3D Printing In Healthcare Industry Forecast 2025-2034: Market Expansion, Trends, and Competitive Landscape
What
are the latest figures on the 3d printing in healthcare market’s size and
projected CAGR?
The 3D printing in healthcare market size has grown rapidly in recent years. It
will grow from $2.08 billion in 2024 to $2.49 billion in 2025 at a compound
annual growth rate (CAGR) of 19.7%. The
growth in the historic period can be attributed to medical imaging
advancements, customization for patient care, regulatory approval and
standards, rising chronic diseases, increasing healthcare expenditure.
The 3D printing in healthcare market size is expected to see rapid growth in
the next few years. It will grow to $5.06 billion in 2029 at a compound annual
growth rate (CAGR) of 19.4%. The growth
in the forecast period can be attributed to emergence of bioprinting,
telehealth and remote medicine, increasing aging population, government
initiatives and funding, patient education and engagement. Major trends in the
forecast period include bioprinting advancements, personalized implant
manufacturing, integration of artificial intelligence (ai), development of
3D-printed pharmaceuticals, application in dental prosthetics and orthodontics.
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Which
Market drivers have played a significant role in driving the 3d printing in
healthcare market?
The increasing government funding for 3D printing is expected to propel the
growth of 3D printing in the healthcare market going forward. Government
initiatives refer to specific actions, programs, or policies undertaken by a
government at the local, regional, or national level to address a particular
issue, achieve specific goals, or promote the well-being of its citizens and
the overall development of the country. Government funding in 3D printing
revolutionizes the old design process and helps in developing a new formula to
optimize individual patient therapy. For instance, in in April 2022, according
to the Hamburg News, a Germany-based platform that provides information about
the latest developments, and trends in and around the Hamburg metropolitan
region, The University Hospital Hamburg-Eppendorf (UKE) secured €2 million
($2.13 million) from the European Union's REACT-EU program for two
investigative research projects. These projects focus on the use of 3D printing
and artificial intelligence to create medications and implants. Therefore, the
increasing government funding for 3D printing is driving 3D printing in
healthcare market.
What are the key segments within the 3d printing in healthcare market?
The 3D printing in healthcare market covered in this report is segmented –
1) By Component: System, Material, Services
2) By Technology: Laser Beam Melting (LBM), Electron Beam Melting (EBM), Photo
Polymerization, Droplet Deposition, Laminated Object Manufacturing, Wax
Deposition Modeling, Bio Printing
3) By Application: Personalized Medical Equipment, Models For Surgical Planning
And Education, Prosthetics And Implants, Biomaterials, Printing Personalized Medicine,
Other Applications
4) By End User: Medical And Surgical Centers, Pharmaceutical And Biotechnology
Companies, Academic Institutions
Subsegments:
1) By System: 3D Printers, 3D Bioprinters, Scanners, Other Systems.
2) By Material: Plastics, Metals, Ceramics, Biomaterials, Other Materials.
3) By Services: Custom Prosthetics, Implants, Surgical Guides, Medical Device
Prototyping, Tissue Engineering.
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Which key players are shaping the 3d printing in healthcare market?
Major companies operating in the 3d printing in healthcare market report are
General Electric Company, Hewlett-Packard Company, Stratasys Ltd., EOS GmbH -
Electro Optical Systems, 3D Systems Corporation, Proto Labs Inc., Formlabs
Inc., Materialise NV, Ultimaker BV, SLM Solutions Group AG, Arcam AB, The ExOne
Company, EnvisionTEC GmbH, Concept Laser GmbH, MedPrin Regenerative Medical
Technologies Co. Ltd., Medical Molding Inc., Nanoscribe GmbH & Co. KG,
Oxford Performance Materials Inc., Aspect Biosystems Ltd., FlashForge
Corporation, Cyfuse Biomedical K.K., Mcor Technologies Ltd., Anatomics Pty.
Ltd., Organovo Holdings Inc., 3D Bioprinting Solutions, Allevi Inc.
Which transformative trends will shape the 3d printing in healthcare market
landscape?
Major companies operating in 3D printing in the healthcare market are
increasing their focus on developing the newest-generation products with
advanced technologies to gain a competitive edge in the market. Dental 3D
printer leverages digital light processing (DLP) technology combining advanced
resin science with 3D printing technology and delivers superior strength,
aesthetics, and durability. For instance, in February 2022, Desktop Health, a
US-based company that focuses on creating and offering solutions related to 3D
printing and fabrication, launched Einstein, the most precise dental 3D
printer, and Flexcera Smile Ultra+ Resin, a dental resin for 3D printed dental
restorations utilizing digital light processing (DLP) technology. The
combination of 3D printers and materials, helps dental professionals to deliver
accurate, 3D printable smiles customized to the individual patient for both
permanent and temporary dental restorations on a wide range of applications.
The advanced Flexcera Smile Ultra+ has received FDA 510(k) clearance as a Class
2 medical device, designed for enduring, printable dental restorations.
How do regional factors impact the 3d printing in healthcare market, and which
region is the largest contributor?
North America was the largest region in the 3D printing in healthcare market in
2024. Asia Pacific is expected to be the fastest-growing region in the forecast
period. The regions covered in the 3d printing in healthcare market report are
Asia-Pacific, Western Europe, Eastern Europe, North America, South America,
Middle East, Africa.
What Does The 3D Printing In Healthcare Market Report 2025 Offer?
The 3d printing in healthcare market research report from The Business Research
Company offers global market size, growth rate, regional shares, competitor
analysis, detailed segments, trends, and opportunities.
3D printing in healthcare refers to a method that involves producing a
three-dimensional object in successive three-dimensional layers based on a
digital design tailored for the healthcare sector. It is used to make 3D design
and printing technologies to develop patient-specific medical devices,
anatomical models, and surgical tools.
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