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DNA methyltransferase inhibition restores erythropoietin production in fibrotic murine kidneys.
J Clin Invest. 2016 Feb;126(2):721-31. doi: 10.1172/JCI82819. Epub 2016 Jan 5.
2
Anaemia: Targeting epigenetics in renal anaemia.
Nat Rev Nephrol. 2016 Mar;12(3):125. doi: 10.1038/nrneph.2016.5. Epub 2016 Jan 25.
4
Origin of myofibroblasts and cellular events triggering fibrosis.
Kidney Int. 2015 Feb;87(2):297-307. doi: 10.1038/ki.2014.287. Epub 2014 Aug 27.
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Impaired erythropoietin synthesis in chronic kidney disease is caused by alterations in extracellular matrix composition.
J Cell Mol Med. 2018 Jan;22(1):302-314. doi: 10.1111/jcmm.13319. Epub 2017 Aug 30.
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Exosomal miR-107 antagonizes profibrotic phenotypes of pericytes by targeting a pathway involving HIF-1/Notch1/PDGFR/YAP1/Twist1 axis in vitro.
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Physiology and pathophysiology of renal erythropoietin-producing cells.
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Methylation in pericytes after acute injury promotes chronic kidney disease.
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Update of pericytes function and their roles in kidney diseases.
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Cytotoxic and proliferation-inhibitory activity of natural and synthetic fungal tropolone sesquiterpenoids in various cell lines.
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Epigenetics of Hypertensive Nephropathy.
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Crosstalk between oxygen signaling and iron metabolism in renal interstitial fibroblasts.
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Hypoxic Inducible Factor Stabilization in Pericytes beyond Erythropoietin Production: The Good and the Bad.
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Targeting inflammation in perivascular cells and neuroimmune interactions for treating kidney disease.
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Mechanosensitive Cation Channel Piezo1 Is Involved in Renal Fibrosis Induction.
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Nutritional Modulation of Hepcidin in the Treatment of Various Anemic States.
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Novel Approaches in Chronic Renal Failure without Renal Replacement Therapy: A Review.
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Role of perivascular cells in kidney homeostasis, inflammation, repair and fibrosis.
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1
Perivascular Gli1+ progenitors are key contributors to injury-induced organ fibrosis.
Cell Stem Cell. 2015 Jan 8;16(1):51-66. doi: 10.1016/j.stem.2014.11.004. Epub 2014 Nov 20.
3
Cellular and molecular mechanisms in kidney fibrosis.
J Clin Invest. 2014 Jun;124(6):2299-306. doi: 10.1172/JCI72267. Epub 2014 Jun 2.
4
Lineage tracing reveals distinctive fates for mesothelial cells and submesothelial fibroblasts during peritoneal injury.
J Am Soc Nephrol. 2014 Dec;25(12):2847-58. doi: 10.1681/ASN.2013101079. Epub 2014 May 22.
5
A novel distal upstream hypoxia response element regulating oxygen-dependent erythropoietin gene expression.
Haematologica. 2014 Apr;99(4):e45-8. doi: 10.3324/haematol.2013.102707. Epub 2014 Feb 7.
6
Methylation impact analysis of erythropoietin (EPO) Gene to hypoxia inducible factor-1α (HIF-1α) activity.
Bioinformation. 2013 Aug 28;9(15):782-7. doi: 10.6026/97320630009782. eCollection 2013.
7
Plasticity of renal erythropoietin-producing cells governs fibrosis.
J Am Soc Nephrol. 2013 Oct;24(10):1599-616. doi: 10.1681/ASN.2013010030. Epub 2013 Jul 5.
8
A mouse model of adult-onset anaemia due to erythropoietin deficiency.
Nat Commun. 2013;4:1950. doi: 10.1038/ncomms2950.
9
Renal CD133(+)/CD73(+) progenitors produce erythropoietin under hypoxia and prolyl hydroxylase inhibition.
J Am Soc Nephrol. 2013 Jul;24(8):1234-41. doi: 10.1681/ASN.2012080772. Epub 2013 May 9.
10
LRP-6 is a coreceptor for multiple fibrogenic signaling pathways in pericytes and myofibroblasts that are inhibited by DKK-1.
Proc Natl Acad Sci U S A. 2013 Jan 22;110(4):1440-5. doi: 10.1073/pnas.1211179110. Epub 2013 Jan 9.

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