For: | Pellino G, Pallante P, Selvaggi F. Novel biomarkers of fibrosis in Crohn’s disease. World J Gastrointest Pathophysiol 2016; 7(3): 266-275 [PMID: 27574564 DOI: 10.4291/wjgp.v7.i3.266] |
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URL: | https://www.wjgnet.com/1007-9327/full/v7/i3/266.htm |
Number | Citing Articles |
1 |
Sibilla Molon, Paola Brun, Melania Scarpa, Dario Bizzotto, Gaia Zuccolotto, Marco Scarpa, Matteo Fassan, Imerio Angriman, Antonio Rosato, Paola Braghetta, Ignazio Castagliuolo, Paolo Bonaldo. Collagen VI promotes recovery from colitis by inducing lymphangiogenesis and drainage of inflammatory cells. The Journal of Pathology 2023; 260(4): 417 doi: 10.1002/path.6092
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2 |
Antonio Speciale, Maria Sofia Molonia, Claudia Muscarà, Mariateresa Cristani, Federica Lina Salamone, Antonella Saija, Francesco Cimino. An overview on the cellular mechanisms of anthocyanins in maintaining intestinal integrity and function. Fitoterapia 2024; 175: 105953 doi: 10.1016/j.fitote.2024.105953
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3 |
Daniel C. Stewart, Dalton Berrie, Jian Li, Xinyue Liu, Cooper Rickerson, David Mkoji, Atif Iqbal, Sanda Tan, Andria L. Doty, Sarah C. Glover, Chelsey S. Simmons, Shree Ram Singh. Quantitative assessment of intestinal stiffness and associations with fibrosis in human inflammatory bowel disease. PLOS ONE 2018; 13(7): e0200377 doi: 10.1371/journal.pone.0200377
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4 |
Antonino Caruso, Imerio Angriman, Marco Scarpa, Renata D’Incà, Claudia Mescoli, Massimo Rudatis, Giacomo Carlo Sturniolo, Giovanni Schifano, Carmelo Lacognata. Diffusion-weighted magnetic resonance for assessing fibrosis in Crohn’s disease. Abdominal Radiology 2020; 45(8): 2327 doi: 10.1007/s00261-019-02167-0
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5 |
Dulce C. Macias-Ceja, Sandra Coll, Cristina Bauset, Marta Seco-Cervera, Laura Gisbert-Ferrándiz, Francisco Navarro, Jesus Cosin-Roger, Sara Calatayud, María D. Barrachina, Dolores Ortiz-Masia. IFNγ-Treated Macrophages Induce EMT through the WNT Pathway: Relevance in Crohn’s Disease. Biomedicines 2022; 10(5): 1093 doi: 10.3390/biomedicines10051093
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6 |
Lingling Yuan, Yingyi Wang, Na Li, Xuli Yang, Xuhui Sun, Huai’e Tian, Yi Zhang. Mechanism of Action and Therapeutic Implications of Nrf2/HO-1 in Inflammatory Bowel Disease. Antioxidants 2024; 13(8): 1012 doi: 10.3390/antiox13081012
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7 |
Silvia D’Alessio, Federica Ungaro, Daniele Noviello, Sara Lovisa, Laurent Peyrin-Biroulet, Silvio Danese. Revisiting fibrosis in inflammatory bowel disease: the gut thickens. Nature Reviews Gastroenterology & Hepatology 2022; 19(3): 169 doi: 10.1038/s41575-021-00543-0
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8 |
John W. Frew, David Grand, Kristina Navrazhina, James G. Krueger. Beyond antibodies: B cells in Hidradenitis Suppurativa: Bystanders, contributors or therapeutic targets?. Experimental Dermatology 2020; 29(5): 509 doi: 10.1111/exd.14092
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9 |
М.М. Zhaivoronok, V.N. Zalessky. Intestinal fibrogenesis in inflammatory intestinal disorders. GASTROENTEROLOGY 2023; 56(4): 258 doi: 10.22141/2308-2097.56.4.2022.518
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10 |
Katarzyna Komosinska-Vassev, Aleksandra Kałużna, Agnieszka Jura-Półtorak, Alicja Derkacz, Krystyna Olczyk. Circulating Profile of ECM-Related Proteins as Diagnostic Markers in Inflammatory Bowel Diseases. Journal of Clinical Medicine 2022; 11(19): 5618 doi: 10.3390/jcm11195618
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11 |
Botong Li, Yixuan Wang, Xiaolin Jiang, Hongwei Du, Yan Shi, Minghui Xiu, Yongqi Liu, Jianzheng He. Natural products targeting Nrf2/ARE signaling pathway in the treatment of inflammatory bowel disease. Biomedicine & Pharmacotherapy 2023; 164: 114950 doi: 10.1016/j.biopha.2023.114950
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12 |
Shalini Thapar Laroia. GI Surgery Annual. GI Surgery Annual 2018; 24: 51 doi: 10.1007/978-981-13-0161-2_3
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13 |
Mariangela Allocca, Gionata Fiorino, Cristiana Bonifacio, Laurent Peyrin-Biroulet, Silvio Danese. Noninvasive Multimodal Methods to Differentiate Inflamed vs Fibrotic Strictures in Patients With Crohn's Disease. Clinical Gastroenterology and Hepatology 2019; 17(12): 2397 doi: 10.1016/j.cgh.2019.04.025
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14 |
Hui Wang, Zhe Yang, Kang Chen, Ruilian Yu, Li Xu, Gaohong Lv. Isaria cicadae Miquel prevents intestinal fibrosis by activating transforming growth factor-β1 signaling to regulate the balance between matrix metalloproteinases and tissue inhibitors of metalloproteinase 1 in mice with Crohn’s disease. Journal of Functional Foods 2022; 88: 104875 doi: 10.1016/j.jff.2021.104875
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15 |
Deguo Xu, Shuisheng Zhang, Shenfeng Zhang, Hongmei Liu, Paiyun Li, Lili Yu, Heli Shang, Yong Hou, Yuan Tian. NOD2 maybe a biomarker for the survival of kidney cancer patients. Oncotarget 2017; 8(60): 101489 doi: 10.18632/oncotarget.21547
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16 |
J.H. Mortensen, M. Pehrsson, M.A. Karsdal, Marta Alexdottir. Biochemistry of Collagens, Laminins and Elastin. 2024; : 483 doi: 10.1016/B978-0-443-15617-5.00011-1
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17 |
Laura Golusda, Anja A. Kühl, Britta Siegmund, Daniela Paclik. Extracellular Matrix Components as Diagnostic Tools in Inflammatory Bowel Disease. Biology 2021; 10(10): 1024 doi: 10.3390/biology10101024
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18 |
Lin Hai Kurahara, Keizo Hiraishi, Miho Sumiyoshi, Mayumi Doi, Yaopeng Hu, Kunihiko Aoyagi, Yuwen Jian, Ryuji Inoue. Significant contribution of TRPC6 channel-mediated Ca<sup>2+</sup> influx to the pathogenesis of Crohn’s disease fibrotic stenosis. Journal of Smooth Muscle Research 2016; 52(0): 78 doi: 10.1540/jsmr.52.78
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19 |
Marta Piotrowska, Mikolaj Swierczynski, Jakub Fichna, Aleksandra Piechota-Polanczyk. The Nrf2 in the pathophysiology of the intestine: Molecular mechanisms and therapeutic implications for inflammatory bowel diseases. Pharmacological Research 2021; 163: 105243 doi: 10.1016/j.phrs.2020.105243
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20 |
Claire Liefferinckx, Denis Franchimont. Viewpoint: Toward the Genetic Architecture of Disease Severity in Inflammatory Bowel Diseases. Inflammatory Bowel Diseases 2018; 24(7): 1428 doi: 10.1093/ibd/izy109
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21 |
Iona Campbell, Michael Glinka, Fadlo Shaban, Kathryn J. Kirkwood, Francesca Nadalin, David Adams, Irene Papatheodorou, Albert Burger, Richard A. Baldock, Mark J. Arends, Shahida Din. The Promise of Single-Cell RNA Sequencing to Redefine the Understanding of Crohn’s Disease Fibrosis Mechanisms. Journal of Clinical Medicine 2023; 12(12): 3884 doi: 10.3390/jcm12123884
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