The global CRISPR and Cas genes market size was valued at USD 2.05 billion in 2021 and is expected to expand at a compound annual growth rate (CAGR) of 17.9% from 2022 to 2030. Recent advancements in biotechnological research have enabled CRISPR & Cas gene systems to find widespread applications that directly or indirectly aid human health. For example, somatic gene editing, which involves engineering an individual’s DNA, has been used to treat diseases like HIV, sickle-cell disease, and transthyretin amyloidosis. The technique is anticipated to be part of novel therapeutic options for different types of cancers. The technological advancements in CRISPR & Cas gene systems have contemporarily revolutionized the area of cancer research and therapeutics.
此外,COVID-19流行促进了美国age of CRISPR & Cas gene technology and has been widely used in nucleic acid detection due to its reliability and sensitivity. Since the advent of CRISPR as a tool for DNA editing, it is increasingly being adopted by key biotechnology and pharmaceutical companies for the development of drugs and therapies. For instance, in August 2022, iNtRON Biotechnology announced the development of a customized CRISPR/Cas system for the genetic modification of bacteria and bacteriophage. The CRISPR technology improves the therapeutic efficacy of modified T-cells for the treatment of various malignancies. In addition, the development of Chimeric Antigen Receptor T (CAR-T) cells is strongly related to cancer treatment.
In May 2022, Caribou Biosciences, Inc. presented data on the mechanism underlying the potential of the chRDNA genome-editing technology in primary human T cells. It provides a reproducible and robust technique to boost the specificity of genome editing, and it improves the efficacy of allogeneic cell therapies. These developments are anticipated to drive the growth of the industry in the coming years. Innovative technologies, such as karyotyping, neonatal screening, viral screening, and others, have boosted the demand for gene editing techniques like CRISPR & Cas gene technology. Moreover, the use of CRISPR & Cas gene technology to enhance agricultural production through innovative breeding strategies have increased the adoption of these technologies in the biotechnology industry.
Based on product & service, the global industry has been further categorized into products and services. The product segment dominated the global industry in 2021 and accounted for the highest share of more than 79.00% of the overall revenue. Several cutting-edge technologies, such as CRISPR gene editing kits, have been developed to meet the growing demands for genome editing solutions. The maximum revenue share can be attributed to the availability of enhanced individual products that can be used to achieve a variety of goals, including simple gene knockouts, selective genome cleavage, reduced off-target cutting, genome engineering, and higher specificity.
Furthermore, increased investments in gene editing-based R&D, along with the introduction of several applications, are anticipated to drive the growth of the service segment during the forecast period. For instance, in July 2022, a U.K. charity (The British Heart Foundation) provided USD 36 million to an international team to develop innovative gene-editing treatments for inherited heart diseases. Recent gene editing techniques, particularly CRISPR technology, have offered several opportunities to combat cardiovascular diseases.
On the basis of applications, the global industry has been further categorized into biomedical and agricultural. The biomedical application segment dominated the global industry in 2021 and accounted for the largest share of more than 92.55% of the total revenue. The increasing utilization of CRISPR gene-editing technologies in a number of biological science fields has significantly contributed to the segment’s high revenue share. The effectiveness and specificity of this technology have been enhanced by better delivery methods and the introduction of nanocarriers. The number of studies and publications that use this method to modify the genomes of human somatic cells and induced pluripotent stem cells has significantly increased.
In addition, some companies provide commercial kits and services to help researchers who are working in this domain. On the other hand, the agriculture application segment is anticipated to register the fastest growth rate during the forecast period. Improvements in agricultural production through the incorporation of innovative breeding technology have increased access to nutrition-rich foods globally. For instance, in June 2019, researchers at the Cold Spring Harbor Laboratory implemented CRISPR/Cas9 technology to induce mutations in the flowering suppressor of tomatoes, which resulted in rapid flowering and improved compact growth of tomatoes, finally an early yield.
On the basis of end-uses, the global industry has been further categorized into biotechnology & pharmaceutical companies, academics & government research institutes, and Contract Research Organizations (CROs). The biotechnology and pharmaceutical companies end-use segment dominated the global industry in 2021 and accounted for the maximum share of more than 49.20% of the overall revenue. Pharmaceutical companies are utilizing these technologies more frequently to quickly identify and validate new therapeutic targets and to produce better biological models for human diseases in less time.
The segment is also anticipated to be further driven by the rising number of biotechnology companies using gene modification for both research and commercial purposes. In addition, there is a huge demand for CRISPR-based gene-editing methods for the creation of innovative medicines for cell and gene therapies. CRISPR’s core architecture has been modified by extending its reach into the epigenome and granting control over an epigenetic inheritance. For instance, in April 2021, researchers from the Massachusetts Institute of Technology and the University of California created a CRISPR on-off switch to regulate gene expression.
地理位置的基础上,全球工业has been further categorized into North America, Europe, Latin America, Middle East & Africa, and Asia Pacific. The North American region dominated the global industry in 2021 and accounted for the maximum share of more than 38.40% of the overall revenue. The growing biopharmaceutical R&D as well as the involvement of several pharmaceutical corporations in the creation of novel therapeutics has contributed to the region’s growth. For instance, in May 2020, Merck KGaA received U.S. approval for two of its CRISPR Cas9-driven gene-editing patents.
Asia Pacific, on the other hand, is anticipated to witness the fastest growth rate during the forecast period. The increasing government investment in R&D to develop novel treatments is aiding in the market expansion in Japan and China. For instance, in March 2021, Japanese biotech company Setsuro Tech received a patent for CRISPR-Cas9 technology from Dublin-based ERS Genomics. The company is creating animal and cell models using these advanced technologies. Such initiatives are predicted to enhance CRISPR technology adoption in the region, further contributing to revenue generation.
Strategic initiatives, product developments, and regional expansions are key strategies that contribute to industry development. For instance, in November 2021, GenScript launched a double-stranded DNA service to expand its cell and gene therapy product portfolio using CRISPR & Cas gene technology. In March 2021, Integrated DNA Technologies launched AmpSeq CRISPR Analysis System, which offers end-to-end solutions for quantifying the full array of on- and off-target genome editing results in CRISPR research projects. Some of the key players in the global CRISPR and Cas genes market include:
AstraZeneca plc
Addgene
Caribou Biosciences, Inc.
Cellectis, CRISPR Therapeutics
Editas Medicine, Inc.
eGenesis
F. Hoffmann-La Roche Ltd.
Horizon Discovery Group plc
GenScript
Danaher Corp.
Intellia Therapeutics, Inc.
Lonza
Merck KGaA
Intellia Therapeutics, Inc.
Takara Bio Inc.
Thermo Fisher Scientific, Inc.
Synthego
Mammoth Biosciences
Inscripta, Inc.
Cibus
Beam Therapeutics
PLANTeDIT
Vertex Pharmaceuticals Inc.
Hera BioLabs
OriGene Technologies, Inc.
Recombinetics, Inc.
Report Attribute |
Details |
Market size value in 2022 |
USD 2.57 billion |
Revenue forecast in 2030 |
USD 9.6 billion |
Growth rate |
CAGR of 17.9% from 2022 to 2030 |
Base year for estimation |
2021 |
Historical data |
2018 - 2020 |
Forecast period |
2022 - 2030 |
Quantitative units |
Revenue in USD million/billion and CAGR from 2022 to 2030 |
Report coverage |
Revenue forecast, company ranking, competitive landscape, growth factors, and trends |
Segments covered |
Product & service, application, end-use, region |
Regional scope |
North America; Europe; Asia Pacific; Latin America; Middle East & Africa |
Country scope |
美国.; Canada; Germany; France; Italy; Spain; U.K.; China; Japan; South Korea; India; Brazil; Mexico; South Africa; Saudi Arabia |
关键的公司介绍 |
AstraZeneca; Addgene; Caribou Biosciences, Inc.; Cellectis; CRISPR Therapeutics; Editas Medicine, Inc.; eGenesis; F. Hoffmann-La Roche Ltd.; Horizon Discovery Group plc; GenScript; Danaher Corp.; Intellia Therapeutics, Inc.; Lonza; Merck KGaA; Intellia Therapeutics, Inc.; Takara Bio Inc.; Thermo Fisher Scientific, Inc.; Synthego; Mammoth Biosciences; Inscripta, Inc.; Cibus; Beam Therapeutics; PLANTeDIT; Vertex Pharmaceuticals Incorporated; Hera BioLabs; OriGene Technologies, Inc.; Recombinetics, Inc. |
Customization scope |
Free report customization (equivalent up to 8 analyst’s working days) with purchase. Addition or alteration to country, regional & segment scope. |
Pricing and purchase options |
Avail customized purchase options to meet your exact research needs.Explore purchase options |
This report forecasts revenue growth at global, regional, and country levels and provides an analysis of the latest industry trends in each of the sub-segments from 2018 to 2030. For the purpose of this study, Grand View Research has segmented the global CRISPR and Cas genes market report on the basis of product & service, application, end-use, and region:
Product & Service Outlook (Revenue, USD Million, 2018 - 2030)
By Product
Kits & Enzymes
Vector-based Cas
DNA-free Cas
Libraries
Design Tool
Antibodies
Others
By Service
Cell Line Engineering
gRNA Design
Microbial Gene Editing
DNA Synthesis
Application Outlook (Revenue, USD Million, 2018 - 2030)
Biomedical
Genome Engineering
Disease Model Studies
Functional Genomics
Epigenetics
Others
Agricultural
End-use Outlook (Revenue, USD Million, 2018 - 2030)
Biotechnology & Pharmaceutical Companies
Academics & Government Research Institutes
Contract Research Organizations (CROs)
Regional Outlook (Revenue, USD Million, 2018 - 2030)
North America
美国.
Canada
Europe
Germany
France
Italy
Spain
U.K.
Asia Pacific
China
Japan
India
South Korea
Latin America
Brazil
Mexico
Middle East & Africa
South Africa
Saudi Arabia
b.The global CRISPR and Cas genes market size was estimated at USD 2.05 billion in 2021 and is expected to reach USD 2.57 billion in 2022.
b.The global CRISPR and Cas genes market is expected to grow at a compound annual growth rate of 17.9% from 2022 to 2030 to reach USD 9.6 billion by 2030.
b.North America dominated the CRISPR and Cas genes market with a share of 38.41% in 2021. This is attributable to growing biopharmaceutical R&D as well as the involvement of several pharmaceutical corporations in the creation of novel therapeutics.
b.一些关键球员CRISPR操作和中科院genes market include AstraZeneca; Addgene; Caribou Biosciences, Inc.; Cellectis; CRISPR Therapeutics; Editas Medicine, Inc.; eGenesis; F. Hoffmann-La Roche Ltd.; Horizon Discovery Group plc; GenScript; Danaher Corporation; Intellia Therapeutics, Inc.; Lonza; Merck KGaA; Intellia Therapeutics, Inc.; Takara Bio Inc.; Thermo Fisher Scientific, Inc.; Synthego; Mammoth Biosciences; Inscripta, Inc.; Cibus; Beam Therapeutics; PLANTeDIT; Vertex Pharmaceuticals Incorporated; Hera BioLabs; OriGene Technologies, Inc.; Recombinetics, Inc.
b.Key factors that are driving the market growth include the technological advancements in CRISPR & Cas gene system and increased investments in gene editing-based R&D. Moreover, innovative technologies such as karyotyping, neonatal screening, viral screening and others have boosted the demand for gene editing techniques like CRISPR & Cas gene technology.
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