Literature DB >> 15273425

Identifying chemokines as therapeutic targets in renal disease: lessons from antagonist studies and knockout mice.

Volker Vielhauer1, Vaclav Eis, Detlef Schlöndorff, Hans-Joachim Anders.   

Abstract

Chemokines, in concert with cytokines and adhesion molecules, play multiple roles in local and systemic immune responses. In the kidney, the temporal and spatial expression of chemokines correlates with local renal damage and accumulation of chemokine receptor-bearing leukocytes. Chemokines play important roles in leukocyte trafficking and blocking chemokines can effectively reduce renal leukocyte recruitment and subsequent renal damage. However, recent data indicate that blocking chemokine or chemokine receptor activity in renal disease may also exacerbate renal inflammation under certain conditions. An increasing amount of data indicates additional roles of chemokines in the regulation of innate and adaptive immune responses, which may adversively affect the outcome of interventional studies. This review summarizes available in vivo studies on the blockade of chemokines and chemokine receptors in kidney diseases, with a special focus on the therapeutic potential of anti-chemokine strategies, including potential side effects, in renal disease. Copyright 2004 S. Karger AG, Basel

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Year:  2004        PMID: 15273425     DOI: 10.1159/000079867

Source DB:  PubMed          Journal:  Kidney Blood Press Res        ISSN: 1420-4096            Impact factor:   2.687


  7 in total

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5.  In-vivo oxidized albumin- a pro-inflammatory agent in hypoalbuminemia.

Authors:  Faiga Magzal; Shifra Sela; Andrea Szuchman-Sapir; Snait Tamir; Regina Michelis; Batya Kristal
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6.  Contribution of diminished kidney transplant GFR to increased circulating chemokine ligand 27 level.

Authors:  Ahmed Zahran; Ahmed Attia; Holly Mansell; Ahmed Shoker
Journal:  J Inflamm (Lond)       Date:  2018-09-10       Impact factor: 4.981

7.  Distinct contributions of TNF receptor 1 and 2 to TNF-induced glomerular inflammation in mice.

Authors:  Anela Taubitz; Martin Schwarz; Nuru Eltrich; Maja T Lindenmeyer; Volker Vielhauer
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  7 in total

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