Targeting Mitochondria and Metabolism in Acute Kidney Injury is a research paper published in Journal of Clinical Medicine (2021). On theSindex it has a DataRank of 0. It has been cited 54 times.
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National Institute of Diabetes and Digestive and Kidney Diseases
Grant: R01DK107852
National Institute of Diabetes and Digestive and Kidney Diseases
Grant: P30DK079337
NIHLBI
Grant: R01HL145470
Veterans Affairs
Grant: BX002175
Veterans Affairs
Grant: CDA-2 IK2BX004338-01
BLRD VA
Grant: I01 BX002175
BLRD VA
Grant: IK2 BX004338
National Institutes of Health
Grant: 5R01DK107852-03
Renal Oxygenation and Mitochondrial Function in AKI
National Institutes of Health
Grant: 5P30DK079337-02
UAB-UCSD O'Brien Core Center for Acute Kidney Injury Research
National Institutes of Health
Grant: 1IK2BX004338-01
The role of mitochondrial dysfunction in ARDS after AKI
National Institutes of Health
Grant: 1R01HL145470-01
Respiratory and genomic contributions to adaptive/maladaptive hypoxia responses
FWCI
5.87
Citation Percentile
1.0%
Citation Trend
Fields of Study
Keywords
Sustainable Development Goals
Additional file 7 of Mesenchymal stromal cells secretome restores bioenergetic and redox homeostasis in human proximal tubule cells after ischemic injury
Additional file 7 of Mesenchymal stromal cells secretome restores bioenergetic and redox homeostasis in human proximal tubule cells after ischemic injury
Additional file 6 of Mesenchymal stromal cells secretome restores bioenergetic and redox homeostasis in human proximal tubule cells after ischemic injury
Additional file 4 of Mesenchymal stromal cells secretome restores bioenergetic and redox homeostasis in human proximal tubule cells after ischemic injury
Additional file 4 of Mesenchymal stromal cells secretome restores bioenergetic and redox homeostasis in human proximal tubule cells after ischemic injury
Additional file 5 of Mesenchymal stromal cells secretome restores bioenergetic and redox homeostasis in human proximal tubule cells after ischemic injury
Additional file 6 of Mesenchymal stromal cells secretome restores bioenergetic and redox homeostasis in human proximal tubule cells after ischemic injury
Additional file 5 of Mesenchymal stromal cells secretome restores bioenergetic and redox homeostasis in human proximal tubule cells after ischemic injury
Additional file 1 of Mesenchymal stromal cells secretome restores bioenergetic and redox homeostasis in human proximal tubule cells after ischemic injury
Additional file 2 of Mesenchymal stromal cells secretome restores bioenergetic and redox homeostasis in human proximal tubule cells after ischemic injury
Additional file 1 of Mesenchymal stromal cells secretome restores bioenergetic and redox homeostasis in human proximal tubule cells after ischemic injury
Additional file 3 of Mesenchymal stromal cells secretome restores bioenergetic and redox homeostasis in human proximal tubule cells after ischemic injury
Additional file 2 of Mesenchymal stromal cells secretome restores bioenergetic and redox homeostasis in human proximal tubule cells after ischemic injury
Additional file 3 of Mesenchymal stromal cells secretome restores bioenergetic and redox homeostasis in human proximal tubule cells after ischemic injury