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3D Bioprinting Market is Anticipated to Witness Growth at a Value of $5.92 Billion by 2031, Owing to Restricted Number of Organ Donors
3D Bioprinting Market Size, Share, Growth Analysis, By Component(3D Bioprinters, Bioinks, Software, Consumables), Material(Living Cell, Hydrogel, Extracellular Matrices, Others), Technology(Magnetic Levitation, Inkjet-based, Syringe-based, Others), Application, End-user, and Region - Industry Forecast 2024-20313D Bioprinting Market [https://www.skyquestt.com/report/3d-bioprinting-market] size was valued at USD 1.08 Billion in 2022 and is poised to grow from USD 1.3 Billion in 2023 to USD 5.92 Billion by 2031, growing at a CAGR of 20.8% in the forecast period (2024-2031).
The growth of the 3D bioprinting market has witnessed substantial growth. This is attributed to the restricted number of organ donors and geriatric population with chronic respiratory disease. Rising R&D spending, technological advancement, and risingthe prevalence of chronic illnesses are all expected to drive market expansion during the forecast period. The ability of technology to create complex solid organs such as hearts, kidneys, and lungs for transplantation is driving the growing importance of 3D printing in the medical sector. As 3D-printed organ replacement parts are generated from the patient's blood cells, they are less predicted to be hazardous than traditional organ replacement, which carries the risk of the human host rejecting the pieces. 3D bioprinting may be used by medical professionals to repair broken bones and create new organs during organ transplants.
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Integrating 3D Bioprinting in Pharmaceutical and Cosmetic Development
Many pharmaceutical companies are finding and developing novel pharmaceuticals rapidly by utilizing 3D bioprinting products and technology. Compared to the traditional approach, 3D bioprinting makes drug testing for the pharmaceutical business more secure and reasonably priced. Pharmaceutical companies now test medicine in a few hours due to 3D bioprinting technology. It has reduced the three to six years it takes to manufacture a new one.
Using 3D bio-printed tissues, R&D teams can test prospective medications early on and during preclinical research. Among the many advantages of 3D bioprinting are reduced animal testing, increased production, and a sped-up drug development process. In addition, the market is growing due to the cosmetics industry's growing usage of 3D printing. The European Commission forbade the use of animals in cosmetics testing as of March 2013. As a result, 3D bioprinting has been used by many companies in the pharmaceutical and cosmetics sectors. This is used to create cutting-edge 3D tissue models and drug screening methods.
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Revolutionizing Healthcare: Meeting Diverse Needs with Personalized Medicine
3D bioprinting technology offers benefits of personalized medical care and organ transplants to patients. This aids in increasing effectiveness of treatments in serious medical conditions and in addressing organ shortage issue. The need for advanced bioprinting technologies helps healthcare industry to focus on tailored patient care. This is stimulating investment and innovation in the sector, which is anticipated to support its expansion.
Collaborative Efforts Driving 3D Bioprinting Advancements
* May 2024: To simplify the ordering process for orthopedic officials, the Create it Real announced the launch of 3D bioprinting service platform.
* March 2024: BioInx and Rousselot move forward with their strategic alliance. The main aim of this partnership is to bring 3D bioprinting technologies into medical settings.
* December 2022: The National Eye Institute (NEI), a branch of the National Institutes of Health, printed the outer blood-retina barrier, or eye tissue. This barrier maintains the retina's light-sensing photoreceptors. The technique allows researchers to examine degenerative retinal illnesses, such as age-related macular degeneration (AMD), using a nearly infinite pool of patient-derived tissue.
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Outlook of the 3D Bioprinting
Due to 3D bioprinted medical models, operations are being transformed, and the time and complexity required to complete surgical procedures are being reduced, which benefits surgeons. Though the current applications of 3D printing are limited, surgeons can prepare ahead to minimize surgical time and error. Surgical procedures are getting speedier, less expensive, and less risky, which saves time and money. This may result in many more surgeries being performed each year.
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