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Updated: Jun 10, 2026

Comparative Proteomic Analysis of Whole Kidney, Medulla, and Cortical Tubules in Diabetic Pathogenesis of Kidney Injury in Mice
Published on: May 2, 2025
High-molecular weight hyaluronan reduced renal PKC activation in genetically diabetic mice
Giuseppe M Campo1, Angela Avenoso, Antonio Micali
1Department of Biochemical, Physiological and Nutritional Sciences, Section of Medical Chemistry, School of Medicine, University of Messina, Policlinico Universitario, Messina, Italy. gcampo@unime.it
Abstract:
The cluster determinant (CD44) seems to play a key role in tissues injured by diabetes type 2. CD44 stimulation activates the protein kinase C (PKC) family which in turn activates the transcriptional nuclear factor kappa B (NF-κB) responsible for the expression of the inflammation mediators such as tumor necrosis factor alpha (TNF-α), interleukin-6 (IL-6), interleukin-18 (IL-18), inducible nitric oxide synthase (iNOS), and matrix metalloproteinases (MMPs). Regulation of CD44 interaction with its ligands depends greatly upon PKC. We investigated the effect of the treatment with high-molecular weight hyaluronan (HA) on diabetic nephropathy in genetically diabetic mice. BKS.Cg-m+/+Lepr(db) mice had elevated plasma insulin from 15 days of age and high blood sugar levels at 4 weeks. The severe nephropathy that developed was characterized by a marked increased in CD44 receptors, protein kinase C betaI, betaII, and epsilon (PKC(βI), PKC(βII), and PKCε) mRNA expression and the related protein products in kidney tissue. High levels of mRNA and related protein levels were also detected in the damaged kidney for NF-κB, TNF-α, IL-6, IL-18, MMP-7, and iNOS. Chronic daily administration of high-molecular mass HA for 2 weeks significantly reduced CD44, PKC(βI), PKC(βII), and PKCα gene expression and the related protein production in kidney tissue and TNF-α, IL-6, IL-18, MMP-7, and iNOS expression and levels also decreased. Histological analysis confirmed the biochemical data. However, blood parameters of diabetes were unchanged. These results suggest that the CD44 and PKC play an important role in diabetes and interaction of high-molecular weight HA with these proteins may reduce inflammation and secondary pathologies due to this disease.
Insights
High-molecular weight hyaluronan (HA) treatment reduced inflammation and kidney damage in diabetic mice by targeting CD44 and protein kinase C (PKC). This suggests HA may mitigate diabetes-related pathologies.
Area of Science:
- Biochemistry
- Immunology
- Nephrology
Background:
- Type 2 diabetes involves tissue injury where cluster determinant (CD44) and protein kinase C (PKC) pathways are implicated.
- CD44 stimulation activates PKC, leading to nuclear factor kappa B (NF-κB) activation and expression of inflammatory mediators.
- PKC regulates CD44 ligand interactions, suggesting a role in diabetes-related inflammation.
Purpose of the Study:
- To investigate the therapeutic effect of high-molecular weight hyaluronan (HA) on diabetic nephropathy.
- To examine the impact of HA on CD44, PKC, and downstream inflammatory markers in diabetic kidney disease.
Main Methods:
- Utilized genetically diabetic BKS.Cg-m+/+Lepr(db) mice exhibiting elevated insulin and blood sugar.
- Assessed kidney tissue for mRNA and protein expression of CD44, PKC isoforms (βI, βII, ε, α), NF-κB, TNF-α, IL-6, IL-18, MMP-7, and iNOS.
- Administered daily high-molecular mass HA for two weeks and evaluated biochemical and histological changes.
Main Results:
- Diabetic mice showed increased CD44, PKC (βI, βII, ε), NF-κB, TNF-α, IL-6, IL-18, MMP-7, and iNOS in kidney tissue.
- HA treatment significantly reduced CD44, PKC (βI, βII, α), and inflammatory marker expression and levels.
- Histological analysis corroborated the biochemical findings, though diabetes blood parameters remained unchanged.
Conclusions:
- CD44 and PKC play critical roles in the pathogenesis of diabetic nephropathy.
- High-molecular weight HA effectively reduces inflammation and kidney damage in a mouse model of diabetes.
- HA interaction with CD44 and PKC pathways offers a potential therapeutic strategy for diabetes-related complications.