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Published on: May 6, 2018
Inhibition of calcium(2+)/calmodulin-dependent protein kinase type IV ameliorates experimental nephrotic syndrome
Qiangguo Ao1, Qingli Cheng, Qiang Ma
1Department of Geriatric Nephrology, Institute of Gerontology, Chinese PLA General Hospital, China.
Objective:
Evidence has demonstrated that Ca(2+)/calmodulin-dependent protein kinase type IV (CaMKIV) contributes to altered cytokine production by promoting the production of inflammatory cytokines. This study aimed to explore the protective role and underlying mechanisms of CaMKIV inhibition in experimental nephrotic syndrome.
Methods:
BALB/c mice received single intravenous injections of adriamycin (10 mg/kg) then were sacrificed at two, four and six weeks. In the second study, treatment with KN-93, a CaMKIV inhibitor, or vehicle administered via intraperitoneal injection was started five days after adriamycin injection. Functional and pathologic parameters, the presence of inflammatory infiltration and the expressions of pro-inflammatory cytokines were assessed.
Results:
The CaMKIV protein expression levels were upregulated in the mice with adriamycin nephropathy, which was significantly inhibited by KN-93 (p<0.01). As compared with the vehicle-treated controls, KN-93 treatment resulted in marked suppression of proteinuria and serum creatinine at week 6 (p<0.01), but not at two weeks after induction of the disease. KN-93 inhibited glomerulosclerosis and the development of tubulointerstitial lesions. The renal alpha-smooth muscle actin (α-SMA) expression was also significantly suppressed by KN-93 treatment at week 6 (p<0.01). Moreover, KN-93 inhibited the renal monocyte chemoattractant protein-1 (MCP-1) expression, paralleled by a reduction in the interstitial infiltration of macrophages and T-cells (p<0.01).
Conclusion:
Our findings suggest that activation of CaMKIV signaling is involved in the progression of glomerular diseases with a proteinuric state. Our data therefore justify the development of small molecule CaMKIV inhibitors for the treatment of clinical nephrotic syndrome.
Insights
Inhibiting Ca(2+)/calmodulin-dependent protein kinase type IV (CaMKIV) with KN-93 protected against adriamycin-induced nephrotic syndrome in mice. CaMKIV inhibition reduced proteinuria, kidney damage, and inflammation, suggesting its therapeutic potential.
Area of Science:
- Nephrology
- Molecular Biology
- Immunology
Background:
- Ca(2+)/calmodulin-dependent protein kinase type IV (CaMKIV) promotes inflammatory cytokine production.
- CaMKIV signaling is implicated in various cellular processes, including immune responses and kidney function.
- Nephrotic syndrome is characterized by proteinuria and kidney damage, often associated with inflammation.
Purpose of the Study:
- To investigate the protective effects of CaMKIV inhibition in an experimental model of nephrotic syndrome.
- To elucidate the underlying mechanisms by which CaMKIV inhibition exerts its protective role.
- To evaluate the therapeutic potential of CaMKIV inhibitors for treating nephrotic syndrome.
Main Methods:
- Adriamycin was used to induce nephrotic syndrome in BALB/c mice.
- Mice were treated with KN-93, a CaMKIV inhibitor, or vehicle after adriamycin injection.
- Functional parameters (proteinuria, serum creatinine), pathological changes, and inflammatory markers were assessed.
Main Results:
- CaMKIV protein expression was upregulated in adriamycin-induced nephropathy and reduced by KN-93.
- KN-93 treatment significantly suppressed proteinuria, serum creatinine, glomerulosclerosis, and tubulointerstitial lesions at week 6.
- KN-93 inhibited renal alpha-smooth muscle actin (α-SMA) and monocyte chemoattractant protein-1 (MCP-1) expression, reducing macrophage and T-cell infiltration.
Conclusions:
- CaMKIV signaling activation contributes to the progression of proteinuric glomerular diseases.
- CaMKIV inhibition demonstrates a protective role in experimental nephrotic syndrome.
- Small molecule CaMKIV inhibitors warrant further development for clinical application in nephrotic syndrome treatment.
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