Stem cells from glomerulus to distal tubule: a never-ending story?

The growing interest of research in the field of renal stem cells and kidney regeneration aims to get results that allow its clinical application, favoring the birth and development of regenerative medicine. Nephrogenesis requires differentiation into epithelial cells of a population of progenitor m...

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Main Authors: Melania Puddu, Claudia Fanni, Cristina Loddo, Vassilios Fanos
Format: Article
Language:English
Published: Hygeia Press di Corridori Marinella 2016-08-01
Series:Journal of Pediatric and Neonatal Individualized Medicine
Subjects:
Online Access:https://www.jpnim.com/index.php/jpnim/article/view/396
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author Melania Puddu
Claudia Fanni
Cristina Loddo
Vassilios Fanos
author_facet Melania Puddu
Claudia Fanni
Cristina Loddo
Vassilios Fanos
author_sort Melania Puddu
collection DOAJ
description The growing interest of research in the field of renal stem cells and kidney regeneration aims to get results that allow its clinical application, favoring the birth and development of regenerative medicine. Nephrogenesis requires differentiation into epithelial cells of a population of progenitor mesenchymal cells. Since this process ends at 36-38 weeks of gestational age, it is quite likely to imagine that such a population disappears in the human kidney after birth. However, several studies have identified in different parts of the adult kidney cells having the characteristics of stem cells that would be involved in renal regenerative processes. They may be classified as resident mesenchymal/epithelial progenitors and often share the same genetic and epigenetic profile as progenitor stem cells active during embryonic life, thus suggesting a common origin. Current literature includes two lines of thought: one attributes to stem cells a fundamental role in renal regeneration processes while the other sustains the intervention of other mechanisms. The aim of this review is to report on progress made in research in the field of kidney regeneration starting from the past century and arriving at the present, with an analysis of scientific works that have produced the most important results in this field.   Proceedings of the 2nd International Course on Perinatal Pathology (part of the 11th International Workshop on Neonatology · October 26th-31st, 2015) · Cagliari (Italy) · October 31st, 2015 · Stem cells: present and future Guest Editors: Gavino Faa, Vassilios Fanos, Antonio Giordano
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spelling doaj.art-16fced5283d1470ab2fac5d1620c257f2022-12-21T19:48:50ZengHygeia Press di Corridori MarinellaJournal of Pediatric and Neonatal Individualized Medicine2281-06922016-08-0152e050216e05021610.7363/050216333Stem cells from glomerulus to distal tubule: a never-ending story?Melania Puddu0Claudia Fanni1Cristina Loddo2Vassilios Fanos3Neonatal Intensive Care Unit, Neonatal Pathology, Puericulture Institute and Neonatal Section, AOU and University of Cagliari, Cagliari, ItalyNeonatal Intensive Care Unit, Neonatal Pathology, Puericulture Institute and Neonatal Section, AOU and University of Cagliari, Cagliari, ItalyNeonatal Intensive Care Unit, Neonatal Pathology, Puericulture Institute and Neonatal Section, AOU and University of Cagliari, Cagliari, ItalyNeonatal Intensive Care Unit, Neonatal Pathology, Puericulture Institute and Neonatal Section, AOU and University of Cagliari, Cagliari, ItalyThe growing interest of research in the field of renal stem cells and kidney regeneration aims to get results that allow its clinical application, favoring the birth and development of regenerative medicine. Nephrogenesis requires differentiation into epithelial cells of a population of progenitor mesenchymal cells. Since this process ends at 36-38 weeks of gestational age, it is quite likely to imagine that such a population disappears in the human kidney after birth. However, several studies have identified in different parts of the adult kidney cells having the characteristics of stem cells that would be involved in renal regenerative processes. They may be classified as resident mesenchymal/epithelial progenitors and often share the same genetic and epigenetic profile as progenitor stem cells active during embryonic life, thus suggesting a common origin. Current literature includes two lines of thought: one attributes to stem cells a fundamental role in renal regeneration processes while the other sustains the intervention of other mechanisms. The aim of this review is to report on progress made in research in the field of kidney regeneration starting from the past century and arriving at the present, with an analysis of scientific works that have produced the most important results in this field.   Proceedings of the 2nd International Course on Perinatal Pathology (part of the 11th International Workshop on Neonatology · October 26th-31st, 2015) · Cagliari (Italy) · October 31st, 2015 · Stem cells: present and future Guest Editors: Gavino Faa, Vassilios Fanos, Antonio Giordanohttps://www.jpnim.com/index.php/jpnim/article/view/396stem cellscd24cd133kidneyregeneration
spellingShingle Melania Puddu
Claudia Fanni
Cristina Loddo
Vassilios Fanos
Stem cells from glomerulus to distal tubule: a never-ending story?
Journal of Pediatric and Neonatal Individualized Medicine
stem cells
cd24
cd133
kidney
regeneration
title Stem cells from glomerulus to distal tubule: a never-ending story?
title_full Stem cells from glomerulus to distal tubule: a never-ending story?
title_fullStr Stem cells from glomerulus to distal tubule: a never-ending story?
title_full_unstemmed Stem cells from glomerulus to distal tubule: a never-ending story?
title_short Stem cells from glomerulus to distal tubule: a never-ending story?
title_sort stem cells from glomerulus to distal tubule a never ending story
topic stem cells
cd24
cd133
kidney
regeneration
url https://www.jpnim.com/index.php/jpnim/article/view/396
work_keys_str_mv AT melaniapuddu stemcellsfromglomerulustodistaltubuleaneverendingstory
AT claudiafanni stemcellsfromglomerulustodistaltubuleaneverendingstory
AT cristinaloddo stemcellsfromglomerulustodistaltubuleaneverendingstory
AT vassiliosfanos stemcellsfromglomerulustodistaltubuleaneverendingstory