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Genomics and Proteomics
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Genomic Strategies for Diabetic Nephropathy

Katalin Susztak, Kumar Sharma, Mario Schiffer, Peter McCue, Emilio Ciccone and Erwin P. Böttinger
JASN August 2003, 14 (suppl 3) S271-S278; DOI: https://doi.org/10.1097/01.ASN.0000078035.81397.8A
Katalin Susztak
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Kumar Sharma
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Mario Schiffer
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Peter McCue
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Emilio Ciccone
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Erwin P. Böttinger
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Abstract

ABSTRACT. Insight into the molecular mechanisms that underlie the origin and progression of diabetic nephropathy remains limited in part because conventional research tools have restricted investigators to focus on single genes or isolated pathways. Microarray technologies provide opportunities for evaluating genetic factors and environmental effects at a genomic scale during the pathogenesis of diabetic nephropathy. Despite the enormous power of the microarray technology, there are several pitfalls that need to be considered. This article discusses conceptual, practical, statistical, and logistical considerations for the use of microarrays in studies of experimental and human diabetic renal disease. New knowledge in this field will facilitate new approaches for molecular diagnosis and drug discovery. E-mail: ksusztak@aecom.yu.edu

  • © 2003 American Society of Nephrology
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Journal of the American Society of Nephrology: 14 (suppl 3)
Journal of the American Society of Nephrology
Vol. 14, Issue suppl 3
1 Aug 2003
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Genomic Strategies for Diabetic Nephropathy
Katalin Susztak, Kumar Sharma, Mario Schiffer, Peter McCue, Emilio Ciccone, Erwin P. Böttinger
JASN Aug 2003, 14 (suppl 3) S271-S278; DOI: 10.1097/01.ASN.0000078035.81397.8A

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Genomic Strategies for Diabetic Nephropathy
Katalin Susztak, Kumar Sharma, Mario Schiffer, Peter McCue, Emilio Ciccone, Erwin P. Böttinger
JASN Aug 2003, 14 (suppl 3) S271-S278; DOI: 10.1097/01.ASN.0000078035.81397.8A
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  • Article
    • Abstract
    • Genetics of Diabetic Complications in Humans
    • New Genomic Tools and Resources
    • Functional Genomics of Diabetic Nephropathy
    • Conclusions
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More in this TOC Section

  • Transcriptome Profiling and the Pathogenesis of Diabetic Complications
  • Application of High-Density DNA Microarray to Study Smoke- and Hydrogen Peroxide–Induced Injury and Repair in Human Bronchial Epithelial Cells
Show more Genomics and Proteomics

Cited By...

  • Glomerular Endothelial Mitochondrial Dysfunction Is Essential and Characteristic of Diabetic Kidney Disease Susceptibility
  • Transcriptome Analysis of Human Diabetic Kidney Disease
  • Diabetic Nephropathy: A Frontier for Personalized Medicine
  • Glucose-Induced Reactive Oxygen Species Cause Apoptosis of Podocytes and Podocyte Depletion at the Onset of Diabetic Nephropathy
  • Molecular Profiling of Diabetic Mouse Kidney Reveals Novel Genes Linked to Glomerular Disease
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