Template:Dgfn2015 Mo 13:00 Basic science: Nierenregeneration

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(Created page with "==Mo 13:00 Basic science: Nierenregeneration== === Podozytenhypertrophie versus Podozytenregeneration=== [http://nephrologie.conference2web.com/users/7495 Huber-T] miRNA193 i...")
 
m (Nephron progenitors for renal repair)
 
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[http://nephrologie.conference2web.com/users/7496 Meyer-Schwesinger-C]
 
[http://nephrologie.conference2web.com/users/7496 Meyer-Schwesinger-C]
  
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{{tp|p=1593857|t=1992. The parietal podocyte: a study of the vascular pole of the human glomerulus |pdf=http://www.researchgate.net/profile/Ian_Gibson2/publication/21561588_The_parietal_podocyte_a_study_of_the_vascular_pole_of_the_human_glomerulus/links/53f5fafc0cf2888a74920956.pdf|usr=}}
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{{tp|p=16943305|t=2006. Parietal podocytes in normal human glomeruli |pdf=http://jasn.asnjournals.org/content/17/10/2770.full.pdf|usr=}}
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{{tp|p=20007346|t=2010. De novo expression of podocyte proteins in parietal epithelial cells during experimental glomerular disease |pdf=http://ajprenal.physiology.org/content/ajprenal/298/3/F702.full.pdf|usr=}}
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{{tp|p=23727347|t=2013. Podocyte regeneration: who can become a podocyte?|pdf=http://ajp.amjpathol.org/article/S0002-9440(13)00327-1/pdf|usr=}}
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{{tp|p=23907446|t=2013. MicroRNA-mediated regulation of T helper cell differentiation and plasticity |pdf=http://sm.kidney.de/epmc.php?ep=eu&pmid=23907446&pmc=3980848&ti=MicroRNA-mediated%20regulation%20of%20T%20helper%20cell%20differentiation%20and%20plasticity|usr=}}
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{{tp|p=18776121|t=2008. Podocyte-specific deletion of dicer alters cytoskeletal dynamics and causes glomerular disease |pdf={{tp|p=23907446|t=2013. MicroRNA-mediated regulation of T helper cell differentiation and plasticity |pdf=http://sm.kidney.de/epmc.php?ep=eu&pmid=23907446&pmc=3980848&ti=MicroRNA-mediated%20regulation%20of%20T%20helper%20cell%20differentiation%20and%20plasticity|usr=}}|usr=}}
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{{tp|p=18832437|t=2008. Podocyte-specific loss of functional microRNAs leads to rapid glomerular and tubular injury |pdf=http://jasn.asnjournals.org/content/19/11/2069.full.pdf|usr=}}
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{{tp|p=18776119|t=2008. Podocyte-selective deletion of dicer induces proteinuria and glomerulosclerosis |pdf=http://jasn.asnjournals.org/content/19/11/2159.full.pdf|usr=}}
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{{tp|p=18923053|t=2008. Dicer cuts the kidney |pdf=http://jasn.asnjournals.org/content/19/11/2043.full.pdf|usr=}}
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ki 2011 zhad* gibt es nicht.
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{{utp|p=23502960|t=2013. Focal segmental glomerulosclerosis is induced by microRNA-193a and its downregulation of WT1 |pdf=http://www.nature.com/nm/journal/v19/n4/pdf/nm.3142.pdf|usr=}}
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===Nephron progenitors for renal repair===
 +
[http://nephrologie.conference2web.com/users/7634 Dekel-B]
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{{tp|p=12496960|t=2003. Human and porcine early kidney precursors as a new source for transplantation |pdf=http://www.nature.com/nm/journal/v9/n1/full/nm812.html|usr=}}
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{{tp|p=20652959|t=2010. Concise review: Kidney stem/progenitor cells: differentiate, sort out, or reprogram?|pdf=http://onlinelibrary.wiley.com/doi/10.1002/stem.486/epdf|usr=}}
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{{tp|p=16778176|t=2006. Multiple imprinted and stemness genes provide a link between normal and tumor progenitor cells of the developing human kidney |pdf=http://cancerres.aacrjournals.org/content/66/12/6040.full.pdf|usr=}}
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{{utp|p=21499773|t=2011. Wilms tumor--a renal stem cell malignancy?|pdf=http://link.springer.com/article/10.1007/s00467-011-1858-1|usr=}}
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{{tp|p=18467665|t=2008. Accumulation of malignant renal stem cells is associated with epigenetic changes  in normal renal progenitor genes |pdf=http://onlinelibrary.wiley.com/doi/10.1634/stemcells.2007-0322/epdf|usr=}}
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{{tp|p=19696931|t=2009. Expression of stem cell markers in the human fetal kidney |pdf=http://sm.kidney.de/epmc.php?ep=eu&pmid=19696931&pmc=2725321&ti=Expression%20of%20stem%20cell%20markers%20in%20the%20human%20fetal%20kidney|usr=}}
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{{tp|p=24732380|t=2014. Lin28 sustains early renal progenitors and induces Wilms tumor |pdf=http://genesdev.cshlp.org/content/28/9/971.full.pdf|usr=}}
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{{tp|p=23996934|t=2013. Identification of human nephron progenitors capable of generation of kidney structures and functional repair of chronic renal disease |pdf=http://embomolmed.embopress.org/content/embomm/5/10/1556.full.pdf|usr=}}
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{{utp|p=25963592|t=2015. The use of lineage tracing to study kidney injury and regeneration |pdf=http://www.nature.com/nrneph/journal/v11/n7/full/nrneph.2015.67.html|usr=|c=die key reference, progenitorgabe gehen in die vorhandene ckd3 niere}}
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{{tp|p=24055371|t=2013. Reactivation of NCAM1 defines a subpopulation of human adult kidney epithelial cells with clonogenic and stem/progenitor properties |pdf=http://ajp.amjpathol.org/article/S0002-9440%2813%2900585-3/pdf|usr=}}
 +
{{tp|p=21542667|t=2011. Kidney spheroids recapitulate tubular organoids leading to enhanced tubulogenic potency of human kidney-derived cells |pdf=http://lifefaculty.biu.ac.il/FacultyInstruments/attachments/article/44/Kidney%20Spheroids%20Recapitulate%20Tubular%20Organoids.pdf|usr=}}
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{{tp|p=24835991|t=2014. In vivo clonal analysis reveals lineage-restricted progenitor characteristics in  mammalian kidney development, maintenance, and regeneration |pdf=http://www.cell.com/cell-reports/pdf/S2211-1247(14)00305-2.pdf|usr=}}
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{{tp|p=22364880|t=2012. Integration potential of mouse and human bone marrow-derived mesenchymal stem cells |pdf=http://www.researchgate.net/profile/Aleksandra_Rak-Raszewska/publication/221861082_Integration_potential_of_mouse_and_human_bone_marrow-derived_mesenchymal_stem_cells/links/09e4150b5df8b5b4e6000000.pdf|usr=}}

Latest revision as of 13:16, 23 September 2015

Contents

Mo 13:00 Basic science: Nierenregeneration

Podozytenhypertrophie versus Podozytenregeneration

Huber-T miRNA193 ist die Kerjaschki-mirna

hatte ziemlich miesen kuli... webcast nachlesen geht auch nicht.

burmeister 2013 ohne journal

akin* pnas 2008

Journal article, free access
GET 2014. Unraveling the role of podocyte turnover in glomerular aging and injury Extract PDF direct
Journal article, free access
GET 2014. Origin of parietal podocytes in atubular glomeruli mapped by lineage tracing Extract PDF direct
Journal article, free access
GET 2014. The regenerative potential of parietal epithelial cells in adult mice Extract PDF direct


scr 2013-2015 etwa ronconi nicht zu finden

10 ref 1 slide omitted

nm 2013 caunard

autophagy 2013 bennel jasn 2015 bennel

MicroRNAs als Regulatoren glomerulärer Regeneration

Meyer-Schwesinger-C

Journal article, free access
GET 1992. The parietal podocyte: a study of the vascular pole of the human glomerulus Extract PDF direct
Journal article, free access
GET 2006. Parietal podocytes in normal human glomeruli Extract PDF direct
Journal article, free access
GET 2010. De novo expression of podocyte proteins in parietal epithelial cells during experimental glomerular disease Extract PDF direct
Journal article, free access
GET 2013. Podocyte regeneration: who can become a podocyte? Extract PDF direct
Journal article, free access
GET 2013. MicroRNA-mediated regulation of T helper cell differentiation and plasticity Extract PDF direct
Journal article, free access
GET 2008. Podocyte-specific deletion of dicer alters cytoskeletal dynamics and causes glomerular disease Extract [{| class="wikitable"; style="border: 1pt"
Journal article, free access
GET 2013. MicroRNA-mediated regulation of T helper cell differentiation and plasticity Extract PDF direct
PDF direct]

|}

Journal article, free access
GET 2008. Podocyte-specific loss of functional microRNAs leads to rapid glomerular and tubular injury Extract PDF direct
Journal article, free access
GET 2008. Podocyte-selective deletion of dicer induces proteinuria and glomerulosclerosis Extract PDF direct
Journal article, free access
GET 2008. Dicer cuts the kidney Extract PDF direct

ki 2011 zhad* gibt es nicht.

Journal Paper, restricted access
GET 2013. Focal segmental glomerulosclerosis is induced by microRNA-193a and its downregulation of WT1 Extract PDF direct

Nephron progenitors for renal repair

Dekel-B

Journal article, free access
GET 2003. Human and porcine early kidney precursors as a new source for transplantation Extract PDF direct
Journal article, free access
GET 2010. Concise review: Kidney stem/progenitor cells: differentiate, sort out, or reprogram? Extract PDF direct
Journal article, free access
GET 2006. Multiple imprinted and stemness genes provide a link between normal and tumor progenitor cells of the developing human kidney Extract PDF direct
Journal Paper, restricted access
GET 2011. Wilms tumor--a renal stem cell malignancy? Extract PDF direct
Journal article, free access
GET 2008. Accumulation of malignant renal stem cells is associated with epigenetic changes in normal renal progenitor genes Extract PDF direct
Journal article, free access
GET 2009. Expression of stem cell markers in the human fetal kidney Extract PDF direct
Journal article, free access
GET 2014. Lin28 sustains early renal progenitors and induces Wilms tumor Extract PDF direct
Journal article, free access
GET 2013. Identification of human nephron progenitors capable of generation of kidney structures and functional repair of chronic renal disease Extract PDF direct
Journal Paper, restricted access (Hinweis: die key reference, progenitorgabe gehen in die vorhandene ckd3 niere)
GET 2015. The use of lineage tracing to study kidney injury and regeneration Extract PDF direct
Journal article, free access
GET 2013. Reactivation of NCAM1 defines a subpopulation of human adult kidney epithelial cells with clonogenic and stem/progenitor properties Extract PDF direct
Journal article, free access
GET 2011. Kidney spheroids recapitulate tubular organoids leading to enhanced tubulogenic potency of human kidney-derived cells Extract PDF direct
Journal article, free access
GET 2014. In vivo clonal analysis reveals lineage-restricted progenitor characteristics in mammalian kidney development, maintenance, and regeneration Extract PDF direct
Journal article, free access
GET 2012. Integration potential of mouse and human bone marrow-derived mesenchymal stem cells Extract PDF direct
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