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Exploring the anti-inflammatory potential of vitamin D in cardiometabolic diseases
1Department of Life and Consumer Sciences, College of Agriculture and Environmental Sciences, University of South Africa, Calabash Building, Office no: 02-047 Florida Campus, 1710, South Africa.
Insights
Vitamin D (VD) supplementation may reduce inflammation in cardiometabolic diseases by targeting key inflammatory markers. However, its effectiveness in humans requires further investigation, as rodent studies showed more consistent results than clinical trials.
Area of Science:
- Cardiovascular Research
- Endocrinology
- Immunology
Background:
- Rising prevalence of cardiometabolic diseases linked to inflammation.
- Vitamin D (VD) deficiency exacerbates inflammation.
- Non-steroidal anti-inflammatory drugs have coagulation risks, prompting interest in VD supplements.
Purpose of the Study:
- To review the effect of VD supplementation on inflammation markers (NF-κβ, TNF-α, MCP-1) in cardiometabolic diseases.
- To evaluate the translatability of VD's anti-inflammatory effects from rodent models to human clinical studies.
Main Methods:
- Systematic review of 37 studies (16 rodent models, 21 clinical studies).
- Analysis of VD's impact on NF-κβ, TNF-α, and MCP-1.
- Comparison of findings between animal models and human trials.
Main Results:
- Rodent models showed significant reduction in NF-κβ and TNF-α with VD; clinical studies yielded conflicting results.
- VD demonstrated a role in reducing MCP-1 in rodents, with partial support from clinical trials.
- Overall, VD shows potential in modulating inflammation via NF-κβ, TNF-α, and MCP-1 pathways, but with limited consistency in human studies.
Conclusions:
- Vitamin D modulates inflammation in cardiometabolic diseases by inhibiting NF-κβ activation and suppressing TNF-α and MCP-1 production.
- Translatability of VD's anti-inflammatory benefits from rodent models to clinical settings is limited.
- Further randomized controlled trials are needed to confirm VD's efficacy, optimal dosage, and duration for managing inflammation in patients with cardiometabolic conditions.
Abstract:
The prevalence of cardiometabolic diseases is rising, and this is fuelled by inflammation, which tends to be worse in individuals with vitamin D (VD) deficiency. While non-steroidal anti-inflammatory interventions are available, they present with coagulation events. Hence, alternative therapy in the form of VD supplements is gaining research interest. This study reviewed the effect of VD supplementation on inflammation, focusing on nuclear factor kappa-beta (NF-κβ), tumour necrosis factor-alpha (TNF-α) and monocyte chemoattractant protein-1 (MCP-1) across different cardiometabolic disease. Thirty-seven studies, 16 rodent models and 21 clinical studies were evaluated. The study considered evidence from rodent models to understand the effect of VD on these markers of inflammation and its translatability to clinical studies. While the potential benefits of VD were notable in rodents, these effects were less consistent in clinical studies. Notably, rodent models showed a more pronounced impact of VD in reducing NF-κβ and TNF-α; however, clinical trials reported conflicting findings. Furthermore, the VD was important in reducing MCP-1 across different rodent models; this was partially demonstrated in clinical trials. Based on these findings, VD modulates inflammation in cardiometabolic disease by inhibiting the activation of NF-κβ and suppressing the production of TNF-α and MCP-1. Although VD has some possible benefits in rodent models, the translatability of these findings in clinical trials is limited. Hence, the presented evidence in this study calls for further randomised controlled trials to assess the effect of VD on inflammation in patients living with different conditions as a therapy to curb the inflammation and the risk thereof. Future trials should also focus on exploring the VD dose-response, optimal dose, and duration of VD intervention among these patients that may offer optimal benefits on inflammation.
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