involved in inflammation and vasodilation.
Alterations in the cecal microbiome of New Zealand White rabbits due to the long-acting anticoagulant rodenticide brodifacoum.
长效抗凝血灭鼠剂溴敌隆对新西兰白兔盲肠微生物群的影响
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作者:Naqib Ankur, Ahmad Intakhar, McDonald Zachary, Kalinin Sergey, Rocha Jackie, Tandon Ankit, Rayala Ramanjaneyulu, Feferman Leonid, Chlipala George E, Chen Hui, Lindeblad Matthew, Rubinstein Israel, Green Stefan, van Breemen Richard, Feinstein Douglas L
| 期刊: | Toxicology Communications | 影响因子: | 0.500 |
| 时间: | 2025 | 起止号: | 2025 |
| doi: | 10.1080/24734306.2025.2500111 | 研究方向: | 微生物学 |
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