Synthetic biology received funding of US$ 430 Mn in the U.S. from 2005 to 2010, which was much higher than US$ 160 Mn in Europe during the same period.
According to the report, the global genome engineering market was valued at US$ 3,685.4 Mn in 2021 and is anticipated to expand at a CAGR of 10.9% from 2022 to 2030
Increased Funding In Genomic Research: Key Drivers
Synthetic biology received funding of US$ 430 Mn in the U.S. from 2005 to 2010, which was much higher than US$ 160 Mn in Europe during the same period. The U.K. contributed around US$ 30 Mn. About 4% and 2% funding in the U.S. and Europe, respectively, was spent to explore ethical, social, and legal implications (ELSI) of synthetic biology. Government initiatives are on par with private investments.
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More than $700 million was spent on synthetic biology research, by Department of Energy (DOE). While NIH awarded a grant of $40 million for the same.
Universities across the globe have provided significant funding for research in synthetic biology. For instance, in 2008, three Dutch universities — Delft University of Technology (Department of Bionanoscience), University of Groningen (Centre for Synthetic Biology), and the Eindhoven University of Technology (Institute for Complex Molecular Systems) — declared they would invest around USD $90 million in synthetic biology research for a period of 5 years to 10 years.
Application of genome engineering in animals has increased significantly in the past few years. Usage of this technology brings with it ethical issues that relate to animal welfare.
Investment by Pharmaceutical Companies for Developing New Treatments Boost Market Growth
Pharmaceutical firms have realized the new trends of treating genetic diseases by gene editing technologies. They are collaborating with gene editing companies to develop treatment option.
In December 2015, Bayer and CRISPR Therapeutics AG formed a joint agreement, to develop new technology to cure blindness, blood disorders, and congenital heart disease. Bayer would be utilizing the CRISPR-Cas9 gene editing technology and would use its protein-engineering technology for the same. Bayer will contribute a minimum of USD 300 million in R&D investments in this joint venture.
In January 2015, Novartis formed a collaboration with Intellia and Caribou, which would help Novartis to use CRISPR genome editing technology to engineer chimeric antigen receptor (CAR) T cells and hematopoietic stem cells and also to discover and develop other medicine. This collaboration received an undisclosed amount from Novartis and USD $15 million from both Intellia and Caribou.
Stringent Regulatory Framework to Hamper Market
There are various regulatory frameworks for genetically modifying plant genome. Process based regulatory frameworks consider the techniques used to create new crop plant varieties. The regulation is triggered when the plant is developed by using recombinant DNA technology. The definitions and guidelines for regulation was decided by the organizations such as the United Nations Food and Agricultural Organization and treaties such as the Cartagena protocol. The regulation is followed in Europe, Argentina, Brazil, and several other regions. The product based regulatory framework that prevails in the U.S. and Canada primarily focuses on the inherent risk of the final product, rather than the technology used to make it.
Global Genome engineering Market: Competitive Landscape
This report profiles major players in the global genome engineering market based on various attributes such as company overview, financial overview, product portfolio, business strategies, and recent developments
The major players operating in the global genome engineering market are
- Applied Stem Cell, Inc.
- GenScript
- Horizon Discovery Group plc
- Integrated DNA Technologies, Inc.
- Lonza Group Ltd.
- New England Biolabs
- OriGene Technologies, Inc.
- Sangamo BioSciences, Inc.
- Sigma-Aldrich Co. LLC.
- Thermo Fisher Scientific, Inc.,
- Transposagen Biopharmaceuticals, Inc.
Key Questions Answered in Global Genome engineering Market Report
- What is the scope of growth of product companies in the global genome engineering market?
- What will be the Y-o-Y growth of the global genome engineering market between 2019 and 2027?
- What is the influence of changing trends in technologies on the global genome engineering market?
- Will North America continue to be the most profitable market for genome engineering providers?
- Which factors are anticipated to hamper the growth of the global genome engineering market during the forecast period?
- Which are the leading companies in the global genome engineering market?
Global Genome engineering Market – Segmentation
Technology
- Clustered regularly interspaced short palindromic repeats (CRISPR)
- Transcription activator-like effector nuclease (Talen)
- Zinc Finger Nuclease (ZFN)
- Other Technologies
Application
- Cell Line Engineering
- Animal Genome Engineering
- Plant Genome Engineering
- Other Application
End-user
- Pharmaceutical and Biotechnology Companies
- Academics
- Clinical Research Organizations
Region
- North America
- Europe
- Asia Pacific
- Latin America
- Middle East & Africa
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