For: | Lotowska JM, Sobaniec-Lotowska ME, Bockowska SB, Lebensztejn DM. Pediatric non-alcoholic steatohepatitis: The first report on the ultrastructure of hepatocyte mitochondria. World J Gastroenterol 2014; 20(15): 4335-4340 [PMID: 24764670 DOI: 10.3748/wjg.v20.i15.4335] |
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URL: | https://www.wjgnet.com/1007-9327/full/v20/i15/4335.htm |
Number | Citing Articles |
1 |
Lauren E. Panny, Ashley E. Piper, Christina L. Gardner, Crystal W. Burke. Formalin and 2.5% Glutaraldehyde/2% Paraformaldehyde in 0.1 M Cacodylate Buffer Inactivation Protocols to Ensure the Proper Fixation of Positive Sense RNA Viruses and Genomic Material Prior to Removal from Containment. Methods and Protocols 2024; 7(6): 105 doi: 10.3390/mps7060105
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2 |
Zheng Yao, Jia Guo, Bing Du, Li Hong, Ying Zhu, Xiaoyi Feng, Yuanlu Hou, Anhua Shi. Effects of Shenling Baizhu powder on intestinal microflora metabolites and liver mitochondrial energy metabolism in nonalcoholic fatty liver mice. Frontiers in Microbiology 2023; 14 doi: 10.3389/fmicb.2023.1147067
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3 |
Jay H. Lefkowitch. Clinical Dilemmas in Non‐Alcoholic Fatty Liver Disease. 2016; : 36 doi: 10.1002/9781118924938.ch5
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4 |
Yasushi Horai, Hiroyuki Utsumi, Yuko Ono, Toshimitsu Kishimoto, Yuuichi Ono, Atsushi Fukunari. Pathological characterization and morphometric analysis of hepatic lesions in SHRSP5/Dmcr, an experimental non‐alcoholic steatohepatitis model, induced by high‐fat and high‐cholesterol diet. International Journal of Experimental Pathology 2016; 97(1): 75 doi: 10.1111/iep.12169
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5 |
Katarzyna J. Siemienowicz, Panagiotis Filis, Jennifer Thomas, Paul A. Fowler, W. Colin Duncan, Mick T. Rae. Hepatic Mitochondrial Dysfunction and Risk of Liver Disease in an Ovine Model of “PCOS Males”. Biomedicines 2022; 10(6): 1291 doi: 10.3390/biomedicines10061291
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6 |
Tatsuya Yamada, Daisuke Murata, Yoshihiro Adachi, Kie Itoh, Shoichiro Kameoka, Atsushi Igarashi, Takashi Kato, Yoichi Araki, Richard L. Huganir, Ted M. Dawson, Toru Yanagawa, Koji Okamoto, Miho Iijima, Hiromi Sesaki. Mitochondrial Stasis Reveals p62-Mediated Ubiquitination in Parkin-Independent Mitophagy and Mitigates Nonalcoholic Fatty Liver Disease. Cell Metabolism 2018; 28(4): 588 doi: 10.1016/j.cmet.2018.06.014
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7 |
Kristin S. Bramlage, Jashdeep Bhattacharjee, Michelle Kirby, Andriy Myronovych, Rohun Gupta, Rosa‐Maria Salazar Gonzalez, Stavra Xanthakos, Kevin Bove, Rohit Kohli. A Diet High in Fat and Fructose Induces Early Hepatic Mitochondrial Aging. Journal of Pediatric Gastroenterology and Nutrition 2021; 73(1): 99 doi: 10.1097/MPG.0000000000003068
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8 |
Yukina Takeichi, Takashi Miyazawa, Shohei Sakamoto, Yuki Hanada, Lixiang Wang, Kazuhito Gotoh, Keiichiro Uchida, Shunsuke Katsuhara, Ryuichi Sakamoto, Takaya Ishihara, Keiji Masuda, Naotada Ishihara, Masatoshi Nomura, Yoshihiro Ogawa. Non-alcoholic fatty liver disease in mice with hepatocyte-specific deletion of mitochondrial fission factor. Diabetologia 2021; 64(9): 2092 doi: 10.1007/s00125-021-05488-2
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9 |
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10 |
Mohamed Elbadawy, Kiwamu Tanabe, Haru Yamamoto, Yusuke Ishihara, Maria Mochizuki, Amira Abugomaa, Hideyuki Yamawaki, Masahiro Kaneda, Tatsuya Usui, Kazuaki Sasaki. Evaluation of the efficacy of mitochondrial fission inhibitor (Mdivi-1) using non-alcoholic steatohepatitis (NASH) liver organoids. Frontiers in Pharmacology 2023; 14 doi: 10.3389/fphar.2023.1243258
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11 |
Diletta Overi, Guido Carpino, Antonio Franchitto, Paolo Onori, Eugenio Gaudio. Hepatocyte Injury and Hepatic Stem Cell Niche in the Progression of Non-Alcoholic Steatohepatitis. Cells 2020; 9(3): 590 doi: 10.3390/cells9030590
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12 |
Marta Flisiak-Jackiewicz, Anna Bobrus-Chociej, Eugeniusz Tarasów, Małgorzata Wojtkowska, Irena Białokoz-Kalinowska, Dariusz Marek Lebensztejn. Predictive Role of Interleukin-18 in Liver Steatosis in Obese Children. Canadian Journal of Gastroenterology and Hepatology 2018; 2018: 1 doi: 10.1155/2018/3870454
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13 |
Irina V. Dokukina, Mikhail V. Yamashev, Ekaterina A. Samarina, Oksana M. Tilinova, Eugene A. Grachev. Calcium-dependent insulin resistance in hepatocytes: mathematical model. Journal of Theoretical Biology 2021; 522: 110684 doi: 10.1016/j.jtbi.2021.110684
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14 |
Ashok Mandala, Rachel C. Janssen, Sirish Palle, Kevin R. Short, Jacob E. Friedman. Pediatric Non-Alcoholic Fatty Liver Disease: Nutritional Origins and Potential Molecular Mechanisms. Nutrients 2020; 12(10): 3166 doi: 10.3390/nu12103166
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15 |
Fengyun Wen, Zhuoyan Shi, Xiaoping Liu, Yuguang Tan, Lan Wei, Xuemin Zhu, Hui Zhang, Xiaohuan Zhu, Xiangmiao Meng, Weixia Ji, Mengting Yang, Zhaoxuan Lu. Acute Elevated Resistin Exacerbates Mitochondrial Damage and Aggravates Liver Steatosis Through AMPK/PGC-1α Signaling Pathway in Male NAFLD Mice. Hormone and Metabolic Research 2021; 53(02): 132 doi: 10.1055/a-1293-8250
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16 |
Jorge Gutiérrez-Cuevas, Silvia Lucano-Landeros, Daniel López-Cifuentes, Arturo Santos, Juan Armendariz-Borunda. Epidemiologic, Genetic, Pathogenic, Metabolic, Epigenetic Aspects Involved in NASH-HCC: Current Therapeutic Strategies. Cancers 2022; 15(1): 23 doi: 10.3390/cancers15010023
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17 |
Nadia F. Hassan, Gehan M. Soliman, Ebtsam F. Okasha, Amany M. Shalaby. Histological, Immunohistochemical and Biochemical Study of Experimentally Induced Fatty Liver in Adult Male Albino Rat and the Possible Protective Role of Pomegranate. Journal of Microscopy and Ultrastructure 2017; doi: 10.1016/j.jmau.2017.04.001
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18 |
Mariana Joaquim, Mafalda Escobar-Henriques. Role of Mitofusins and Mitophagy in Life or Death Decisions. Frontiers in Cell and Developmental Biology 2020; 8 doi: 10.3389/fcell.2020.572182
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19 |
Yijin Wang, Fengmin Lu, Jingmin Zhao. Reply to: Correspondence relating to “SARS-CoV-2 infection of the liver directly contributes to hepatic impairment in patients with COVID-19”. Journal of Hepatology 2020; 73(4): 996 doi: 10.1016/j.jhep.2020.06.028
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20 |
Hai-Tao Zhang, Jing-Hui Xue, Zhi-Wen Zhang, Hai-Bo Kong, Ai-Jun Liu, Shou-Chun Li, Dong-Gang Xu. Cold-inducible RNA-binding protein inhibits neuron apoptosis through the suppression of mitochondrial apoptosis. Brain Research 2015; 1622: 474 doi: 10.1016/j.brainres.2015.07.004
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21 |
Heba Fikry, Lobna A. Saleh, Doaa Ramadan Sadek, Hadwa Ali Abd Alkhalek. The possible protective effect of luteolin on cardiovascular and hepatic changes in metabolic syndrome rat model. Cell and Tissue Research 2025; 399(1): 27 doi: 10.1007/s00441-024-03927-1
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22 |
Stepheny C. de Campos Zani, Emily Berg, Xu Jiang, Alexandra Knox, Evan Ackroyd, Aaron Getachew, Jianping Wu, Catherine B. Chan. IRW improves diet-induced non-alcoholic fatty liver disease by reducing steatosis associated with increased capacity for oxidative phosphorylation. Journal of Functional Foods 2024; 112: 105976 doi: 10.1016/j.jff.2023.105976
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23 |
Helmut Denk, Peter M. Abuja, Kurt Zatloukal. Animal models of NAFLD from the pathologist's point of view. Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease 2019; 1865(5): 929 doi: 10.1016/j.bbadis.2018.04.024
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24 |
Pauline Verhaegh, Eddie Wisse, Toon de Munck, Jan Willem Greve, Joanne Verheij, Robert Riedl, Hans Duimel, Ad Masclee, Daisy Jonkers, Ger Koek. Electron microscopic observations in perfusion-fixed human non-alcoholic fatty liver disease biopsies. Pathology 2021; 53(2): 220 doi: 10.1016/j.pathol.2020.07.018
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25 |
Silvia Sookoian, Diego Flichman, Romina Scian, Cristian Rohr, Hernán Dopazo, Tomas Fernández Gianotti, Julio San Martino, Gustavo O Castaño, Carlos J Pirola. Mitochondrial genome architecture in non-alcoholic fatty liver disease. The Journal of Pathology 2016; 240(4): 437 doi: 10.1002/path.4803
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26 |
Santosh Kumar, Qihua Duan, Rongxue Wu, Edward N. Harris, Qiaozhu Su. Pathophysiological communication between hepatocytes and non-parenchymal cells in liver injury from NAFLD to liver fibrosis. Advanced Drug Delivery Reviews 2021; 176: 113869 doi: 10.1016/j.addr.2021.113869
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27 |
Kensaku Fukunaga, Asahiro Morishita, Hitomi Imachi, Kyoko Oura, Seisuke Sato, Toshihiro Kobayashi, Takanobu Saheki, Takafumi Yoshimura, Kurumi Komori, Mai Nakahara, Tomoko Tadokoro, Koji Fujita, Joji Tani, Hideki Kobara, Koji Murao. Efficacy of imeglimin in patients with type 2 diabetes mellitus complicated by metabolic dysfunction‐associated steatotic liver disease: A multicentre study. Diabetes, Obesity and Metabolism 2025; 27(3): 1498 doi: 10.1111/dom.16157
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28 |
Yuan Li, Jing Wu, Min Yang, Lisi Wei, Hongkun Wu, Qinyi Wang, Hui Shi. Physiological evidence of mitochondrial permeability transition pore opening caused by lipid deposition leading to hepatic steatosis in db/db mice. Free Radical Biology and Medicine 2021; 162: 523 doi: 10.1016/j.freeradbiomed.2020.11.009
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29 |
Joanna Maria Lotowska, Maria Elzbieta Sobaniec-Lotowska, Dariusz Marek Lebensztejn. Ultrastructural characteristics of the respective forms of hepatic stellate cells in chronic hepatitis B as an example of high fibroblastic cell plasticity. The first assessment in children. Advances in Medical Sciences 2018; 63(1): 127 doi: 10.1016/j.advms.2017.09.002
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30 |
Peter R. Baker, Jacob E. Friedman. Mitochondrial role in the neonatal predisposition to developing nonalcoholic fatty liver disease. Journal of Clinical Investigation 2018; 128(9): 3692 doi: 10.1172/JCI120846
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31 |
Joanna Maria Łotowska, Maria Elżbieta Sobaniec-Łotowska, Anna Bobrus-Chociej, Piotr Sobaniec. The Ultrastructure of Hepatic Stellate Cell–Macrophage Intercellular Crosstalk as a New Morphological Insight into Phenomenon of Fibrogenesis in Pediatric Autoimmune Hepatitis. Journal of Clinical Medicine 2023; 12(3): 1024 doi: 10.3390/jcm12031024
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