Enormous growth opportunities for material manufacturers as the medical industry ramps up production of prosthetics through additive manufacturing, finds Frost & Sullivan
LONDON, June 18, 2019 /PRNewswire/ — The healthcare industry is rapidly adopting 3D printing solutions due to benefits such as unmatched flexibility of design and low-cost production of prosthetics, implants, medical devices, and anatomical models. With technology progression and regulatory issues becoming clearer, this market will witness quantum change in terms of healthcare service possibilities. Frost & Sullivan forecasts the global 3D printing materials market for the healthcare industry to account for $568.5 million by 2024, with an impressive CAGR of 20.3% between 2018 and 2025. Material manufacturers with industry-qualified and regulated products have immense opportunity to cash in on double-digit growth opportunities.
“The increasing penetration of 3D printing technology among medical, dental, and the wearable devices sectors is set to augment growth with tissue and organ fabrication one of the most exciting opportunities on the table,” said Dr. Leonidas Dokos, Global Director, Chemicals & Materials in Infrastructure & Mobility. “Lightweight and strong materials led by titanium, aluminum, and plastic filaments are likely to witness sharp uptake in the healthcare industry, where having high strength and being lightweight are two critical cornerstones.”
For further information on this analysis, please visit http://frost.ly/3ja
The market presents enormous opportunities for material manufacturers, as it is currently in a development stage. However, material manufacturers must engage in high-level research and development to iron out inefficiencies. Dokos recommends vendors provide additional services as players are not acquainted with process flow required to adhere to FDA regulations at an industrial scale. Further growth opportunities vendors can take advantage of include:
- Building economies of scope to achieve better innovation and performance metrics to aid the healthcare industry.
- Potentially redesigning the supply chain for existing products and leveraging both to pursue new business models.
- Forming collaborative partnerships between material manufacturers and machinery manufacturers to develop materials suitable for the needs of healthcare 3D printing. Machinery for bio-printing is still not 100% accurate, which leaves room for improvement.
- Building strategic partnerships between material developers for additive manufacturing and machinery manufacturers.
“One of the biggest challenges facing 3D-printed healthcare product manufacturers has been the scarcity of qualified and compliant materials fit to be deployed on the human body. Adherence to stringent FDA regulations pertaining to 3D-printed healthcare products is a major challenge faced across the value chain,” noted Dokos. “Furthermore, the market has witnessed slow adoption rates owing to the lack of technical understanding and clarity among end users regarding the medium-and long-term benefits.”
Frost & Sullivan’s recent analysis, Global 3D Printing Materials Market for Healthcare Applications, Forecast to 2025, analyzes major market drivers and restraints, regional demand outlooks, sector growth trends, and product trends. The main segments covered by product type are plastic powders, plastic filaments, photopolymers, hydrogel, and metals and ceramics. In terms of healthcare sectors, the market is fragmented into medical, dental, and wearable devices. Healthcare product segments are represented by tissue and organ fabrication, prosthetics and implants, equipment and anatomical models.
Global 3D Printing Materials Market for Healthcare Applications, Forecast to 2025 is part of Frost & Sullivan’s Chemicals & Materials in Infrastructure and Mobility research and analyses available through the Frost & Sullivan Leadership Council, which helps organizations identify a continuous flow of growth opportunities to succeed in an unpredictable future.
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Global 3D Printing Materials Market for Healthcare Applications, Forecast to 2025
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