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来自食菌真菌HFG1018不同发酵产物的具有抗银屑病潜力的多种代谢物。

Diverse metabolites with anti-psoriasis potential from different fermentations of the fungicolous fungus HFG1018.

作者信息

Zhao Zhen-Zhu, Wang Yan, Wang Xiao-Yu, Chen Hui, Wang Zhen-Zhen, Wang Jing-Kun, Wang Le-Le, Shen Ming-Jun, Pang Xin, Feng Wei-Sheng

机构信息

School of Pharmacy, Henan University of Chinese Medicine, Zhengzhou 450046, China Henan University of Chinese Medicine Zhengzhou China.

出版信息

IMA Fungus. 2025 Aug 12;16:e153522. doi: 10.3897/imafungus.16.153522. eCollection 2025.

Abstract

The genus is a promising source of bioactive compounds. This study examined the diversity of secondary metabolites (SMs) in under three fermentation conditions, resulting in the isolation of 14 new SMs and 27 known ones. The structures, including absolute configurations, were determined using NMR spectroscopy, HRESIMS analysis, and computational methods (ECD, ¹³C NMR data, and optical rotation). A comprehensive library of SMs was established, enabling metabolomics-wide association studies that identified culture conditions as a key factor influencing SM production. This compound library also facilitates the determination of absolute configurations for diplosporins by analyzing values and CD trends. Anti-proliferative tests against induced T/B lymphocytes and HaCaT cells revealed that over half of the compounds exhibited significant inhibitory activity, with compounds , , and reducing IFN- secretion. Compound demonstrated promising anti-psoriatic effects by inhibiting NF-B p65 phosphorylation in HaCaT cells. This initial systematic chemical study of under different conditions provides insights into structure-activity relationships.

摘要

该属是生物活性化合物的一个有前景的来源。本研究考察了在三种发酵条件下[具体属名未给出]中次生代谢产物(SMs)的多样性,从中分离出14种新的SMs和27种已知的SMs。利用核磁共振光谱、高分辨电喷雾电离质谱分析以及计算方法(电子圆二色光谱、¹³C核磁共振数据和旋光)确定了这些化合物的结构,包括绝对构型。建立了一个全面的SMs库,使得能够进行全代谢组关联研究,确定培养条件是影响SMs产生的关键因素。这个化合物库还通过分析[具体参数未给出]值和圆二色光谱趋势,有助于确定双孢菌素的绝对构型。针对诱导的T/B淋巴细胞和HaCaT细胞的抗增殖试验表明,超过一半的化合物表现出显著的抑制活性,化合物[具体编号未给出]、[具体编号未给出]和[具体编号未给出]可减少干扰素分泌。化合物[具体编号未给出]通过抑制HaCaT细胞中NF-κB p65磷酸化显示出有前景的抗银屑病作用。这项在不同条件下对[具体属名未给出]的初步系统化学研究为结构-活性关系提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a13c/12365674/4324dcc22059/imafungus-16-e153522-g001.jpg

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