Medical AM
The medical additive manufacturing sector, which for the broadest scope also encompasses dental and bioprinting, is today one of the largest adopters of 3D printing technologies for the production of consumer-targeted end-use items, including prosthetics and orthotics, implants, devices and physical models. One of the biggest selling points for additive in this context is the ability to personalize and customize products to the patient, from patient-specific surgical guides that help surgeons prepare for an operation, to customized orthotics, to 3D printed implants tailored to the patient’s anatomy and needs.
While the benefits of AM technologies for personalized medicine and more efficient surgical practices are well documented, several hurdles still exist that are limiting a more widespread adoption of these key technologies in hospitals and medical practices. Several of these hurdles are inherent to AM technologies and related material availability, however, the biggest challenges result from a lack of standards and a general lack of awareness, resulting in a slow pace of adoption.
That said, applications for AM in healthcare, including surgical guides and pre-surgical models are today so widespread they can in a way be compared to the broad adoption of AM for prototyping and tooling in the industrial manufacturing arena. On the standards and regulations front, advances are also being made which are paving the way for broader AM adoption.
Leading AM hardware manufacturers, such as 3D Systems, EOS, Desktop Metal’s ETEC (formerly EnvisionTec) and SLM Solutions, along with leading global service providers like Oerlikon, Jabil and Materialise, are investing heavily to develop both medical and dental AM applications. Medical product powerhouses like Stryker, DePuy Synthes, Zimmer Biomet (these two merged in 2015), and Smith & Nephew, are conducting R&D with AM for a range of innovative devices. Stryker was among the earliest adopters along with medium size international firm Lima Corporate.
Below are some of the key subsegments of the medical AM vertical that we cover in this AM Focus.
Medical implants
In the medical implant market, 3D printed implants represent a growing subsegment. VoxelMatters’ Index currently lists over 80 implant manufacturers of varying sizes, some of which have been utilizing AM in a significant manner for more than a decade and are beginning to look beyond just the design and production of existing implant types in titanium using additive manufacturing. Among the most common 3D printed implants today are customized orthopedic implants with porosity for optimal osseointegration. These include spinal implants, bone plates and more. 3D printed reconstructive implants, such as maxillofacial implants, are also gaining in prominence as they can be designed to match a patient’s specific anatomy.
Pharmaceutical
Additive manufacturing also has important applications in the pharmaceutical industry, where specialized printing technologies can produce medication with patient-specific dosages and personalized drug release profiles. This capability is part of a shift away from mass production for medication towards tailored medications. In drug development, AM is also playing a role, as the technology can be used for rapid prototyping purposes to produce small batches of drugs to be tested in pre-clinical animal models. The ability to bioprint tissues will also have a seismic impact on drug discovery, as medications can be tested on engineered tissues that mimic human tissues.
Dental
The dental segment is a key area for the use of additive manufacturing across healthcare industries, in terms of hardware sales, material sales (especially, but not limited to, photopolymers) and numbers of parts produced (including models, dental trays, surgical guides, temporaries, crowns and implants). In fact, dental additive manufacturing was the first segment to achieve the production of certain end-use parts, effectively fueling growth for all main traditional polymer additive manufacturing hardware and material stakeholders. The use of 3D printing in the laboratory and the dentist’s office has been steadily growing for the past several years. Now the dental opportunity has emerged as one of the most relevant for the AM industry as a whole, with literally hundreds of thousands of potential adopters all over the world.
Bioprinting
Although complex organ production for human transplant remains a very long term objective, simpler bioprinted organs and tissue grafting for human use now seem increasingly within reach, especially for cartilage, bone,and skin. Commercial implementation of bioprinting technologies is already underway in the fields of drug development testing (DDT) and cosmetics development and testing. Adoption has also been booming within the regenerative and bioengineering areas of research at major academic institutions operating in these fields around the world.
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Rambam Health Care Campus in Israel establishes digital implant center with EOS, PTC
Rambam Health Care Campus in Haifa, Israel, partnered with EOS and PTC to open a Digital Implant Engineering Center, bringing together engineers and physicians to design and produce customized patient…
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Lutheran Services turns to 3D printing for low-cost aged care aids
Orana Aged Care, a Lutheran Services home in Kingaroy, Queensland, Australia has introduced a 3D printer to produce assistive devices for residents with limited mobility, cutting the cost of items…
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Madrid hospital 3D printing unit becomes first in Spain with dual manufacturing license
The Advanced Design and 3D Printing Unit (UTADI 3D) at Hospital Universitario 12 de Octubre in Madrid has expanded its manufacturing license and secured certification under the UNE-EN ISO 13485:2018…
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NIHR grant funds new 3D printing lab at Sheffield Teaching Hospitals
A 3D printing lab producing medical models for surgical training, simulation and patient-specific anatomical modeling has opened at Sheffield Teaching Hospitals NHS Foundation Trust in the UK, funded through a…
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LightForce names Erica Rogers as CEO as expansion plans scale
LightForce Orthodontics has appointed Erica Rogers as chief executive officer, the Boston-based company has confirmed, as it moves from validating its 3D printed bracket technology toward commercial scale. Rogers succeeds…
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University of Waterloo researchers 3D print contact lenses in 20 minutes
Researchers at the University of Waterloo’s Department of Chemistry have built a digital manufacturing platform that produces patient-specific contact lenses in as little as 20 minutes, according to the university. …
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UK charity STAND launches a 3D printed prosthetic socket pilot in The Gambia
STAND, a UK-based charity, has launched a pilot program in The Gambia that uses 3D scanning and printing to fabricate sockets, the component that connects an amputee’s residual limb to…
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3D printing helps victims of the Venezuela earthquake
Bambu Lab has launched a 48-hour charity fundraiser to support victims of the June earthquake in Venezuela. Starting on July 13 at 8:00 AM UTC−4, customers shopping in the company’s…
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Protolabs qualifies Medical White resin on Axtra3D’s Lumia X1 platform
Protolabs launched Medical White (MED-WHT 10) for production on Axtra3D‘s Lumia X1 Hi-Speed SLA platform, powered by Hybrid PhotoSynthesis technology. The material became immediately available through Protolabs’ digital manufacturing services,…
