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Citations to this article

Intercellular adhesion molecule-1-deficient mice are protected against ischemic renal injury.
K J Kelly, … , J C Gutierrez-Ramos, J V Bonventre
K J Kelly, … , J C Gutierrez-Ramos, J V Bonventre
Published February 15, 1996
Citation Information: J Clin Invest. 1996;97(4):1056-1063. https://doi.org/10.1172/JCI118498.
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Research Article Article has an altmetric score of 3

Intercellular adhesion molecule-1-deficient mice are protected against ischemic renal injury.

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Abstract

Studies in the rat have pointed to a role for intercellular adhesion molecule-1 (ICAM-1) in the pathogenesis of acute tubular necrosis. These studies used antibodies, which may have nonspecific effects. We report that renal ICAM-1 mRNA levels and systemic levels of the cytokines IL-1 and TNF-alpha increase 1 h after ischemia/ reperfusion in the mouse. We sought direct proof for a critical role for ICAM-1 in the pathophysiology of ischemic renal failure using mutant mice genetically deficient in ICAM-1. ICAM-1 is undetectable in mutant mice in contrast with normal mice, in which ICAM-1 is prominent in the endothelium of the vasa recta. Mutant mice are protected from acute renal ischemic injury as judged by serum creatinine, renal histology, and animal survival . Renal leukocyte infiltration, quantitated morphologically and by measuring tissue myeloperoxidase, was markedly less in ICAM-1-deficient than control mice. To evaluate whether prevention of neutrophil infiltration could be responsible for the protection observed in the mutant mice, we treated normal mice with antineutrophil serum to reduce absolute neutrophil counts to < 100 cells/mm3. These neutrophil-depleted animals were protected against ischemic renal failure. Anti-1CAm-1 antibody protected normal mice against renal ischemic injury but did not provide additional protection to neutrophil-depleted animals. Thus, ICAM-1 is a key mediator of ischemic acute renal failure likely acting via potentiation of neutrophilendothelial interactions.

Authors

K J Kelly, W W Williams Jr, R B Colvin, S M Meehan, T A Springer, J C Gutierrez-Ramos, J V Bonventre

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Citations to this article in year 2020 (21)

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The adaptive immune response in cardiac arrest resuscitation induced ischemia reperfusion renal injury
M Tsivilika, E Doumaki, G Stavrou, A Sioga, V Grosomanidis, S Meditskou, A Maranginos, D Tsivilika, D Stafylarakis, K Kotzampassi, T Papamitsou
Journal of Biological Research-Thessaloniki 2020
IL-20 in Acute Kidney Injury: Role in Pathogenesis and Potential as a Therapeutic Target
TY Lin, YH Hsu
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SD Catz, KR McLeish
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Z Karimi, S Janfeshan, EK Abarghouei, SS Hashemi
Bioimpacts 2020
Treprostinil, a prostacyclin analog, ameliorates renal ischemia–reperfusion injury: preclinical studies in a rat model of acute kidney injury
M Ding, E Tolbert, M Birkenbach, F Akhlaghi, R Gohh, NS Ghonem
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J Zhou, Y Bai, Y Jiang, P Tarun, Y Feng, R Huang, P Fu
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Repurposing of metformin and colchicine reveals differential modulation of acute and chronic kidney injury
M El-Rashid, D Nguyen-Ngo, N Minhas, DN Meijles, J Li, K Ghimire, S Julovi, NM Rogers
Scientific Reports 2020
Irisin Pretreatment Protects Kidneys against Acute Kidney Injury Induced by Ischemia/Reperfusion via Upregulating the Expression of Uncoupling Protein 2
R Zhang, J Ji, X Zhou, R Li
BioMed Research International 2020
Hyperbaric oxygen preconditioning and the role of NADPH oxidase inhibition in postischemic acute kidney injury induced in spontaneously hypertensive rats
S Kovacevic, M Ivanov, Z Miloradovic, P Brkic, UJ Vajic, M Zivotic, N Mihailovic-Stanojevic, D Jovovic, D Karanovic, R Jeremic, J Nesovic-Ostojic, M Bader
PloS one 2020
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J Last, M Brenner, HT Yen, M Aziz, NL Denning, P Wang
Heliyon 2020
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R Baidya, DH Crawford, J Gautheron, H Wang, KR Bridle
International journal of molecular sciences 2020
Inhibition of BRD4 Reduces Neutrophil Activation and Adhesion to the Vascular Endothelium Following Ischemia Reperfusion Injury
S Reid, N Fine, VK Bhosle, J Zhou, R John, M Glogauer, LA Robinson, JW Scholey
International journal of molecular sciences 2020
The effect of adipose-derived mesenchymal stem cells on renal function and histopathology in a rat model of ischemia-reperfusion induced acute kidney injury
Changizi-Ashtiyani S, Hafazeh L, Ghasemi F, Najafi H, Babaei S, JalallyMashayekhi F, Hoseini SJ, Bastani B
Iranian Journal of Basic Medical Sciences 2020
High-Density Lipoproteins and Acute Kidney Injury
LE Smith
Seminars in Nephrology 2020
Acute Kidney Injury and Regenerative Medicine
Y Terada, T Wada, K Doi
2020
Mechanism and Pathophysiology
JC Gigliotti, TH Le, AA McDonough
Nephrology self-assessment program : NephSAP 2020
Textbook of Cardiorenal Medicine
PA McCullough, C Ronco
2020
H2S- and NO-releasing gasotransmitter platform: A crosstalk signaling pathway in the treatment of acute kidney injury
JC Pieretti, CV Junho, MS Carneiro-Ramos, AB Seabra
Pharmacological research : the official journal of the Italian Pharmacological Society 2020
Inhibition of myeloid differentiation protein 2 attenuates renal ischemia/reperfusion-induced oxidative stress and inflammation via suppressing TLR4/TRAF6/NF-kB pathway
X Hu, C Ding, X Ding, P Fan, J Zheng, H Xiang, X Li, Y Qiao, W Xue, Y Li
Life Sciences 2020
Protective effect of piperine in ischemia-reperfusion induced acute kidney injury through inhibition of inflammation and oxidative stress
M Mohammadi, H Najafi, ZM Yarijani, G Vaezi, V Hojati
Journal of traditional and complementary medicine 2020

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