プロテオミクスの世界市場予測(~2024年)...市場調査レポートについてご紹介

【英文タイトル】Proteomics Market by Instrument (Spectroscopy, Chromatography, Electrophoresis, Microfluidics, X-ray Crystallography), Reagents, Services & Software (Protein Identification, Characterization, Bioinformatics), Application - Global Forecast to 2024

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TABLE OF CONTENTS

1 INTRODUCTION 29
1.1 OBJECTIVES OF THE STUDY 29
1.2 MARKET DEFINITION 29
1.3 MARKET SCOPE 29
1.3.1 MARKETS COVERED 30
1.3.2 YEARS CONSIDERED FOR THE STUDY 31
1.4 CURRENCY 31
1.5 STAKEHOLDERS 31
1.6 LIMITATIONS 31
2 RESEARCH METHODOLOGY 32
2.1 RESEARCH APPROACH 32
2.1.1 SECONDARY RESEARCH 33
2.1.1.1 Key data from secondary sources 33
2.1.2 PRIMARY RESEARCH 34
2.1.2.1 Key data from primary sources 34
2.1.2.2 Break down of primaries 35
2.1.2.3 Key industry insights 35
2.2 MARKET SIZE ESTIMATION 36
2.3 DATA TRIANGULATION APPROACH 38
2.4 MARKET SHARE ESTIMATION 39
2.5 ASSUMPTIONS FOR THE STUDY 39
3 EXECUTIVE SUMMARY 40
4 PREMIUM INSIGHTS 45
4.1 PROTEOMICS: MARKET OVERVIEW 45
4.2 PROTEOMICS MARKET: GEOGRAPHIC GROWTH OPPORTUNITIES 46
4.3 REGIONAL MIX: PROTEOMICS MARKET (2019–2024) 47
4.4 PROTEOMICS MARKET: DEVELOPED VS. DEVELOPING MARKETS, 2019 VS. 2024 48
5 MARKET OVERVIEW 49
5.1 INTRODUCTION 49
5.2 MARKET DYNAMICS 49
5.2.1 MARKET DRIVERS 50
5.2.1.1 Increasing demand for personalized medicine 50
5.2.1.2 Proteomics bridges the gap between genomics and biochemistry 51
5.2.1.3 Increasing pharmaceutical and biotechnology R&D expenditure and government funding for proteomics 51
5.2.1.4 Technological advancements 52
5.2.2 MARKET RESTRAINTS 53
5.2.2.1 High cost of instruments 53
5.2.3 MARKET OPPORTUNITIES 54
5.2.3.1 Growing prominence of nanoproteomics—the convergence of nanotechnology and proteomics 54
5.2.3.2 Personalized proteomics for precision health 55
5.2.3.3 High growth opportunities in emerging countries 55
5.2.4 MARKET CHALLENGES 56
5.2.4.1 Data management in proteomics research 56
5.2.4.2 Low biomarker discovery-to-approval ratio 57
6 INDUSTRY INSIGHTS 58
6.1 INTRODUCTION 58
6.2 INDUSTRY TRENDS 58
6.2.1 INTEGRATION OF OMICS DATA IN BIOMEDICAL SCIENCES 59
6.2.2 GROWING FOCUS ON MONITORING POST-TRANSLATIONAL MODIFICATIONS 59
6.2.3 INCREASING UPTAKE OF LABEL-FREE QUANTIFICATION TECHNIQUES 60
6.2.4 INTEGRATING NETWORKS AND PROTEOMICS 60
6.3 UNMET NEEDS ANALYSIS 61
6.3.1 CHALLENGES IN ANALYZING LOW ABUNDANCE PROTEINS 61
7 PROTEOMICS MARKET, BY INSTRUMENTATION TECHNOLOGY 62
7.1 INTRODUCTION 63
7.2 SPECTROSCOPY 66
7.2.1 MASS SPECTROSCOPY 68
7.2.1.1 The ability of MS to identify small amounts of protein from increasingly complex mixtures is a major factor driving its use in proteomics 68
7.2.2 NMR SPECTROSCOPY 70
7.2.2.1 NMR experiments used to evaluate the physical, chemical, electronic, and structural information of proteins 70
7.2.3 CD SPECTROSCOPY 71
7.2.3.1 CD spectroscopy is used to examine changes in secondary structures of protein in response to environmental conditions or interactions with other molecules 71
7.3 CHROMATOGRAPHY 72
7.3.1 HPLC 74
7.3.1.1 The two types of HPLC systems commonly available in the market are split flow systems and non-split flow systems 74
7.3.2 ION CHROMATOGRAPHY 75
7.3.2.1 Ion chromatography is the most commonly used chromatographic method for separating proteins, polypeptides, nucleic acids, and other charged molecules 75

7.3.3 AFFINITY CHROMATOGRAPHY 77
7.3.3.1 Affinity chromatography can be used in two ways, either through the enrichment of a specific class of proteins or depletion of certain types of proteins 77
7.3.4 SUPERCRITICAL FLUID CHROMATOGRAPHY 78
7.3.4.1 SFC and mass spectrometry are used for the separation and analysis of integral membrane proteins and hydrophobic peptides 78
7.4 ELECTROPHORESIS 80
7.4.1 GEL ELECTROPHORESIS 81
7.4.1.1 The most common use of gel electrophoresis is the qualitative analysis of a complex mixture of proteins 81
7.4.2 CAPILLARY ELECTROPHORESIS 83
7.4.2.1 CE coupled with MS is used to assess the structure and identity of individual proteins, including intact proteins over a wide molecular weight range 83
7.5 PROTEIN MICROARRAYS 85
7.5.1 BIOCHIPS 86
7.5.1.1 Lab-on-chips (Microfluidics) 88
7.5.1.1.1 LOC is one of the fastest growing areas of microfabrication and nanotechnology development 88
7.5.1.2 Protein chips 89
7.5.1.2.1 The automated, affordable, and highly sensitive solutions offered by protein chips give them a advantage over conventional protein analysis tools 89
7.5.2 MICROARRAY INSTRUMENTS 91
7.5.2.1 Integrated Systems 93
7.5.2.1.1 Integrated systems are capable of carrying out the entire procedure of protein analysis without any intermediate steps 93
7.5.2.2 Microarray Scanners 94
7.5.2.2.1 Microarray scanners find applications in the data analysis of proteins, tissues, and cells 94
7.5.2.3 Arrayers 95
7.5.2.3.1 Technological advancements have made microarray spotters ideal for large-scale arraying projects 95
7.6 X-RAY CRYSTALLOGRAPHY 96
7.6.1 X-RAY CRYSTALLOGRAPHY HELPS IN THE MEASUREMENT OF THE 3D DENSITY DISTRIBUTION OF ELECTRONS IN A CRYSTALLIZED PROTEIN IN A CERTAIN RESOLUTION 96
7.7 SURFACE PLASMON RESONANCE 97
7.7.1 SPR IMAGING HELPS MONITOR A RANGE OF MOLECULAR INTERACTIONS, SUCH AS PEPTIDE-PROTEIN, CARBOHYDRATE-PROTEIN, PROTEIN-PROTEIN BINDING, AND SURFACE ENZYME KINETICS 97
7.8 PROTEIN FRACTIONATION 99
7.8.1 PROTEIN FRACTIONATION REFERS TO THE PROCESS OF ISOLATING, IDENTIFYING, AND CHARACTERIZING VARIOUS PROTEINS IN A SAMPLE OF COMPLEX PROTEOME MIXTURES 99
8 PROTEOMICS MARKET, BY REAGENT 101
8.1 INTRODUCTION 102
8.2 IMMUNOASSAY REAGENTS 103
8.2.1 IMMUNOASSAY REAGENTS TO DOMINATE THE MARKET DURING THE FORECAST PERIOD 103
8.3 SPECTROSCOPY REAGENTS 104
8.3.1 THE USE OF THESE REAGENTS IS INCREASING WITH THE RISING ADOPTION OF MS TECHNIQUES 104
8.4 CHROMATOGRAPHY REAGENTS 106
8.4.1 INCREASING DEMAND FOR PROTEIN PURIFICATION IS EXPECTED TO DRIVE MARKET GROWTH 106
8.5 PROTEIN MICROARRAY REAGENTS 107
8.5.1 USE OF THESE REAGENTS HAS INCREASED FOR ANALYZING PROTEIN INTERACTIONS 107
8.6 X-RAY CRYSTALLOGRAPHY REAGENTS 108
8.6.1 STUDY OF PROTEIN STRUCTURAL ORIENTATION FORMS AN PART OF CRYSTALLOGRAPHY STUDY 108
8.7 ELECTROPHORESIS REAGENTS 109
8.7.1 INCREASING DEMAND FOR 2D ELECTROPHORESIS IS DRIVING THE ADOPTION OF THESE REAGENTS 109
8.8 PROTEIN FRACTIONATION REAGENTS 110
8.8.1 INCREASING PROTEIN SEPARATION FROM COMPLEX MIXTURES MAKES THIS ONE OF THE FASTEST-GROWING SEGMENTS 110
9 PROTEOMICS MARKET, BY SERVICES & SOFTWARE 111
9.1 INTRODUCTION 112
9.2 CORE PROTEOMICS SERVICES 112
9.2.1 PROTEIN IDENTIFICATION SERVICES 114
9.2.1.1 Protein identification services to dominate the market during the forecast period 114
9.2.2 PROTEIN CHARACTERIZATION SERVICES 116
9.2.2.1 Characterization studies play a vital role in studying complex protein structure, drug development, and PTMs 116
9.2.3 QUANTITATIVE PROTEOMICS SERVICES 118
9.2.3.1 Quantitative proteomics is critical for understanding protein expression and modifications 118
9.2.4 PROTEIN PURIFICATION SERVICES 119
9.2.4.1 Protein purification aids in improving the overall proteome analysis and depends on the probable use of the protein 119
9.2.5 PROTEIN SEPARATION SERVICES 121
9.2.5.1 Separation plays an important role in the characterization of large-sized proteomes 121
9.2.6 PROTEIN SEQUENCING SERVICES 122
9.2.6.1 Identification and characterization of PTMs is an important area of research that needs protein sequencing 122
9.2.7 CUSTOM ASSAY SERVICES 124
9.2.7.1 Assays are adopted to improve the validation or consistency of the protein analysis procedures 124
9.3 BIOINFORMATICS SOFTWARE & SERVICES 125
9.3.1 BIOINFORMATICS SERVICES 127
9.3.1.1 Bioinformatics services are set to dominate the market during the forecast period 127
9.3.2 BIOINFORMATICS TOOLS 128
9.3.2.1 Need for data management and quality enhancement of results obtained makes tools an imperative part of proteomics 128
9.3.3 BIOINFORMATICS DATABASES 129
9.3.3.1 Databases majorly contribute to storing proteomics data along with integrating other omics databases 129
10 PROTEOMICS MARKET, BY APPLICATION 131
10.1 INTRODUCTION 132
10.2 CLINICAL DIAGNOSTICS 133
10.2.1 CLINICAL DIAGNOSTICS IS THE LARGEST APPLICATION SEGMENT OF THE PROTEOMICS MARKET 133
10.3 DRUG DISCOVERY 136
10.3.1 DRUG DISCOVERY APPLICATIONS TO REGISTER THE HIGHEST GROWTH IN THE FORECAST PERIOD 136
10.4 OTHER APPLICATIONS 138
11 PROTEOMICS MARKET, BY REGION 139
11.1 INTRODUCTION 140
11.2 NORTH AMERICA 141
11.2.1 US 148
11.2.1.1 US dominates the North American proteomics market 148
11.2.2 CANADA 154
11.2.2.1 Strong infrastructure and availability of funding for biomedical research will support market growth 154
11.3 EUROPE 160
11.3.1 GERMANY 167
11.3.1.1 Germany holds the largest share of the European market 167
11.3.2 UK 172
11.3.2.1 The UK has seen a surge in the prevalence of cancer and neurological disorders 172
11.3.3 FRANCE 178
11.3.3.1 Proteomics research in France is strongly supported by the government 178
11.3.4 SWITZERLAND 184
11.3.4.1 Market growth is primarily driven by the well-established pharmaceutical & biotechnology industry in the country 184

11.3.5 ITALY 189
11.3.5.1 Growth in this market is mainly driven by increasing life science R&D in the country, funded by both public and private organizations 189
11.3.6 SPAIN 194
11.3.6.1 Spain has a well-established network of research centers, universities, and hospitals, which form an ideal environment for translational medicine research 194
11.3.7 REST OF EUROPE 199
11.4 ASIA PACIFIC 204
11.4.1 CHINA 211
11.4.1.1 Growth in R&D to enhance the technological capabilities in the country, thereby driving the demand for high-quality research tools 211
11.4.2 JAPAN 217
11.4.2.1 Large number of research initiatives towards the development of precision medicine supporting market growth in Japan 217
11.4.3 INDIA 222
11.4.3.1 Increasing pharma R&D and government funding in the biotechnology industry are the major factors driving market growth in India 222
11.4.4 AUSTRALIA 227
11.4.4.1 The increasing focus of the healthcare system on precision medicine to offer significant growth opportunities in Australia 227
11.4.5 REST OF ASIA PACIFIC 232
11.5 LATIN AMERICA 238
11.5.1 BRAZIL 244
11.5.1.1 Research being undertaken in the fields of neuroscience, inflammatory diseases, and drug discovery, among other fields to drive market growth in Brazil 244
11.5.2 MEXICO 249
11.5.2.1 Strong pharmaceutical industry in the country to provide significant growth opportunities in Mexico 249
11.5.3 REST OF LATIN AMERICA 254
11.6 MIDDLE EAST & AFRICA 259
11.6.1 INCREASING PARTNERSHIPS AMONG GLOBAL PLAYERS WITH GOVERNMENT ORGANIZATIONS IN THE REGION TO SUPPORT GROWTH OF PROTEOMICS RESEARCH IN THE MIDDLE EAST AND AFRICA 259
12 COMPETITIVE LANDSCAPE 265
12.1 OVERVIEW 265
12.2 MARKET SHARE ANALYSIS 266
12.3 COMPETITIVE LEADERSHIP MAPPING 269
12.3.1 VISIONARY LEADERS 269
12.3.2 INNOVATORS 269
12.3.3 DYNAMIC DIFFERENTIATORS 270
12.3.4 EMERGING COMPANIES 270

12.4 COMPETITIVE SITUATION AND TRENDS 271
12.4.1 PRODUCT & SERVICES LAUNCHES 271
12.4.2 EXPANSIONS 272
12.4.3 ACQUISITIONS 273
12.4.4 OTHER STRATEGIES 274
13 COMPANY PROFILES 275
(Business Overview, Products Offered, Recent Developments, SWOT Analysis, MnM View)*
13.1 THERMO FISHER SCIENTIFIC, INC. 275
13.2 AGILENT TECHNOLOGIES, INC. 281
13.3 MERCK KGAA 286
13.4 DANAHER CORPORATION 295
13.5 WATERS CORPORATION 302
13.6 BIO-RAD LABORATORIES, INC. 308
13.7 BRUKER CORPORATION 314
13.8 GE HEALTHCARE 319
13.9 PERKINELMER, INC. 323
13.10 LUMINEX CORPORATION 326
13.11 CREATIVE PROTEOMICS 328
13.12 PROMEGA CORPORATION 330
*Business Overview, Products Offered, Recent Developments, SWOT Analysis, MnM View might not be captured in case of unlisted companies.
14 APPENDIX 333
14.1 INSIGHTS OF INDUSTRY EXPERTS 333
14.2 DISCUSSION GUIDE 334
14.3 KNOWLEDGE STORE: MARKETSANDMARKETS’ SUBSCRIPTION PORTAL 339
14.4 AVAILABLE CUSTOMIZATIONS 341
14.5 RELATED REPORTS 341
14.6 AUTHOR DETAILS 342


【レポート販売概要】

■ タイトル:プロテオミクスの世界市場予測(~2024年)
■ 英文:Proteomics Market by Instrument (Spectroscopy, Chromatography, Electrophoresis, Microfluidics, X-ray Crystallography), Reagents, Services & Software (Protein Identification, Characterization, Bioinformatics), Application - Global Forecast to 2024
■ 発行日:2019年2月28日
■ 調査会社:MarketsandMarkets
■ 商品コード:BT 2341
■ 調査対象地域:グローバル
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