{"title":"转录组学和加权基因共表达网络分析揭示双氢槲皮素衍生物在减轻糖尿病斑马鱼能量代谢和神经系统疾病方面优于双氢槲皮素的多靶点机制","authors":"Yong Cheng, Beijun Ang, Dandan Ma, Zhiwei Li, Fengxian Guo, Zhaojun Wang, Qiuming Chen, Maomao Zeng, Jie Chen, Benu Adhikari, Liduan Yin, Tong Wang, Zongping Zheng, Zhiyong He","doi":"10.1021/acs.jafc.5c03914","DOIUrl":null,"url":null,"abstract":"Diabetes-induced impairments in energy metabolism and neurological function significantly compromise physiological functions, highlighting the importance of exploring natural product-based therapeutic strategies. This study systematically investigated the effects of dihydroquercetin (DHQ) and its two derivatives, 8-hydroxy-dihydroquercetin (H-DHQ) and dihydroquercetin-7-<i>O</i>-β-<span>d</span>-(4″-<i>O</i>-methyl)-glucoside (DHQ-MG), which were derived from fermentation by <i>Beauveria bassiana</i>, on energy metabolism and neurological disorders in diabetic zebrafish larvae. The results demonstrated that both H-DHQ and DHQ-MG significantly ameliorated the motor dysfunction and neurodevelopmental impairments more effectively than DHQ, with DHQ-MG exhibiting the most pronounced effects. Enzymatic activity assays and neurochemical analyses confirmed enhanced neuroprotection, while transcriptomic analysis and weighted gene coexpression network analysis (WGCNA) revealed that H-DHQ and DHQ-MG modulate distinct sets of genes and signaling pathways, contributing to their superior effects on lipid metabolism, immune function, and neuroprotection compared to DHQ. The identified biologically relevant genes may serve as potential targets for H-DHQ or DHQ-MG, helping to alleviate diabetes-induced metabolic imbalance and neurodegenerative disorders. The results offer valuable insights into the potential use of DHQ-derived natural products for treating and managing diabetes and its complications.","PeriodicalId":41,"journal":{"name":"Journal of Agricultural and Food Chemistry","volume":"129 1","pages":""},"PeriodicalIF":6.2000,"publicationDate":"2025-05-29","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Transcriptomic and Weighted Gene Coexpression Network Analyses Reveal Superior Multitarget Mechanisms of Dihydroquercetin Derivatives over Dihydroquercetin in Alleviating Energy Metabolism and Neurological Disorders in Diabetic Zebrafish\",\"authors\":\"Yong Cheng, Beijun Ang, Dandan Ma, Zhiwei Li, Fengxian Guo, Zhaojun Wang, Qiuming Chen, Maomao Zeng, Jie Chen, Benu Adhikari, Liduan Yin, Tong Wang, Zongping Zheng, Zhiyong He\",\"doi\":\"10.1021/acs.jafc.5c03914\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Diabetes-induced impairments in energy metabolism and neurological function significantly compromise physiological functions, highlighting the importance of exploring natural product-based therapeutic strategies. This study systematically investigated the effects of dihydroquercetin (DHQ) and its two derivatives, 8-hydroxy-dihydroquercetin (H-DHQ) and dihydroquercetin-7-<i>O</i>-β-<span>d</span>-(4″-<i>O</i>-methyl)-glucoside (DHQ-MG), which were derived from fermentation by <i>Beauveria bassiana</i>, on energy metabolism and neurological disorders in diabetic zebrafish larvae. The results demonstrated that both H-DHQ and DHQ-MG significantly ameliorated the motor dysfunction and neurodevelopmental impairments more effectively than DHQ, with DHQ-MG exhibiting the most pronounced effects. Enzymatic activity assays and neurochemical analyses confirmed enhanced neuroprotection, while transcriptomic analysis and weighted gene coexpression network analysis (WGCNA) revealed that H-DHQ and DHQ-MG modulate distinct sets of genes and signaling pathways, contributing to their superior effects on lipid metabolism, immune function, and neuroprotection compared to DHQ. The identified biologically relevant genes may serve as potential targets for H-DHQ or DHQ-MG, helping to alleviate diabetes-induced metabolic imbalance and neurodegenerative disorders. The results offer valuable insights into the potential use of DHQ-derived natural products for treating and managing diabetes and its complications.\",\"PeriodicalId\":41,\"journal\":{\"name\":\"Journal of Agricultural and Food Chemistry\",\"volume\":\"129 1\",\"pages\":\"\"},\"PeriodicalIF\":6.2000,\"publicationDate\":\"2025-05-29\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Journal of Agricultural and Food Chemistry\",\"FirstCategoryId\":\"97\",\"ListUrlMain\":\"https://doi.org/10.1021/acs.jafc.5c03914\",\"RegionNum\":1,\"RegionCategory\":\"农林科学\",\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"Q1\",\"JCRName\":\"AGRICULTURE, MULTIDISCIPLINARY\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Agricultural and Food Chemistry","FirstCategoryId":"97","ListUrlMain":"https://doi.org/10.1021/acs.jafc.5c03914","RegionNum":1,"RegionCategory":"农林科学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"AGRICULTURE, MULTIDISCIPLINARY","Score":null,"Total":0}
引用次数: 0
摘要
糖尿病引起的能量代谢和神经功能损伤显著损害生理功能,强调了探索基于天然产物的治疗策略的重要性。本研究系统研究了由白孢白杆菌发酵得到的二氢槲皮素(DHQ)及其衍生物8-羟基二氢槲皮素(H-DHQ)和二氢槲皮素-7- o -β-d-(4″- o -甲基)-葡糖苷(DHQ- mg)对糖尿病斑马鱼幼鱼能量代谢和神经功能障碍的影响。结果表明,H-DHQ和DHQ- mg均比DHQ更有效地改善运动功能障碍和神经发育障碍,其中DHQ- mg效果最显著。酶活性分析和神经化学分析证实了H-DHQ和DHQ- mg具有增强的神经保护作用,而转录组学分析和加权基因共表达网络分析(WGCNA)显示,H-DHQ和DHQ- mg调节不同的基因和信号通路,与DHQ相比,它们在脂质代谢、免疫功能和神经保护方面的作用更大。所鉴定的生物学相关基因可能作为H-DHQ或DHQ-MG的潜在靶点,有助于缓解糖尿病诱导的代谢失衡和神经退行性疾病。这些结果为dhq衍生的天然产物在治疗和控制糖尿病及其并发症方面的潜在应用提供了有价值的见解。
Transcriptomic and Weighted Gene Coexpression Network Analyses Reveal Superior Multitarget Mechanisms of Dihydroquercetin Derivatives over Dihydroquercetin in Alleviating Energy Metabolism and Neurological Disorders in Diabetic Zebrafish
Diabetes-induced impairments in energy metabolism and neurological function significantly compromise physiological functions, highlighting the importance of exploring natural product-based therapeutic strategies. This study systematically investigated the effects of dihydroquercetin (DHQ) and its two derivatives, 8-hydroxy-dihydroquercetin (H-DHQ) and dihydroquercetin-7-O-β-d-(4″-O-methyl)-glucoside (DHQ-MG), which were derived from fermentation by Beauveria bassiana, on energy metabolism and neurological disorders in diabetic zebrafish larvae. The results demonstrated that both H-DHQ and DHQ-MG significantly ameliorated the motor dysfunction and neurodevelopmental impairments more effectively than DHQ, with DHQ-MG exhibiting the most pronounced effects. Enzymatic activity assays and neurochemical analyses confirmed enhanced neuroprotection, while transcriptomic analysis and weighted gene coexpression network analysis (WGCNA) revealed that H-DHQ and DHQ-MG modulate distinct sets of genes and signaling pathways, contributing to their superior effects on lipid metabolism, immune function, and neuroprotection compared to DHQ. The identified biologically relevant genes may serve as potential targets for H-DHQ or DHQ-MG, helping to alleviate diabetes-induced metabolic imbalance and neurodegenerative disorders. The results offer valuable insights into the potential use of DHQ-derived natural products for treating and managing diabetes and its complications.
期刊介绍:
The Journal of Agricultural and Food Chemistry publishes high-quality, cutting edge original research representing complete studies and research advances dealing with the chemistry and biochemistry of agriculture and food. The Journal also encourages papers with chemistry and/or biochemistry as a major component combined with biological/sensory/nutritional/toxicological evaluation related to agriculture and/or food.