Queensland Alliance for Agriculture and Food Innovation (QAAFI), The University of Queensland, Health and Food Sciences Precinct, Coopers Plains, QLD 4108, Australia.
Agri-Science Queensland, Department of Agriculture and Fisheries (DAF), Ecosciences Precinct, Dutton Park, QLD 4102, Australia.
Toxins (Basel). 2023 Sep 5;15(9):551. doi: 10.3390/toxins15090551.
Pimelea poisoning of cattle is a unique Australian toxic condition caused by the daphnane orthoester simplexin present in native Pimelea pasture plants. Rumen microorganisms have been proposed to metabolise simplexin by enzymatic reactions, likely at the orthoester and epoxide moieties of simplexin, but a metabolic pathway has not been confirmed. This study aimed to investigate this metabolic pathway through the analysis of putative simplexin metabolites. Purified simplexin was hydrolysed with aqueous hydrochloric acid and sulfuric acid to produce target metabolites for UPLC-MS/MS analysis of fermentation fluid samples, bacterial isolate samples, and other biological samples. UPLC-MS/MS analysis identified predicted hydrolysed products from both acid hydrolysis procedures with MS breakdown of these putative products sharing high-resolution accurate mass (HRAM) fragmentation ions with simplexin. However, targeted UPLC-MS/MS analysis of the biological samples failed to detect the HSO degradation products, suggesting that the rumen microorganisms were unable to produce similar simplexin degradation products at detectable levels, or that metabolites, once formed, were further metabolised. Overall, in vitro acid hydrolysis was able to hydrolyse simplexin at the orthoester and epoxide functionalities, but targeted UPLC-MS/MS analysis of biological samples did not detect any of the identified simplexin hydrolysis products.
牛蒡子中毒是一种独特的澳大利亚毒性情况,由存在于本地牛蒡子牧草植物中的达佛烷型正交酯 simplexin 引起。瘤胃微生物被提出通过酶反应代谢 simplexin,可能在 simplexin 的正交酯和环氧化物部分,但代谢途径尚未得到证实。本研究旨在通过分析推定的 simplexin 代谢物来研究这种代谢途径。用盐酸和硫酸将纯化的 simplexin 水解,以产生发酵液样品、细菌分离物样品和其他生物样品的 UPLC-MS/MS 分析的目标代谢物。UPLC-MS/MS 分析鉴定了两种酸水解方法的预测水解产物,这些推定产物的 MS 分解具有与 simplexin 相同的高分辨率精确质量 (HRAM) 碎片离子。然而,对生物样品的靶向 UPLC-MS/MS 分析未能检测到 HSO 降解产物,这表明瘤胃微生物无法在可检测水平产生类似的 simplexin 降解产物,或者代谢物一旦形成,就会进一步代谢。总的来说,体外酸水解能够在正交酯和环氧化物官能团处水解 simplexin,但对生物样品的靶向 UPLC-MS/MS 分析未检测到任何鉴定出的 simplexin 水解产物。