数字农科院2.0

Advances for anti-inflammatory ingredients and activities of Fuzi (lateral root of Aconitum carmichaelii Debx.)

文献类型: 外文期刊

作者: Zhang, Zufeng;Zhou, Weiwei;Zhang, Yuxin;Hu, Yuanyuan;Mou, Junyu;Wang, Xuefeng;Liu, Ling;Zheng, Wei

作者机构:

关键词: Fuzi;botany;medicinal and food use;anti-inflammatory;molecular mechanism

期刊名称: INTERNATIONAL JOURNAL OF FOOD PROPERTIES

ISSN: 1094-2912

年卷期: 2024 年 27 卷 1 期

页码:

收录情况: SCIE(2024版) ; ; EI(2024版)

摘要: The rising prevalence and detrimental impact of inflammatory diseases have spurred the exploration of novel therapeutic approaches to tackle these conditions. Fuzi, lateral root of Aconitum carmichaelii Debx. has been used as a traditional Chinese medicine (TCM) for the treatment of inflammatory diseases for a long time. This article provides a comprehensive review of the medicinal applications, anti-inflammatory constituents, analytical techniques for detecting anti-inflammatory components, molecular mechanisms, and anti-inflammatory effects of Fuzi and its formulas. The information on Fuzi was collected from a variety of resources including classical works on Chinese herbal medicine, scientific databases (PubMed, Google Scholar, ACS, Web of Science, Science Direct, CNKI), TCMSP, NCBI, PubChem databases and others. About 122 compounds were isolated and identified from Fuzi, with alkaloids constituting the primary constituents that demonstrate potent anti-inflammatory activity. Specifically, among the identified compounds, there was one C-18 type, nineteen C-19 type, four C-20 type diterpenoid alkaloids, one other alkaloid, and 6 non-alkaloid constituents, all of which exhibited noteworthy anti-inflammatory and pain-alleviating properties in both in vivo and in vitro models of inflammation. These effects were mainly attributed to the reduction of pro-inflammatory cytokines, including IL-1, TNF-alpha, NO, IL-I beta, and IL-6, as well as the inhibition of MAPK, NF-kappa B or PI3K/Akt signaling pathways, which effectively suppressed the inflammatory response and alleviated pain. Additionally, the anti-inflammatory effects were also achieved through the regulation of TLR4 expression and its downstream factors, or by modulating the homeostasis of the gut microbiota.

分类号:

  • 相关文献

[1]UPLC-Q-Exactive Orbitrap/MS-Based Lipidomics Approach To Characterize Lipid Extracts from Bee Pollen and Their in Vitro Anti-Inflammatory Properties. Li, Qiangqiang,Liang, Xinwen,Xue, Xiaofeng,Wang, Kai,We, Liming,Li, Qiangqiang,Liang, Xinwen,Xue, Xiaofeng,Wang, Kai,We, Liming,Li, Qiangqiang,Liang, Xinwen,Xue, Xiaofeng,Wang, Kai,Zhao, Liang,Zhang, Zhongyin.

[2]Inhibitory Effects of 4 '-Demethylnobiletin, a Metabolite of Nobiletin, on 12-O-Tetradecanoylphorbol-13-acetate (TPA)-Induced Inflammation in Mouse Ears. Wu, Xian,Song, Mingyue,Rakariyatham, Kanyasiri,Zheng, Jinkai,Wang, Minqi,Xu, Fei,Gao, Zili,Xiao, Hang,Xiao, Hang,Zheng, Jinkai.

[3]Lonicera japonica Thunb.: Ethnopharmacology, phytochemistry and pharmacology of an important traditional Chinese medicine. Shang, Xiaofei,Li, Maoxing,Li, Maoxing,Ding, Hong,Shang, Xiaofei,Pan, Hu,Miao, Xiaolou. 2011

[4]Rubber (Hevea brasiliensis) seed oil supplementation attenuates immunological stress and inflammatory response in lipopolysaccharide-challenged laying hens. Liu J.,Zhao L.,Zhao Z.,Wu Y.,Cao J.,Cai H.,Yang P.,Wen Z.. 2022

[5]A Poly-D-Mannose Synthesized by a One-Pot Method Exhibits Anti-Biofilm, Antioxidant, and Anti-Inflammatory Properties In Vitro. Dandan Tian,Yu Qiao,Qing Peng,Yuwei Zhang,Yuxin Gong,Linbo Shi,Xiaoyan Xiong,Mengxin He,Xiaoqing Xu,Bo Shi. 2023

[6]Effects of Maillard reaction on the properties and anti-inflammatory, anti-proliferative activity in vitro of quinoa protein isolates. Teng C.,Xing B.,Fan X.,Zhang B.,Li Y.,Ren G.. 2021

[7]Anti-staphylococcus aureus single-chain fragment variables play a protective anti-inflammatory role in vitro and in vivo. Zhang L.,Ye X.,Zhang Y.,Wang F.,Zhang F.,Jia Y.,Wu D.,Tohti K.,Cheng M.,Zhu J.. 2021

[8]Evaluation of toxicity, bacteriostatic, analgesic, anti-inflammatory, and antipyretic activities of huangqin-honghua-pugongying-jinyinhua extract. Dongyang Ye,Jing Sun,Yinqian Li. 2021

[9]Ionic liquid-based non-releasing antibacterial, anti-inflammatory, high-transparency hydrogel coupled with electrical stimulation for infected diabetic wound healing. Bin Liu,Rongzhan Fu,Zhiguang Duan,Chenhui Zhu,Jianjun Deng,Daidi Fan. 2022

[10]Insight of Melatonin: The Potential of Melatonin to Treat Bacteria-Induced Mastitis. Hongyang Li,Peng Sun. 2022

[11]Health functions and related molecular mechanisms of Miconia genus: A systematic review. Sathiyabama Rajiv Gandhi,Gopalsamy Rajiv Gandhi,Poovathumkal James Antony,Varghese Edwin Hillary,Stanislaus Antony Ceasar,Govindasamy Hariharan,Yi Liu,Ricardo Queiroz Gurgel,Jullyana de Souza Siqueira Quintans,Lucindo José Quintans-Júnior. 2023

[12]The regulatory roles of Fasciola hepatica GSTO1 protein in inflammatory cytokine expression and apoptosis in murine macrophages. Wang Xifeng,Zhang Jiahua,Li Ningxing,Zhang Guowu,Shang Yunxia,Cai Xuepeng,Qiao Jun,Xia Xianzhu,Meng Qingling. 2023

[13]The Ameliorations Of Ganoderma Applanatum R.esidue Polysaccharides Against Ccl4 I nduced Liver Injury. Gao, Z, Yuan, FF, Li, HP, Feng, YB, Zhang, YW, Zhang, C, Zhang, JJ, Song, Z, Jia, L. 2019

[14]The Effect Of Epigallocatechin-3-Gallate On S.mall Intestinal Morphology, Antioxidant C apacity And Anti-Inflammatory Effect In Heat-Stressed Broilers. Song, J, Lei, X, Luo, JX, Everaert, N, Zhao, GP, Wen, J, Yang, Y. 2019

[15]Effects of Maillard reaction on the properties and anti-inflammatory, anti-proliferative activity in vitro of quinoa protein isolates. 滕聪,,邢宝,,范鑫,,张彪,,李亚杰,,任贵兴. 2021

[16]An update on phytochemistry and biological activities of Cinnamomum. Meiting Wu,Zhiyi Lin,Bingbing Huang,Kuo Xu,Shuangquan Zou,Lin Ni,Yuxi Chen. 2022

[17]Antioxidant and Anti-Inflammatory Properties of Rubber Seed Oil in Lipopolysaccharide-Induced RAW 267.4 Macrophages. Jing Liu,Lulu Zhao,Hongying Cai,Zitao Zhao,Yongbao Wu,Zhiguo Wen,Peilong Yang. 2022

[18]Antioxidant, anti-inflammatory, and antitumor activities of phenolic compounds from white, red, and black Chenopodium quinoa seed. . Liu M,Zhu K,Yao Y,Yinhuan Chen,Huimin Guo,Guixing Ren,Xiushi Yang,Jincai Li.. 2020

[19]Huang Bai Jian Pi decoction alleviates diarrhea and represses inflammatory injury via PI3K/Akt/NF-κB pathway: In vivo and in vitro studies. Zunxiang Yan,Kai Zhang,Kang Zhang,Guibo Wang,Lei Wang,Jingyan Zhang,Zhengying Qiu,Zhiting Guo,Yandong Kang,Xiaoping Song,Jianxi Li. 2022

[20]Total Lipid Extracts of Honeybee Drone Larvae Are Modulated by Extraction Temperature and Display Consistent Anti-Inflammatory Potential. Yiming Luo,Yuyang Guo,Wen Zhao,Shaden A.M. Khalifa,Hesham R. El-Seedi,Xiaoling Su,Liming Wu. 2023

作者其他论文 更多>>