Target intelligence / Profile preview

Hydroxyapatite (Calcium phosphate) (HAP)

Target
HAP
Molecular classification
Inorganic mineral, Calcium phosphate crystal
01

Overview

Calcium-based mineral deposits, primarily in the form of hydroxyapatite [Ca10(PO4)6(OH)2], are the hallmark of vascular calcification, a pathological process where mineral is deposited in the intimal or medial layers of blood vessels (Schiantarelli et al., 2020, Frontiers in Cardiovascular Medicine). This process is highly prevalent in patients with chronic kidney disease (CKD), diabetes, and advanced age, leading to increased arterial stiffness, hypertension, and high cardiovascular mortality (Durham et al., 2018, Circulation Research). While traditionally viewed as a passive process of calcium-phosphate precipitation, it is now recognized as an active, cell-mediated biological event resembling osteogenesis (Leopold, 2015, Circulation). Therapeutic strategies target these deposits by inhibiting the nucleation and growth of hydroxyapatite crystals or by enhancing endogenous inhibitors like pyrophosphate (Perelló et al., 2018, British Journal of Clinical Pharmacology). Drugs such as SNF472 (myo-inositol hexaphosphate) and sodium thiosulfate are used to interact directly with the mineral phase to prevent further deposition or facilitate dissolution (Nigwekar et al., 2013, CJASN). Managing these deposits is critical for reducing cardiovascular risk, though care must be taken to avoid interfering with systemic bone mineralization (O'Neill et al., 2011, Kidney International). The presence of these deposits is often quantified using the Coronary Artery Calcium (CAC) score, which serves as a powerful predictor of future cardiovascular events (Budoff et al., 2018, JACC).

Other names
Vascular calcificationCalcium phosphate depositsMedial arterial calcificationIntimal calcificationAortic calcificationEctopic mineralization
02

Mechanism of action

Inhibition of hydroxyapatite crystal nucleation and growth through surface binding or calcium chelation (Perelló et al., 2018; Nigwekar et al., 2013).

03

Biological functions

MineralizationPathological calcification
04

Disease associations

Cardiovascular diseaseChronic kidney diseaseAtherosclerosisCalciphylaxisMonckeberg's medial sclerosis
05

Safety considerations

Risk of adynamic bone diseaseHypocalcemiaMetabolic acidosisInterference with normal bone mineralizationNausea and vomiting
06

Interacting drugs

Sodium thiosulfate

4 more in the full profile.

07

Biomarkers

Coronary artery calcium (CAC) scoreSerum fetuin-AUncarboxylated matrix Gla protein (ucMGP)Bone-specific alkaline phosphataseT50 calcification propensity score

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