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For: Rebollo A, Roglans N, Alegret M, Laguna JC. Way back for fructose and liver metabolism: Bench side to molecular insights. World J Gastroenterol 2012; 18(45): 6552-6559 [PMID: 23236229 DOI: 10.3748/wjg.v18.i45.6552]
URL: https://www.wjgnet.com/1948-9358/full/v18/i45/6552.htm
Number Citing Articles
1
Juan Laguna, Marta Alegret, Núria Roglans. Simple Sugar Intake and Hepatocellular Carcinoma: Epidemiological and Mechanistic InsightNutrients 2014; 6(12): 5933 doi: 10.3390/nu6125933
2
Ana Tojal, Catarina Neves, Hugo Veiga, Sílvia Ferreira, Ilda Rodrigues, Fátima Martel, Conceição Calhau, Rita Negrão, Elisa Keating. Perigestational high folic acid: impact on offspring's peripheral metabolic responseFood & Function 2019; 10(11): 7216 doi: 10.1039/C9FO01807G
3
Gulay Nephan, Zeynep Mine Coskun, Sema Bolkent. Dipeptidyl peptidase‐4 inhibition prevents cell death via extrinsic and intrinsic apoptotic pathways in rat pancreas with insulin resistanceCell Biochemistry and Function 2018; 36(4): 212 doi: 10.1002/cbf.3333
4
Komal Sodhi, Nitin Puri, Gaia Favero, Sarah Stevens, Charles Meadows, Nader G. Abraham, Rita Rezzani, Hayden Ansinelli, Edward Lebovics, Joseph I. Shapiro, Hervé Guillou. Fructose Mediated Non-Alcoholic Fatty Liver Is Attenuated by HO-1-SIRT1 Module in Murine Hepatocytes and Mice Fed a High Fructose DietPLOS ONE 2015; 10(6): e0128648 doi: 10.1371/journal.pone.0128648
5
H. M. Semchyshyn. FructationIn Vivo: Detrimental and Protective Effects of FructoseBioMed Research International 2013; 2013: 1 doi: 10.1155/2013/343914
6
Zahra Bahadoran, Parvin Mirmiran, Maryam Tohidi, Fereidoun Azizi. Longitudinal Associations of High-Fructose Diet with Cardiovascular Events and Potential Risk Factors: Tehran Lipid and Glucose StudyNutrients 2017; 9(8): 872 doi: 10.3390/nu9080872
7
A. Leturque, E. Brot-Laroche. Reference Module in Biomedical Sciences2014;  doi: 10.1016/B978-0-12-801238-3.00227-0
8
Xiaoxuan Guo, Ou Wang, Yong Wang, Kai Wang, Baoping Ji, Feng Zhou. Phenolic acids alleviate high-fat and high-fructose diet-induced metabolic disorders in ratsJournal of Food Biochemistry 2017; 41(6): e12419 doi: 10.1111/jfbc.12419
9
Pei‐Wen Cheng, Wen‐Yu Ho, Yu‐Ting Su, Pei‐Jung Lu, Bo‐Zone Chen, Wen‐Han Cheng, Wen‐Hsien Lu, Gwo‐Ching Sun, Tung‐Chen Yeh, Michael Hsiao, Ching‐Jiunn Tseng. Resveratrol decreases fructose‐induced oxidative stress, mediated by NADPH oxidase via an AMPK‐dependent mechanismBritish Journal of Pharmacology 2014; 171(11): 2739 doi: 10.1111/bph.12648
10
Eric Campbell, Anna Schlappal, Eliana Geller, Thomas W. Castonguay. Nutrition in the Prevention and Treatment of Abdominal Obesity2014; : 197 doi: 10.1016/B978-0-12-407869-7.00019-2
11
Alireza Ghaemi, Fourugh Azam Taleban, Azita Hekmatdoost, Alireza Rafiei, Vahid Hosseini, Zohreh Amiri, Reza Homayounfar, Hafez Fakheri. How Much Weight Loss is Effective on Nonalcoholic Fatty Liver Disease?Hepatitis Monthly 2013; 13(12) doi: 10.5812/hepatmon.15227
12
Tung-Chen Yeh, Ching-Sen Shin, Hsin-Hung Chen, Chi-Cheng Lai, Gwo-Ching Sun, Ching-Jiunn Tseng, Pei-Wen Cheng. Resveratrol regulates blood pressure by enhancing AMPK signaling to downregulate a Rac1-derived NADPH oxidase in the central nervous systemJournal of Applied Physiology 2018; 125(1): 40 doi: 10.1152/japplphysiol.00686.2017
13
Luc Tappy, Kim-Anne Lê. Health Effects of Fructose and Fructose-Containing Caloric Sweeteners: Where Do We Stand 10 Years After the Initial Whistle Blowings?Current Diabetes Reports 2015; 15(8) doi: 10.1007/s11892-015-0627-0
14
Niki Katsiki, Francesco Purrello, Costas Tsioufis, Dimitri P. Mikhailidis. Cardiovascular disease prevention strategies for type 2 diabetes mellitusExpert Opinion on Pharmacotherapy 2017; 18(12): 1243 doi: 10.1080/14656566.2017.1351946
15
Giuseppe Della Pepa, Claudia Vetrani, Gianluca Lombardi, Lutgarda Bozzetto, Giovanni Annuzzi, Angela Rivellese. Isocaloric Dietary Changes and Non-Alcoholic Fatty Liver Disease in High Cardiometabolic Risk IndividualsNutrients 2017; 9(10): 1065 doi: 10.3390/nu9101065
16
Sebastian J. Neggers, Aart J. van der Lely. Thyroid DiseasesEndocrinology 2018; : 1 doi: 10.1007/978-3-319-38681-2_17-1
17
Sebastian J. Neggers, Aart J. van der Lely. Hypothalamic-Pituitary DiseasesEndocrinology 2018; : 497 doi: 10.1007/978-3-319-44444-4_17
18
Ana Magdalena Velázquez, Núria Roglans, Roger Bentanachs, Maria Gené, Aleix Sala-Vila, Iolanda Lázaro, Jose Rodríguez-Morató, Rosa María Sánchez, Juan Carlos Laguna, Marta Alegret. Effects of a Low Dose of Caffeine Alone or as Part of a Green Coffee Extract, in a Rat Dietary Model of Lean Non-Alcoholic Fatty Liver Disease without InflammationNutrients 2020; 12(11): 3240 doi: 10.3390/nu12113240
19
Kana Sase, Chihiro Tsukahara, Naoki Fujita, Ibuki Arizono, Hitoshi Takagi, Yasushi Kitaoka. Akebia Saponin D prevents axonal loss against TNF-induced optic nerve damage with autophagy modulationMolecular Biology Reports 2020; 47(12): 9733 doi: 10.1007/s11033-020-06008-y
20
Natasha Jaiswal, Chandan K. Maurya, Deepti Arha, Deepa R. Avisetti, Ayyappan Prathapan, Palayyan S. Raj, Kozhiparambil G. Raghu, Shasi V. Kalivendi, Akhilesh Kumar Tamrakar. Fructose induces mitochondrial dysfunction and triggers apoptosis in skeletal muscle cells by provoking oxidative stressApoptosis 2015; 20(7): 930 doi: 10.1007/s10495-015-1128-y
21
Zeid Khitan, Dong Hyun Kim. Fructose: A Key Factor in the Development of Metabolic Syndrome and HypertensionJournal of Nutrition and Metabolism 2013; 2013: 1 doi: 10.1155/2013/682673
22
Ramoji Kosuru, Vidya Kandula, Uddipak Rai, Swati Prakash, Zhengyuan Xia, Sanjay Singh. Pterostilbene Decreases Cardiac Oxidative Stress and Inflammation via Activation of AMPK/Nrf2/HO-1 Pathway in Fructose-Fed Diabetic RatsCardiovascular Drugs and Therapy 2018; 32(2): 147 doi: 10.1007/s10557-018-6780-3
23
Caroline B. Quines, Suzan G. Rosa, Pietro M. Chagas, Daniela Velasquez, Vinicius C. Prado, Cristina W. Nogueira. ( p -ClPhSe) 2 stimulates carbohydrate metabolism and reverses the metabolic alterations induced by high fructose load in ratsFood and Chemical Toxicology 2017; 107: 122 doi: 10.1016/j.fct.2017.06.038
24
H. Aggarwal, J. Nair, P. Sharma, R. Sehgal, U. Naeem, P. Rajora, R. Mathur. Aegle marmelos differentially affects hepatic markers of glycolysis, insulin signalling pathway, hypoxia, and inflammation in HepG2 cells grown in fructose versus glucose-rich environmentMolecular and Cellular Biochemistry 2018; 438(1-2): 1 doi: 10.1007/s11010-017-3108-8
25
Miguel Baena, Gemma Sangüesa, Natalia Hutter, José María Beltrán, Rosa María Sánchez, Núria Roglans, Marta Alegret, Juan Carlos Laguna. Liquid fructose in Western-diet-fed mice impairs liver insulin signaling and causes cholesterol and triglyceride loading without changing calorie intake and body weightThe Journal of Nutritional Biochemistry 2017; 40: 105 doi: 10.1016/j.jnutbio.2016.10.015
26
Wan-Shui Yang, Xu-Fen Zeng, Zhi-Ning Liu, Qi-Hong Zhao, Yu-Ting Tan, Jing Gao, Hong-Lan Li, Yong-Bing Xiang. Diet and liver cancer risk: a narrative review of epidemiological evidenceBritish Journal of Nutrition 2020; 124(3): 330 doi: 10.1017/S0007114520001208
27
Aaqib Habib Malik, Yasir Akram, Suchith Shetty, Senada Senda Malik, Valentine Yanchou Njike. Impact of Sugar-Sweetened Beverages on Blood PressureThe American Journal of Cardiology 2014; 113(9): 1574 doi: 10.1016/j.amjcard.2014.01.437
28
Gemma Sangüesa, Núria Roglans, Juan Carlos Laguna, Marta Alegret. Molecular Nutrition: Carbohydrates2019; : 149 doi: 10.1016/B978-0-12-849886-6.00004-5
29
Laia Vilà, Ivet Elias, Carles Roca, Albert Ribera, Tura Ferré, Alba Casellas, Ricardo Lage, Sylvie Franckhauser, Fatima Bosch. AAV8-mediated Sirt1 gene transfer to the liver prevents high carbohydrate diet-induced nonalcoholic fatty liver diseaseMolecular Therapy - Methods & Clinical Development 2014; 1: 14039 doi: 10.1038/mtm.2014.39
30
M.‐R. Taskinen, S. Söderlund, L. H. Bogl, A. Hakkarainen, N. Matikainen, K. H. Pietiläinen, S. Räsänen, N. Lundbom, E. Björnson, B. Eliasson, R. M. Mancina, S. Romeo, N. Alméras, G. D. Pepa, C. Vetrani, A. Prinster, G. Annuzzi, A. Rivellese, J.‐P. Després, J. Borén. Adverse effects of fructose on cardiometabolic risk factors and hepatic lipid metabolism in subjects with abdominal obesityJournal of Internal Medicine 2017; 282(2): 187 doi: 10.1111/joim.12632
31
Kimber L. Stanhope, Jean-Marc Schwarz, Peter J. Havel. Adverse metabolic effects of dietary fructoseCurrent Opinion in Lipidology 2013; 24(3): 198 doi: 10.1097/MOL.0b013e3283613bca
32
Gemma Sangüesa, Núria Roglans, José Carlos Montañés, Miguel Baena, Ana Magdalena Velázquez, Rosa María Sánchez, Marta Alegret, Juan Carlos Laguna. Chronic Liquid Fructose, but not Glucose, Supplementation Selectively Induces Visceral Adipose Tissue Leptin Resistance and Hypertrophy in Female Sprague‐Dawley RatsMolecular Nutrition & Food Research 2018; 62(22) doi: 10.1002/mnfr.201800777
33
Fang Yuan, Xu Teng, Zan Guo, Jing-Jing Zhou, Yi Zhang, Sheng Wang. Chronic intermittent hypobaric hypoxia ameliorates endoplasmic reticulum stress mediated liver damage induced by fructose in ratsLife Sciences 2015; 121: 40 doi: 10.1016/j.lfs.2014.11.019
34
Pei-Wen Cheng, Hui-Chieh Lee, Pei-Jung Lu, Hsin-Hung Chen, Chi-Cheng Lai, Gwo-Ching Sun, Tung-Chen Yeh, Michael Hsiao, Yu-Te Lin, Chun-Peng Liu, Ching-Jiunn Tseng. Resveratrol Inhibition of Rac1-Derived Reactive Oxygen Species by AMPK Decreases Blood Pressure in a Fructose-Induced Rat Model of HypertensionScientific Reports 2016; 6(1) doi: 10.1038/srep25342
35
Gemma Sangüesa, Núria Roglans, Miguel Baena, Ana Velázquez, Juan Laguna, Marta Alegret. mTOR is a Key Protein Involved in the Metabolic Effects of Simple SugarsInternational Journal of Molecular Sciences 2019; 20(5): 1117 doi: 10.3390/ijms20051117
36
Rosa Lombardi, Federica Iuculano, Giada Pallini, Silvia Fargion, Anna Ludovica Fracanzani. Nutrients, Genetic Factors, and Their Interaction in Non-Alcoholic Fatty Liver Disease and Cardiovascular DiseaseInternational Journal of Molecular Sciences 2020; 21(22): 8761 doi: 10.3390/ijms21228761