3D Bioprinting Market Industry Trends and Global Forecasts, 2019, 2024 and 2035 Featuring Key Players – 3D Systems, Cellink, CollPlant, Organovo, Rokit Healthcare, Stratasys, UPM Biomedicals – ResearchAndMarkets.com

3D Bioprinting Market Industry Trends and Global Forecasts, 2019, 2024 and 2035 Featuring Key Players – 3D Systems, Cellink, CollPlant, Organovo, Rokit Healthcare, Stratasys, UPM Biomedicals – ResearchAndMarkets.com




3D Bioprinting Market Industry Trends and Global Forecasts, 2019, 2024 and 2035 Featuring Key Players – 3D Systems, Cellink, CollPlant, Organovo, Rokit Healthcare, Stratasys, UPM Biomedicals – ResearchAndMarkets.com

DUBLIN–(BUSINESS WIRE)–The “3D Bioprinting Market Industry Trends and Global Forecasts to 2035: Distribution by Type of Component, Type of Consumable, Type of Technology, Type of Material Used, Application Area, End User, Geographical Regions and Key Players” report has been added to ResearchAndMarkets.com’s offering.


The 3D Bioprinting Market is valued at USD 4 billion in 2024 growing at a CAGR of 17.2% during the forecast period 2024-2035.

3D bioprinting is the process of combining living cells, growth factors, bioinks and biomaterials using 3D printing techniques to develop three-dimensional functional biological structures that closely mimic natural tissues.

This report offers a comprehensive overview of the 3D bioprinting industry, highlighting key technologies, historical milestones, and potential future trends. It explores the advantages and various application areas of 3D bioprinting, while discussing factors influencing market growth, including key drivers, restraints, emerging opportunities, and challenges.

The report provides a detailed market forecast, estimating the current market size and projecting future opportunities within the 3D bioprinting sector through 2035. This forecast is based on adoption trends and primary data validation. It also assesses the distribution of current and forecasted opportunities in the industry from 2024 to 2035.

It is worth noting that 103,223 individuals are currently waiting for compatible organs in the US, alone. Moreover, close to 20 deaths per day are caused due to the unavailability of compatible organs. Nevertheless, 3D bioprinting technology has the potential to address the increasing organ demand and revolutionize various application areas like tissue engineering, regenerative medicine, drug testing and personalized medicine.

Presently, in the realm of conventional 2D bioprinting approaches, there are several challenges that are faced by researchers and scientists; notably, some of the significant challenges encountered are achieving high-resolution printing to accurately recreate intricate biological structures, slow printing speed, poor surface quality, real-time monitoring of the printing processes and maintenance of cell viability. These challenges have further contributed to the intricacy of the 2D bioprinting processes and have necessitated the need for advanced printing technologies, such as 3D bioprinting to augment various treatment approaches.

Additionally, the report features detailed profiles of key companies involved in 3D bioprinting, including information on their establishment, headquarters, employee size, leadership team, financial data, product portfolios, and recent developments. An in-depth examination of the 3D bioprinting value chain is provided, covering stages such as facility setup, raw material sourcing, R&D, design, bioprinting, post-processing, quality control, and applications. This analysis highlights areas for potential improvement in industry operations.

3D bioprinting actively explores avenues that enable researchers and scientists to overcome existing challenges in the 2D bioprinting domain by providing a solution for organ shortages and enabling the development of organs and tissues, which are patient-specific and derived from patient’s own stem cells, thereby reducing the risk of rejection.

Additionally, 3D bioprinting helps in the development of viable complex structures and tissues that are difficult to produce using traditional methods. 3D bioprinting has the potential to transform healthcare by offering personalized treatments, accelerating drug development, and advancing regenerative medicine. Such developments and advancements, further supported by the increasing investment activity in this domain are likely to drive the 3D bioprinting market growth over the forecast period.

Lastly, the report explores strategies shaping the 3D bioprinting industry, including the integration of personalized medicine, AI, digitization, and innovations in biomaterials. It also discusses the influence of partnerships, collaborations, social media strategies, and evolving regulatory frameworks on the industry’s development.

Megatrends in the 3D Bioprinting Market

  • Adoption of 3D Bioprinting Technologies
  • Personalized Medicine with Artificial Intelligence
  • Digitization and E-commerce
  • Innovation in Biomaterials and Cell Research
  • Inclusion of Innovative Bioprinting Solutions
  • Remarkable Partnerships and Collaborations
  • Promoting Brands on Social Media
  • The Evolving Regulatory Guidelines

Leading Market Companies in the 3D Bioprinting Industry are

  • Advanced Solutions Life Sciences
  • Allevi
  • Aspect Biosystems
  • Cellink
  • CollPlant Biotechnologies
  • Cyfuse Biomedical K.K.
  • Foldink
  • Formlabs
  • Inventia Life Science
  • it3d Group
  • Medprin Biotech
  • Organovo
  • Pandorum Technologies
  • Precise Bio
  • Regemat 3D
  • REGENHU
  • Rokit Healthcare
  • Stratasys
  • Vivax Bio

Key Topics Covered:

1. BACKGROUND

1.1. Context

1.2. Project Objectives

2. RESEARCH METHODOLOGY

3. MARKET DYNAMICS

4. ECONOMIC AND OTHER PROJECT SPECIFIC CONSIDERATIONS

5. EXECUTIVE SUMMARY

6. INTRODUCTION

6.1. Overview of 3D Bioprinting

6.2. Key Bioprinting Technologies

6.3. Historical Milestones in 3D Bioprinting

6.4. Overview of 3D Bioprinting Process

6.5. Advantages of 3D Bioprinting

6.6. Application Areas of 3D Bioprinting

6.7. Future Perspectives

7. MARKET IMPACT ANALYSIS: DRIVERS, RESTRAINTS, OPPORTUNITIES AND CHALLENGES

7.1. Market Drivers

7.2. Market Restraints

7.3. Market Opportunities

7.4. Market Challenges

8. GLOBAL 3D BIOPRINTING MARKET

8.1. Key Assumptions and Methodology

8.2. Global 3D Bioprinting Market, till 2035

8.3. Key Market Segmentations

9. 3D BIOPRINTING MARKET, BY TYPE OF COMPONENT

9.1. Key Assumptions and Methodology

9.2. 3D Bioprinting Market: Distribution by Type of Component, 2019, 2024 and 2035

9.3. Data Triangulation and Validation

10. 3D BIOPRINTING CONSUMABLES MARKET, BY TYPE OF CONSUMABLE

10.1. Key Assumptions and Methodology

10.2. 3D Bioprinting Consumables Market: Distribution by Type of Consumable, 2019, 2024 and 2035

10.3. Data Triangulation and Validation

11. 3D BIOPRINTING BIOPRINTERS MARKET, BY TYPE OF TECHNOLOGY

11.1. Key Assumptions and Methodology

11.2. 3D Bioprinting Bioprinters Market: Distribution by Type of Technology, 2019, 2024 and 2035

11.3. Data Triangulation and Validation

12. 3D BIOPRINTING MARKET, BY TYPE OF MATERIAL USED

12.1. Key Assumptions and Methodology

12.2. 3D Bioprinting Market: Distribution by Type of Material Used, 2019, 2024 and 2035

12.3. Data Triangulation and Validation

13. 3D BIOPRINTING MARKET, BY APPLICATION AREA

13.1. Key Assumptions and Methodology

13.2. 3D Bioprinting Market: Distribution by Application Area, 2019, 2024 and 2035

13.3. Data Triangulation and Validation

14. 3D BIOPRINTING MARKET, BY END-USER

14.1. Key Assumptions and Methodology

14.2. 3D Bioprinting Market: Distribution by End-user, 2019, 2024 and 2035

14.3. Data Triangulation and Validation

15. 3D BIOPRINTING MARKET, BY GEOGRAPHICAL REGIONS

15.1. Key Assumptions and Methodology

15.2. 3D Bioprinting Market: Distribution by Geographical Regions, 2019, 2024 and 2035

16. 3D BIOPRINTING MARKET, BY KEY PLAYERS

16.1. 3D Systems

16.2. Cellink

16.3. CollPlant Biotechnologies

16.4. Organovo

16.5. Rokit Healthcare

16.6. Stratasys

16.7. UPM Biomedicals

17. MARKET LANDSCAPE: 3D BIOPRINTING SOLUTION PROVIDERS

17.1 Chapter Overview

17.2. 3D Bioprinting Solution Providers: Developer Landscape

17.3. Leading 3D Bioprinting Solution Providers: Market Landscape

18. COMPANY PROFILES: LEADING 3D BIOPRINTING SOLUTION PROVIDERS IN NORTH AMERICA

18.1. Chapter Overview

18.2. Leading 3D Bioprinting Solution Providers in North America

18.2.1. Advanced Solutions Life Sciences

18.2.2. Allevi

18.2.3. Aspect Biosystems

18.2.4. Formlabs

18.2.5. Organovo

18.2.6. Stratasys

18.3. Other Leading 3D Bioprinting Solution Providers Headquartered in North America

18.3.1. Foldink

18.3.2. Precise Bio

18.3.3. Vivax Bio

19. LEADING 3D BIOPRINTING SOLUTION PROVIDERS IN EUROPE

19.1. Chapter Overview

19.2. Leading 3D Bioprinting Solution Providers in Europe

19.2.1. CELLINK

19.2.2. Regemat 3D

19.3. Other Leading 3D Bioprinting Solution Providers Headquartered in Europe

19.3.1. IT3D

19.3.2. Medprin Biotech

19.3.3. REGENHU

20. LEADING 3D BIOPRINTING SOLUTION PROVIDERS IN ASIA-PACIFIC AND REST OF THE WORLD

20.1. Chapter Overview

20.2. Leading 3D Bioprinting Solution Providers in Asia-Pacific and Rest of the World

20.2.1. CollPlant Biotechnologies

20.2.2. Pandora Technologies

20.3. Other Leading 3D Bioprinting Solution Providers Headquartered in Asia-Pacific and Rest of the World

20.3.1. Cyfuse Biomedical

20.3.2. Inventia Life Science

20.3.3. Rokit Healthcare

21. WHITE SPACE ANALYSIS: 3D BIOPRINTING MARKET

21.1. Chapter Overview and Methodology

21.2. White Spaces

22. VALUE CHAIN ANALYSIS: 3D BIOPRINTING MARKET

22.1. Brief Overview on 3D Bioprinting Process and Stakeholders Involved

22.2. Schematic Representation of 3D Bioprinting from Design to Large Scale Production

For more information about this report visit https://www.researchandmarkets.com/r/su1onc

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