Dental Cement Market on Track for USD 3.6 Billion by 2034 with Aging Demand

Trishita Deb
Trishita Deb

Updated · Aug 19, 2025

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Overview

New York, NY – August 19, 2025: The Global Dental Cement Market is projected to reach US$ 3.6 billion by 2034, up from US$ 1.9 billion in 2024, expanding at a CAGR of 6.7% (2025–2034). North America leads with a 39.4% share worth US$ 0.7 billion in 2024. Growth is strongly influenced by the rising global burden of oral disease. Nearly 3.7 billion people suffer from oral conditions, with untreated dental caries being the most common. This has driven consistent demand for restorations, crowns, and other procedures that rely on luting and lining cements across age groups.

Demographic trends further reinforce the market. The share of individuals aged 65 years and above is expected to increase from 10% in 2022 to 16% by 2050. The global population aged 60+ will double to 2.1 billion by 2050, with those 80+ tripling to 426 million. Older adults are disproportionately affected, with 23% of people aged 60+ experiencing complete edentulism. This results in greater demand for crowns, bridges, dentures, and implant-supported prostheses, all of which depend on dental cements for fixation and long-term stability.

Policy frameworks are shaping the outlook positively. The WHO Global Oral Health Action Plan (2023–2030) emphasizes integrating essential oral health services into universal health coverage (UHC). Countries adopting these targets are expected to expand coverage, increase procedure volumes, and enhance access to restorative and prosthetic services. Case studies, such as South Korea’s insurance expansion for dentures (2012) and implants (2014), highlight how coverage reforms can significantly raise dental service utilization, especially among older populations, boosting demand for cement products.

Service utilization trends underline the resilience of this market. For example, the NHS in England delivered 34.1 million dental treatments in 2023/24, reflecting a 4.3% year-over-year increase. Across the EU, dentist consultations range between 0.7–1.7 per person annually, signaling frequent restorative care access. Persistent risk factors such as high sugar intake and unhealthy dietary patterns sustain caries incidence, leading to ongoing demand for fillings, adhesive restorations, and cement-based procedures. Regulatory clarity also supports innovation, with the U.S. FDA (2024) establishing performance criteria and biocompatibility guidelines that streamline product approvals.

Clinical and market trends converge toward advanced cement formulations. Glass-ionomer and resin-modified cements are favored for their fluoride release, adhesive properties, and preventive benefits, aligning with minimally invasive dentistry and caries-prevention models. A strong dentist workforce in developed regions, with 363,000 practitioners in the EU (2022), further ensures high treatment throughput. At the same time, private financing patterns play a role, as dental care accounts for about 14% of household out-of-pocket health spending in OECD countries. This encourages adoption of cost-effective yet durable cement systems. Overall, the dental cement market is set to grow steadily, driven by demographic aging, public policy, regulatory support, and evolving clinical preferences.

Dental Cement Market Size

Key Takeaways

  • In 2024, the global dental cement market generated revenue of US$ 1.9 billion, projected to reach US$ 3.6 billion by 2034 with 6.7% CAGR.
  • Permanent dental cement dominated product types in 2023, holding 59.4% market share, clearly ahead of temporary alternatives in global usage.
  • Resin-based materials led the material segment with 36.9% share, surpassing zinc-oxide eugenol, zinc phosphate, polycarboxylate, glass ionomer, and others.
  • The luting application dominated the dental cement market, capturing 39.8% of revenue, significantly ahead of pulpal protection, restorations, and surgical dressing.
  • Dental clinics accounted for the largest end-user share, leading with 65.2% revenue, while hospitals represented the secondary consumer segment.
  • North America secured leadership in 2023, capturing 39.4% of the global dental cement market, highlighting its strong regional presence.

Regional Analysis

North America leads the global dental cement market with a 39.4% share in 2024. The region’s growth is fueled by rising oral health issues, an expanding elderly population, and strong demand for cosmetic and restorative procedures. Data from the American Dental Association shows dental visits in the United States returned to pre-pandemic levels in 2022. This recovery in patient utilization has increased demand for restorative materials, particularly those used in crowns, bridges, and other long-term dental treatments.

The region also benefits from a steady rise in dental care capacity. According to the CDC, the number of practicing dentists per capita in the United States increased between 2011 and 2021. This expansion improves access to oral healthcare and supports higher treatment volumes. The market is further strengthened by continuous product innovation. A prime example is Dentsply Sirona’s launch of Calibra Bio Bioceramic luting cement in 2022, designed to improve the durability and effectiveness of dental restorations.

In the Asia Pacific, the dental cement market is projected to achieve the fastest CAGR during the forecast period. This expansion is supported by socioeconomic progress, growing consumer purchasing power, and rising awareness of oral hygiene. The World Health Organization’s 2022 report highlighted over 526 million untreated permanent dental caries cases in the South-East Asia Region. Such a high burden of oral disease creates sustained demand for restorative procedures. Additionally, the expansion of modern dental infrastructure strengthens treatment availability and accelerates regional market adoption.

Demographics play a major role in Asia Pacific’s demand surge. Japan’s aging population is expected to reach 40% above the age of 65 by 2060, significantly boosting dental care needs. Cosmetic dentistry is also gaining popularity, supported by new material innovations. For example, a June 2024 study highlighted the anti-staining properties of ZEN Universal Cement, appealing to patients seeking aesthetic outcomes. Regional events like IDEM 2024 in Singapore further promote innovation, training, and technology adoption, helping establish Asia Pacific as a rapidly growing hub for dental cement solutions.

Emerging Trends

  • Shift Toward Simplified Universal Workflows: Dental practices are moving toward universal adhesives combined with dual-cure resin cements. These systems can bond to many substrates like enamel, dentin, zirconia, and lithium disilicate. This flexibility helps clinics use fewer bottles and reduce chair time. Recent studies show micro-shear bond strengths of 15 MPa or higher across different surfaces. Some materials even maintain durability after 10,000 thermal cycles, showing strong aging resistance. This trend allows dentists to simplify workflows while maintaining reliability. The result is faster procedures, reduced complexity, and improved efficiency for both clinicians and patients.
  • Reliable Zirconia Bonding Protocols: Bonding zirconia crowns has become more predictable. Research highlights the value of pretreatments such as air abrasion, tribochemical silica coating, or glazing followed by hydrofluoric acid etching on vitrified surfaces. These methods enhance resin cement adhesion and long-term durability under stress testing. Systematic reviews show that these approaches improve strength during thermomechanical cycling. As a result, adhesive cementation of zirconia crowns is no longer a weak link in clinical workflows. Dentists are increasingly confident in using zirconia restorations, knowing that bonding is now supported by consistent scientific evidence.
  • Fluoride-Releasing Glass-Ionomer Cements Stay Relevant: Glass-ionomer cements (GICs) and resin-modified versions (RMGICs) remain important in orthodontics and cases with high caries risk. These materials release fluoride in a two-phase mechanism, which has been shown to lower bacterial activity around restorations. Contemporary studies confirm this benefit while also testing modified versions with bioactive glass or chitosan. These innovations aim to increase fluoride release and overall bioactivity. Clinicians continue to choose GICs for patients needing extra protection against decay. Their unique combination of adhesion, fluoride release, and ongoing improvements ensures they stay valuable in modern dentistry.
  • CAD/CAM and Cementation Control: The growth of CAD/CAM workflows in dentistry has changed cementation requirements. Digital restorations demand strict control over film thickness, crown fit, and polymerization effects. According to ADA/ANSI standards, cement layers should be 25 µm or thinner for optimal fit. Polymerization shrinkage can also affect crown seating, making cement selection critical. Research now integrates cementation strategies into CAD/CAM protocols to ensure clinical success. Dentists must consider cement type, curing method, and restoration design together. This trend reinforces the need to align digital workflows with proper cementation techniques for long-lasting outcomes.
  • Evidence-Based Cement Selection: Professional guidelines now emphasize evidence-based cement choices. The American Dental Association highlights that selection should depend on the material type and clinical situation. For example, strong ceramics may need adhesive cementation, while other indirect materials can be placed conventionally. This approach prevents a one-size-fits-all mindset and supports tailored treatment plans. Protocolizing selection by indication reduces errors and improves restoration longevity. Dentists are encouraged to match cements carefully with indirect restorations for the best results. This structured decision-making trend ensures predictable outcomes and strengthens clinical reliability in dental care.

Use Cases

  • Cementing Crowns and Bridges: Dental cements are widely used for fixing crowns and bridges made from PFM, zirconia, or lithium disilicate. Clinics often select resin or resin-modified glass ionomer (RMGI) cements depending on factors like retention and moisture control. Observational studies have shown excellent results. For example, zirconia crowns luted with RMGI showed a five-year survival rate of about 98.1% in 618 cases. Similarly, prospective trials of self-adhesive resin cement in metal-ceramic crowns have shown survival up to six years with very few debonding issues. Modern adhesive protocols, such as air-abrasion or glaze plus etching for zirconia, also increase long-term bond strength.
  • Orthodontic Band and Bracket Cementation: Dental cement also plays a key role in orthodontics, especially in securing bands and brackets. A major concern during fixed orthodontic treatment is the formation of white-spot lesions, which occur in nearly 55% of patients, with about 34% developing them within 12 months. To reduce this risk, many clinics use glass ionomer or resin-modified glass ionomer cements. These materials release fluoride, which offers protection against demineralization. Laboratory studies confirm that fluoride release is strongest in the first 24 hours and then tapers over time. Reviews further suggest that fluoride can reduce bacterial activity, making it useful for teens who have higher caries risk.
  • Luting CAD/CAM Restorations: Dental cements are critical in bonding CAD/CAM restorations where material thickness and fit are important. Milled ceramics and hybrid restorations often require resin cements with low viscosity to ensure proper seating. Digital systems now allow dentists to control cement space with high accuracy. International standards recommend that cement films should not exceed 25 µm and must meet certain compressive strength requirements. Research also links resin cement polymerization behavior to the risk of crown deformation and poor marginal fit. By choosing suitable resin cements, dentists can ensure precise adaptation and long-lasting performance of digitally fabricated restorations in everyday practice.
  • Vital Pulp Therapy and Endodontic Repairs: Calcium-silicate cements, often called bioactive cements, are widely used in vital pulp therapy (VPT) and endodontic repairs. These cements can serve as liners under RMGIC or as the main material for pulpotomies. In both pediatric and adult patients, clinical trials and systematic reviews have reported high success rates ranging from 90% to 97% over six to 24 months. Professional guidelines now favor calcium-silicate cements for pulp therapy outcomes lasting at least two years. Their bioactive properties promote healing and dentin formation, making them superior alternatives compared to older calcium hydroxide-based options. This trend shows a clear clinical shift toward bioactive materials.
  • Implant Prosthetics: Dental cements are also essential in implant prosthetics, particularly for securing CAD/CAM restorations on titanium bases. Resin cements are commonly chosen due to their higher retention capabilities at the ti-base and ceramic crown interface. In-vitro studies and reviews show that cement selection, combined with proper surface treatments, can significantly improve retention under conditions of thermal and mechanical stress. These findings guide dental laboratories in selecting specific resin cement systems to maximize long-term stability. As implant-supported restorations become more common, the correct use of dental cements helps improve function, reduce complications, and extend the service life of prosthetic solutions.

Conclusion

The dental cement market is set for steady growth, supported by rising oral health needs, aging populations, and strong demand for restorative and cosmetic dentistry. Advancements in cement formulations, including resin-based and glass ionomer options, align well with clinical needs for durability, fluoride release, and bioactivity. Policy support and insurance expansions are further improving access to care, especially for older adults. Growing adoption of CAD/CAM technologies and evidence-based cement selection also enhance treatment quality. With innovation, demographic trends, and favorable healthcare frameworks working together, dental cements remain a critical part of modern dentistry, ensuring reliable outcomes and long-term patient satisfaction.

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Trishita Deb

Trishita Deb

Trishita has more than 8+ years of experience in market research and consulting industry. She has worked in various domains including healthcare, consumer goods, and materials. Her expertise lies majorly in healthcare and has worked on more than 400 healthcare reports throughout her career.

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