Targeting podocyte-associated diseases

被引:151
作者
Leeuwis, Jan Willem [1 ]
Nguyen, Tri Q. [1 ]
Dendooven, Amelie [1 ]
Kok, Robbert J. [2 ]
Goldschmeding, Roe [1 ]
机构
[1] Univ Med Ctr Utrecht, Dept Pathol, NL-3584 CX Utrecht, Netherlands
[2] Univ Utrecht, Dept Pharmaceut, Utrecht Inst Pharmaceut Sci, NL-3584 CA Utrecht, Netherlands
关键词
Drug targeting; Drug delivery; Kidney; Glomerular disease; Podocyte; Nephron; Animal models; FOCAL SEGMENTAL GLOMERULOSCLEROSIS; DIABETIC-NEPHROPATHY; NEPHROTIC SYNDROME; MOUSE MODEL; GENE-EXPRESSION; TRANSGENIC MICE; SLIT DIAPHRAGM; RODENT MODELS; ANIMAL-MODELS; CATHEPSIN-L;
D O I
10.1016/j.addr.2010.08.012
中图分类号
R9 [药学];
学科分类号
100702 [药剂学];
摘要
Injury to the podocytes is the initiating cause of many renal diseases, leading to proteinuria with possible progression to end-stage renal disease. Podocytes are highly specialized cells, with an important role in maintaining the glomerular filtration barrier and producing growth factors for both mesangial cells and endothelial cells. With their foot processes they cover the glomerular basement membrane, and form slit diaphragms with neighboring podocytes. Human podocytopathies include focal and segmental glomerulosclerosis, minimal change disease, membranous nephropathy, collapsing glomerulopathy and diabetic nephropathy. Research in the last two decades has demonstrated great progress in understanding the molecular mechanisms leading to podocytopathies. These include single gene defects in slit diaphragm proteins, but also discovery of apoptotic, enzymatic and other pathways involved in podocyte injury. With this progress, a great number of animal models is now available to study either specific podocytopathies, e.g. in mouse models with single gene mutations, or more general podocyte injury patterns, such as the lipopolysaccharide or protamine sulfate model of foot process effacement. In this review, the morphology of the glomerulus will be discussed, with a focus on the podocyte, its interactions with surrounding cells, and the highly differentiated slit diaphragm separating the apical from the basal membrane. We also provide an overview of human podocytopathies and animal models to study these diseases. In the last part we discuss targeted therapies addressing pathways and proteins affected in podocyte injury. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:1325 / 1336
页数:12
相关论文
共 125 条
[1]
Podocytes use FcRn to clear IgG from the glomerular basement membrane [J].
Akilesh, Shreeram ;
Huber, Tobias B. ;
Wu, Hui ;
Wang, Gary ;
Hartleben, Bjoern ;
Kopp, Jeffrey B. ;
Miner, Jeffrey H. ;
Roopenian, Derry C. ;
Unanue, Emil R. ;
Shaw, Andrey S. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2008, 105 (03) :967-972
[2]
Current views on collapsing glomerulopathy [J].
Albaqumi, Mamdouh ;
Barisoni, Laura .
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2008, 19 (07) :1276-1281
[3]
Recruitment of Podocytes from Glomerular Parietal Epithelial Cells [J].
Appel, Daniel ;
Kershaw, David B. ;
Smeets, Bart ;
Yuan, Gang ;
Fuss, Astrid ;
Frye, Bjoern ;
Elger, Marlies ;
Kriz, Wilhelm ;
Floege, Juergen ;
Moeller, Marcus J. .
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2009, 20 (02) :333-343
[4]
Synaptopodin orchestrates actin organization and cell motility via regulation of RhoA signalling [J].
Asanuma, K ;
Yanagida-Asanuma, E ;
Faul, C ;
Tomino, Y ;
Kim, K ;
Mundel, P .
NATURE CELL BIOLOGY, 2006, 8 (05) :485-U109
[5]
Synaptopodin regulates the actin-bundling activity of α-actinin in an isoform-specific manner [J].
Asanuma, K ;
Kim, K ;
Oh, J ;
Giardino, L ;
Chabanis, S ;
Faul, C ;
Reiser, J ;
Mundel, P .
JOURNAL OF CLINICAL INVESTIGATION, 2005, 115 (05) :1188-1198
[6]
Inhibition of proinflammatory genes in anti-GBM glomerulonephritis by targeted dexamethasone-loaded AbEsel liposomes [J].
Asgeirdottir, Sigridur A. ;
Zwiers, Peter J. ;
Morselt, Henriette W. ;
Moorlag, Hendrik E. ;
Bakker, Hester I. ;
Heeringa, Peter ;
Kok, Jan Willem ;
Kallenberg, Cees G. M. ;
Molema, Grietje ;
Kamps, Jan A. A. M. .
AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, 2008, 294 (03) :F554-F561
[7]
Targeted transfection increases siRNA uptake and gene silencing of primary endothelial cells in vitro - A quantitative study [J].
Asgeirsdottir, Sigridur A. ;
Talman, Eduard G. ;
de Graaf, Inge A. ;
Kamps, Jan A. A. M. ;
Satchell, Simon C. ;
Mathieson, Peter W. ;
Ruiters, Marcel H. J. ;
Molema, Grietje .
JOURNAL OF CONTROLLED RELEASE, 2010, 141 (02) :241-251
[8]
THE CYSTEINE PROTEINASE-INHIBITOR, E-64, REDUCES PROTEINURIA IN AN EXPERIMENTAL-MODEL OF GLOMERULONEPHRITIS [J].
BARICOS, WH ;
OCONNOR, SE ;
CORTEZ, SL ;
WU, LT ;
SHAH, SV .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1988, 155 (03) :1318-1323
[9]
The kd/kd mouse is a model of collapsing Glomerulopathy [J].
Barisoni, L ;
Madaio, MP ;
Eraso, M ;
Gasser, DL ;
Nelson, PJ .
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2005, 16 (10) :2847-2851
[10]
A proposed taxonomy for the podocytopathies: A reassessment of the primary nephrotic diseases [J].
Barisoni, Laura ;
Schnaper, H. William ;
Kopp, Jeffrey B. .
CLINICAL JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2007, 2 (03) :529-542