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Metalloporphyrins Reduce Proteinuria in Podocyte Immune Injury: The Role of Metal and Porphyrin Moieties
Elias A Lianos1,2, Gia Nghi Phung1, Michelle Foster1
1Salem Veterans Affairs Health Care System, Salem, VA 24153, USA.
Abstract:
Depending on their central metal atom, metalloporphyrins (MPs) can attenuate or exacerbate the severity of immune-mediated kidney injury, and this has been attributed to the induction or inhibition of heme oxygenase (HO) activity, particularly the inducible isoform (HO-1) of this enzyme. The role of central metal or porphyrin moieties in determining the efficacy of MPs to attenuate injury, as well as mechanisms underlying this effect, have not been assessed. Using an antibody-mediated complement-dependent model of injury directed against rat visceral glomerular epithelial cells (podocytes) and two MPs (FePPIX, CoPPIX) that induce both HO-1 expression and HO enzymatic activity in vivo but differ in their chelated metal, we assessed their efficacy in reducing albuminuria. Podocyte injury was induced using rabbit immune serum raised against the rat podocyte antigen, Fx1A, and containing an anti-Fx1A antibody that activates complement at sites of binding. FePPIX or CoPPIX were injected intraperitoneally (5 mg/kg) 24 h before administration of the anti-Fx1A serum and on days 1, 3, 6, and 10 thereafter. Upon completion of urine collection on day 14, the kidney cortex was obtained for histopathology and isolation of glomeruli, from which total protein extracts were obtained. Target proteins were analyzed by capillary-based separation and immunodetection (Western blot analysis). Both MPs had comparable efficacy in reducing albuminuria in males, but the efficacy of CoPPIX was superior in female rats. The metal-free protoporphyrin, PPIX, had minimal or no effect on urine albumin excretion. CoPPIX was also the most potent MP in inducing glomerular HO-1, reducing complement deposition, and preserving the expression of the complement regulatory protein (CRP) CD55 but not that of CD59, the expression of which was reduced by both MPs. These observations demonstrate that the metal moiety of HO-1-inducing MPs plays an important role in reducing proteinuria via mechanisms involving reduced complement deposition and independently of an effect on CRPs.
Insights
Metalloporphyrins (MPs) impact kidney injury severity by affecting heme oxygenase (HO) activity. Cobalt-protoporphyrin (CoPPIX) showed superior efficacy in reducing albuminuria and complement deposition in female rats.
Area of Science:
- Nephrology
- Immunology
- Biochemistry
Background:
- Metalloporphyrins (MPs) influence immune-mediated kidney injury via heme oxygenase (HO) activity.
- The role of metal vs. porphyrin moieties in MP efficacy is not well understood.
Purpose of the Study:
- To assess the efficacy of different MPs in reducing albuminuria in a rat model of podocyte injury.
- To investigate the role of the central metal atom in MP-mediated protection.
Main Methods:
- Antibody-mediated complement-dependent podocyte injury model in rats.
- Administration of iron-protoporphyrin (FePPIX) and cobalt-protoporphyrin (CoPPIX) or metal-free protoporphyrin (PPIX).
- Assessment of albuminuria, glomerular heme oxygenase-1 (HO-1) expression, complement deposition, and complement regulatory proteins (CD55, CD59).
Main Results:
- Both FePPIX and CoPPIX reduced albuminuria comparably in males; CoPPIX was superior in females.
- CoPPIX most potently induced HO-1, reduced complement deposition, and preserved CD55 expression.
- Metal-free PPIX had minimal effect on albuminuria.
Conclusions:
- The metal moiety of HO-1-inducing MPs is crucial for reducing proteinuria.
- MP efficacy involves reduced complement deposition and is independent of complement regulatory proteins CD55/CD59 effects.
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