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Efficient biotransformation of non-steroid anti-inflammatory drugs by endophytic and epiphytic fungi from dried leaves of a medicinal plant, Plantago lanceolata L.

机译:药用植物车前草干叶内生真菌和附生真菌对非甾体类抗炎药的有效生物转化。

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摘要

In the current study, decomposition of diclofenac, diflunisal, ibuprofen, mefenamic acid and piroxicam was tested using nine identified strains of endophytic and epiphytic fungi (from Ascomycota) adapted to natural products resembling the pharmaceuticals. The strains were isolated from a medicinal plant, Plantago lanceolata leaves. Metabolites were tentatively identified by liquid chromatography - tandem mass spectrometry (LC-MS3). Eighteen of the 45 combinations resulted in significant decrease of the concentration of the NSAIDs in model solutions. The most active strains were Aspergillus nidulans and Bipolaris tetramera, while Epicoccum nigrum and Aspergillus niger showed somewhat less potency. Piroxicam and diclofenac were most resistant to biotransformation, while ibuprofen and mefenamic acid were efficiently metabolized by most strains. Ten metabolites could be tentatively identified, including hydroxy-metabolites of all tested NSAIDs, and a dihydroxy-metabolite of piroxicam. This biotransformation is likely to modify the toxicity and bioaccumulation potential of these pharmaceuticals. The results highlight the applicability of polyphenol-rich dried medicinal plant materials as an excellent source of fungi with high biotransforming potential. The results also suggest more in-depth testing of these fungi for biodegradation processes.
机译:在当前的研究中,使用了九种已鉴定的内生真菌和附生真菌(来自子囊菌),对类似于药物的天然产物进行了测试,测试了双氯芬酸,双氟乙醛,布洛芬,甲芬那酸和吡罗昔康的分解。从药用植物车前草叶中分离菌株。通过液相色谱-串联质谱法(LC-MS3)初步鉴定了代谢物。 45种组合中的18种导致模型溶液中NSAID的浓度显着降低。活性最高的菌株是构巢曲霉和四极双歧杆菌,而黑附球菌和黑曲霉则显示出较低的效价。吡罗昔康和双氯芬酸对生物转化的抵抗力最大,而布洛芬和甲芬那酸被大多数菌株有效代谢。可以初步鉴定出十种代谢物,包括所有测试的NSAID的羟基代谢物和吡罗昔康的二羟基代谢物。这种生物转化可能会改变这些药物的毒性和生物蓄积潜力。结果突出了富含多酚的干燥药用植物材料作为具有高生物转化潜力的优良真菌来源的适用性。这些结果还建议对这些真菌进行生物降解过程进行更深入的测试。

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