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Worldwide 3D Bioprinting Market to Witness a Pronounce Growth by 2023

In the coming years, it is expected that the Global 3D Bioprinting Market will advance with higher growth rate as compared to previous years. Rising pressure to curb healthcare costs has fuelled the growth of the market for 3D Bioprinting market.

 

Pune, India -- (SBWIRE) -- 01/09/2018 -- "Global 3D Bioprinting Market by Manufacturers, Countries, Type and Application, Forecast to 2023 Report "Provides In-Depth Analysis of Parent Market Trends, Macro-Economic Indicators and Governing Factors Along With Market Attractiveness as Per Segments.The global 3D bio-printing market is expected to grow at an approximate CAGR of 25% during the forecast period.

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MarketResearchFuture.com adds "3D Bioprinting Market -2017 Global Analysis, Growth, Trends and Opportunities Research Report Forecasting to 2023" reports to its database.

Global 3D bioprinting Market - Overview:
Nowadays, scientists are in the middle of moving from printing tiny sheets of tissue to entire 3D organs. The 3D bioprinting is a great innovation in the healthcare industry and helping a number of cardiac patients transform their lives. 3D bioprinting of human tissues and organs have been continuously evolving since the early 2000s. It has brought a revolutionary change in the organ transplant procedures and technology. It is a process involving the creation of cell patterns using 3D technology. With 3D bioprinting, it is possible to generate tissues by depositing materials known as bio-inks. Three-dimensional (3D) printing is driving the finest innovations in the field of engineering, manufacturing, art, education, and medicine. Recent advances in this field have enabled 3D printing of biocompatible materials, cells and supporting components into complex 3D functional living tissues. 3D bioprinting has been used for the generation and transplantation of several tissues like multi-layered skin, bone, vascular grafts, heart tissue, tracheal splints, and cartilaginous structures. Other applications include producing high-throughput 3D-bioprinted tissue models for research, drug discovery and toxicology.

The global 3D bioprinting market is growing at a reasonable pace, mainly due to R&D investment and government funding which is set to increase the market at a quicker rate. According to a recent study report published by the Market Research Future, The global 3D bioprinting market is booming and expected to gain prominence over the forecast period growing rapidly. The market is forecasted to demonstrate a spectacular growth by 2023, surpassing its previous growth records in terms of value with a striking CAGR of ~25% during the anticipated period (2017 – 2023).

The market is expected to grow with the same trends during the forecast period. A major driver supporting the growth of the market will be use of 3D bioprinting in the field of next generation pharmaceutical revolution. For instance, the development of 3D-bioprinting for organ replacement offers a new solution for the 1,500 patients on the organ receiver waiting list every year in Australia. Moreover, the market for 3D bioprinting is growing due to the increasing demand for bioprinting in the healthcare sector, high prevalence of chronic diseases, increasing number of organ transplants, and extensive research & development activities. Furthermore, growing stem cell research and increasing adoption of 3D bioprinting in cosmetic industry are expected to create ample growth opportunities for the global market. However, the high cost of 3D bioprinting, lack of skilled professionals and stringent regulatory processes are the key barriers for the growth of the global market.

Global 3D bioprinting Market - Competitive Analysis:
Organovo Holdings, Inc (U.S.), Cellink AB (Sweden), Bio3D Technologies (Singapore), Aspect Biosystems Ltd. (Canada), Stratasys Ltd. (U.S.), Materialise (U.S.), Fathom (U.S.), BioBots (U.S.), and others are some of the prominent players at the forefront of competition in the Global 3D bioprinting Market and are profiled in MRFR Analysis.

Different companies along with academic institutes and laboratories are investing a huge capital for 3D bioprinting research and development has supported the market growth. Key players in the market are involved in extensive R&D activities to use stem cells for bioprinting tissues, which drives the growth of this market. For instance, Materialise is one of the major player in this market. The company manufactures 3D bioprinters, and also undertakes 3D printing of anatomical models. In June 2017, Materialise improved 3D imaging and printing- clinical trials conducted in the U.S.

Additionally, in March 2017, the company announced FDA clearance for their 3D-printed patient-specific radius and ulna osteotomy guides for children. In May 2017, the company announced they would begin production of 3D bioprinter using technology-HP Jet Fusion 3D 4200.

Companies like Organovo, which are printing human tissues with the help of 3D bioprinters, developed in collaboration with Invetech, will lead us into the future of medicine. As the 3D bioprinting technology advances, synthetic body organs and artificial tissues will become a reality in future.

Moreover, Organovo Holding Inc. participated in conferences such as Cantor Fitzgerald Inaugural Healthcare Conference in 2015, in order to increase awareness regarding their current activities in the field of 3D bioprinting. The company also announced a partnership with L'Oreal in the field of hair and skin care to develop skin tissue using their NovoGen Bioprinting Platform. Therefore, the various key developments in the area of 3D bioprinting has upsurged the growth of the market.

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Market Segmentation:
The global 3D bio-printing market is segmented on the basis of technology, material, application, and end users.

On the basis of the technology, the market is segmented into electron beam melting, laser beam melting, droplet disposition, syringe extrusion, magnetic levitation, and others. The laser beam melting segment is sub segmented into photo polymerization, stereo lithography, two-photon polymerization, and others. The droplet disposition segment is sub segmented into inkjet printing, fused disposition methods, multi-phase jet solidification, and others.

On the basis of the material, the market is segmented into cells, hydrogels, extracellular matrices, fibrinogen, alginate, and others.

On the basis of the application, the market is segmented into clinical, research, and others. The clinical segment is sub segmented into tissue transplantation, bone grafts, vascular grafts, wound care, and others. The wound care segment, by application, is further segmented into acute wounds, chronic wounds, hernia repair, and others. The research segment is sub-segmented into regenerative medicine, personalized healthcare, 3D cell culture, and others.

On the basis of the end users, the market is segmented into pharmaceutical & biotechnology companies, research organization, academic institutes, and others.

Major TOC of 3D Bioprinting Market:
Chapter 1. Report Prologue

Chapter 2. Market Introduction

Chapter 3. Research Methodology

Chapter 4. Market Dynamics

Chapter 5. Market Factor Analysis

Chapter 6. Global 3D Bio-Printing Market, By Technique

Chapter 7. Global 3D Bio-Printing Market, By Application

Chapter 8. Global 3D Bio-Printing Market, By Material

Chapter 9. Global 3D Bio-Printing Market, By End Users

Chapter 10. Global 3D Bio-Printing Market, By Region

Chapter 11. Company Landscape

Chapter 12. Company Profiles

Chapter 13. MRFR Conclusion

Chapter 14. Appendix

...CONTINUED

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