The Global Bioactive Glass Market was valued at USD 1.2 billion in 2024 and is estimated to grow at a CAGR of 6% to reach USD 2.1 billion by 2034. This expansion is largely driven by the material’s unique regenerative properties, particularly in the biomedical field, where bioactive glass interacts positively with biological tissues. Unlike traditional inert materials, bioactive glass promotes active regeneration of soft tissues and bones, offering benefits such as osteogenesis, angiogenesis, and antimicrobial activity. These qualities make it a key material in a wide range of clinical applications. In orthopedics, bioactive glass is increasingly used in bone grafts, spinal fusions, and trauma repair due to its ability to stimulate bone growth and integration.
In dentistry, it is employed in fillings, implants, and periodontal treatments. Moreover, its role in regenerative medicine, drug delivery systems, and tissue engineering continues to expand. The development of new manufacturing methods, such as sol-gel synthesis, melt-derived techniques, and additive manufacturing, has enabled the production of tailored bioactive glasses with customizable porosity, degradation rates, and ion release profiles, further enhancing their use in medical applications.
In 2024, the bioactive glass segment from the S53P4 (BonAlive) segment was valued at USD 387.1 million and is expected to grow to USD 728.1 million by 2034. S53P4 is known for its osteoporosis and osteostimulative properties, making it highly effective in treating bone infections and chronic osteomyelitis. This bioactive glass composition assists in bone formation, even in the presence of pre-existing bacterial infections, and is commonly used in orthopedic surgeries, particularly where infection risks are high. The increasing adoption of bioactive glasses in Europe and North America has contributed to the segment’s growth, especially as a bone substitute and antimicrobial agent.
The melt-derived bioactive glass segment is expected to grow at a CAGR of 6.2% through 2034. This type of bioactive glass is produced by melting raw materials, resulting in a more homogeneous and dense structure than conventional biomedicine glass. Melt-derived bioactive glass is especially useful in advanced tissue engineering, offering porous structures with enhanced bioactivity and surface area. This property is ideal for applications such as surface reactivity enhancement and coating applications, which can be achieved through scalable methods like flame spray synthesis, allowing the formation of nano-sized glass powders.
U.S. Bioactive Glass Market generated USD 358.9 million in 2024. The market in the U.S. is growing rapidly due to the rising demand for bioactive glass in medical and dental applications, particularly in bone regeneration and orthodontic implant coatings. Bioactive glass is essential in orthopedics, dentistry, and wound healing due to its excellent compatibility with bone tissue and its antibacterial properties. The increasing prevalence of osteoporosis, bone fractures, and dental disorders is further fueling market growth. Additionally, the growing awareness of patients and medical professionals about the benefits of less invasive treatments is driving adoption.
Prominent players in the Global Bioactive Glass Market include Mo-Sci Corporation, Stryker Corporation (and its subsidiary Ortho Vita, Inc.), SCHOTT AG, DePuy Synthes (Johnson & Johnson), and NovaBone Products, LLC. Key strategies implemented by companies in the bioactive glass market to strengthen their position include investing in R&D to develop innovative and customized bioactive glass formulations. These advancements allow companies to offer tailored products with specific properties like controlled ion release, enhanced bioactivity, and adjustable degradation rates.
Companies are also focusing on expanding their product portfolios to meet the growing demand in emerging markets and regions with high medical needs. Additionally, strategic partnerships and collaborations with academic institutions, healthcare providers, and other industry leaders are helping companies enhance their market presence. Furthermore, players are increasing their investments in marketing and educational campaigns to raise awareness about the advantages of bioactive glass, which is expected to drive adoption across various medical fields.
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In dentistry, it is employed in fillings, implants, and periodontal treatments. Moreover, its role in regenerative medicine, drug delivery systems, and tissue engineering continues to expand. The development of new manufacturing methods, such as sol-gel synthesis, melt-derived techniques, and additive manufacturing, has enabled the production of tailored bioactive glasses with customizable porosity, degradation rates, and ion release profiles, further enhancing their use in medical applications.
In 2024, the bioactive glass segment from the S53P4 (BonAlive) segment was valued at USD 387.1 million and is expected to grow to USD 728.1 million by 2034. S53P4 is known for its osteoporosis and osteostimulative properties, making it highly effective in treating bone infections and chronic osteomyelitis. This bioactive glass composition assists in bone formation, even in the presence of pre-existing bacterial infections, and is commonly used in orthopedic surgeries, particularly where infection risks are high. The increasing adoption of bioactive glasses in Europe and North America has contributed to the segment’s growth, especially as a bone substitute and antimicrobial agent.
The melt-derived bioactive glass segment is expected to grow at a CAGR of 6.2% through 2034. This type of bioactive glass is produced by melting raw materials, resulting in a more homogeneous and dense structure than conventional biomedicine glass. Melt-derived bioactive glass is especially useful in advanced tissue engineering, offering porous structures with enhanced bioactivity and surface area. This property is ideal for applications such as surface reactivity enhancement and coating applications, which can be achieved through scalable methods like flame spray synthesis, allowing the formation of nano-sized glass powders.
U.S. Bioactive Glass Market generated USD 358.9 million in 2024. The market in the U.S. is growing rapidly due to the rising demand for bioactive glass in medical and dental applications, particularly in bone regeneration and orthodontic implant coatings. Bioactive glass is essential in orthopedics, dentistry, and wound healing due to its excellent compatibility with bone tissue and its antibacterial properties. The increasing prevalence of osteoporosis, bone fractures, and dental disorders is further fueling market growth. Additionally, the growing awareness of patients and medical professionals about the benefits of less invasive treatments is driving adoption.
Prominent players in the Global Bioactive Glass Market include Mo-Sci Corporation, Stryker Corporation (and its subsidiary Ortho Vita, Inc.), SCHOTT AG, DePuy Synthes (Johnson & Johnson), and NovaBone Products, LLC. Key strategies implemented by companies in the bioactive glass market to strengthen their position include investing in R&D to develop innovative and customized bioactive glass formulations. These advancements allow companies to offer tailored products with specific properties like controlled ion release, enhanced bioactivity, and adjustable degradation rates.
Companies are also focusing on expanding their product portfolios to meet the growing demand in emerging markets and regions with high medical needs. Additionally, strategic partnerships and collaborations with academic institutions, healthcare providers, and other industry leaders are helping companies enhance their market presence. Furthermore, players are increasing their investments in marketing and educational campaigns to raise awareness about the advantages of bioactive glass, which is expected to drive adoption across various medical fields.
Comprehensive Market Analysis and Forecast
- Industry trends, key growth drivers, challenges, future opportunities, and regulatory landscape
- Competitive landscape with Porter’s Five Forces and PESTEL analysis
- Market size, segmentation, and regional forecasts
- In-depth company profiles, business strategies, financial insights, and SWOT analysis
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Table of Contents
Chapter 1 Methodology and Scope
Chapter 2 Executive Summary
Chapter 3 Industry Insights
Chapter 4 Competitive landscape, 2024
Chapter 5 Market Estimates and Forecast, By Composition, 2021 - 2034 (USD Million) (Kilo Tons)
Chapter 6 Market Estimates and Forecast, By Form 2021 - 2034 (USD Million) (Kilo Tons)
Chapter 7 Market Estimates and Forecast, By Method, 2021 - 2034 (USD Million) (Kilo Tons)
Chapter 8 Market Estimates and Forecast, By Application 2021 - 2034 (USD Million) (Kilo Tons)
Chapter 9 Market Estimates and Forecast, By End Use, 2021 - 2034 (USD Million) (Kilo Tons)
Chapter 10 Market Estimates and Forecast, By Property, 2021 - 2034 (USD Million) (Kilo Tons)
Chapter 11 Market Estimates and Forecast, By Region, 2021 - 2034 (USD Million) (Kilo Tons)
Chapter 12 Company Profiles
COMPANIES MENTIONED
The companies featured in this bioactive glass market report include:- 3M Company
- Artoss, Inc.
- Berkeley Advanced Biomaterials Inc.
- Biomatlante
- Biomin Technologies Ltd.
- Biovision GmbH
- BonAlive Biomaterials Ltd.
- Cambioceramics B.V.
- Cerapedics, Inc.
- Curasan AG
- Dentsply Sirona Inc.
- DePuy Synthes (Johnson & Johnson)
- Ferro Corporation
- GC Corporation
- Matexcel
- Medtronic plc
- Mo-Sci Corporation
- Nippon Electric Glass Co., Ltd.
- Noraker
- NovaBone Products, LLC
- Orthovita, Inc. (Stryker)
- Pulpdent Corporation
- SCHOTT AG
- Septodont
- Stryker Corporation
- Synergy Biomedical, LLC
- TheraMetrics AG
- Wuxi Jinxin Science & Technology Co., Ltd.
- Zimmer Biomet Holdings, Inc.
Table Information
Report Attribute | Details |
---|---|
No. of Pages | 263 |
Published | June 2025 |
Forecast Period | 2024 - 2034 |
Estimated Market Value ( USD | $ 1.2 Billion |
Forecasted Market Value ( USD | $ 2.1 Billion |
Compound Annual Growth Rate | 6.0% |
Regions Covered | Global |
No. of Companies Mentioned | 30 |