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Open AccessJournal ArticleDOI

The Dysregulated Podocyte Phenotype A Novel Concept in the Pathogenesis of Collapsing Idiopathic Focal Segmental Glomerulosclerosis and HIV-Associated Nephropathy

TLDR
It is concluded that the loss of specific podocyte markers defines a novel dysregulated podocyte phenotype and suggests a common pathomechanism in collapsing FSGS, whether idiopathic or HIV-associated.
Abstract
Podocytes are highly differentiated, postmitotic cells, whose function is largely based on their complex cytoarchitecture. The differentiation of podocytes coincides with progressive expression of maturity markers, including WT-1, CALLA, C3b receptor, GLEPP-1, podocalyxin, and synaptopodin. In collapsing forms of focal segmental glomerulosclerosis (FSGS), including idiopathic FSGS and HIV-associated nephropathy, podocytes undergo characteristic, irreversible ultrastructural changes. This study analyzes the expression pattern of the above differentiation markers and of the proliferation marker Ki-67 in collapsing idiopathic FSGS and HIV-associated nephropathy compared with minimal change disease, membranous glomerulopathy, as well as normal adult and fetal human kidney. In minimal change disease and membranous glomerulopathy, all mature podocyte markers were retained at normal levels despite severe proteinuria and foot process fusion; no cell proliferation was observed. In contrast, in collapsing idiopathic FSGS and HIV-associated nephropathy, there was disappearance of all markers from all collapsed glomeruli and of synaptopodin from 16% of noncollapsed glomeruli. This phenotypic dysregulation of podocytes was associated with cell proliferation in both diseases. It is concluded that the loss of specific podocyte markers defines a novel dysregulated podocyte phenotype and suggests a common pathomechanism in collapsing FSGS, whether idiopathic or HIV-associated.

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Journal ArticleDOI

Cell Biology of the Glomerular Podocyte

TL;DR: This review integrates recent physiological and molecular understanding of the role of podocytes during the maintenance and failure of the glomerular filtration barrier with hereditary nephrotic syndromes identified over the last 2 years.
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Glomerular-specific alterations of VEGF-A expression lead to distinct congenital and acquired renal diseases

TL;DR: The data demonstrate that tight regulation of VEGF-A signaling is critical for establishment and maintenance of the glomerular filtration barrier and strongly supports a pivotal role for VEGf-A in renal disease.
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A Conditionally Immortalized Human Podocyte Cell Line Demonstrating Nephrin and Podocin Expression

TL;DR: The development of this conditionally immortalized human podocyte cell line provides a new tool in the study of podocyte biology, which will enable accurate assessment of the behavior of these complex cells in health and disease.
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The podocyte's response to injury: Role in proteinuria and glomerulosclerosis

TL;DR: By delineating the events following injury to podocytes, therapies might be developed to reduce the burden of proteinuric renal diseases, and the mechanisms of these events are being elucidated.
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The spectrum of podocytopathies : A unifying view of glomerular diseases

TL;DR: All glomerular diseases are placed within this spectrum of podocytopathies with predictable outcomes based on podocyte biology impacted by temporal, genetic, and environmental cues to rationalize clinical effort toward podocyte preservation and prevention of progression.
References
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Journal ArticleDOI

WT-1 is required for early kidney development

TL;DR: A mutation into the murine WT-1 tumor suppressor gene by gene targeting in embryonic stem cells resulted in embryonic lethality in homozygotes, and examination of mutant embryos revealed a failure of kidney and gonad development.
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Rearrangements of the cytoskeleton and cell contacts induce process formation during differentiation of conditionally immortalized mouse podocyte cell lines

TL;DR: The determinative steps of podocyte differentiation and process formation are studied for the first time using an inducible in vitro model and electrophysiological studies demonstrate that differentiated MPC cells respond to the vasoactive peptide bradykinin by changes in intracellular calcium concentration.
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The candidate Wilms' tumour gene is involved in genitourinary development

TL;DR: In situ messenger RNA hybridization on sections of human embryos and Wilms' tumours suggests that the associated genital abnormalities are pleiotropic effects of mutation in the Wilms’ tumour gene itself, in support of recent genetic analysis11.
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Progression of glomerular diseases: Is the podocyte the culprit?

TL;DR: The stereotyped development of the glomerular lesions in many animal models and human forms of progressive renal disease suggests that there are common mechanisms of disease progression, and this work proposes the outline of such a mechanism based on following aspects.
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Synaptopodin: An Actin-associated Protein in Telencephalic Dendrites and Renal Podocytes

TL;DR: It is concluded that synaptopodin represents a novel kind of proline-rich, actin-associated protein that may play a role in modulating actin -based shape and motility of dendritic spines and podocyte foot processes.
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