Related Experiment Videos
Hypothesis: Phytate is an important unrecognised nutrient and potential intravenous drug for preventing vascular
Pieter Joubert1, Markus Ketteler2, Carolina Salcedo3
1Laboratoris Sanifit, Parc Bit, Palma de Mallorca, Spain; Institute of Pharmaceutical Science, King's College, London, UK.
Insights
Dietary phytate may inhibit cardiovascular calcification (CVC). Studies suggest phytate-rich diets reduce CVC incidence in the elderly and prevent calcification in rats, warranting further investigation for CVC prevention.
Area of Science:
- Biochemistry
- Cardiovascular Medicine
- Nutritional Science
Background:
- Cardiovascular calcification (CVC) is linked to aging, diabetes, and renal impairment, involving hydroxyapatite deposition in blood vessels.
- Current management focuses on calcium/phosphate control, enhancing calcification inhibitors, and reducing promoters.
Purpose of the Study:
- To evaluate phytate as a potential inhibitor of vascular calcification.
- To explore the role of dietary phytate in preventing mild and aggressive forms of CVC.
Main Methods:
- Review of existing epidemiological data on phytate-rich diets and CVC incidence.
- Analysis of studies using phytate to prevent experimentally induced CVC in rats.
Main Results:
- Dietary phytate demonstrated preventive effects on age-related calcification in rats.
- Intravenous phytate effectively prevented vitamin D-induced aggressive CVC in rats.
- Epidemiological data suggest a correlation between phytate-rich diets and lower CVC incidence in the elderly.
Conclusions:
- Phytate warrants consideration as an inhibitor of vascular calcification.
- Adequate dietary phytate may prevent mild CVC, while low dietary phytate in renal disease patients may increase risk.
- Supra-physiological phytate concentrations may be necessary for aggressive CVC prevention, requiring further clinical validation.
Abstract:
Cardiovascular calcification (CVC) associated with conditions such as ageing, diabetes or renal impairment, results from the deposition of hydroxyapatite in the endothelium or media of blood vessels. Key medical management options are directed towards controlling plasma calcium and phosphate concentrations (e.g. parathormone inhibition, phosphate binders, dialysis), enhancing the effect of calcification inhibitors (e.g. fetuin-A, pyrophosphate, vitamin K, osteopontin, matrix Gla protein) and decreasing the effect of promoters of calcification (e.g. vitamin D, lipids, cytokines). Dietary phytate prevents the calcification of ageing in rats and epidemiological data suggest that phytate rich diets are associated with a lower incidence of CVC in the elderly. Intravenous phytate prevents aggressive CVC induced by vitamin D in rats. We propose that phytate should be added to the list of inhibitors of vascular calcification. We further suggest that adequate dietary phytate could prevent mild forms of calcification and that the low phytate content of diets for patients with renal disease can contribute to the increased risk of vascular calcification. It is also our contention that supra-physiological systemic phytate concentrations not achievable orally, might prevent aggressive vascular calcification. Appropriate epidemiological (to determine nutritional value) and clinical studies (evaluating safety and efficacy) are required to confirm, modify or reject our hypothesis.
Related Concept Videos
Drug Distribution: Tissue Binding
For...
Roles of Electrolytes: Calcium and Phosphate
The calcium concentration in blood plasma is primarily...
Introduction to Electrolytes
Role of Sodium
One...
Key Elements for Plant Nutrition
Pharmacokinetics: Drug–Food and Drug–Viral Interactions
Urinary Tract Calculi IV: Nutrition Therapy and Prevention