Hydroxyapatite Market Is Estimated To Witness High Growth Owing To Increasing Demand From Orthopedic And Dental Applicat

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The Hydroxyapatite market is estimated to be valued at US$ 2396.9 Mn in 2023 and is expected to exhibit a CAGR of 6.5% over the forecast period 2023 to 2030, as highlighted in a new report published by Coherent Market Insights.

Market Overview:
Hydroxyapatite is a naturally occurring mineral form of calcium apatite, with the chemical formula Ca5(PO4)3OH. It is the major inorganic component of human hard tissues such as bones and teeth. Hydroxyapatite is used as synthetic bone grafts in medical applications such as orthopedics and dentistry due to its excellent biocompatibility and osteoconductivity. Key uses of hydroxyapatite include bone void fillers, coatings for joint replacements, and as an additive in orthopedic cement.

Market Dynamics:
The growth of the hydroxyapatite market is majorly driven by the increasing demand from orthopedic applications. Hydroxyapatite plays a vital role in orthopedic procedures such as spinal fusion surgeries and bone grafts owing to its osteoconductive properties. As per the American Association of Neurological Surgeons, around 450,000 fusion surgeries are performed annually in the U.S. Moreover, increasing prevalence of osteoporosis and bone injuries worldwide is also expected to augment the demand for hydroxyapatite over the forecast period. The market is also witnessing opportunities in research and development for advanced hydroxyapatite technologies such as rapid prototyping and 3D printed scaffolds for bone tissue engineering applications. However, availability of alternative bone graft substitutes and stringent regulations in healthcare industry pose challenges to market growth.

SWOT Analysis
Strength: Hydroxyapatite has excellent biocompatibility and osteoconductivity properties which helps in bone regeneration. It has the ability to bond chemically with bone and promotes natural bone growth. Being derived from natural sources, hydroxyapatite poses very low risk of inflammatory or toxic responses. It also has mechanical properties similar to bone mineral.
Weakness: Hydroxyapatite has poor resorbability in the body which limits its usage in load-bearing applications. It is also expensive to produce synthetically on a large commercial scale.
Opportunity: Increasing orthopedic procedures globally due to rise in bone-related diseases and accidents is augmenting demand for synthetic bone grafts. Growing applications of hydroxyapatite in 3D printing of medical implants present significant growth prospects.
Threats: Stringent regulatory approvals and preclinical testing requirements hamper swift product launches. Volatility in prices of raw materials needed for synthesis can increase production costs.

Key Takeaways
The global Hydroxyapatite Market Growth Size  is expected to witness high growth, exhibiting CAGR of 6.5% over the forecast period, due to increasing prevalence of bone-related ailments such as arthritis, osteoporosis and bone fractures. According to credible sources, the market size for 2023 is estimated to be US$ 2396.9 Mn.

Regional analysis: North America dominated the global hydroxyapatite market in 2022 attributed to burgeoning geriatric population base and increase in orthopedic procedures in the region. Asia Pacific is identified as the fastest growing regional market owing to large patient pool, improving access to healthcare and rapid development of bone graft substitutes in the region.

Key players: Key players operating in the hydroxyapatite market are APS Materials Inc., Berkeley Advanced Biomaterials (GNI Group Ltd), Bio-Rad Laboratories Inc., CGbio, FLUIDINOVA, Granulab Sdn. Bhd. (KPower Berhad), HOYA Technosurgical Corporation (HOYA Corporation), SANGI CO. LTD, SigmaGraft Biomaterials, Taihei Chemical Industrial Co. Ltd, and Zimmer Biomet. These companies are focusing on expanding their portfolio through strategic partnerships and new product launches.

Read More,

https://www.trendingwebwire.com/hydroxyapatite-market-trends-size-and-share-analysis/

 

 

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