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MedTech Outlook | Friday, August 19, 2022
As more technological advances are integrated into medical industries, the orthopaedic sector is observing numerous innovations to improve therapeutic approaches.
FREMONT, CA: The orthopaedic sector is observing an introduction of new technologies and treatments to help patients with musculoskeletal problems. Some of the emerging new trends include advances in 3D printing technology for joint replacement surgery, the next generation of orthopaedic casting, and engineered stem cells for bone regeneration.
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A Greater Availability Of Bioprinted Bones And Joints
3D printing technology has transformed the medical field, and orthopaedic surgery is one of the many sectors that have benefited from this development. Usage of bioprinted bones and joints is anticipated to expand widely in the future as technology advances. It has eliminated complications like implant rejection or instability due to standard-sized implants that might not fit properly which were used earlier.
3D printing, also known as bioprinting, is extensively used in the orthopaedic sector. Bioprinted bones and joints provide numerous advantages compared to conventional implants. It allows for the creation of highly personalised implants that perfectly match the patient’s anatomy, which mitigates the risk of implant failure or rejection. Bioprinted implants are made from live cells and can integrate with the surrounding tissue and promote healing. They are less expensive than traditional implants, making them accessible to a wide range of patients. With the developments in 3D printing technologies, bioprinted bones and joints will become a significant part of orthopaedic medical advancements.
The Next Generation Of Orthopaedic Casting
Cast21 is emerging as the new standard for orthopaedic casting. It is a new orthopaedic casting method that provides numerous benefits over traditional casting methods. Cast21 offers patients a much-needed update to the way orthopaedic cast care is provided, addressing the drawbacks of conventional plaster and fibreglass casts. The Cast21 system, which is engineered with a special open lattice structure composed of lightweight materials, consists of a sleeve that is put over the injured arm and then filled with a fast-curing proprietary formula that hardens within minutes. This makes for rapid care for both patients and doctors. Once the sleeve is completely hardened, the result is strong. Moreover, a lightweight cast is comfortable to wear and easy to remove as well. This cast alternative is an innovative and favourable option for treating patients with orthopaedic injuries. They have become a preferred choice for medical providers across the globe.
Engineered Stem Cells for Bone Regeneration
Gene therapy has emerged as an interesting new arena of research with a higher possibility of developing fracture treatments. It offers a less invasive approach that uses the body’s natural processes to repair the damage rather than relying on surgery and external fixation. Recently, stem cell-derived exosomes have become a prominent therapeutic choice for bone regeneration. These exosomes contain a variety of biologically active molecules and are tiny vesicles that are secreted by cells. As they are small in size and are capable of crossing cell membranes, exosomes are effective in delivering genes and other therapeutics to target cells. Furthermore, exosomes derived from stem cells are considered to promote regeneration and reconstruction of multiple tissues, including cartilage and skin. However, due to the lack of reliable sources and insufficient therapeutic potency, the clinical use of stem cell-derived exosomes has been limited. To overcome these limitations, researchers have started engineering stem cells to produce exosomes with improved regenerative effects. This approach is expected to lead to the development of new and enhanced treatments for a variety of orthopaedic conditions.
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