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Published on: September 1, 2015
CKD-induced wingless/integration1 inhibitors and phosphorus cause the CKD-mineral and bone disorder
Yifu Fang1, Charles Ginsberg2, Michael Seifert3
1Departments of Pediatrics/Nephrology and.
Insights
Circulating Wnt inhibitors produced by diseased kidneys cause chronic kidney disease-mineral and bone disorder (CKD-MBD). Combining Dkk1 neutralization with phosphate binders may treat CKD-MBD and its vascular risks.
Area of Science:
- Nephrology
- Endocrinology
- Vascular Biology
Background:
- Chronic kidney disease (CKD) is linked to significant cardiovascular risk via CKD-mineral and bone disorder (CKD-MBD), encompassing vascular calcification and renal osteodystrophy.
- The underlying causes of CKD-MBD and effective therapies for associated cardiovascular risks remain unknown.
- CKD-MBD pathogenesis involves osteodystrophy, vascular calcification, and altered osteocyte secretion.
Purpose of the Study:
- To investigate if increased production of circulating factors by diseased kidneys drives CKD-MBD.
- To test the therapeutic potential of targeting Wnt inhibitors in CKD-MBD.
Main Methods:
- Diabetic mice with induced stage 2 CKD (CKD-2) were used to model the condition.
- Levels of Wnt inhibitors (Dickkopf-1 [Dkk1], sclerostin) and klotho were measured in CKD-2 mice.
- Therapeutic interventions included Dkk1 neutralization via monoclonal antibody and phosphate binder therapy, individually and in combination.
Main Results:
- CKD-2 mice exhibited increased renal Wnt inhibitor production and elevated circulating Dkk1, sclerostin, and klotho.
- Dkk1 neutralization in CKD-2 mice improved bone formation, corrected osteodystrophy, and prevented vascular calcification.
- Combined Dkk1 antibody and phosphate binder therapy completely resolved CKD-MBD, whereas phosphate binders alone were ineffective.
Conclusions:
- Circulating Wnt inhibitors are key contributors to CKD-MBD pathogenesis.
- Targeting Dkk1, particularly in combination with phosphate binders, shows therapeutic promise for managing CKD-MBD and its cardiovascular complications.
Abstract:
In chronic kidney disease, vascular calcification, renal osteodystrophy, and phosphate contribute substantially to cardiovascular risk and are components of CKD-mineral and bone disorder (CKD-MBD). The cause of this syndrome is unknown. Additionally, no therapy addresses cardiovascular risk in CKD. In its inception, CKD-MBD is characterized by osteodystrophy, vascular calcification, and stimulation of osteocyte secretion. We tested the hypothesis that increased production of circulating factors by diseased kidneys causes the CKD-MBD in diabetic mice subjected to renal injury to induce stage 2 CKD (CKD-2 mice). Compared with non-CKD diabetic controls, CKD-2 mice showed increased renal production of Wnt inhibitor family members and higher levels of circulating Dickkopf-1 (Dkk1), sclerostin, and secreted klotho. Neutralization of Dkk1 in CKD-2 mice by administration of a monoclonal antibody after renal injury stimulated bone formation rates, corrected the osteodystrophy, and prevented CKD-stimulated vascular calcification. Mechanistically, neutralization of Dkk1 suppressed aortic expression of the osteoblastic transcription factor Runx2, increased expression of vascular smooth muscle protein 22-α, and restored aortic expression of klotho. Neutralization of Dkk1 did not affect the elevated plasma levels of osteocytic fibroblast growth factor 23 but decreased the elevated levels of sclerostin. Phosphate binder therapy restored plasma fibroblast growth factor 23 levels but had no effect on vascular calcification or osteodystrophy. The combination of the Dkk1 antibody and phosphate binder therapy completely treated the CKD-MBD. These results show that circulating Wnt inhibitors are involved in the pathogenesis of CKD-MBD and that the combination of Dkk1 neutralization and phosphate binding may have therapeutic potential for this disorder.
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