bioinformatics Market report

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BIOINFORMATICS MARKET SIZE This report on Bioinformatics gives a market insight into products and services used in the bioinformatics industry. The market is analyzed by product and applications; Database, Software and Hardware form the product categories, finding applications in Genomics, Proteomics, Metabolomics, and Other (Drug Discovery, Cheminformatics, and Pharmacogenomics). Market projections and estimates are illustrated by region and by product/application. The report serves as a guide to bioinformatics industry, covering more than 600 companies that are engaged in bioinformatics products and services. Major Contract Research Organizations, Research Institutes and Universities serving the bioinformatics industry are also covered in the corporate directory section of this report. Information related to recent product releases, product developments, partnerships, collaborations, and mergers and acquisitions is covered in the report. Compilation of Worldwide Patents related to bioinformatics is also provided. A global perspective is presented along with regional analysis covering the regions of North America, Europe, Asia-Pacific, and Rest of World with 102 exclusive graphically represented exhibits. Bioinformatics’ report is an ideal research tool providing strategic business intelligence to the corporate sector. This report may help strategists, investors, laboratories, pharmaceutical companies, contract research organizations, biotechnology companies and drug approval authorities in-

Gauging Competitive Intelligence

Identifying Key Growth Areas and Opportunities

Understanding Geographic Relevance to Product

Knowing Regional Market Sizes and Growth Opportunities and Restraints

Keeping Tab on Emerging Technologies

Equity Analysis

Tapping New Markets

Analytics and data presented in this report pertain to several parameters such as – 

Global and Regional Market Sizes, Market Shares, Market Trends

Product (Global and Regional) Market Sizes, Market Shares, Market Trends

Technology Trends

Corporate Intelligence

Key Companies by Sales, Brands, Products

Consumer Behavioral Patterns

Other Strategic Business Affecting Data

RITMIR037: Bioinformatics – A Market Insight Report, July 2013 © RI Technologies - www.researchimpact.com

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Research Methodology RI Technologies publishes business intelligence reports by going through a cycle of diligent research and analysis activity. Research is done using both online and offline resources. The study outline of this report is sketched on the following lines – global market analysis, regional market analysis, product segmentation, global and regional market analysis by product segment, market trends, M&A, R&D, competitive landscape, technology trends, and other key drivers. Current data helps in analyzing the future of the industry and is also helpful for doing market evaluations, and estimating the market size for the future.

This report is uniquely researched and the methodology includes: 

Need and Scope of Study

Product Definitions

Segmental Analysis

Regional Analysis

Exclusive Data Analytics

Corporate Intelligence

Feedback

Right from concept to final compilation of this report, both primary and secondary research methods are applied. We have provided exclusive feedback forms/pre-release questionnaires for this report to use the information for authentication of our own findings. Secondary research includes government publications, investment research reports, web based surveys, website information of both companies and markets, and other offline resources such as print publications and CDs. Our compilation of easy to navigate PDF reports are essential value addition resources for leading and growing companies.

RITMIR037: Bioinformatics – A Market Insight Report, July 2013 © RI Technologies - www.researchimpact.com

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2. REPORT SYNOPSIS Informatics – A Biological Overview The illustration, association, management, allotment, preservation and the utility of information, predominantly in digital form is the main purpose of science of informatics. There is more than one interpretation of what bioinformatics the word basically suggests - the intersection of informatics and biology. But the theoretical study is entirely different from the practical use of the subject in evaluating and solving many biological problems using information technology. The main application of bioinformatics is the illustration, storage and allocation of the data. Bioinformatics also aims at development of data formats and databases containing the information about different aspects of various biological systems, designing tools to query those databases, and creation of user interfaces that assembles the different tools helpful in questioning the data together.

Bioinformatics In the field of biotechnology, Bioinformatics is regarded as an efficient tool in research and development with many advantages over the current methods, such as 

Reducing of both cost and time for the invention of new drug.

Increasing the efficacy and properties of the natural substances

Development of new drugs and vaccines by improving their resistance to diseases.

Production of new protein molecules and biological materials.

Sequencing of genomes.

Obtaining taxonomical data from various sources with advanced technology such as micro arrays, proteomics etc.

Integrating and organizing databases requiring sophisticated bioinformatics tools.

The above advantages proved decisive in developing countries such as India where enough resources for treatment could be used to develop at low costs.

Scope of Bioinformatics Bioinformatics has an extensive scope in the various fields. It provides the source for extraction of huge data generated by the HGP and also facilitates better understanding the numerous diseases attacking the human population. This in turn would help in developing potential therapies and drugs for effectively dealing with the disorders. The widespread popularity of Bioinformatics is expected to completely swap the traditional methodologies in the area of drug detection and drug manufacture. The significance of Bioinformatics is emerging rapidly. This is indicated by the formation of a group

RITMIR037: Bioinformatics – A Market Insight Report, July 2013 © RI Technologies - www.researchimpact.com

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comprising of computational biologists, computer scientists and software engineers in each institution offering Bioinformatics as a curriculum and also at universities. Apart from these institutions these days we also find this group in pharmaceutical companies and biotechnology firms and other production units involved in drug manufacture. The global Bioinformatics market is primarily concentrated in the European countries. Bioinformatics primarily has two application areas 

Agriculture

Pharmaceuticals

Agricultural Bioinformatics primarily functions on the whole genome sequencing of plants. On the contrary the pharmaceutical sector depends on the success of the Human Genome Sequencing. The pharmaceutical sector uses a number of models to carry out clinical trials.

Segmentation of Bioinformatics Market Segmentation of Global Bioinformatics Market by Application and by Product Type

By Application

By Product

Genomics

Database

Proteomics

Software

Metabolomics

Hardware

Other (Drug Discovery, Cheminformatics, Pharmacogenomics)

-

© RIT, 2013

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Global Market Analysis Global Bioinformatics market is projected to reach US$ XX.XX billion by 2020, from approximately US$ XX.XX million in 2012, growing at a high compounded annual growth rate (CAGR) of XX.XX % during the analysis period 2005-2020. Exhibit 1. Bioinformatics – Global Value Market Estimations and Predictions (2005 -2020) in US$ Billion Year

Value

2005

XX.XX

2006

XX.XX

2007

XX.XX

2008

XX.XX

2009

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2010

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2011

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2012

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2013

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2014

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2015

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2016

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2017

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2018

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2019

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2020

XX.XX

CAGR %

XX.XX

© RIT Figures, 2013

US$ Billion

2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020

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3. MARKET DYNAMICS Global Bioinformatics Market Global market for Bioinformatics Genomics application is projected to reach US$ XX.XX billion by 2020, from around US$ XX.XX billion in 2012, registering a CAGR of XX.XX % during the analysis period 2005-2020. The North American market is the largest and is estimated at around US$ XX.XX million in 2012. The market is projected to hold the leading position by 2020, with a share of XX.XX %, valued US$ XX.XX billion. Europe is the second largest market and is projected to grow from US$ XX.XX million in 2020, to about US$ XX.XX billion by 2012. Asia-Pacific is projected to be the fastest growing market during the analysis period with a CAGR of XX.XX %, followed by Japan with a CAGR of XX.XX %. Exhibit 2. Bioinformatics – Global Market Estimations and Predictions (2005 – 2020) by Geographic Region for North America, Europe, Asia-Pacific and Rest of World in US$ Million Year /Region

North America

Europe

Asia-Pacific

Rest of World

Total

2005

XX.XX

XX.XX

XX.XX

XX.XX

XX.XX

2006 2007

XX.XX XX.XX

XX.XX XX.XX

XX.XX XX.XX

XX.XX XX.XX

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2008 2009

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2010 2011

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XX.XX XX.XX

XX.XX XX.XX

XX.XX XX.XX

XX.XX XX.XX

2012

XX.XX

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2013

XX.XX

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XX.XX

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XX.XX

2014

XX.XX

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2015 2016

XX.XX XX.XX

XX.XX XX.XX

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2017 2018

XX.XX XX.XX

XX.XX XX.XX

XX.XX XX.XX

XX.XX XX.XX

XX.XX XX.XX

2019 2020

XX.XX XX.XX

XX.XX XX.XX

XX.XX XX.XX

XX.XX XX.XX

XX.XX XX.XX

CAGR%

XX.XX

XX.XX

XX.XX

XX.XX

XX.XX

© RIT Figures, 2013

US$ Million

2005

2006

2007

2008

North America

2009

2010

2011 Europe

2012

2013

2014

2015

2016

2017

Asia-Pacific

RITMIR037: Bioinformatics – A Market Insight Report, July 2013 © RI Technologies - www.researchimpact.com

2018

2019

2020

Rest of World

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Exhibit 3. Bioinformatics – Global Market Shares (2010, 2015 & 2020) by Geographic Region for North America, Europe, Asia-Pacific and Rest of World Year/Region

North America

Europe

Asia-Pacific

Rest of World

Total

2010

XX.XX

XX.XX

XX.XX

XX.XX

100

2015

XX.XX

XX.XX

XX.XX

XX.XX

100

2020

XX.XX

XX.XX

XX.XX

XX.XX

100

© RIT Figures, 2013

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Bioinformatics - Analysis by Application Global market for Genomics in Bioinformatics applications is projected to reach US$ XX.XX billion by 2020, from an estimated around US$ XX.XX billion in 2012, registering a CAGR of XX.XX % during the analysis period 2005-2020. Proteomics is the fastest growing market with a CAGR of XX.XX % that is expected to reach a value of US$ XX.XX billion by 2020 from US$ XX.XX billion in 2012. The combined market shares of Genomics and Proteomics covers around XX.XX to XX.XX % of the global Bioinformatics Application market. Metabolomics Market is expected to reach around XX.XX billion by the end of the year 2020. Exhibit 4. Bioinformatics Applications - Global Market Estimations and Predictions (2005 -2020) for Genomics, Proteomics, Metabolomics and Other in US$ Million Year/Region 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 CAGR %

Genomics XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX

Proteomics XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX

Metabolomics XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX

Other XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX

Total XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX XX.XX

© RIT Figures, 2013

US$ Million

2005

2006

2007

2008

Genomics

2009

2010

2011

Proteomics

2012

2013

2014

2015

2016

2017

Metabolomics

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2018

2019

2020

Other

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Exhibit 5. Bioinformatics Applications – Global Market Shares (2010, 2015 & 2020) for Genomics, Proteomics, Metabolomics and Other Year/Region

Genomics

Proteomics

Metabolomics

Other

Total

2010

XX.XX

XX.XX

XX.XX

XX.XX

100

2015

XX.XX

XX.XX

XX.XX

XX.XX

100

2020

XX.XX

XX.XX

XX.XX

XX.XX

100

© RIT Figures, 2013

BIOINFORMATICS – OUTLOOK Technologies in proteomics are employed in drug discovery studies in addition to genomic approaches. These integrated technologies have paved way for the extension of Bioinformatics and protein bio-chip technologies in a unique method. Bio-informatics provides much opportunities and its self-assurance opens new avenues in the associated sectors also. Drug discovery sector has gained much significance in the Bioinformatics market. Bioinformatics tools and software area has reduced the costs and period of manufacture of newly ascertained drugs thus making the field a prospective target for future endeavors. Advanced use of bio-informatics in the pharmaceutical industry is the prime cause for its growth. 33% of annual production cost and 30% of time consumed for drug discovery could be reduced in the development of a new drug when bioinformatics principles are applied. It is expected that pharmaceutical companies would raise their R&D expenditure in the days to come. These companies would give priority for research on bioinformatics in R&D……..

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4. PRODUCT/TECHNOLOGY RESEARCH Bioinformatics Bioinformatics is a latest branch of applied sciences which utilizes the applications of mathematics, statistics and computational techniques, to learn, manage and process high amounts of biological data which results from the ongoing research work. Bioinformatics is based on the databases and algorithms that are used to orient, organize and store the data for future use. Using this data, a newly found gene/ protein is compared to the existing gene/ protein databases and analyzed for its functional activity.

Biomedical Informatics Biomedical informatics is a science that uses bioinformatics, particularly information about healthcare and medicines. This discipline extends the usage of information technology and sophisticated computing technologies being used in research to medical practices, medicines and biomedical sciences. Biomedical informatics covers areas such as dental informatics, pharmacy informatics, public health informatics, genomics, proteomics, drug designing, clinical informatics, nursing informatics, veterinary informatics, and medical imaging informatics.

Bio-inspired Computing Bio-inspired computing or biologically inspired computing is an area of research that integrates information from sources such as social behavior, evolution, and connectionism. Substantial part of this field is associated with artificial intelligence because many projects are aimed at teaching machines to perform human functions after learning the mechanism from evolutionary processes. This field is highly dependent on mathematics, computer science and biology. In simple words, bio-inspired computing entails development of computers that imitate some natural action, and analysis of nature for improving the efficacy of computers. Effectively, this branch of bioinformatics is the main user of computations related to nature.

Biocybernetics This is the branch where cybernetics is used along with biological sciences. This science is used in biological fields which are likely to benefit from usage of systems such as cybernetics neurology, cybernetics multicellular systems, and many others. This is not a definite science, because this is primarily a bunch of theories that are developed using principles of systemics. The postulations of such theories without any concrete proofs make biocybernetics an abstract science.

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Bybernetics Bybernetics is another bioinformatics branch that is important in systems biology. This branch combines information about biological systems and analyzes what triggers these systems, and affects their performance.

Computational Biomodeling Computational biomodeling is that branch of bioinformatics, which analyzes processes that might result in creation of life, artificially. Therefore, computer based simulation processes on biochemical systems are carried on to check if the process results in life form. Effectively, this field entails integration of computer science, chemistry, physics, and molecular biology. The main focus of such computational studies as of now is to understand how cells are formed, made to perform in unison with other cells in a tissue, and how they manage to withstand hostile environments. This is, comparatively, a new area of bioinformatics. One hurdle that is encountered in such computational biomodeling is the comprehension of protein folding mechanism. Research on protein folding pattern is being carried out through Folding@home project, and Blue Gene project.

Databases Databases

Description

BioProject (formerly Genome Project)

A collection of genomics, functional genomics, and genetics studies and links to their resulting datasets. This resource describes project scope, material, and objectives and provides a mechanism to retrieve datasets that are often difficult to find due to inconsistent annotation, multiple independent submissions, and the varied nature of diverse data types which are often stored in different databases.

BioSample

The BioSample database contains descriptions of biological source materials used in experimental assays.

BioSystems

Database that groups biomedical literature, small molecules, and sequence data in terms of biological relationships.

Bookshelf

A collection of biomedical books that can be searched directly or from linked data in other NCBI databases. The collection includes biomedical textbooks, other scientific titles, genetic resources such as GeneReviews, and NCBI help manuals.

ClinVar

A resource under development to provide a public, tracked record of reported relationships among human variation and observed health status. ClinVar has a projected launch date for late 2011.

CloneDB (formerly Clone Registry)

A database that integrates information about clones and libraries, including sequence data, map positions and distributor information.

Computational Resources from NCBI's Structure Group

A centralized page providing access and links to resources developed by the Structure Group of the NCBI Computational Biology Branch (CBB). These resources cover databases and tools to help in the study of macromolecular structures, conserved domains and protein classification, small molecules and their biological activity, and biological pathways and systems.

More… © RIT, 2013

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Exhibit 6. List of Model Organism Databases Databases

Description

Arabidopsis thaliana ABRC

Arabidopsis biological resource center

AGI

Arabidopsis genome initiative

AREX

Arabidopsis gene expression database

Arabinet

Arabidopsis information on the www

AtGDB

An Arabidopsis thalina plant genome database

More… © RIT, 2013

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Identifying Key Growth Areas and Opportunities

Understanding Geographic Relevance to Product

Knowing Regional Market Sizes and Growth Opportunities and Restraints

Keeping Tab on Emerging Technologies

Equity Analysis

Tapping New Markets

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RI Technologies sells content in good faith. The company is not liable to the buyer for any implications arising out of the usage of data for any particular purpose. The company makes no representations or warranties for the accuracy or completeness of the data. While extreme caution and effort is practiced for data compilation and presentation, the company does not accept any responsibility for findings in the study which are a cumulative effort of primary and secondary research resources. The studies do not endorse or promote any product or company. RI Technologies, its affiliates, partners, distributors, and contractors are not liable for inaccuracies or incompleteness of the reports. User discretion is recommended for the usage of the data.

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