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市場調查報告書
商品編碼
1641383
全球蛋白質體學市場:特色見解(2024-2029)Global Proteomics Market - Focused Insights 2024-2029 |
預計2023年至2029年期間全球蛋白質體學市場規模的年複合成長率為 12.94%。
2024年,Thermo Fischer Scientific宣布收購 Olink Holding AB。 Olink 是開發下一代蛋白質體學解決方案的先驅。 Olink 致力於先進蛋白質體學的發現和開發,為學術機構和生物製藥公司提供支援。
2023年,領先的資料驅動蛋白質體學技術公司 SomaLogic 和 Standard BioTools Inc. 宣布已達成最終協議,以全股票交易方式合併。
Danaher繼續進行併購,於2023年以約 57億美元收購了蛋白質體學市場的主要參與者之一 Abcam。 Abcam 提供科學研究的工具和試劑,包括診斷、藥物發現和蛋白質體學。
2023年,Bruker Corporation與Biognosys AG宣佈建立策略夥伴關係。根據合作關係,Biognosys 將在蛋白質組學和蛋白質基因組學合約研究服務領域處於領先地位,利用Bruker尖端的4D 蛋白質組學 timsTOF 技術進行精準蛋白質組學開發。
Agilent Technologies與 MRM Proteomics 簽署了2022年新的聯合行銷協議。新協議目的是進一步提高定量蛋白質組學應用和代謝物分析的能力。
2021年,BGI將與Champions Oncology合作,提供基於質譜(MS)的多組學和蛋白質組學資料分析解決方案。
本報告研究了全球蛋白質體學市場,並提供了市場概述以及依產品、應用、最終用戶和地區劃分的趨勢,以及參與市場的公司概況。
The global proteomics market is expected to grow at a CAGR of 12.94% from 2023 to 2029.
RECENT VENDORS ACTIVITIES
KEY TAKEAWAYS
MARKET DRIVERS & OPPORTUNITIES
Attention Towards High Throughput Proteomics and Associated Techniques
High Throughput Proteomics (HTP) refers to the use of high-capacity and automated analytical techniques to conduct large-scale protein analysis, such as protein quantification, identification, and characterization. The attention towards HTP, proteomics tools become more advanced in terms of speed and sensitivity. Recent developments in mass spectrometers with high speed, sensitivity, & precision, as new methods of sample preparation, data analysis, and interrogation are collectively supporting high-throughput proteomics. One such recent advancement is Data-independent Acquisition (DIA), which enables greater coverage and unbiased analysis of proteome. This new technology can help to identify the same set of proteins reproducibility across thousands of samples. Mass spectroscopy remains a cornerstone in the proteomic research field. Currently, high-throughput MS technologies are becoming more efficient and sophisticated. Also, these developments are expected to empower researchers and scientists to understand and analyze complex and new proteomics with higher accuracy, sensitivity, and high throughput, facilitating discoveries in drug development and biomarker identification.
Emerging Technologies and Methods in Proteomics Study
Recently, several new and promising avenues have improved the current method of proteomic potentially.Of these, the methods to monitor post-translation modification are one of the emerging trends in proteomics. In several real situations in the body, the protein concentration does not differ, but the function of the protein differs due to post-translation modification. The development of new methods to monitor post-translation modification (PTM) has the potential to lead to a deep understanding of the protein function.
Proteomics and Personalized Medicines
Personalized medicine or precision medicine is an emerging healthcare approach that takes into account an individual's molecular profile, genetics, lifestyle, and environment to predict essential and best treatment for patients. The rising focus on precision medicines drives the demand for proteomics studies. The proteomics field studies proteins and their characteristics, helping to develop and deliver personalized medicines. This approach promises improved efficacy, cost-effective healthcare, and reduced side effects by tailoring interventions to each patient's unique characteristics. In addition, from biomarker discovery to new drug development, proteomics offers a potential tool for personalized medicines.
INDUSTRY RESTRAINTS
Limitations in Accessing the Proteome
The proteome is dynamic, complex, and diverse in structure, composition, and number of variants than the genome or transcriptome. There are multiple processes to come to the proteome starting from the genome. The genome in humans consists of about 20,000 genes that by estimation give rise to about 1,000,000 or more variants of protein through the process of transcription and translation. Further, the number of processes modify these proteins chemically and give rise to a large number of protein variants with high diversity and structural variations through post-translational modifications. Thus, it is difficult to measure these protein variants with high diversity, complexity, and dynamic nature with traditional technologies. However, the existing proteomics methods can measure the breadth and depth of the proteome's complexity, rapidly and at a large scale.
SEGMENT INSIGHTS
INSIGHT BY PRODUCT TYPE
The global proteomics market by product type is segmented into consumables & reagents, instruments & software, and services. The consumables and reagents segment holds the largest market share of over 76% in 2023. Proteomics is a highly complex process, encompassing steps from sample extraction and preparation to protein analysis. It requires a significant amount of consumables and reagents. Consumables include depletion and enrichment kits, trays, and various tools, while reagents consist of buffers, detergents, salts, and reducing agents. Proteomic studies, ranging from small and medium-scale to large-scale, are regularly conducted in clinical diagnostics and drug discovery, driving demand for high-quality consumables and reagents. These studies often rely on mass spectrometry (MS). Due to the complexity of proteomics, there is no standardized method for protein sample preparation for MS, further increasing the need for diverse consumables and reagents. Most consumables and reagents are single-use and must be discarded after use, leading to a continuous demand. This ongoing requirement significantly drives growth in this segment.
By Product
INSIGHT BY APPLICATIONS
The global proteomics market by applications is categorized into drug discovery & development and translational research, clinical applications, and forensic and applied proteomics. The forensic and applied proteomics segment shows significant growth with the fastest-growing CAGR of 14.31% during the forecast period. Proteomics has transformed forensic science by enabling the characterization and identification of proteins for various applications. Using proteomics, postmortem bodily fluids, organs, and tissues can be analyzed for protein profiling, enhancing forensic autopsy and pathology investigations. In forensic science, the primary goal is to uphold the integrity of the criminal justice system. Proteins, which are intrinsic to biological evidence, are highly stable and abundant biomolecules in forensic samples. Their diverse population in biological evidence provides valuable chemical, biological, and genetic information for investigators. Historically, protein analysis has been used for identifying body fluids and tissues, determining species, and aiding in human identification.
By Applications
INSIGHT BY END-USERS
Based on the end-users, the pharma & biotech companies segment accounted for the largest share of the global proteomics market. Pharma and biotech companies are major contributors to the proteomics market. Growing R&D efforts and clinical trials aimed at developing novel, targeted, and personalized medicines are driving the demand for proteomics research. These industries extensively use proteomics technologies in R&D to develop proteomics-based reagents, instruments, and protein-based diagnostic and therapeutic kits. The importance of proteomics in the pharmaceutical industry is rapidly increasing, with biopharma companies shifting their focus from genomics to proteomics. Proteomic studies offer significant opportunities in drug discovery, biomarker identification, personalized medicine development, and other applications. They have become the gold standard in drug discovery and development, providing comprehensive insights into cellular processes and enabling the development of targeted therapies.
By End-users
GEOGRAPHICAL ANALYSIS
North America leads the global proteomics market, driven by the growing prevalence of chronic diseases, increasing demand for personalized medicine, rising healthcare expenditure, and government funding for R&D. Chronic conditions such as cardiovascular diseases, genetic disorders, cancer, diabetes, and infectious diseases-major causes of death in the region-further fuel the adoption of personalized medicine and proteomics research.
The Asia-Pacific (APAC) region holds the third-largest market share but is expected to show the highest growth during the forecast period. This growth is propelled by the rapid expansion of life sciences industries, advancements in healthcare, increased R&D activities, and rising focus on personalized medicine. Healthcare spending in APAC has advanced clinical research and care, with health expenditure in 2021 accounting for 4% of GDP in low-income countries, 4.3% in lower-middle-income countries, and 7.6% in upper-middle- and high-income countries. Key countries such as Japan, China, India, and South Korea are driving demand for personalized care, accelerating proteomics studies in the development of personalized medicines.
By Geography
COMPETITIVE LANDSCAPE
The global proteomics market report consists of exclusive data on 37 vendors. The market is highly competitive. There are several leading, growing, and emerging market players are present across the global market. Some emerging players compete against large and small medium-sized market players. Agilent Technologies, Bio-Rad Laboratories, Thermo Fisher Scientific, Danaher, PerkinElmer, and BGI Group are some of the leading companies that accounted for major market share in the global proteomics market. These vendors are continuously focusing on expanding their proteomics solutions and services that meet client's requirements and international regulations, as well as increasing the efficiency of their products, and strengthening their market position.
Key Vendors
Other Prominent Vendors
KEY QUESTIONS ANSWERED:
CHAPTER - 1:
CHAPTER - 2:
CHAPTER - 3: Proteomics Market Prospects & Opportunities
CHAPTER - 4:Proteomics Market Segmentation Data
CHAPTER - 5: Key Regions Overview
CHAPTER - 6: Proteomics Market Industry Overview
CHAPTER - 7: Appendix