For: | Qiu X, Gao DH, Xiang X, Xiong YF, Zhu TS, Liu LG, Sun XF, Hao LP. Ameliorative effects of lutein on non-alcoholic fatty liver disease in rats. World J Gastroenterol 2015; 21(26): 8061-8072 [PMID: 26185377 DOI: 10.3748/wjg.v21.i26.8061] |
---|---|
URL: | https://www.wjgnet.com/1007-9327/full/v21/i26/8061.htm |
Number | Citing Articles |
1 |
Ruiyang Yin, Yongxia Fu, Laraib Yousaf, Yong Xue, Jinrong Hu, Xiaosong Hu, Qun Shen. Crude and refined millet bran oil alleviate lipid metabolism disorders, oxidative stress and affect the gut microbiota composition in high‐fat diet‐induced mice. International Journal of Food Science & Technology 2022; 57(5): 2600 doi: 10.1111/ijfs.15063
|
2 |
Ludovico ABENAVOLI, Maja MILANOVIC, Anna C. PROCOPIO, Giovanni SPAMPINATO, Gina MARUCA, Enrico V. PERRINO, Gaia C. MANNINO, Sharmila FAGOONEE, Francesco LUZZA, Carmelo M. MUSARELLA. Ancient wheats: beneficial effects on insulin resistance. Minerva Medica 2021; 112(5) doi: 10.23736/S0026-4806.20.06873-1
|
3 |
Doha Reda, Gehad E. Elshopakey, Hebatallah A. Mahgoub, Engy F. Risha, Anmar A. Khan, Bodour S. Rajab, Mohamed E. El-Boshy, Fatma M. Abdelhamid, Abraham Wall Medrano. Effects of Resveratrol Against Induced Metabolic Syndrome in Rats: Role of Oxidative Stress, Inflammation, and Insulin Resistance. Evidence-Based Complementary and Alternative Medicine 2022; 2022: 1 doi: 10.1155/2022/3362005
|
4 |
Cemal Orhan, Fatih Akdemir, Mehmet Tuzcu, Nurhan Sahin, Ismet Yilmaz, Jayant Deshpande, Vijaya Juturu, Kazim Sahin. Mesozeaxanthin Protects Retina from Oxidative Stress in a Rat Model. Journal of Ocular Pharmacology and Therapeutics 2016; 32(9): 631 doi: 10.1089/jop.2015.0154
|
5 |
V.K.D. Krishnaswamy, Phaniendra Alugoju, Latha Periyasamy. Bioactive Natural Products. Studies in Natural Products Chemistry 2020; 64: 303 doi: 10.1016/B978-0-12-817903-1.00010-3
|
6 |
Ishani Bhat, Undiganalu Gangadharappa Yathisha, Iddya Karunasagar, Bangera Sheshappa Mamatha. Nutraceutical approach to enhance lutein bioavailability via nanodelivery systems. Nutrition Reviews 2020; 78(9): 709 doi: 10.1093/nutrit/nuz096
|
7 |
Naheed Bano, Imran Imran. Carotenoids: Structure and Function in the Human Body. 2021; : 585 doi: 10.1007/978-3-030-46459-2_18
|
8 |
Ioanna Yiannakou, Michelle T Long, Paul F Jacques, Alexa Beiser, Richard T Pickering, Lynn L Moore. Eggs, Dietary Choline, and Nonalcoholic Fatty Liver Disease in the Framingham Heart Study. The Journal of Nutrition 2024; doi: 10.1016/j.tjnut.2024.10.026
|
9 |
Dieudonné M. Dansou, Han Chen, Yanan Yu, Youyou Yang, Isabelle N. Tchana, Liyuan Zhao, Chaohua Tang, Qingyu Zhao, Yuchang Qin, Junmin Zhang. Enrichment efficiency of lutein in eggs and its function in improving fatty liver hemorrhagic syndrome in aged laying hens. Poultry Science 2024; 103(2): 103286 doi: 10.1016/j.psj.2023.103286
|
10 |
Izabela Żółnowska, Aleksandra Gostyńska-Stawna, Maciej Stawny. Molecular mechanisms underlying hepatoprotective activity of lutein in the context of intestinal failure-associated liver disease. Pharmacological Research 2024; 209: 107421 doi: 10.1016/j.phrs.2024.107421
|
11 |
Gou-Chun Chen, Wen-Hung Chen, Kuo-Tang Tseng, Pei-Min Chao. The anti-adiposity effect of bitter melon seed oil is solely attributed to its fatty acid components. Lipids in Health and Disease 2017; 16(1) doi: 10.1186/s12944-017-0578-3
|
12 |
Gaoshuai Zhang, Meijing Zhang, Yiqiao Pei, Kun Qian, Jiao Xie, Qun Huang, Suwen Liu, Na Xue, Yujiao Zu, Hao Wang. Enhancing stability of liposomes using high molecular weight chitosan to promote antioxidative stress effects and lipid-lowering activity of encapsulated lutein in vivo and in vitro. International Journal of Biological Macromolecules 2023; 253: 126564 doi: 10.1016/j.ijbiomac.2023.126564
|
13 |
Doha Reda, Gehad E. Elshopakey, Talat A. Albukhari, Samah J. Almehmadi, Bassem Refaat, Engy F. Risha, Hebatallah A. Mahgoub, Mohamed E. El-Boshy, Fatma M. Abdelhamid. Vitamin D3 alleviates nonalcoholic fatty liver disease in rats by inhibiting hepatic oxidative stress and inflammation via the SREBP-1-c/ PPARα-NF-κB/IR-S2 signaling pathway. Frontiers in Pharmacology 2023; 14 doi: 10.3389/fphar.2023.1164512
|
14 |
|
15 |
Diana M. DiMarco, Maria Luz Fernandez. Differences in response to egg-derived dietary cholesterol result in distinct lipoprotein profiles while plasma concentrations of carotenoids and choline are not affected in a young healthy population. Journal of Agriculture and Food Research 2019; 1: 100014 doi: 10.1016/j.jafr.2019.100014
|
16 |
Laura Inés Elvira-Torales, Gala Martín-Pozuelo, Rocío González-Barrio, Inmaculada Navarro-González, Francisco-José Pallarés, Marina Santaella, Javier García-Alonso, Ángel Sevilla, María Jesús Periago-Castón. Ameliorative Effect of Spinach on Non-Alcoholic Fatty Liver Disease Induced in Rats by a High-Fat Diet. International Journal of Molecular Sciences 2019; 20(7): 1662 doi: 10.3390/ijms20071662
|
17 |
Seyedeh Alia Moosavian, Thozhukat Sathyapalan, Tannaz Jamialahmadi, Amirhossein Sahebkar, Giuseppe Ciccarella. The Emerging Role of Nanomedicine in the Management of Nonalcoholic Fatty Liver Disease: A State-of-the-Art Review. Bioinorganic Chemistry and Applications 2021; 2021: 1 doi: 10.1155/2021/4041415
|
18 |
Lu Wang, Yonghuan Yan, Linfang Wu, Jinyong Peng. Natural products in non-alcoholic fatty liver disease (NAFLD): Novel lead discovery for drug development. Pharmacological Research 2023; 196: 106925 doi: 10.1016/j.phrs.2023.106925
|
19 |
Nevin Sanlier, Dilara Üstün. Egg consumption and health effects: A narrative review. Journal of Food Science 2021; 86(10): 4250 doi: 10.1111/1750-3841.15892
|
20 |
Laura Inés Elvira-Torales, Javier García-Alonso, María Jesús Periago-Castón. Nutritional Importance of Carotenoids and Their Effect on Liver Health: A Review. Antioxidants 2019; 8(7): 229 doi: 10.3390/antiox8070229
|
21 |
Huan Yan, Maierheba Kuerbanjiang, Dina Muheyati, Zhong Yang, Jia Han. Wheat bran oil ameliorates high-fat diet-induced obesity in rats with alterations in gut microbiota and liver metabolite profile. Nutrition & Metabolism 2024; 21(1) doi: 10.1186/s12986-024-00861-5
|
22 |
Ishani Bhat, Nimmy Mol Jose, Bangera Sheshappa Mamatha. Oxidative stability of lutein on exposure to varied extrinsic factors. Journal of Food Science and Technology 2023; 60(3): 987 doi: 10.1007/s13197-022-05430-3
|
23 |
Tanmoy Banerjee, Arnab Sarkar, Sk Zeeshan Ali, Rudranil Bhowmik, Sanmoy Karmakar, Amit Kumar Halder, Nilanjan Ghosh. Bioprotective Role of Phytocompounds Against the Pathogenesis of Non-alcoholic Fatty Liver Disease to Non-alcoholic Steatohepatitis: Unravelling Underlying Molecular Mechanisms. Planta Medica 2024; 90(09): 675 doi: 10.1055/a-2277-4805
|
24 |
Krista Christensen, Thomas Lawler, Julie Mares. Dietary Carotenoids and Non-Alcoholic Fatty Liver Disease among US Adults, NHANES 2003–2014. Nutrients 2019; 11(5): 1101 doi: 10.3390/nu11051101
|
25 |
Xiaofeng Wang, Myoungjin Son, Chalamaiah Meram, Jianping Wu. Mechanism and Potential of Egg Consumption and Egg Bioactive Components on Type-2 Diabetes. Nutrients 2019; 11(2): 357 doi: 10.3390/nu11020357
|
26 |
Rodica Mărgăoan, Mihaiela Cornea-Cipcigan. Pollen Chemistry & Biotechnology. 2023; : 147 doi: 10.1007/978-3-031-47563-4_8
|
27 |
Robin D. Clugston. Carotenoids and fatty liver disease: Current knowledge and research gaps. Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids 2020; 1865(11): 158597 doi: 10.1016/j.bbalip.2019.158597
|
28 |
Silvio Buscemi, Davide Corleo, Francesco Di Pace, Maria Letizia Petroni, Angela Satriano, Giulio Marchesini. The Effect of Lutein on Eye and Extra-Eye Health. Nutrients 2018; 10(9): 1321 doi: 10.3390/nu10091321
|
29 |
Raghunandan Purohith, Nagendra P.M. Nagalingaswamy, Nanjunda S. Shivananju. Dietary Carotenoids in Managing Metabolic Syndrome and Role of PPARs in the Process. Current Nutrition & Food Science 2020; 16(6): 846 doi: 10.2174/1573401315666190619111557
|
30 |
Tushar Madaan, Andleeb Nikhat Choudhary, Suman Gyenwalee, Shindu Thomas, Harshita Mishra, Mohammad Tariq, Divya Vohora, Sushama Talegaonkar. Lutein, a versatile phyto-nutraceutical: An insight on pharmacology, therapeutic indications, challenges and recent advances in drug delivery. PharmaNutrition 2017; 5(2): 64 doi: 10.1016/j.phanu.2017.02.005
|
31 |
Sowmya Shree Gopal, Shinde Vijay Sukhdeo, Baskaran Vallikannan, Ganesan Ponesakki. Lutein ameliorates high‐fat diet‐induced obesity, fatty liver, and glucose intolerance in C57BL/6J mice. Phytotherapy Research 2023; 37(1): 329 doi: 10.1002/ptr.7615
|
32 |
Meihong Liu, Huimin Liu, Jiahan Xie, Qian Xu, Cong Pan, Jiaojiao Wang, Xi Wu, Sanabil Sanabil, Mingzhu Zheng, Jingsheng Liu. Anti-obesity effects of zeaxanthin on 3T3-L1 preadipocyte and high fat induced obese mice. Food & Function 2017; 8(9): 3327 doi: 10.1039/C7FO00486A
|
33 |
Tuanhui Ren, Wujian Lin, Shizi He, Xiuxian Yang, Mingjian Xian, Zihao Zhang, Wen Luo, Qinghua Nie, Xiquan Zhang. Integrative Analysis of Metabolomic and Transcriptomic Data Reveals the Antioxidant Potential of Dietary Lutein in Chickens. Frontiers in Veterinary Science 2022; 9 doi: 10.3389/fvets.2022.906853
|
34 |
Fatemeh Hajizadeh-Sharafabad, Ali Tarighat-Esfanjani, Zohreh Ghoreishi, Mehrnoosh Sarreshtedari. Lutein supplementation combined with a low-calorie diet in middle-aged obese individuals: effects on anthropometric indices, body composition and metabolic parameters. British Journal of Nutrition 2021; 126(7): 1028 doi: 10.1017/S0007114520004997
|
35 |
Yiming Cao, Xiaoxue Fang, Mingyang Sun, Yegang Zhang, Mengyao Shan, Xintian Lan, Difu Zhu, Haoming Luo. Preventive and therapeutic effects of natural products and herbal extracts onnonalcoholic fatty liver disease/nonalcoholic steatohepatitis. Phytotherapy Research 2023; 37(9): 3867 doi: 10.1002/ptr.7932
|
36 |
Elisa Balboa, Faride Saud, Claudia Parra-Ruiz, Marjorie de la Fuente, Glauben Landskron, Silvana Zanlungo. Exploring the lutein therapeutic potential in steatotic liver disease: mechanistic insights and future directions. Frontiers in Pharmacology 2024; 15 doi: 10.3389/fphar.2024.1406784
|
37 |
Jie Mu, Xueqian Wang, Qingguo Wang, Fafeng Cheng, Wenxiang Zhu, Changxiang Li, Chongyang Ma, Changming Zhai, Yajun Lian, Xin Du. Molecular mechanism of non-alcoholic fatty liver disease induced and aggravated by chronic stress through HSL/ATGL-FFA which promotes fat mobilization. Journal of Traditional Chinese Medical Sciences 2019; 6(4): 315 doi: 10.1016/j.jtcms.2019.08.001
|
38 |
Fatemeh Hajizadeh-Sharafabad, Zohreh Ghoreishi, Vahid Maleki, Ali Tarighat-Esfanjani. Mechanistic insights into the effect of lutein on atherosclerosis, vascular dysfunction, and related risk factors: A systematic review of in vivo, ex vivo and in vitro studies. Pharmacological Research 2019; 149: 104477 doi: 10.1016/j.phrs.2019.104477
|
39 |
Ishani Bhat, Bangera Sheshappa Mamatha. Genetic factors involved in modulating lutein bioavailability. Nutrition Research 2021; 91: 36 doi: 10.1016/j.nutres.2021.04.007
|
40 |
Erika Ortega-Hernández, Marilena Antunes-Ricardo, Daniel A. Jacobo-Velázquez. Improving the Health-Benefits of Kales (Brassica oleracea L. var. acephala DC) through the Application of Controlled Abiotic Stresses: A Review. Plants 2021; 10(12): 2629 doi: 10.3390/plants10122629
|
41 |
Suli Zhao, Yebing Zhang, Haoyue Ding, Shouna Hu, Xiaoqing Wu, Aiguo Ma, Yan Ma. Lutein Prevents Liver Injury and Intestinal Barrier Dysfunction in Rats Subjected to Chronic Alcohol Intake. Nutrients 2023; 15(5): 1229 doi: 10.3390/nu15051229
|
42 |
Huimin Liu, Jie Yan, Fengtao Guan, Zhibo Jin, Jiahan Xie, Chongrui Wang, Meihong Liu, Jingsheng Liu. Zeaxanthin prevents ferroptosis by promoting mitochondrial function and inhibiting the p53 pathway in free fatty acid-induced HepG2 cells. Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids 2023; 1868(4): 159287 doi: 10.1016/j.bbalip.2023.159287
|
43 |
Ning Wang, Dongxia Wang, Gang Luo, Juan Zhou, Ziyi Tan, Yatan Du, Huihui Xie, Liegang Liu, Xuefeng Yang, Liping Hao. Lutein attenuates excessive lipid accumulation in differentiated 3T3-L1 cells and abdominal adipose tissue of rats by the SIRT1-mediated pathway. The International Journal of Biochemistry & Cell Biology 2021; 133: 105932 doi: 10.1016/j.biocel.2021.105932
|
44 |
Laura Inés Elvira-Torales, Inmaculada Navarro-González, Joaquín Rodrigo-García, Juan Seva, Javier García-Alonso, María Jesús Periago-Castón. Consumption of Spinach and Tomato Modifies Lipid Metabolism, Reducing Hepatic Steatosis in Rats. Antioxidants 2020; 9(11): 1041 doi: 10.3390/antiox9111041
|
45 |
Jing Cheng, Dong Liu, Jiang Zhao, Xiang Li, Yong Yan, Zijian Wu, Hao Wang, Chengtao Wang. Lutein attenuates oxidative stress and inhibits lipid accumulation in free fatty acids-induced HepG2 cells by activating the AMPK pathway. Journal of Functional Foods 2019; 60: 103445 doi: 10.1016/j.jff.2019.103445
|
46 |
Pengyu Yao, Yajuan Liu. Terpenoids: Natural Compounds for Non-Alcoholic Fatty Liver Disease (NAFLD) Therapy. Molecules 2022; 28(1): 272 doi: 10.3390/molecules28010272
|
47 |
Farouk K. El-Baz, Abeer Salama, Sami I. Ali, Rania Elgohary, Atef M. Al Attar. Haematococcus pluvialis Carotenoids Enrich Fractions Ameliorate Liver Fibrosis Induced by Thioacetamide in Rats: Modulation of Metalloproteinase and Its Inhibitor. BioMed Research International 2021; 2021: 1 doi: 10.1155/2021/6631415
|
48 |
Chen Chen, Zhonghai Lu, Dongfeng Zhang, Suyun Li. The Mediation Role of the Risk of Non-Alcoholic Fatty Liver Disease in Relationship between Lutein and Zeaxanthin and Cognitive Functions among Older Adults in the United States. Nutrients 2022; 14(3): 578 doi: 10.3390/nu14030578
|
49 |
Kening Zhang, Yan Xu, Nan Zhang, Xi Liang, Huaqi Zhang, Hui Liang. Association of the Composite Dietary Antioxidant Index and Consumption Time with NAFLD: The U.S. National Health and Nutrition Examination Survey, 2017–2020. Nutrients 2024; 16(20): 3556 doi: 10.3390/nu16203556
|
50 |
Ana Gabriela Murillo, David Aguilar, Gregory H Norris, Diana M DiMarco, Amanda Missimer, Siqi Hu, Joan A Smyth, Sarah Gannon, Christopher N Blesso, Yangchao Luo, Maria Luz Fernandez. Compared with Powdered Lutein, a Lutein Nanoemulsion Increases Plasma and Liver Lutein, Protects against Hepatic Steatosis, and Affects Lipoprotein Metabolism in Guinea Pigs. The Journal of Nutrition 2016; 146(10): 1961 doi: 10.3945/jn.116.235374
|
51 |
Ana Murillo, Diana DiMarco, Maria Fernandez. The Potential of Non-Provitamin A Carotenoids for the Prevention and Treatment of Non-Alcoholic Fatty Liver Disease. Biology 2016; 5(4): 42 doi: 10.3390/biology5040042
|
52 |
Ji Ye Lim, Chun Liu, Kang-Quan Hu, Donald E. Smith, Xiang-Dong Wang. Ablation of carotenoid cleavage enzymes (BCO1 and BCO2) induced hepatic steatosis by altering the farnesoid X receptor/miR-34a/sirtuin 1 pathway. Archives of Biochemistry and Biophysics 2018; 654: 1 doi: 10.1016/j.abb.2018.07.007
|
53 |
Yu Wang, Mingcong Fan, Haifeng Qian, Hao Ying, Yan Li, Li Wang. Whole grains-derived functional ingredients against hyperglycemia: targeting hepatic glucose metabolism. Critical Reviews in Food Science and Nutrition 2024; 64(20): 7268 doi: 10.1080/10408398.2023.2183382
|
54 |
Hang Zhang, Li Li, Lei Jia, Jinchun Liu. Association between carotenoid intake and metabolic dysfunction-associated fatty liver disease among US adults: A cross-sectional study. Medicine 2023; 102(51): e36658 doi: 10.1097/MD.0000000000036658
|