Genome Editing Market Size and Growth Analysis By 2026
According to the new market research report Genome Editing Market
by Technology (CRISPR, TALEN, ZFN, Antisense), Product Service,
Application (Cell Line Engineering, Genetic Engineering, Diagnostics),
End user (Pharmaceutical, Biotechnology, Academia) - Global Forecast to
2026, published by MarketsandMarkets™, the global Genome Editing/Genome
Engineering Market is projected to USD 11.7 billion by 2026 from USD 5.1
billion in 2021, at a CAGR of 18.2 % between 2021 and 2026.
Browse in-depth TOC on "Genome Editing Market"
147 – Tables
48 – Figures
208 – Pages
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Recent
developments in this field have led to significant improvements in the
genome editing capabilities that have enabled the modification of gene
sequences of interest in a wide variety of cell types and model
organisms. Genome engineering, earlier used by large research
organizations, such as academic and government research centers, has now
become a potentially transformative diagnostic tool, especially for
oncology studies. This shift from academics to clinical and diagnostic
laboratories is primarily driven by rapid improvements in gene editing
technologies. The growth of the gene editing market is expected to be
driven by the rise in government funding and growth in the number of
genomics projects, increased application areas of genomics, and the
introduction of CRISPR-Cas9 for genome engineering. On the other hand,
the off-target effects of CRISPR technology and high equipment costs may
hinder the growth of this market.
The reagents consumables
segment accounted for the largest share of the product service segment
in the genome editing market in 2020.
Based on product service,
the genome engineering market is segmented into reagents consumables,
software systems, and services. The reagents consumables segment
accounted for the largest share of 58.8% in 2020, mainly due to the
repetitive purchase of reagents and consumables as well as the rising
demand for and multiple uses of editing and sequencing. The growing
applications of genomics in various fields are expected to boost the
market for consumables during the forecast period.
The cell line
engineering segment accounted for the largest share of the application
segment in the genome engineering market in 2020.
Based on
application, the genome editing market is segmented into cell line
engineering, genetic engineering, diagnostic applications, drug
discovery development, and other applications. The cell line
engineering segment accounted for the largest share of 32.0% of the
market in 2020. Several factors, such as increasing funding from
governments and private organizations, growing focus on stem cell
research by various companies, and rising global awareness about stem
cell therapies, are driving the growth of the cell line engineering
segment.
The CRISPR segment accounted for the largest share of the
technology segment in the genome editing/genome engineering market in
2020.
Based on technology, the genome editing market is segmented
into CRISPR, TALEN, ZFN, antisense, and other technologies. The CRISPR
segment accounted for the largest share of 63.1% of the gene editingmarket
in 2020. The ease of use associated with CRISPR technology gives it a
significant advantage over ZFN and TALEN, especially in generating a
large set of vectors to target numerous sites or even genome-wide
libraries. Another potential advantage of CRISPR is its ability to use
multiple guide RNA parallelly to target multiple sites simultaneously in
the same cell. This makes it easier to mutate multiple genes at once or
engineer precise deletions in a genomic region and is driving the
growth of this segment.
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The genome editing market
is divided into five major regions—North America, Europe, Asia Pacific,
Latin America (LATAM), and the Middle East and Africa (MEA). North
America accounted for the largest share of this market, followed by
Europe in 2020. The key factors driving the growth of the market in
North America include the investment in research and development of gene
therapy, increased use of GM crops in recent times, and tremendous
changes in terms of technological changes, fueled by grants and funds
from various government institutions in the US.
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