The Fluorescent
In Situ Hybridization (FISH) Probe Market report discusses the primary market growth drivers and challenges that
the vendors and the market as a whole face and provides an overview of the key
trends emerging in the market. It also talks about the market size of different
segments and their growth aspects along with key leading countries in Americas,
Asia-Pacific, Europe, the Middle East, and Africa regions.
The global Fluorescent In Situ Hybridization (FISH) Probe Market is
expected to display higher growth rate over the next seven years. Rapid surge
in the fluorescent in situ hybridization probes market is credited to the
rising demand for molecular diagnostic tools and increasing adoption of ISH
technology. Growing prevalence of chronic diseases along with rising demand for
rapid diagnostic techniques are anticipated to foster market growth over the
forecast period.
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Some of the major objectives of this
report:
1. To provide detailed analysis of the market
structure along with forecast of the various segments and sub-segments of the
global Fluorescent In Situ Hybridization (FISH) Probe Market.
2. To provide insights about factors
affecting the market growth. To analyze the Fluorescent In Situ Hybridization
(FISH) Probe Market based on various factors- price analysis, supply chain
analysis, porter five force analysis etc.
3. To provide historical and forecast revenue
of the Fluorescent In Situ Hybridization (FISH) Probe Market segments and
sub-segments with respect to four main geographies and their countries- North
America, Europe, Asia, and Rest of the World.
4. Country level analysis of the market with
respect to the current market size and future prospective.
5. To provide country level analysis of the
market for segment by application, product type and sub-segments.
6. To provide strategic profiling of key
players in the market, comprehensively analyzing their core competencies, and
drawing a competitive landscape for the market.
7. Track and analyze competitive developments
such as joint ventures, strategic alliances, mergers and acquisitions, new
product developments, and research and developments in the global Fluorescent
In Situ Hybridization (FISH) Probe Market.
Globally, the fluorescent in situ hybridization (FISH) probe industry is
predicted to generate massive revenue over next seven years, providing numerous
opportunities for market players to invest for research and development in the
FISH probe market. The conventional methodologies such as clinical trials were
influenced by factors such as the growing competition, rising prices of
medicines and strict governmental laws to limit adverse effects on the
environment. With advent of the In Situ hybridization devices, such factors are
significantly diminished due to numerous advantages associated with fluorescent
In Situ hybridization devices.
Benefits associated with adoption of fluorescent In Situ hybridization
devices are superior performance, successful trials, reliability and short
timeframes for execution of clinical trial, and cost-effectiveness. Rising
prevalence of cancer-related diseases is expected to boost market demand
fluorescent in situ hybridization probe industry over the upcoming years. In addition,
increasing adoption of DNA probe-based diagnostics for identification of
diseases that are caused by pathogen or bacteria is estimated to drive market
growth.
Rise in the number of incidence related to genetic disorders, solid
tumors, leukemia, autism, and other syndromes are predicted to stimulate market
demand for FISH Probe over the forecast period. Fluorescent in situ
hybridization probes offer an advanced analytical method to monitor gene
aberration, including gene amplification and deletion. Fluorescent in situ
hybridization probe (FISH Probe) is also responsible for gene copy number
change, chromosome translocation, gene expression at RNA level, and bacterial
detection.
The fluorescent in situ hybridization probe market is broadly categorized
into three major segments based on the application type such as research and
development labs, hospitals & clinics, and companion diagnostics. The
hospitals & clinics segment is growing rapidly in the with substantial
revenue generation in the last few years. Growing popularity of fluorescent in
situ hybridization probes in the hospitals & clinics segment is attributed
to the broad range of application involving detection of genetic disorders,
cancer, and infectious diseases.
The FISH probe industry is divided by region as North America, Europe,
Asia-Pacific, Latin America and Africa. North America has shown major growth in
recent years owing to the rise in the implementation of latest technologies in
gene therapy, surge in number of research & development activities in the
region and existence of well-established healthcare infrastructure.
Asia-Pacific region is estimated to hold major share in the FISH probes
market with massive growth in forecast period. Countries such as India, China
and Singapore are leading the Asia-Pacific market with rising healthcare
expenditure, increasing disposable income, favorable government initiatives to
promote use of advanced technologies in healthcare sector, and significant
investment by leading industry players considering potential growth
opportunities in the region.
The key players in the fluorescent in situ hybridization probes industry
are Oxford Gene Technology IP Ltd., Life Science Technologies Ltd., PerkinElmer
Inc., Abnova Co., Biosearch Technologies Inc., Genemed Biotechnologies, Inc.,
F. Hoffmann-La Roche AG, Abbott Laboratories, Inc., and Agilent Technologies
Ltd.
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