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The role of Elabela in kidney disease
by
Wu, Linlin
, Lu, Xuehong
, Xu, Feng
, Zheng, Qian
, Luan, Rumei
, Tian, Geng
, Ci, Xin
in
Angiogenesis
/ Cardiovascular system
/ Cell differentiation
/ Diabetes mellitus
/ Diabetic nephropathy
/ Embryo cells
/ Embryogenesis
/ Endoderm
/ Homeostasis
/ Humans
/ Ischemia
/ Kidney diseases
/ Kidney Diseases - etiology
/ Ligands
/ Medicine
/ Medicine & Public Health
/ Nephrology
/ Nephrology - Review
/ Nephropathy
/ Peptide Hormones - physiology
/ Pluripotency
/ Reperfusion
/ Stem cells
/ Urology
2021
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The role of Elabela in kidney disease
by
Wu, Linlin
, Lu, Xuehong
, Xu, Feng
, Zheng, Qian
, Luan, Rumei
, Tian, Geng
, Ci, Xin
in
Angiogenesis
/ Cardiovascular system
/ Cell differentiation
/ Diabetes mellitus
/ Diabetic nephropathy
/ Embryo cells
/ Embryogenesis
/ Endoderm
/ Homeostasis
/ Humans
/ Ischemia
/ Kidney diseases
/ Kidney Diseases - etiology
/ Ligands
/ Medicine
/ Medicine & Public Health
/ Nephrology
/ Nephrology - Review
/ Nephropathy
/ Peptide Hormones - physiology
/ Pluripotency
/ Reperfusion
/ Stem cells
/ Urology
2021
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Do you wish to request the book?
The role of Elabela in kidney disease
by
Wu, Linlin
, Lu, Xuehong
, Xu, Feng
, Zheng, Qian
, Luan, Rumei
, Tian, Geng
, Ci, Xin
in
Angiogenesis
/ Cardiovascular system
/ Cell differentiation
/ Diabetes mellitus
/ Diabetic nephropathy
/ Embryo cells
/ Embryogenesis
/ Endoderm
/ Homeostasis
/ Humans
/ Ischemia
/ Kidney diseases
/ Kidney Diseases - etiology
/ Ligands
/ Medicine
/ Medicine & Public Health
/ Nephrology
/ Nephrology - Review
/ Nephropathy
/ Peptide Hormones - physiology
/ Pluripotency
/ Reperfusion
/ Stem cells
/ Urology
2021
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Journal Article
The role of Elabela in kidney disease
2021
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Overview
Elabela, also known as Toddler or Apela, is a recently discovered hormonal peptide containing 32 amino acids. Elabela is a ligand of the apelin receptor (APJ). APJ is a G protein-coupled receptor widely expressed throughout body, and together with its cognate ligand, apelin, it plays an important role in various physiological processes including cardiovascular functions, angiogenesis and fluid homeostasis. Elabela also participates in embryonic development and pathophysiological processes in adulthood. Elabela is highly expressed in undifferentiated embryonic stem cells and regulates endoderm differentiation and cardiovascular system development. During differentiation, Elabela is highly expressed in pluripotent stem cells and in adult renal collecting ducts and loops, where it functions to maintain water and sodium homeostasis. Other studies have also shown that Elabela plays a crucial role in the pathogenesis of kidney diseases. This review addresses the role of Elabela in kidney diseases including renal ischemia/reperfusion injury, hypertensive nephropathy, diabetic nephropathy, and cardiorenal syndrome.
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