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"Yasuko Iwakiri"

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"Yasuko Iwakiri"

Editorial

Liver fibrosis, cirrhosis, and portal hypertension

Citations

Citations to this article as recorded by  Crossref logo
  • Liver Sinusoidal Endothelial Cells in the Regulation of Immune Responses and Fibrosis in Metabolic Dysfunction-Associated Fatty Liver Disease
    Munish Puri, Snehal Sonawane
    International Journal of Molecular Sciences.2025; 26(9): 3988.     CrossRef
  • From cooperation to collapse: systemic failure in liver disease through a sociological lens
    Junyu Wang, Jingting Lei, Martin C. Harmsen, Han Moshage
    Exploration of Digestive Diseases.2025;[Epub]     CrossRef
  • Inflammation and immunity in liver homeostasis and disease: a nexus of hepatocytes, nonparenchymal cells and immune cells
    Enis Kostallari, Robert F. Schwabe, Adrien Guillot
    Cellular & Molecular Immunology.2025; 22(10): 1205.     CrossRef
  • Correspondence to editorial on “Liver sinusoidal endothelial cell: An important yet often overlooked player in the liver fibrosis”
    Jiaorong Qu, Le Wang, Xiaojiaoyang Li
    Clinical and Molecular Hepatology.2024; 30(4): 1002.     CrossRef
  • Exploring the Role of Peroxisome Proliferator-Activated Receptors and Endothelial Dysfunction in Metabolic Dysfunction-Associated Steatotic Liver Disease
    Ana Paula Madariaga Traconis, Misael Uribe-Esquivel, Varenka Julieta Barbero Becerra
    Cells.2024; 13(24): 2055.     CrossRef
  • 7,698 View
  • 119 Download
  • Crossref

Special topic: Alcoholic liver diseases
The 14th International Symposium on Alcoholic Liver and Pancreatic Diseases and Cirrhosis (ISALPDC)

Alcohol-related liver disease

The lymphatic system in alcohol-associated liver disease
Reiichiro Kondo, Yasuko Iwakiri
Clin Mol Hepatol 2020;26(4):633-638.
Published online September 21, 2020
DOI: https://doi.org/10.3350/cmh.2020.0179
The lymphatic system plays vital roles in interstitial fluid balance and immune cell surveillance. The effect of alcohol on the lymphatic system is poorly understood. This review article explores the role of the lymphatic system in the pathogenesis of alcohol-related disease including alcoholic liver disease (ALD) and the therapeutic potential of targeting hepatic lymphatics for the treatment of ALD.

Citations

Citations to this article as recorded by  Crossref logo
  • Hepatic Lymphatic System and Its Current Understanding in Liver-Related Pathophysiology
    Jingjing Pang, Jianan Zhao, Liam Flynn, Juncheng Wei, Long Nguyen Hoang Do, Esteban Delgado, Xiaolei Liu
    Lymphatics.2026; 4(1): 5.     CrossRef
  • Inflammation and immunity in liver homeostasis and disease: a nexus of hepatocytes, nonparenchymal cells and immune cells
    Enis Kostallari, Robert F. Schwabe, Adrien Guillot
    Cellular & Molecular Immunology.2025; 22(10): 1205.     CrossRef
  • Characterization of prokineticin system in Crohn's disease pathophysiology and pain, and its modulation by alcohol abuse: A preclinical study
    Giada Amodeo, Giulia Galimberti, Paola Sacerdote, Silvia Franchi
    Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease.2023; 1869(7): 166791.     CrossRef
  • Endotheliopathy of liver sinusoidal endothelial cells in liver disease
    Reiichiro Kondo, Yasuko Iwakiri, Masayoshi Kage, Hirohisa Yano
    Pathology International.2023; 73(9): 381.     CrossRef
  • Translational Value of Tumor-Associated Lymphangiogenesis in Cholangiocarcinoma
    Massimiliano Cadamuro, Adriana Romanzi, Maria Guido, Samantha Sarcognato, Umberto Cillo, Enrico Gringeri, Giacomo Zanus, Mario Strazzabosco, Paolo Simioni, Erica Villa, Luca Fabris
    Journal of Personalized Medicine.2022; 12(7): 1086.     CrossRef
  • 15,497 View
  • 170 Download
  • 4 Web of Science
  • Crossref
Reviews

Liver fibrosis, cirrhosis, and portal hypertension

Nitric oxide in liver fibrosis: The role of inducible nitric oxide synthase
Yasuko Iwakiri
Clin Mol Hepatol 2015;21(4):319-325.
Published online December 24, 2015
DOI: https://doi.org/10.3350/cmh.2015.21.4.319

The inducible form of nitric oxide synthase (iNOS) is expressed in hepatic cells in pathological conditions. Its induction is involved in the development of liver fibrosis, and thus iNOS could be a therapeutic target for liver fibrosis. This review summarizes the role of iNOS in liver fibrosis, focusing on 1) iNOS biology, 2) iNOS-expressing liver cells, 3) iNOS-related therapeutic strategies, and 4) future directions.

Citations

Citations to this article as recorded by  Crossref logo
  • Illuminating liver fibrosis: recent progress in the design and applications of highly sensitive fluorescent probes
    Yutong Lv, Zhe Ma, Yue Chong, Zhenlong Wang, Li Xue, Fu Wang
    Materials Horizons.2026; 13(1): 67.     CrossRef
  • Spermidine‐Based Carbon Quantum Dots Alleviate Liver Sinusoidal Endothelial Dysfunction by Inducing LSEC‐Derived NO to Ameliorate Hepatic Fibrosis and Portal Hypertension
    Jin‐Bo Zhao, Gu‐Qing Luo, Zheng‐Hao Wu, Jia‐Yun Lin, Chi‐Hao Zhang, Guang‐Bo Wu, Qiang Fan, Xiao‐Liang Qi, Hai‐Zhong Huo, Ji‐Wei Yu, Hong‐Jie Li, Meng Luo, Lei Zheng
    Advanced Healthcare Materials.2026;[Epub]     CrossRef
  • Metformin is associated with the suppression of the TNF-α/iNOS/TIMP-1 axis-mediated liver injury and fibrosis secondary to diabetes
    Hind Zafrah, Saif A. Alqahtani, Fahaid Al-Hashem, Bahjat Al-Ani, Nourah M. Alzamil
    Tissue and Cell.2026; 101: 103425.     CrossRef
  • Toxicity and Hepatoprotective Effects of ZnO Nanoparticles on Normal and High-Fat Diet-Fed Rat Livers: Mechanism of Action
    Fatemeh Mirzaei, Ebrahim Abbasi, Amir Mirzaei, Nashmin Fayazi Hosseini, Nima Naseri, Iraj Khodadadi, Cyrus Jalili, Nesrine Majdoub
    Biological Trace Element Research.2025; 203(1): 199.     CrossRef
  • Key role of macrophages in the progression of hepatic fibrosis
    Jinqiu Ran, Shengxia Yin, Rahma Issa, Qianwen Zhao, Guangqi Zhu, Huan Zhang, Qun Zhang, Chao Wu, Jie Li
    Hepatology Communications.2025;[Epub]     CrossRef
  • Exploring Extracellular Vesicles: A Novel Approach in Nonalcoholic Fatty Liver Disease
    Andrea del Pilar Abreo Medina, Mengdie Shi, Yanyan Wang, Zhongyu Wang, Kehe Huang, Yunhuan Liu
    Journal of Agricultural and Food Chemistry.2025; 73(5): 2717.     CrossRef
  • Sinusoidal communication in chronic liver disease
    Albert Gibert-Ramos, María Andrés-Rozas, Raül Pastó, Pablo Alfaro-Retamero, Sergi Guixé-Muntet, Jordi Gracia-Sancho
    Clinical and Molecular Hepatology.2025; 31(1): 32.     CrossRef
  • The role of liver sinusoidal endothelial cells in metabolic dysfunction-associated steatotic liver diseases and liver cancer: mechanisms and potential therapies
    Hanjun Mo, Pengfei Yue, Qiaoqi Li, Yinxi Tan, Xinran Yan, Xinyue Liu, Yuanwei Xu, Yingzhe Luo, Suruiya Palihati, Cheng Yi, Hua Zhang, Minlan Yuan, Biao Yang
    Angiogenesis.2025;[Epub]     CrossRef
  • Lipid Dysmetabolism in Canine Chronic Liver Disease: Relationship Between Clinical, Histological and Immunohistochemical Features
    Verena Habermaass, Yuki Takami, Takeshi Izawa, Francesca Abramo, Corrado Biolatti, Veronica Marchetti
    Veterinary Sciences.2025; 12(3): 220.     CrossRef
  • Propolis-loaded/dextrose˗coated bilosomes for enhanced protection against CCl4-induced liver injury: In vitro and in vivo assessments
    Reham Mokhtar Aman, Randa Ahmed Zaghloul, Noha Mohamed Saleh
    Journal of Drug Delivery Science and Technology.2025; 107: 106756.     CrossRef
  • Recent Progress in Small Molecule Fluorescent Probes for Imaging and Diagnosis of Liver Injury
    Shuo Liu, Fei Huang, Xinyi Huang, Fuxin Zhang, Dong Pei, Jinlong Zhang, Jun Hai
    Targets.2025; 3(2): 18.     CrossRef
  • Research Progress on Anti-fibrotic Effects and Mechanisms of Tetrandrine
    Ping Ma, Yu-ju Cai, Hui Dong, Ruo-lan Dong
    Chinese Journal of Integrative Medicine.2025; 31(9): 837.     CrossRef
  • The natural compounds derived from the plant Moquiniastrum polymorphum subsp. polymorphum prevent and treat liver fibrosis in vivo by reducing inflammation and fibrotic markers
    Matheus Scherer Bastos, Kétlin Fernanda Rodrigues, Maria Claudia Rosa Garcia, Carolina Luft, Giovana Vivan Tonial, Giovanna Mezzomo Pavanato, Leandro Vieira Astarita, Barbara Bettanin Gatti, Fábio Luiz Dal Moro Maito, Eliane Romanato Santarém, J.R. de Oli
    Toxicon.2025; 264: 108436.     CrossRef
  • Levistilide A attenuates carbon tetrachloride (CCl4)-induced liver fibrosis by inhibiting the NF-κB/iNOS/NO signalling pathway in M1 macrophages
    Rui Zeng, Liu Shen, Tingjie Ye, Wei Xu, Kai Huang, Fengjun Qiu, Chenghai Liu, Xudong Hu
    Journal of Ethnopharmacology.2025; 351: 120074.     CrossRef
  • Molecular Imaging Probes for Early Detection and Staging of Liver Fibrosis
    Xiuqi Hu, Mengdan Xu, Xiao Xiao, Ning Wang, Qianqian Zhang, Jianxian Ge, Jianfeng Zeng
    Chemical & Biomedical Imaging.2025; 3(11): 702.     CrossRef
  • Stearidonic Acid-Enriched Buglossoides arvensis Oil Alleviates High-Fat Diet-Induced Hepatic Lipid Accumulation and Inflammation via AMPK/SIRT1 Activation in Rats
    Mak-Soon Lee, Bohyeon Kim, Jumi Lee, Yejie Cho, In-Hwan Kim, Yangha Kim
    The Journal of Nutrition.2025; 155(10): 3401.     CrossRef
  • Lawsone can suppress liver fibrosis by inhibition of YAP signaling and induction of CYGB expression in hepatic stellate cells
    Atsuko Daikoku, Tsutomu Matsubara, Misako Sato-Matsubara, Miku Ando, Chiho Kadono, Sayuri Takada, Naoshi Odagiri, Hideto Yuasa, Hayato Urushima, Katsutoshi Yoshizato, Norifumi Kawada, Kazuo Ikeda
    Biomedicine & Pharmacotherapy.2025; 191: 118520.     CrossRef
  • SIRT1 in Aging and Diseases
    Altaf A. Abdulkhaliq, Glowi Alasiri, Johra Khan, Amir Ajoolabady, Jaakko Tuomilehto, Nils Henninger, Suhad Bahijri, Domenico Pratico, Anwar Borai, Bahauddeen M. Alrfaei, Bonglee Kim, Jun Ren
    Journal of Cellular Biochemistry.2025;[Epub]     CrossRef
  • Intravenous Lidocaine Modulates the Perioperative Hepatic Inflammatory Response: Implications for Personalized Medicine in Thoracic Surgery
    Ana Isabel Galve, Ignacio Garutti, Elena Vara, Guillermo González, Gabriel Cusati, Lisa Rancan, Luis Huerta, Javier Casanova, Carlos Simón
    Journal of Personalized Medicine.2025; 15(12): 620.     CrossRef
  • Organelle stress and alterations in interorganelle crosstalk during liver fibrosis
    Saloni Sinha, Nora Hassan, Robert E. Schwartz
    Hepatology.2024; 79(2): 482.     CrossRef
  • Baccharis anomala DC. extract reduces inflammation and attenuates hepatic fibrosis in vivo by decreasing NF-kB and extracellular matrix compounds
    Bruno de Souza Basso, Matheus Scherer Bastos, Géssica Luana Antunes, Lucas Strassburger Matzenbacher, Kétlin Fernanda Rodrigues, Maria Claudia Rosa Garcia, Arieli Cruz de Sousa, Vitor Giancarlo Levorse, Carolina Luft, Giovana Vivan Tonial, Giovanna Mezzom
    Toxicon.2024; 237: 107560.     CrossRef
  • Not just fibrotic: endothelial-derived TGFβ maintains contractile function and lymphatic muscle phenotype during homeostasis
    Miriam Carrillo Diaz de Leon, Keith Keane, Simon Roizes, Shan Liao, Pierre-Yves von der Weid, Matthew Stephens
    American Journal of Physiology-Cell Physiology.2024; 326(1): C269.     CrossRef
  • Thymoquinone protects thioacetamide‐induced chronic liver injury by inhibiting TGF‐β1/Smad3 axis in rats
    Subramanian Raghunandhakumar, Devaraj Ezhilarasan, Karthik Shree Harini
    Journal of Biochemical and Molecular Toxicology.2024;[Epub]     CrossRef
  • Potential i‐Nos/Arg‐1 Switch with NLRP3 and Parasitic Load Down Regulation in Experimental Schistosoma mansoni Infection via Chloroquine Repurposing
    Marwa A. Hasby Saad, Esraa G. El‐Saadi, Dareen A. Ali, Mona M. Watany, Mohammed M. Eid
    Parasite Immunology.2024;[Epub]     CrossRef
  • Bacteroides and NAFLD: pathophysiology and therapy
    Jun Zhang, Jing Zhou, Zheyun He, Hongshan Li
    Frontiers in Microbiology.2024;[Epub]     CrossRef
  • Regulatory disturbances in the dynamical signaling systems of $$Ca^{2+}$$ and NO in fibroblasts cause fibrotic disorders
    Ankit Kothiya, Neeru Adlakha
    Journal of Biological Physics.2024; 50(2): 229.     CrossRef
  • Nitric oxide donor S‐Nitroso‐N‐acetyl penicillamine for hepatic stellate cells to restore quiescence
    Junbao Du, Yin He, Wen Jia, Xiaohua Liang, Quan Kang, Yun He
    Pediatric Discovery.2024;[Epub]     CrossRef
  • Microarray analysis demonstrates up-regulation of the endothelin-1 gene with compensatory down-regulation of the ETA receptor gene in human portal vein
    Nicola E. Owen, Thomas L. Williams, Janet J. Maguire, Rhoda E. Kuc, Emma E. Davenport, Anthony P. Davenport
    Bioscience Reports.2024;[Epub]     CrossRef
  • Delivery Strategy to Enhance the Therapeutic Efficacy of Liver Fibrosis via Nanoparticle Drug Delivery Systems
    Jie Liu, Jinhu Liu, Weiwei Mu, Qingping Ma, Xiangyu Zhai, Bin Jin, Yongjun Liu, Na Zhang
    ACS Nano.2024; 18(32): 20861.     CrossRef
  • Correspondence to editorial on “Liver sinusoidal endothelial cell: An important yet often overlooked player in the liver fibrosis”
    Jiaorong Qu, Le Wang, Xiaojiaoyang Li
    Clinical and Molecular Hepatology.2024; 30(4): 1002.     CrossRef
  • Lipocalin‐2 activates hepatic stellate cells and promotes nonalcoholic steatohepatitis in high‐fat diet–fed Ob/Ob mice
    Kyung Eun Kim, Jaewoong Lee, Hyun Joo Shin, Eun Ae Jeong, Hye Min Jang, Yu Jeong Ahn, Hyeong Seok An, Jong Youl Lee, Meong Cheol Shin, Soo Kyoung Kim, Won Gi Yoo, Won Ho Kim, Gu Seob Roh
    Hepatology.2023; 77(3): 888.     CrossRef
  • (Poly)phenols and nitrolipids: Relevant participants in nitric oxide metabolism
    César G. Fraga, Andrés Trostchansky, Barbara S. Rocha, João Laranjinha, Homero Rubbo, Monica Galleano
    Molecular Aspects of Medicine.2023; 89: 101158.     CrossRef
  • The evolving role of liver sinusoidal endothelial cells in liver health and disease
    Matthew J. McConnell, Enis Kostallari, Samar H. Ibrahim, Yasuko Iwakiri
    Hepatology.2023; 78(2): 649.     CrossRef
  • Nanodrug Delivery Systems for Metabolic Chronic Liver Diseases: Advances and Perspectives
    Foteini Athanasopoulou, Michail Manolakakis, Santiago Vernia, Nazila Kamaly
    Nanomedicine.2023; 18(1): 67.     CrossRef
  • The Role of Pyrazolo[3,4-d]pyrimidine-Based Kinase Inhibitors in The Attenuation of CCl4-Induced Liver Fibrosis in Rats
    Diana K. Ghobrial, Nefertiti El-Nikhely, Eman Sheta, Hanan M. Ragab, Sherif A. F. Rostom, Hesham Saeed, Ahmed Wahid
    Antioxidants.2023; 12(3): 637.     CrossRef
  • Curcuma aromatica Salisb. Protects from Acetaminophen-Induced Hepatotoxicity by Regulating the Sirt1/HO-1 Signaling Pathway
    Hyunseong Kim, Jinyoung Hong, Junseon Lee, Wanjin Jeon, Changhwan Yeo, Yoonjae Lee, Seungho Baek, Inhyuk Ha
    Nutrients.2023; 15(4): 808.     CrossRef
  • Accurate diagnosis of hepatic fibrosis with dual detection of nitric oxide and viscosity by a ratiometric fluorescent probe
    Shaohui Han, Lei Yang, Miaomiao Liu, Haipu Li, Xiangzhi Song
    Chemical Engineering Journal.2023; 463: 142383.     CrossRef
  • The eNOS isoform exhibits increased expression and activation in the main olfactory bulb of nNOS knock-out mice
    David Pérez-Boyero, Carlos Hernández-Pérez, Jorge Valero, Valeria Lorena Cabedo, José Ramón Alonso, David Díaz, Eduardo Weruaga
    Frontiers in Cellular Neuroscience.2023;[Epub]     CrossRef
  • Congenital diaphragmatic hernia increases the sensitivity of pulmonary arteries to nitric oxide
    Alecsander F. Bressan, Victoria Oliveira Maia, Beatriz de Souza Rodrigues, Giuliana Bertozi, Sabrina S. Batah, Alexandre T. Fabro, Glória Pelizzo, Ugo Maria Pierucci, Rita C. Tostes, Lourenço Sbragia, Fernando S. Carneiro
    Pharmacological Research.2023; 191: 106749.     CrossRef
  • Vessel-on-a-Chip: A Powerful Tool for Investigating Endothelial COVID-19 Fingerprints
    Oksana Shevchuk, Svitlana Palii, Anastasiia Pak, Nuria Chantada, Nuria Seoane, Mykhaylo Korda, Manuel Campos-Toimil, Ezequiel Álvarez
    Cells.2023; 12(9): 1297.     CrossRef
  • Mexican Native Black Bean Anthocyanin-Rich Extracts Modulate Biological Markers Associated with Inflammation
    Jonhatan Contreras, Montserrat Alcázar-Valle, Eugenia Lugo-Cervantes, Diego A. Luna-Vital, Luis Mojica
    Pharmaceuticals.2023; 16(6): 874.     CrossRef
  • S-nitrosylation of EMMPRIN influences the migration of HSCs and MMP activity in liver fibrosis
    Xinyan Zhu, Zihui Tang, Wei Li, Xiaojuan Li, Yasuko Iwakiri, Fei Liu
    Acta Biochimica et Biophysica Sinica.2023; 55(10): 1640.     CrossRef
  • Eucalyptol Protects against Cisplatin-Induced Liver Injury in Rats
    Gokhan Akcakavak, Filiz Kazak, Mehmet Zeki Yilmaz Deveci
    Biology Bulletin.2023; 50(5): 987.     CrossRef
  • EASL-ERN position paper on liver involvement in patients with Fontan-type circulation
    Luis Téllez, Audrey Payancé, Eric Tjwa, María Jesús del Cerro, Lars Idorn, Stanislav Ovroutski, Ruth De Bruyne, Henkjan J. Verkade, Fabrizio De Rita, Charlotte de Lange, Annalisa Angelini, Valérie Paradis, Pierre Emmanuel Rautou, Juan Carlos García-Pagán
    Journal of Hepatology.2023; 79(5): 1270.     CrossRef
  • Schisandrin B Promotes Hepatic Stellate Cell Ferroptosis via Wnt Pathway-Mediated Ly6Clo Macrophages
    Xinmiao Li, Feng Jiang, Yuhang Hu, Zhichao Lang, Yating Zhan, Rongrong Zhang, Qiqi Tao, Chengchu Luo, Jinglu Yu, Jianjian Zheng
    Journal of Agricultural and Food Chemistry.2023;[Epub]     CrossRef
  • Ameliorative role of inducible nitric oxide synthase inhibitors against sodium arsenite-induced renal and hepatic dysfunction in rats
    Ashwani Kumar Sharma, Anmoldeep Kaur, Tajpreet Kaur, Sarabjit Kaur, Devendra Pathak, Amrit Pal Singh
    Drug and Chemical Toxicology.2022; 45(5): 2255.     CrossRef
  • G Protein-Coupled Receptor Kinase 2 as Novel Therapeutic Target in Fibrotic Diseases
    Nan Li, Shan Shan, Xiu-Qin Li, Ting-Ting Chen, Meng Qi, Sheng-Nan Zhang, Zi-Ying Wang, Ling-Ling Zhang, Wei Wei, Wu-Yi Sun
    Frontiers in Immunology.2022;[Epub]     CrossRef
  • Centella asiatica extract protects against cisplatin-induced hepatotoxicity via targeting oxidative stress, inflammation, and apoptosis
    Irmak Ferah Okkay, Ufuk Okkay, Ismail Cagri Aydin, Cemil Bayram, Muhammed Sait Ertugrul, Ali Sefa Mendil, Ahmet Hacimuftuoglu
    Environmental Science and Pollution Research.2022; 29(22): 33774.     CrossRef
  • 1,2,3,4,6-Penta-O-galloyl-d-glucose Interrupts the Early Adipocyte Lifecycle and Attenuates Adiposity and Hepatic Steatosis in Mice with Diet-Induced Obesity
    Ashish Rao Sathyanarayana, Chung-Kuang Lu, Chih-Chuang Liaw, Chia-Chuan Chang, Hsin-Ying Han, Brian D. Green, Wei-Jan Huang, Cheng Huang, Wen-Di He, Lin-Chien Lee, Hui-Kang Liu
    International Journal of Molecular Sciences.2022; 23(7): 4052.     CrossRef
  • Inhibitory effect of water-soluble mulberry leaf extract on hepatic lipid accumulation in high-fat diet-fed rats via modulation of hepatic microRNA-221/222 expression and inflammation
    Mak-Soon Lee, Cheamin Kim, Hyunmi Ko, Yangha Kim
    Journal of Nutrition and Health.2022; 55(2): 227.     CrossRef
  • Effect of Acrylamide Treatment on Cyp2e1 Expression and Redox Status in Rat Hepatocytes
    Jelena Marković Filipović, Marko Miler, Danijela Kojić, Jelena Karan, Ivana Ivelja, Jovana Čukuranović Kokoris, Milica Matavulj
    International Journal of Molecular Sciences.2022; 23(11): 6062.     CrossRef
  • Association of resveratrol with the suppression of TNF-α/NF-kB/iNOS/HIF-1α axis-mediated fibrosis and systemic hypertension in thioacetamide-induced liver injury
    Hasnaa A. Ebrahim, Samaa S. Kamar, Mohamed A. Haidara, Noha S. Abdel Latif, Mohamed Abd Ellatif, Asmaa M. ShamsEldeen, Bahjat Al-Ani, Amal F. Dawood
    Naunyn-Schmiedeberg's Archives of Pharmacology.2022; 395(9): 1087.     CrossRef
  • Is Glyceryl Trinitrate, a Nitric Oxide Donor Responsible for Ameliorating the Chemical-Induced Tissue Injury In Vivo?
    Ayesha Rahman Ahmed, Mahiba Ahmed, Senty Vun-Sang, Mohammad Iqbal
    Molecules.2022; 27(14): 4362.     CrossRef
  • Effect of nigella sativa oil on bisphenol a-induced hepatotoxicity in wistar albino rats: histopathological and biochemical investigation
    Mehmet Burak ATEŞ, Durmuş HATİPOĞLU
    International Journal of Agriculture Environment and Food Sciences.2022; 6(3): 402.     CrossRef
  • Mass spectrometry characterization of Commiphora leptophloeos leaf extract and preclinical evaluation of toxicity and anti-inflammatory potential effect
    Renato Dantas-Medeiros, Allanny Alves Furtado, Ana C. Zanatta, Manoela Torres-Rêgo, Estela Mariana Guimarães Lourenço, Jovelina Samara Ferreira Alves, Éder Galinari, Hugo Alexandre de Oliveira Rocha, Gerlane Coelho Bernardo Guerra, Wagner Vilegas, Thiago
    Journal of Ethnopharmacology.2021; 264: 113229.     CrossRef
  • Cyclic GMP in Liver Cirrhosis—Role in Pathophysiology of Portal Hypertension and Therapeutic Implications
    Wolfgang Kreisel, Adhara Lazaro, Jonel Trebicka, Markus Grosse Perdekamp, Annette Schmitt-Graeff, Peter Deibert
    International Journal of Molecular Sciences.2021; 22(19): 10372.     CrossRef
  • Expressions of heat shock protein 90, inducible nitric oxide synthase, and vascular endothelial growth factor in the skin of diabetic rats
    Khaled Z. Alawneh, Liqaa A. Raffee, Musa A. Alshehabat, Ahed Jumah Alkhatib
    Veterinary World.2021; : 1804.     CrossRef
  • An anti-DR5 antibody-curcumin conjugate for the enhanced clearance of activated hepatic stellate cells
    Van Quy Nguyen, Dong Gil You, Chan Ho Kim, Seunglee Kwon, Wooram Um, Byeong Hoon Oh, Jae Yoon An, Jueun Jeon, Jae Hyung Park
    International Journal of Biological Macromolecules.2021; 192: 1231.     CrossRef
  • Maresin-1 Prevents Liver Fibrosis by Targeting Nrf2 and NF-κB, Reducing Oxidative Stress and Inflammation
    María José Rodríguez, Matías Sabaj, Gerardo Tolosa, Francisca Herrera Vielma, María José Zúñiga, Daniel R. González, Jessica Zúñiga-Hernández
    Cells.2021; 10(12): 3406.     CrossRef
  • Supplementation of Psidium Guajava Leaves Powder Prevents Hepatotoxicity and Inflammation in Carbon Tetrachloride (CCl4)-Administered Rats
    Nitol Debnath, Farzana B. Rafique, Nasrin Akhter, Anayt Ulla, Tahmina Yasmin, Md Nurul Islam, Md A. Alam
    Current Bioactive Compounds.2021; 17(4): 356.     CrossRef
  • High levels of dietary methionine improves sitagliptin-induced hepatotoxicity by attenuating oxidative stress in hypercholesterolemic rats
    Avinash Kumar, Rashmi Pathak, Henry A. Palfrey, Kirsten P. Stone, Thomas W. Gettys, Subramanyam N. Murthy
    Nutrition & Metabolism.2020;[Epub]     CrossRef
  • Role of cytoglobin, a novel radical scavenger, in stellate cell activation and hepatic fibrosis
    Le Thi Thanh Thuy, Hoang Hai, Norifumi Kawada
    Clinical and Molecular Hepatology.2020; 26(3): 280.     CrossRef
  • Pituitary adenylate cyclase‐activating peptide: Potential roles in the pathophysiology and complications of cirrhosis
    Mads Barloese, Mohammadnavid Chitgar, Jens Hannibal, Søren Møller
    Liver International.2020; 40(11): 2578.     CrossRef
  • ROLE OF NITRIC OXIDE IN DEVELOPMENT OF FIBROTIC CHANGES IN RATS’ TESTES AFTER 270 DAY CENTRAL DEPRIVATION OF TESTOSTERONE SYNTHESIS
    Ye.V. Stetsuk, O.Ye. Akimov, K.V. Shepitko, N.V. Boruta, A.N. Goltsev
    World of Medicine and Biology.2020; 16(73): 211.     CrossRef
  • Syntropic Lesions of the Cardiovascular System in Patients With Liver Cirrhosis: Their Determination; Selected Pathogenetic Mechanisms; Characteristics and Specifics; Clinical Markers, Their Prognostic Value; Justification and Effectiveness of Modified Tr
    M. Farmaha, M. Abrahamovych, O. Abrahamovych
    Lviv clinical bulletin.2020; 3(31): 8.     CrossRef
  • Molecular Mechanisms That Link Oxidative Stress, Inflammation, and Fibrosis in the Liver
    Erika Ramos-Tovar, Pablo Muriel
    Antioxidants.2020; 9(12): 1279.     CrossRef
  • Insulin resistance dysregulates CYP7B1 leading to oxysterol accumulation: a pathway for NAFL to NASH transition
    Genta Kakiyama, Dalila Marques, Rebecca Martin, Hajime Takei, Daniel Rodriguez-Agudo, Sandra A. LaSalle, Taishi Hashiguchi, Xiaoying Liu, Richard Green, Sandra Erickson, Gregorio Gil, Michael Fuchs, Mitsuyoshi Suzuki, Tsuyoshi Murai, Hiroshi Nittono, Phil
    Journal of Lipid Research.2020; 61(12): 1629.     CrossRef
  • Antrodia Cinnamomea Attenuates Non-Alcoholic Steatohepatitis by Suppressing NLRP3 Inflammasome Activation In Vitro and In Vivo
    I-Chuan Yen, Jung-Chun Lin, Yu Chen, Qian-Wen Tu, Shih-Yu Lee
    The American Journal of Chinese Medicine.2020; 48(08): 1859.     CrossRef
  • Syntropic Lesions of the Cardiovascular System in Patients with Liver Cirrhosis: their Determination; Selected Pathogenetic Mechanisms; Characteristics and Specifics; Clinical Markers, Their Prognostic Value; Justification and Effectiveness of Modified Tr
    M. Farmaha, M. Abrahamovych, O. Abrahamovych, O. Fayura, V. Chemes
    Lviv clinical bulletin.2020; 4(32): 8.     CrossRef
  • Modulation of inducible nitric oxide synthase pathway by eugenol and telmisartan in carbon tetrachloride-induced liver injury in rats
    Moustafa Fathy, Esraa M.M.A. Khalifa, Michael Atef Fawzy
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Liver fibrosis, cirrhosis, and portal hypertension

The lymphatic vascular system in liver diseases: its role in ascites formation
Chuhan Chung, Yasuko Iwakiri
Clin Mol Hepatol 2013;19(2):99-104.
Published online June 27, 2013
DOI: https://doi.org/10.3350/cmh.2013.19.2.99

The lymphatic system is part of the circulatory system and plays a key role in normal vascular function. Its failure plays a crucial role in the development and maintenance of various diseases including liver diseases. Lymphangiogenesis (the growth of lymphatic vessels) and changes in the properties of lymphatic vessels are associated with pathogenesis of tumor metastases, ascites formation, liver fibrosis/cirrhosis and portal hypertension. Despite its significant role in liver diseases and its importance as a potential therapeutic target for those diseases, the lymphatic vascular system of the liver is poorly understood. Therefore, how the lymphatic vascular system in general and lymphangiogenesis in particular are mechanistically related to the pathogenesis and maintenance of liver diseases are largely unknown. This article summarizes: 1) the lymphatic vascular system; 2) its role in liver tumors, liver fibrosis/cirrhosis and portal hypertension; and 3) its role in ascites formation.

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