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World J Exp Med. Sep 20, 2026; 16(3): 121518
Published online Sep 20, 2026. doi: 10.5493/wjem.121518
Bone-specific alkaline phosphatase as a marker of bone formation: Clinical and imaging correlates
Pooja Jayaraman Thirunavukkarasu, Arunagiri Gunasekar, Naveen Jeyaraman, Arulkumar Nallakumarasamy, Viji Devanand, Sanjeevi Bharadwaj, Madhan Jeyaraman
Pooja Jayaraman Thirunavukkarasu, Arunagiri Gunasekar, Department of Orthopaedics, Government Medical College and Hospital, Thiruvallur 602001, Tamil Nadu, India
Naveen Jeyaraman, Madhan Jeyaraman, Department of Orthopaedics, ACS Medical College and Hospital, Dr MGR Educational and Research Institute, Chennai 600077, Tamil Nadu, India
Naveen Jeyaraman, Arulkumar Nallakumarasamy, Madhan Jeyaraman, Department of Regenerative Medicine, Agathisha Institute of Stemcell and Regenerative Medicine (AISRM), Chennai 600030, Tamil Nadu, India
Arulkumar Nallakumarasamy, Department of Orthopaedics, Jawaharlal Institute of Postgraduate Medical Education and Research, Karaikal 609602, Puducherry, India
Viji Devanand, Department of Physiology, Sree Balaji Medical College and Hospital, Bharath Institute of Higher Education and Research, Chennai 600044, Tamil Nadu, India
Sanjeevi Bharadwaj, Department of Trauma and Orthopaedics, Wye Valley National Health Service Trust, Hereford HR1 2BN, Herefordshire, United Kingdom
Author contributions: Jeyaraman M, Bharadwaj S, and Jeyaraman N designed the research; Thirunavukkarasu PJ, Gunasekar A, Jeyaraman N, Nallakumarasamy A, Devanand V, and Bharadwaj S analyzed the articles for performing review and wrote the manuscript; Jeyaraman M finalized the manuscript.
AI contribution statement: No AI tool was involved in the generation of research data, interpretation of results, or formulation of conclusions.
Conflict-of-interest statement: All authors declare no conflict of interest in publishing the manuscript.
Corresponding author: Madhan Jeyaraman, MD, PhD, Researcher, Department of Orthopaedics, ACS Medical College and Hospital, Dr MGR Educational and Research Institute, Velappanchavadi, Chennai 600077, Tamil Nadu, India. madhanjeyaraman@gmail.com
Received: March 26, 2026
Revised: May 26, 2026
Accepted: June 17, 2026
Published online: September 20, 2026
Processing time: 178 Days and 8.9 Hours
Abstract

Bone-specific alkaline phosphatase (BSAP) is a biochemical marker of bone formation, reflecting osteoblast function and bone turnover. Unlike bone mass and structure measurements using dual-energy X-ray absorptiometry or high-resolution peripheral quantitative computed tomography, BSAP does not directly measure bone mass or microarchitecture but provides dynamic information on bone metabolism. BSAP has high specificity for bone formation with low biological variability and consistent levels across many clinical conditions, making it a reliable biochemical indicator of bone turnover, especially early response to anabolic treatment and in high-turnover bone conditions. Biologically, BSAP is synthesized by osteoblasts and is important in matrix maturation and mineralisation. In clinical practice, BSAP increases with anabolic treatment, often before changes in bone density, and is thus a predictor of early treatment response. Low levels of BSAP are found in conditions with delayed fracture healing, such as hypophosphatasia, and high levels are found in high-turnover conditions such as Paget’s disease. BSAP also has a role in conditions such as chronic kidney disease, where it can discriminate between states of bone turnover. However, its use is hampered by variability between laboratories, the absence of reference ranges, and the lack of normative data in different populations. Novel methods combining BSAP with innovative imaging techniques have the potential to improve personalised diagnosis, but need further research. This review highlights the potential of BSAP as an adjunct biomarker in use in early diagnosis, monitoring therapeutic intervention and overall assessment of bone metabolism for clinical decision making in metabolic bone diseases in conjunction with imaging.

Keywords: Bone-specific alkaline phosphatase; Osteoblast; Wnt/β-catenin; Skeletal metabolism; Bone formation

Core Tip: Bone-specific alkaline phosphatase (BSAP) is a good indicator of osteoblastic bone formation, released by osteoblasts as the matrix matures and becomes mineralized. In contrast to imaging, BSAP reflects metabolic activity, increasing early with anabolic therapies and helping to differentiate bone disorders, including Paget’s disease, hypophosphatasia and chronic kidney disease-related bone disease. However, due to the difficulties in standardization and in having norm values, BSAP’s combination with imaging and artificial intelligence models holds the promise of a more accurate and personalized approach to skeletal health.

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