The global hla typing market is to increase from US$ 736 million in 2020 to US$ 1,018 million by 2025 with a compound annual growth rate (CAGR) of 6.7% for the period 2020-2025. Some of the prominent players in the hla typing market are Bio-Rad Laboratories, Inc., Caredx, Inc., F. Hoffman-La Roche Ltd., Fujirebio, Inc., Hologic, Inc., Illumina, Inc., Immucor, Inc., Qiagen N.V., Tbg Diagnostics Ltd., Thermo Fisher Scientific, Inc. The market is poised for growth, driven by the expanding geriatric population. Elderly individuals are often recommended for organ transplant procedures due to organ failure resulting from age-related factors or chronic ailments. Common diseases among seniors, such as tuberculosis, end-stage renal disease (ESRD), and liver cirrhosis, may necessitate organ or tissue transplants for affected individuals. This trend emphasizes the need for organ transplant services and contributes to the growth of the market.
Advancements in HLA Typing Techniques
HLA-typing procedures have evolved from serology-based methods to genome-based diagnostic techniques, leveraging PCR-based genome sequencing and its integration with microfluidics, biomedical instrumentation, and robotics. These technological advancements have led to increased sample throughput, enhanced device sensitivity, early detection of incompatibility, and improved procedural efficacy compared to serological techniques. As a result, there is a growing demand for HLA typing products from key end users, including research laboratories, hospitals, transplant centers, and diagnostic laboratories.
HLA diagnostics have witnessed a significant breakthrough with the introduction of advanced molecular techniques such as Sanger sequencing, PCR, HLA-based genotyping, and NGS (Next-Generation Sequencing). These innovative methodologies have revolutionized the identification of specific alleles and point mutations within HLA genes, offering unprecedented insights into genetic variations.
In addition to these breakthroughs, the integration of nanofabrication and microfluidic technology in PCR procedures has played a pivotal role in propelling the widespread adoption of PCR and NGS techniques. The seamless fusion of these cutting-edge technologies has streamlined and enhanced the efficiency of PCR processes, while enabling the utilization of NGS approaches for comprehensive analysis.
By combining NGS with bioinformatics tools, researchers can delve into deep sequencing of complete HLA genes, unraveling crucial information about immune disorders associated with HLA associations. Rheumatological conditions, coeliac disease, type-1 diabetes, and systemic lupus erythematosus are among the complex disorders that have benefitted from these advancements, shedding light on their underlying mechanisms.
This remarkable progress in HLA diagnostics showcases the immense potential of molecular techniques and integrated technologies, opening new avenues for precision medicine and personalized treatments in the field of immune-related disorders.
Increasing Adoption of Cross-Matching and Chimerism Testing
Cross-matching is a crucial procedure performed during donor-recipient screening to mitigate the clinical risk of immune rejection or potential pathogenic disorders in recipients. Surgeons rely on the results of cross-matching, obtained through HLA typing, to make informed decisions regarding transplantation procedures during the pre-transplantation period.
Chimerism testing plays a vital role in detecting and providing timely treatment for graft rejection or future relapse. There is an increasing demand for chimerism testing as it analyzes genomic polymorphisms (STR loci) in prospective donors. PCR-based STR/CE systems, including HLA typing, are utilized in chimerism testing procedures. These testing methods offer clinical advantages, such as higher accuracy in identifying graft failure and leukopenia cases.
Critical Shortage of Organ Donations Creates Prolonged Waiting Lists for Transplants
The global demand for organ transplants continues to surpass the number of organs donated annually, creating a significant gap in supply and demand. This pressing issue is observed across major countries worldwide. For instance, in the United States, the number of patients on the waiting list for organ transplants increased by 37.2%, from 83,731 to 113,000, between 2003 and July 2019 (Source: US Department of Health and Human Services, 2018). Similarly, as of December 2021, the European Union reported 150,000 patients on the organ donation waiting list (Source: Council of Europe, 2021).
The limited availability of organs can be attributed to several factors. Strict government laws that impose limitations on medical reimbursements for living organ donors contribute to the shortage. Additionally, a lack of public awareness about organ donation, particularly in developing countries, further exacerbates the problem. Moreover, there is a lower proportion of organ donations from deceased donors, primarily due to socio-ethical concerns.
These challenges in the organ donation landscape directly impact the HLA typing market. The increasing demand for organ transplants necessitates accurate and efficient HLA typing procedures to facilitate successful donor-recipient matching. Addressing the organ shortage issue requires concerted efforts to overcome the barriers related to organ donation and raise awareness about the importance of HLA typing and its role in improving transplantation outcomes.
The research report on the global hla typing market provides extensive competition analysis and competitive conditions. The report includes information on significant products, players, challenges and developments, and other information specific to the hla typing market. The global economy is highly affected by the COVID-19. Various sectors in the economy are much affected by this pandemic. It is anticipated that the global economy will decline because of the loss of trillions of dollars. The growing extension and imposition of lockdown in various countries directly affect the economy all over the world. The report consists of a chapter that provides a detailed study of the impact of COVID-19 on the hla typing market. The data in this report is targeted for business and industry practitioners and specifically intended to assist in the explanation, direction, and to understand the potential of the hla typing markets. The study focuses on providing readers with an understanding of developments in the industry, market segments, market forecasts, leading players, and market drivers and inhibitors.
Chapter 2, Market Overview provides an overview of the hla typing market. The chapter includes macro-economic factors, market determinants (includes market drivers, restraints, opportunities, and challenges), value chain analysis, technology/product roadmap, Porter 5 force model analysis, market growth opportunity analysis.
Chapter 3, Segment Analysis of the study deals with the different sub-segments of the market to calculate reliable market forecasts. The chapter provides an in-depth analysis of the market segments of the hla typing market, year-on-year growth projections that enable readers to identify potential market growth areas.
Chapter 4, Regional Analysis includes an in-depth analysis of the hla typing market by regions such as North America, Europe, Asia-Pacific, Middle East & Africa, and Latin America. The report also includes a comprehensive analysis of the market in key countries such as the United States, Canada, Germany, France, Italy, Spain, China, India, Japan, the GCC, South Africa, Brazil, Mexico, and the rest of the world. Regional insight helps market competitors to make crucial decisions about their company. Individualized, country-wise, and segment-wise analyses by region allow readers of the hla typing market report to explore the potential of the market in different geographies. For each year's growth projections and a global share of value, this section is a vital part of the report.
Chapter 5, Competitive Analysis of the report includes company shares analysis, a list of acquisitions, mergers, collaboration, and the introduction of new products.
Chapter 6, Company Profile of the report also covers key industry players working on the hla typing market. The report also discusses the business strategies adopted by the players at the global, regional, and country-level. The study also focuses on various businesses or inorganic business development strategies for expanding consumer networks through product formation, organization extension, partnerships, mergers, and acquisitions.
The study offers an exhaustive summary and estimate of the global hla typing market. It includes in-depth qualitative and quantitative analyses in the report that aligned with the goals and objectives of our customers. Projections have been confirmed by comprehensive primary and secondary analysis. The study will encourage clients to invest in the hla typing market based on the current business situation, trends, and potential developments in the segments. Understanding the requirement of the client, the report delivers specialist insights into the global hla typing market, its products, and market patterns.
1.Introduction
2.Market Overview
2.1.Global Hla Typing Market Introduction
2.2.Macro- Economic Factor
2.3.Market Determinants
2.3.1.Market Driver
2.3.2.Market Restraints
2.3.3.Market Opportunities
2.3.4.Market Challenges
2.4.Technology/Product Roadmap
2.5.PEST Analysis
2.6.Market Growth Opportunity Analysis
2.7.Impact of Covid-19 on Hla Typing Market
3.Market Segmentation
3.1.Global Hla Typing Market Analysis (US$ Mn), By Product & Service, 2019 – 2025
3.1.1.Instruments
3.1.2.Reagents & Consumables
3.1.3.Software & Services
3.2.Global Hla Typing Market Analysis (US$ Mn), By Application, 2019 – 2025
3.2.1.Diagnostic Applications
3.2.2.Research Applications
3.3.Global Hla Typing Market Analysis (US$ Mn), By Technology, 2019 – 2025
3.3.1.Molecular Assay Technologies
3.3.2.Non-Molecular Assay Technologies
3.4.Global Hla Typing Market Analysis (US$ Mn), By End User, 2019 – 2025
3.4.1.Hospitals & Transplant Centers
3.4.2.Independent Reference Laboratories
3.4.3.Research Laboratories & Academic Institutes
4.Regional Analysis
4.1.North America Hla Typing Market Analysis (US$ Mn), 2019 - 2025
4.1.1.By Country
4.1.1.1.U.S.
4.1.1.2.Canada
4.1.2.By Product & Service
4.1.3.By Application
4.1.4.By Technology
4.1.5.By End User
4.2.Europe Hla Typing Market Analysis (US$ Mn), 2019 - 2025
4.2.1.By Country
4.2.1.1.Germany
4.2.1.2.U.K.
4.2.1.3.France
4.2.1.4.Italy
4.2.1.5.Spain
4.2.1.6.Rest of Europe
4.2.2.By Product & Service
4.2.3.By Application
4.2.4.By Technology
4.2.5.By End User
4.3.Asia Pacific Hla Typing Market Analysis (US$ Mn), 2019 - 2025
4.3.1.By Country
4.3.1.1.China
4.3.1.2.Japan
4.3.1.3.India
4.3.1.4.Rest of Asia Pacific
4.3.2.By Product & Service
4.3.3.By Application
4.3.4.By Technology
4.3.5.By End User
4.4.Middle East & Africa Hla Typing Market Analysis (US$ Mn), 2019 - 2025
4.4.1.By Country
4.4.1.1.GCC
4.4.1.2.South Africa
4.4.1.3.Rest of Middle East & Africa
4.4.2.By Product & Service
4.4.3.By Application
4.4.4.By Technology
4.4.5.By End User
4.5.Latin America Hla Typing Market Analysis (US$ Mn), 2019 - 2025
4.5.1.By Country
4.5.1.1.Brazil
4.5.1.2.Mexico
4.5.1.3.Rest of Latin America
4.5.2.By Product & Service
4.5.3.By Application
4.5.4.By Technology
4.5.5.By End User
5.Company Profiles
5.1.Bio-Rad Laboratories, Inc.
5.2.Caredx, Inc.
5.3.F. Hoffman-La Roche Ltd.
5.4.Fujirebio, Inc.
5.5.Hologic, Inc.
5.6.Illumina, Inc.
5.7.Immucor, Inc.
5.8.Qiagen N.V.
5.9.Tbg Diagnostics Ltd.
5.10.Thermo Fisher Scientific, Inc.