ABSTRACT Type 2 diabetes mellitus (T2DM) has traditionally been explained by insulin resistance and β-cell dysfunction, but emerging evidence indicates that it is also influenced by multi-organ endocrine interactions. This systematic review consolidates current findings on the roles of osteocalcin, Vitamin D, and parathyroid hormone (PTH) in T2DM, presenting a Tri-Hormonal Axis model for glycemic regulation. A comprehensive literature search was conducted across PubMed, Scopus, Web of Science, Embase, and Google Scholar in accordance with PRISMA guidelines. Eligible human and animal studies reporting associations of one or more of these biomarkers with T2DM were included. Fifty studies met the criteria and were evaluated using the Newcastle–Ottawa Scale and the Cochrane Risk of Bias 2 tool. The findings demonstrated that osteocalcin levels are consistently reduced in uncontrolled T2DM and show inverse associations with HbA1c and HOMA-IR, suggesting a role in insulin sensitivity and secretion. Vitamin D deficiency was found in 55%–85% of patients, and supplementation trials indicated modest but significant improvements in glycemic indices, particularly among those with baseline deficiency. Elevated PTH levels were consistently associated with insulin resistance, poor glycemic control, and an increased risk of diabetic complications. While only a limited number of studies examined all three biomarkers simultaneously, the triad of low osteocalcin, low Vitamin D, and high PTH strongly predicted adverse metabolic outcomes. These findings suggest that T2DM extends beyond pancreatic dysfunction to involve endocrine crosstalk between bone, Vitamin D, and parathyroid pathways, highlighting new opportunities for biomarker-driven risk prediction and adjunctive therapeutic strategies.
Khan et al. (Wed,) studied this question.
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