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Human urine-derived renal progenitors for personalized modeling of genetic kidney disorders

Articolo
Data di Pubblicazione:
2015
Citazione:
Human urine-derived renal progenitors for personalized modeling of genetic kidney disorders / Lazzeri, Elena; Ronconi, Elisa; Angelotti, Maria Lucia; Peired, Anna; Mazzinghi, Benedetta; Becherucci, Francesca; Conti, Sara; Sansavini, Giulia; Sisti, Alessandro; Ravaglia, Fiammetta; Lombardi, Duccio; Provenzano, Aldesia; Manonelles, Anna; Cruzado, Josep M.; Giglio, Sabrina Rita; Roperto, Rosa Maria; Materassi, Marco; Lasagni, Laura; Romagnani, Paola. - In: JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY. - ISSN 1046-6673. - 26:8(2015), pp. 1961-1974. [10.1681/ASN.2014010057]
Abstract:
The critical role of genetic and epigenetic factors in the pathogenesis of kidney disorders is gradually becoming clear, and the need for disease models that recapitulate human kidney disorders in a personalized manner is paramount. In this study, we describe a method to select and amplify renal progenitor cultures from the urine of patients with kidney disorders. Urine-derived human renal progenitors exhibited phenotype and functional properties identical to those purified from kidney tissue, including the capacity to differentiate into tubular cells and podocytes, as demonstrated by confocal microscopy, Western blot analysis of podocyte-specific proteins, and scanning electron microscopy. Lineage tracing studies performed with conditional transgenic mice, in which podocytes are irreversibly tagged upon tamoxifen treatment (NPHS2.iCreER;mT/mG), that were subjected to doxorubicin nephropathy demonstrated that renal progenitors are the only urinary cell population that can be amplified in long-term culture. To validate the use of these cells for personalized modeling of kidney disorders, renal progenitors were obtained from (1) the urine of children with nephrotic syndrome and carrying potentially pathogenic mutations in genes encoding for podocyte proteins and (2) the urine of children without genetic alterations, as validated by next-generation sequencing. Renal progenitors obtained from patients carrying pathogenic mutations generated podocytes that exhibited an abnormal cytoskeleton structure and functional abnormalities compared with those obtained from patients with proteinuria but without genetic mutations. The results of this study demonstrate that urine-derived patient-specific renal progenitor cultures may be an innovative research tool for modeling of genetic kidney disorders.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
glomerulonephritis; glomerulosclerosis; kidney; mutation; next generation; podocytes; Adolescent; Animals; Case-Control Studies; Child; Child; Preschool; Female; Humans; Infant; Kidney; Kidney Diseases; Male; Mice; Inbred BALB C; Mice; SCID; Mice; Transgenic; Stem Cells; Urine; Cell Culture Techniques; Nephrology
Elenco autori:
Lazzeri, Elena; Ronconi, Elisa; Angelotti, Maria Lucia; Peired, Anna; Mazzinghi, Benedetta; Becherucci, Francesca; Conti, Sara; Sansavini, Giulia; Sisti, Alessandro; Ravaglia, Fiammetta; Lombardi, Duccio; Provenzano, Aldesia; Manonelles, Anna; Cruzado, Josep M.; Giglio, Sabrina Rita; Roperto, Rosa Maria; Materassi, Marco; Lasagni, Laura; Romagnani, Paola
Autori di Ateneo:
GIGLIO SABRINA RITA
Link alla scheda completa:
https://iris.unisr.it/handle/20.500.11768/196237
Pubblicato in:
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY
Journal
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http://jasn.asnjournals.org/content/26/8/1961.full.pdf+html
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