Phosphorus Supplementation Mitigates Perivascular Adipose Inflammation-Induced Cardiovascular Consequences in Early
Haneen S Dwaib1,2, Ghina Ajouz1, Ibrahim AlZaim1,3
1Department of Pharmacology and Toxicology Faculty of Medicine The American University of Beirut Beirut Lebanon.
Insights
Inorganic phosphorus (Pi) supplementation reverses inflammation in perivascular adipose tissue (PVAT) and early cardiovascular dysfunction in prediabetic rats. This simple intervention may counteract metabolic impairment by inhibiting UCP1 expression.
Area of Science:
- Metabolic dysfunction and cardiovascular disease
- Adipose tissue inflammation
- Nutritional interventions
Background:
- Metabolic dysfunction and cardiovascular complications involve complex interactions beyond blood glucose levels.
- Inflammation in perivascular adipose tissue (PVAT) is an early driver of cardiovascular damage.
- Targeted interventions for these root pathologies are lacking.
Purpose of the Study:
- To investigate if inorganic phosphorus (Pi) supplementation can ameliorate early metabolic impairment and cardiovascular dysfunction.
- To explore the role of Pi in modulating inflammation within PVAT.
- To assess the impact of Pi on specific inflammatory markers and metabolic pathways.
Main Methods:
- Utilized a nonobese prediabetic rat model with diet-induced PVAT inflammation.
- Administered Pi supplementation for 12 weeks at varying concentrations.
- Analyzed PVAT inflammation markers (UCP1, HIF-1α, IL-1β), macrophage polarization, and cardiovascular function.
- Investigated the effect of Pi-deficient and Pi-reinstated diets.
Main Results:
- Pi supplementation dose-dependently reversed PVAT inflammation and normalized macrophage polarization.
- Key inflammatory markers (UCP1, HIF-1α, IL-1β) and their associated pathways were reversed.
- Metabolic efficiency was restored, consistent with Pi's role as a UCP1 inhibitor.
- Parasympathetic autonomic and cerebrovascular dysfunction were ameliorated, alongside cardiovascular damage markers.
Conclusions:
- Pi supplementation represents a straightforward intervention to reverse PVAT inflammation.
- This intervention effectively mitigates early cardiovascular consequences linked to metabolic dysfunction.
- The mechanism likely involves interference with hypercaloric-induced UCP1 expression/activity.
Abstract:
Background The complexity of the interaction between metabolic dysfunction and cardiovascular complications has long been recognized to extend beyond simple perturbations of blood glucose levels. Yet, structured interventions targeting the root pathologies are not forthcoming. Growing evidence implicates the inflammatory changes occurring in perivascular adipose tissue (PVAT) as early instigators of cardiovascular deterioration. Methods and Results We used a nonobese prediabetic rat model with localized PVAT inflammation induced by hypercaloric diet feeding, which dilutes inorganic phosphorus (Pi) to energy ratio by 50%, to investigate whether Pi supplementation ameliorates the early metabolic impairment. A 12-week Pi supplementation at concentrations equivalent to and twice as much as that in the control diet was performed. The localized PVAT inflammation was reversed in a dose-dependent manner. The increased expression of UCP1 (uncoupling protein1), HIF-1α (hypoxia inducible factor-1α), and IL-1β (interleukin-1β), representing the hallmark of PVAT inflammation in this rat model, were reversed, with normalization of PVAT macrophage polarization. Pi supplementation restored the metabolic efficiency consistent with its putative role as an UCP1 inhibitor. Alongside, parasympathetic autonomic and cerebrovascular dysfunction function observed in the prediabetic model was reversed, together with the mitigation of multiple molecular and histological cardiovascular damage markers. Significantly, a Pi-deficient control diet neither induced PVAT inflammation nor cardiovascular dysfunction, whereas Pi reinstatement in the diet after a 10-week exposure to a hypercaloric low-Pi diet ameliorated the dysfunction. Conclusions Our present results propose Pi supplementation as a simple intervention to reverse PVAT inflammation and its early cardiovascular consequences, possibly through the interference with hypercaloric-induced increase in UCP1 expression/activity.
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