3D Cell Culture Market Overview
3D cell culture market size was valued at USD 0.87
billion in 2021 and is projected to grow from USD 1.03 billion in 2022 to USD
3.94 billion by 2030, exhibiting a compound annual growth rate (CAGR) of 14.90%
during the forecast period (2022 - 2030)
The market is mainly driven by the growing
awareness about the benefits of 3D cell cultures in comparison to 2D cell
cultures and the growing demand for medical research to counter the growing
threat of diseases. The market is comprehensively profiled in the report,
including a detailed study of the market’s key drivers and restraints, major
market players, and leading segments.
The growing medical research sector is likely to be a major driver
for the global 3D cell culture market over the forecast period. Major medical
research market players have focused on adopting 3D cell culture technologies
in recent years to gain more detailed information. The growing scope for cancer
research is likely to remain a major driver for the 3D Cell
Culture Market over the forecast period, as cancer studies are most effective
when performed in a 3D environment. The growing economic and healthcare burden
of cancer is likely to drive the demand from the over the forecast period.
3D cell cultures are cell cultures where the
organism is allowed to grow in all three directions, replicating the natural
growth patterns of the organism. In contrast, 2D cell culture media such as
petri dishes do not allow for 360-degree growth of the organism’s cell
clusters, leading to a more limited understanding of the organism, its
propagation, and its mechanism. 3D cell cultures allow for a more comprehensive
study of the respective organism by replicating in vivo conditions and are thus
growing in demand in the medical research sector due to their benefits in terms
of acquiring more detailed profiles of the subjects in question.
Market Segmentation
The global 3D cell culture market
is segmented on the basis of technique, product, application, end user, and
region.
On the basis of technique, the
global 3D cell culture market is segmented into scaffold-based 3D Cell cultures
and scaffold-free 3D cell cultures.
On the basis of the product, the
market is segmented into consumables and instruments. The consumables segment
dominates the global market and is expected to grow at a CAGR of 25.88% over
the forecast period from 2017 to 2023.
On the basis of application, the
market is segmented into cancer research, stem cell research, drug discovery,
tissue screening and engineering, regenerative medicine, and others. Drug
discovery is the largest application segment of the market and is likely to
exhibit stable progress over the forecast period at a CAGR of 25.75%.
On the basis of end use, the
market is segmented into pharmaceutical and biotechnology companies, contract
research organizations, research and academic laboratories, and others.
Pharmaceutical and biotechnology companies are likely to remain the leading end
user in the market over the forecast period, exhibiting growth at a strong
26.13% CAGR over the forecast period.
Regional Analysis
The Americas, led by the U.S., is
the largest contributor to the global 3D cell culture market and is likely to
retain the position over the forecast period due to the strong presence of a
number of leading pharmaceutical and biotech companies in the region and the
growing emphasis in the region on drug development and medical research.
Asia Pacific is expected to
exhibit the highest growth in the market over the forecast period
due to the growing presence of biotech and pharmaceutical companies in the
region. The APAC region is expected to exhibit a CAGR of 26.17% over the
forecast period.
Competitive Analysis:
Major players in the global 3D cell
culture market Players include Thermo
Fisher Scientific Inc., Corning Inc., Becton Dickinson and Company, Merck KGaA,
Kuraray Co. Ltd., and Lonza.
In March 2019, Lonza announced the launch of a new
custom cell biology services provider called CellBio Services. The company will
provide comprehensive solutions for a wide array of problems in the field of
cellular research, including 3D cell culture services.
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