Biomolecules & Therapeutics : eISSN 2005-4483 / pISSN 1976-9148

Cited by CrossRef (36)

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  2. Hadi Darvishi-Khezri, Ebrahim Salehifar, Mehrnoush Kosaryan, Hossein Karami, Mohammadreza Mahdavi, Abbas Alipour, Aily Aliasgharian. Iron-chelating effect of silymarin in patients with β-thalassemia major: A crossover randomised control trial. Phytotherapy Research 2018;32:496
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  5. Qiang Ou, Yuanyuan Weng, Siwei Wang, Yajuan Zhao, Feng Zhang, Jianhua Zhou, Xiaolin Wu. Silybin Alleviates Hepatic Steatosis and Fibrosis in NASH Mice by Inhibiting Oxidative Stress and Involvement with the Nf-κB Pathway. Dig Dis Sci 2018;63:3398
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  6. Simona Clichici, Diana Olteanu, Adriana Filip, Andras-Laszlo Nagy, Adrian Oros, Petru A. Mircea. Beneficial Effects of Silymarin After the Discontinuation of CCl4-Induced Liver Fibrosis. Journal of Medicinal Food 2016;19:789
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  8. Neha, Amteshwar S. Jaggi, Nirmal Singh. Drug Discovery from Mother Nature. 2017.
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  9. Sami Gharbia, Cornel Balta, Hildegard Herman, Marcel Rosu, Judit Váradi, Ildikó Bácskay, Miklós Vecsernyés, Szilvia Gyöngyösi, Ferenc Fenyvesi, Sorina N. Voicu, Miruna S. Stan, Roxana E. Cristian, Anca Dinischiotu, Anca Hermenean. Enhancement of Silymarin Anti-fibrotic Effects by Complexation With Hydroxypropyl (HPBCD) and Randomly Methylated (RAMEB) β-Cyclodextrins in a Mouse Model of Liver Fibrosis. Front. Pharmacol. 2018;9
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  10. Eun Jeong Kim, Min Young Lee, Young Jin Jeon. Silymarin Inhibits Morphological Changes in LPS-Stimulated Macrophages by Blocking NF-κB Pathway. Korean J Physiol Pharmacol 2015;19:211
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  11. Qingling Li, Peilin Chen, Yuanyuan Fan, Xu Wang, Kehua Xu, Lu Li, Bo Tang. Multicolor Fluorescence Detection-Based Microfluidic Device for Single-Cell Metabolomics: Simultaneous Quantitation of Multiple Small Molecules in Primary Liver Cells. Anal. Chem. 2016;88:8610
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  12. Amal M. El-Feky, Marwa M. Elbatanony, Asmaa F. Aboul Naser, Manal A. Hamed. A therapeutic insight of carbohydrate and fixed oil from Plantago ovata L. seeds against ketoprofen-induced hepatorenal toxicity in rats. Bull Natl Res Cent 2018;42
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  13. Feng Wang, Jin-Cheng Liu, Rui-Jun Zhou, Xi Zhao, Mei Liu, Hua Ye, Mei-Lin Xie. Apigenin protects against alcohol-induced liver injury in mice by regulating hepatic CYP2E1-mediated oxidative stress and PPARα-mediated lipogenic gene expression. Chemico-Biological Interactions 2017;275:171
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  14. Eun Jeong Kim, Jeeho Kim, Min Young Lee, Muddenahalli Srinivasa Sudhanva, Sundaravinayagam Devakumar, Young Jin Jeon. Silymarin Inhibits Cytokine-Stimulated Pancreatic Beta Cells by Blocking the ERK1/2 Pathway. Biomolecules & Therapeutics 2014;22:282
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  15. Robert Domitrović, Iva Potočnjak. A comprehensive overview of hepatoprotective natural compounds: mechanism of action and clinical perspectives. Arch Toxicol 2016;90:39
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  16. Myung-Joo Kim, Mi-Ok Sim, Hae-In Lee, Ju Ri Ham, Kwon-Il Seo, Mi-Kyung Lee. Dietary umbelliferone attenuates alcohol-induced fatty liver via regulation of PPARα and SREBP-1c in rats. Alcohol 2014;48:707
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  17. Feng Wang, Rui-Jun Zhou, Xi Zhao, Hua Ye, Mei-Lin Xie. Apigenin inhibits ethanol-induced oxidative stress and LPS-induced inflammatory cytokine production in cultured rat hepatocytes. J Appl Biomed 2018;16:75
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  18. Nouf Mohamed Al-Rasheed, Laila Mohamed Fadda, Nawal Mohamed Al-Rasheed, Hanaa Mahmoud Ali, Hazar Ibrahim Yacoub. Down-Regulation of NFkB, Bax,TGF-β, Smad-2mRNA expression in the Livers of Carbon Tetrachloride Treated Rats using Different Natural Antioxidants. Braz. arch. biol. technol. 2016;59
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  19. Cha Kyung Youn, Sung Il Cho, Min Young Lee, Young Jin Jeon, Seog Ki Lee. Inhibition of ERK1/2 by silymarin in mouse mesangial cells. Korean J Physiol Pharmacol 2017;21:117
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  20. Jinhyung Bae, Young Sil Min, Yoonjin Nam, Hyun Seok Lee, Uy Dong Sohn. Humulus japonicus Extracts Protect Against Lipopolysaccharide/d-Galactosamine-Induced Acute Liver Injury in Rats. Journal of Medicinal Food 2018;21:1009
    https://doi.org/10.1089/jmf.2018.4178
  21. Bei-bei Rui, Hao Chen, Lei Jang, Zhen Li, Jing-mo Yang, Wei-ping Xu, Wei Wei. Melatonin Upregulates the Activity of AMPK and Attenuates Lipid Accumulation in Alcohol-induced Rats. Alcohol and Alcoholism 2016;51:11
    https://doi.org/10.1093/alcalc/agv126
  22. Eudmar Marcolino Assis-Júnior, Anielle Torres Melo, Venúcia Bruna Magalhães Pereira, Deysi Viviana Tenazoa Wong, Nathalia Ribeiro Pinho Sousa, Christiane Mendes Gonçalves Oliveira, Lara Raissa Cavalcante Malveira, Leonardo Silva Moreira, Marcellus Henrique Loiola Ponte Souza, Paulo Roberto Carvalho Almeida, Roberto César Pereira Lima-Júnior. Dual effect of silymarin on experimental non-alcoholic steatohepatitis induced by irinotecan. Toxicology and Applied Pharmacology 2017;327:71
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  23. Moon-Sun Kim. Optimal management for alcoholic liver disease: Conventional medications, natural therapy or combination?. WJG 2016;22:8
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  24. Hamid Mollazadeh, Davood Mahdian, Hossein Hosseinzadeh. Medicinal plants in treatment of hypertriglyceridemia: A review based on their mechanisms and effectiveness. Phytomedicine 2019;53:43
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  25. Alaa El-Din El-Sayed El-Sisi, Samia Salim Sokar, Dina Zakaria Mohamed. Dietary Interventions in Liver Disease. 2019.
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  26. Mohamed Elsayed Kelany, Mohamed Abdelmohsen Abdallah. Protective effects of combined β-caryophyllene and silymarin against ketoprofen-induced hepatotoxicity in rats. Can. J. Physiol. Pharmacol. 2016;94:739
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  27. Cheng-Hung Chuang, Cheng-Chih Tsai, En-Shyh Lin, Chin-Shiu Huang, Yun-Yu Lin, Chuan-Ching Lan, Chun-Chih Huang. Heat-Killed Lactobacillus salivarius and Lactobacillus johnsonii Reduce Liver Injury Induced by Alcohol In Vitro and In Vivo. Molecules 2016;21:1456
    https://doi.org/10.3390/molecules21111456
  28. Yosra M. Magdy, Omnyah A. El-Kharashi, Dalia A.A. El-Waseef, Enas S. Nabih, Abeer A. Abd El Samad. Insights into hepatic and renal FXR/DDAH-1/eNOS pathway and its role in the potential benefit of rosuvastatin and silymarin in hepatic nephropathy. Experimental and Molecular Pathology 2018;105:293
    https://doi.org/10.1016/j.yexmp.2018.10.004
  29. Shawky M. Aboelhadid, Saeed El-Ashram, Khaled M. Hassan, Waleed M Arafa, Ahmed BahaaEldin Darwish. Hepato-protective effect of curcumin and silymarin against Eimeria stiedae in experimentally infected rabbits. Livestock Science 2019;221:33
    https://doi.org/10.1016/j.livsci.2019.01.011
  30. Hae-In Lee, Mi-Kyung Lee. Coordinated regulation of scopoletin at adipose tissue–liver axis improved alcohol-induced lipid dysmetabolism and inflammation in rats. Toxicology Letters 2015;237:210
    https://doi.org/10.1016/j.toxlet.2015.06.016
  31. Yongxia Yang, Zhihui Han, Yaling Wang, Linlin Wang, Sina Pan, Shengwang Liang, Shumei Wang. Plasma metabonomic analysis reveals the effects of salvianic acid on alleviating acute alcoholic liver damage. RSC Adv. 2015;5:36732
    https://doi.org/10.1039/C5RA00823A
  32. He Peiyuan, Hou Zhiping, Song Chengjun, Wang Chunqing, Li Bingqing, Mustapha Umar Imam. Resveratrol Ameliorates Experimental Alcoholic Liver Disease by Modulating Oxidative Stress. Evidence-Based Complementary and Alternative Medicine 2017;2017:1
    https://doi.org/10.1155/2017/4287890
  33. Anmar M. Abdulrazzaq, Mujtaba Badr, Omar Gammoh, Asad A. Abu Khalil, Bayan Y. Ghanim, Tawfiq M. Alhussainy, Nidal A. Qinna. Hepatoprotective Actions of Ascorbic Acid, Alpha Lipoic Acid and Silymarin or Their Combination Against Acetaminophen-Induced Hepatotoxicity in Rats. Medicina 2019;55:181
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  34. Ravindrababu Pingili, A. Krishnamanjari Pawar, Siva Reddy Challa. Quercetin reduced the formation of N ‐acetyl‐ p ‐benzoquinoneimine, a toxic metabolite of paracetamol in rats and isolated rat hepatocytes . Phytotherapy Research 2019
    https://doi.org/10.1002/ptr.6365
  35. Ana Carolina Gomes Jardim, Jacqueline Farinha Shimizu, Paula Rahal, Mark Harris. Plant-derived antivirals against hepatitis c virus infection. Virol J 2018;15
    https://doi.org/10.1186/s12985-018-0945-3
  36. Ravindra Babu Pingili, A. Krishnamanjari Pawar, Siva R. Challa. Effect of chrysin on the formation of N-acetyl-p-benzoquinoneimine, a toxic metabolite of paracetamol in rats and isolated rat hepatocytes. Chemico-Biological Interactions 2019;302:123
    https://doi.org/10.1016/j.cbi.2019.02.014