For: | Wang C, Fan RQ, Zhang YX, Nie H, Li K. Naringenin protects against isoniazid- and rifampicin-induced apoptosis in hepatic injury. World J Gastroenterol 2016; 22(44): 9775-9783 [PMID: 27956801 DOI: 10.3748/wjg.v22.i44.9775] |
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URL: | https://www.wjgnet.com/1007-9327/full/v22/i44/9775.htm |
Number | Citing Articles |
1 |
Fatemeh Naeini, Zahra Namkhah, Alireza Ostadrahimi, Helda Tutunchi, Mohammad Javad Hosseinzadeh-Attar. A Comprehensive Systematic Review of the Effects of Naringenin, a Citrus-Derived Flavonoid, on Risk Factors for Nonalcoholic Fatty Liver Disease. Advances in Nutrition 2021; 12(2): 413 doi: 10.1093/advances/nmaa106
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2 |
KM Kainat, Mohammad Imran Ansari, Nuzhat Bano, Pankaj Ramji Jagdale, Anjaneya Ayanur, Mahadeo Kumar, Pradeep Kumar Sharma. Rifampicin-induced ER stress and excessive cytoplasmic vacuolization instigate hepatotoxicity via alternate programmed cell death paraptosis in vitro and in vivo. Life Sciences 2023; 333: 122164 doi: 10.1016/j.lfs.2023.122164
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3 |
Magdy F. Gawish, Samia A. Abd EL-Baset, Salma S. Shalabi, Nahla E. Ibrahem. Efficacy of ozone versus mesenchymal stem cell-derived microvesicles in ameliorating testicular changes after hypothyroidism in adult albino rats: a histological and immunohistochemical study. Ultrastructural Pathology 2024; 48(6): 496 doi: 10.1080/01913123.2024.2423863
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4 |
Tianchang Gao, Miao Lai, Xihe Zhu, Suping Ren, Yuanyuan Yin, Zhendi Wang, Zhiyuan Liu, Zhuo Zuo, Yongyong Hou, Jingbo Pi, Yanyan Chen. Rifampicin impairs adipogenesis by suppressing NRF2-ARE activity in mice fed a high-fat diet. Toxicology and Applied Pharmacology 2021; 413: 115393 doi: 10.1016/j.taap.2020.115393
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5 |
Fatemeh Naeini, Zahra Namkhah, Helda Tutunchi, Seyed Mahdi Rezayat, Siavash Mansouri, Seyed Ali Jazayeri-Tehrani, Mehdi Yaseri, Mohammad Javad Hosseinzadeh-Attar. Effects of naringenin supplementation in overweight/obese patients with non-alcoholic fatty liver disease: study protocol for a randomized double-blind clinical trial. Trials 2021; 22(1) doi: 10.1186/s13063-021-05784-7
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6 |
Xiuping Zhuang, Li Li, Tianyi Liu, Rui Zhang, Peimin Yang, Xin Wang, Long Dai. Mechanisms of isoniazid and rifampicin-induced liver injury and the effects of natural medicinal ingredients: A review. Frontiers in Pharmacology 2022; 13 doi: 10.3389/fphar.2022.1037814
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7 |
A. Prasad, R. Kumar, S. Kumari. Recent Advances in Synthetic Aspects of Naringenin Flavonoid and its Bioprotective Effect (A Review). Russian Journal of Bioorganic Chemistry 2023; 49(6): 1177 doi: 10.1134/S106816202306002X
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8 |
Zafer ÇAMBAY, Naci Ömer ALAYUNT. Karbontetraklorür İle Karaciğer Hasarı Oluşturulan Ratlarda Tribulus terrestris’in Antihiperlipidemik Etkisinin Araştırılması. Bitlis Eren Üniversitesi Fen Bilimleri Dergisi 2019; 8(3): 779 doi: 10.17798/bitlisfen.529739
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9 |
Wuchang Zhu, Hongmei Su, Yuanyuan Wei, Yushen Huang, Siyun Chen, Yanxia Shi, Yan Long, Yue Qiu, Jinbin Wei. Asiatic acid ameliorates rifampicin‐ and isoniazid‐induced liver injury in vivo by regulating sphingolipid metabolism and mitogen‐activated protein kinase signalling pathways. Basic & Clinical Pharmacology & Toxicology 2023; 133(4): 402 doi: 10.1111/bcpt.13909
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10 |
Vishal S. Patil, Darasaguppe R. Harish, Ganesh H. Sampat, Subarna Roy, Sunil S. Jalalpure, Pukar Khanal, Swarup S. Gujarathi, Harsha V. Hegde. System Biology Investigation Revealed Lipopolysaccharide and Alcohol-Induced Hepatocellular Carcinoma Resembled Hepatitis B Virus Immunobiology and Pathogenesis. International Journal of Molecular Sciences 2023; 24(13): 11146 doi: 10.3390/ijms241311146
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11 |
Lereko Kometsi, Khmera Govender, Edith P Mofo Mato, Rajendraparsad Hurchund, Peter M O Owira. By reducing oxidative stress, naringenin mitigates hyperglycaemia-induced upregulation of hepatic nuclear factor erythroid 2-related factor 2 protein. Journal of Pharmacy and Pharmacology 2020; 72(10): 1394 doi: 10.1111/jphp.13319
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12 |
Devaraj Ezhilarasan. Antitubercular drugs induced liver injury: an updated insight into molecular mechanisms. Drug Metabolism Reviews 2023; 55(3): 239 doi: 10.1080/03602532.2023.2215478
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13 |
Mohammad-Reza Khajevand-Khazaei, Pouria Ziaee, Seyyed-Alireza Motevalizadeh, Mahdi Rohani, Siamak Afshin-Majd, Tourandokht Baluchnejadmojarad, Mehrdad Roghani. Naringenin ameliorates learning and memory impairment following systemic lipopolysaccharide challenge in the rat. European Journal of Pharmacology 2018; 826: 114 doi: 10.1016/j.ejphar.2018.03.001
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14 |
Xiu-Hui Ke, Chun-Guo Wang, Wei-Zao Luo, Jing Wang, Bing Li, Jun-Ping Lv, Rui-Juan Dong, Dong-Yu Ge, Yue Han, Ya-Jie Yang, Re-Yila Tu-Erxun, Hong-Shuang Liu, Yi-Chen Wang, Yan Liao. Metabolomic Study to Determine the Mechanism Underlying the Effects of Sagittaria sagittifolia Polysaccharide on Isoniazid- and Rifampicin-Induced Hepatotoxicity in Mice. Molecules 2018; 23(12): 3087 doi: 10.3390/molecules23123087
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15 |
Shubham Patel, Aman Chaturvedi, Nazneen Dubey, Abhishek Shrivastava, Aditya Ganeshpurkar. Ascorbic acid ameliorates isoniazid-rifampicin-induced hepatocellular damage in rats. iLIVER 2022; 1(1): 72 doi: 10.1016/j.iliver.2022.03.001
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16 |
Zuhal UÇKUN ŞAHİNOĞULLARI, Sevda GÜZEL, Necmiye CANACANKATAN, Cem YALAZA, Deniz KİBAR, Gulsen BAYRAK. Naringenin Reduces Hepatic Inflammation and Apoptosis Induced by Vancomycin in Rats. Clinical and Experimental Health Sciences 2021; 11(2): 191 doi: 10.33808/clinexphealthsci.741916
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17 |
Zhiqian Wang, Xuejun Jiang. Flavonoid-rich extract of Polygonum capitatum attenuates high-fat diet–induced atherosclerosis development and inflammatory and oxidative stress in hyperlipidemia rats. European Journal of Inflammation 2018; 16 doi: 10.1177/2058739218772710
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18 |
Naymul Karim, Zhenquan Jia, Xiaodong Zheng, Sunliang Cui, Wei Chen. A recent review of citrus flavanone naringenin on metabolic diseases and its potential sources for high yield-production. Trends in Food Science & Technology 2018; 79: 35 doi: 10.1016/j.tifs.2018.06.012
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19 |
Huijie Chen, Yue Zhang, Mengmeng Zou, Xiaowei Sun, Xiaodan Huang, Shiwen Xu. Dibutyl phthalate‐induced oxidative stress and apoptosis in swine testis cells and therapy of naringenin via PTEN/PI3K/AKT signaling pathway. Environmental Toxicology 2022; 37(8): 1840 doi: 10.1002/tox.23531
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20 |
Jing Wang, Weizao Luo, Bing Li, Junping Lv, Xiuhui Ke, Dongyu Ge, Ruijuan Dong, Chunguo Wang, Yue Han, Cong Zhang, Haichuan Yu, Yan Liao. Sagittaria sagittifolia polysaccharide protects against isoniazid- and rifampicin-induced hepatic injury via activation of nuclear factor E2-related factor 2 signaling in mice. Journal of Ethnopharmacology 2018; 227: 237 doi: 10.1016/j.jep.2018.09.002
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21 |
Yilin Sun, Yuanyue Zhang, Nan Ma, Shengbao Cai. Rhus chinensis Mill. fruits alleviate liver injury induced by isoniazid and rifampicin through regulating oxidative stress, apoptosis, and bile acid transport. Journal of Ethnopharmacology 2023; 310: 116387 doi: 10.1016/j.jep.2023.116387
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22 |
Qiang Su, Wei Kuang, Weiyi Hao, Jing Liang, Liang Wu, Chunmei Tang, Yali Wang, Tao Liu, Young-Su Yi. Antituberculosis Drugs (Rifampicin and Isoniazid) Induce Liver Injury by Regulating NLRP3 Inflammasomes. Mediators of Inflammation 2021; 2021: 1 doi: 10.1155/2021/8086253
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23 |
Yilin Sun, Yuanyue Zhang, Nan Ma, Shengbao Cai. Rhus Chinensis Mill. Fruits Alleviate Liver Injury Induced by Isoniazid and Rifampicin Through Adjusting Several Crucial Proteins in Mice. SSRN Electronic Journal 2022; doi: 10.2139/ssrn.4149292
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24 |
Wenjun He, Yanming Wang, Rui Yang, Huihui Ma, Xuqing Qin, Meijuan Yan, Yi Rong, Yufang Xie, Li Li, Junqiang Si, Xinzhi Li, Ketao Ma. Molecular Mechanism of Naringenin Against High-Glucose-Induced Vascular Smooth Muscle Cells Proliferation and Migration Based on Network Pharmacology and Transcriptomic Analyses. Frontiers in Pharmacology 2022; 13 doi: 10.3389/fphar.2022.862709
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25 |
Shuhan Gao, Xiaojing Chen, Zhiqian Yu, Rong Du, Baizhong Chen, Yuxin Wang, Xiaoting Cai, Jiepei Xu, Jiamin Chen, Huiying Duan, Yi Cai, Guodong Zheng. Progress of research on the role of active ingredients of Citri Reticulatae Pericarpium in liver injury. Phytomedicine 2023; 115: 154836 doi: 10.1016/j.phymed.2023.154836
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26 |
Harm J. Heusinkveld, Paul F.K. Wackers, Willem G. Schoonen, Leo van der Ven, Jeroen L.A. Pennings, Mirjam Luijten. Application of the comparison approach to open TG-GATEs: A useful toxicogenomics tool for detecting modes of action in chemical risk assessment. Food and Chemical Toxicology 2018; 121: 115 doi: 10.1016/j.fct.2018.08.007
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27 |
Yibo Tang, Junping Lv, Jing Wang, Bing Li, Qiaohui Zhang, Zhenquan Liu, Xiuhui Ke, Weizao Luo, Yin Lin, Yan Liao. Sagittaria sagittifolia polysaccharide, a chinese herbal extract, protects against isoniazid- and rifampicin-induced hepatotoxicity in in-vitro model. Pharmacognosy Magazine 2020; 16(71): 637 doi: 10.4103/pm.pm_542_19
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28 |
Yue Li, Liangjie Zhao, Meiling Hou, Tianlin Gao, Jin Sun, Hao Luo, Fengdan Wang, Feng Zhong, Aiguo Ma, Jing Cai. Lactobacillus casei Improve Anti-Tuberculosis Drugs-Induced Intestinal Adverse Reactions in Rat by Modulating Gut Microbiota and Short-Chain Fatty Acids. Nutrients 2022; 14(8): 1668 doi: 10.3390/nu14081668
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29 |
Abeer M. Azmy, Bassant T. Abd Elbaki, Mohammed A. Ali, Abeer A Mahmoud. Effect of ozone versus naringin on testicular injury in experimentally induced ulcerative colitis in adult male albino rats. Ultrastructural Pathology 2022; 46(5): 439 doi: 10.1080/01913123.2022.2132337
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30 |
Yu. V. Kharchenko, V. A. Myakushko, O. S. Trushenko, T. V. Yevtushenko , N. V. Yevtushenko, A. K. Derkach, M. K. Kravchenko . The State of the Neuronal-Astrocytic Apparatus of the Hippocampus on the Background of Long-Term Administration of Isoniazid and Rifampicin under Conditions of Correction of the Gut Microflora. Ukraïnsʹkij žurnal medicini, bìologìï ta sportu 2021; 6(6): 289 doi: 10.26693/jmbs06.06.289
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