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Direct and Indirect Effect of Honey as a Functional Food Against Metabolic Syndrome and Its Skeletal Complications

Elvy Suhana Mohd Ramli, Kumeshini Sukalingam, Mohd Amir Kamaruzzaman, Ima Nirwana Soelaiman, Kok-Lun Pang, Kok‐Yong Chin

2021Diabetes Metabolic Syndrome and Obesity23 citationsDOIOpen Access PDF

Abstract

Metabolic syndrome (MetS) refers to the simultaneous presence of hypertension, hyperglycemia, dyslipidemia and/or visceral obesity, which predisposes a person to cardiovascular diseases and diabetes. Evidence suggesting the presence of direct and indirect associations between MetS and osteoporosis is growing. Many studies have reported the beneficial effects of polyphenols in alleviating MetS in in vivo and in vitro models through their antioxidant and anti-inflammation actions. This review aims to summarize the effects of honey (based on unifloral and multi-floral nectar sources) on bone metabolism and each component of MetS. A literature search was performed using the PubMed and Scopus databases using specific search strings. Original studies related to components of MetS and bone, and the effects of honey on components of MetS and bone were included. Honey polyphenols could act synergistically in alleviating MetS by preventing oxidative damage and inflammation. Honey intake is shown to reduce blood glucose levels and prevent excessive weight gain. It also improves lipid metabolism by reducing total cholesterol, triglycerides and low-density lipoprotein, as well as increasing high-density lipoprotein. Honey can prevent bone loss by reducing the adverse effects of MetS on bone homeostasis, apart from its direct action on the skeletal system. In conclusion, honey supplementation could be integrated into the management of MetS and MetS-induced bone loss as a preventive and adjunct therapeutic agent.

Topics & Concepts

MedicineDyslipidemiaMetabolic syndromeDiabetes mellitusInternal medicineOsteoporosisBone remodelingObesityEndocrinologyBee Products Chemical AnalysisHormonal and reproductive studiesAntioxidant Activity and Oxidative Stress
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