Array instruments
are devices that assist microarrays in measuring the gene expression
levels concurrently in a single reaction and also in genotyping
various regions of genome. A microarray is a cluster of microscopic
spots of RNA, DNA, oligo-nucleotides, peptides, proteins, tissues,
cells, and other compounds that are attached to a solid substrate.
The concept and methodology of microarray was originally introduced
in the year 1983 by Tse Wen Chang in a scientific journal. This
traditional biotechnological instrument is gaining acceptance as a
rapidly evolving technology.
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The global array
market keeps on shifting focus from research and development devices
towards various applications in diverse areas such as clinical
diagnostics, drug discovery, and sequencing. This technology is
majorly applied in cancer detection and treatment, gene expression,
SNP genotyping, agricultural biotechnology, genomics, proteomics, and
drug discovery. The development in microarray technology assisting in
disease detection and drug response are likely to stimulate the
growth of the array instruments market. The microarray technology has
also been successfully employed in environmental sciences,
toxicogneomics, bio-defense, veterinary, agriculture research, and
forensics.
The increasing
applications of microarrays in life sciences and drug discovery are
triggering the demand for microarrays, resulting in the growth of the
global market for array instruments. The demand for microarray
technology to detect cancer as well as in routine usage is expected
to be propelled by the increased rate of production and growth in
labeling and diagnosis in near future. Robotics is also playing a key
role in laboratory automation to fuel the global array instruments
industry.
On the other hand,
low acceptance and penetration rate in developing economies owing to
the high cost of microarray technology is negatively affecting its
usage. Similarly, the introduction of newer technologies is
increasing the competition for microarray technology, which is
affecting the development of the industry. Also, the lack of
effective data analysis tools is likely to restrict the market growth
in the near future.
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The global array
instruments industry reached US$0.87 billion in 2014. It is likely to
rise at a CAGR of 4.3% from 2014 and 2020, to reach an expected value
of US$1.12 billion by the end of the forecast period.
DNA microarray is
the largest market segment according to the technologies employed in
the global array instruments industry. The DNA microarray technology
held almost 50% of the overall array instruments industry. It is
anticipated that the global industry for DNA microarray will expand
at a CAGR of 3.9% during the forecast period. In terms of end users,
the research and development segment is likely to dominate the global
array instruments market during the forecast period.
North America is the
leading regional market for array instruments with 50% share of the
overall market. The array instruments market in Europe hold the
second position occupying almost 30% of the total share. The array
instruments market in North America reached a value of US$417.4
million in 2014. It is expected that it will worth US$526.4 million
in 2020. The emerging economies in Asia Pacific, Middle East, and
Latin America are likely to experience rapid development till 2020.
The enhancement in medical and healthcare infrastructure and rising
preference for easier and safer targeted therapies are the main
factors fueling the growth in these regional markets.
The global array
instruments industry is highly fragmented in nature having a number
of major and minor players participating in the market. ArrayIt
Corporation, Thermo Fisher Scientific, Affymetrix, Inc.,
Sigma-Aldrich Corporation, Bio-Rad Laboratories, Inc., and Illumina,
Inc., Molecular Devices, LLC, and Agilent Technologies, Inc. are the
prominent players occupying around 80% share of the overall array
instruments market. Leading companies are investing heavily in
automation of systems that are expected to reap great returns for
them in the near future.
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