Technetium-99m Market Trends, Growth, Size, Share by 2030
[Research Report] The technetium-99m market size is expected to grow from US$ 4,268.15 million in 2022 to US$ 6,072.86 million by 2030; it is anticipated to record a CAGR of 4.5% from 2022 to 2030.
Technetium-99m Market Insights and Analyst View:
Technetium-99m is a metastable nuclear isomer of technetium-99, an isotope of technetium. Technetium-99m is among the most commonly used medical radioisotopes in medical diagnostic procedures globally. Key factors driving the market are the high prevalence of chronic diseases and advancements in nuclear imaging techniques. However, the short shelf-life of radiopharmaceuticals hinders the technetium-99m market
Growth Drivers and Restraints:
The high prevalence of chronic diseases such as cardiovascular diseases (CVDs), respiratory diseases, and cancer cases will boost the demand for single-photon emission computed tomography (SPECT) diagnostic procedures, fueling the technetium-99m market growth. According to the Washington State Department of Health, technetium-99m is used in diagnostic procedures related to skeleton and heart muscles. It is also used in medical studies related to the lungs, liver, spleen, bone marrow, kidney, brain, thyroid, gall bladder, salivary glands, heart blood pool, infection, and others. Thus, a high prevalence of chronic diseases will increase the adoption of technetium-99m for diagnosis.
According to the American College of Cardiology Foundation, the CVD-related death counts increased from 12.4 million deaths in 1990 to 19.8 million deaths in 2022. Ischemic heart disease remains the leading cause of global CVD mortality. Similarly, according to the International Agency for Research on Cancer (IARC), the prevalence of cancer cases is high globally. It is estimated that there were 19.3 million cancer cases worldwide in 2020, and the number of cases is expected to reach ~30.2 million cancer cases by 2040. Further, the World Health Organization (WHO) states that more than 1.71 billion people globally suffer from musculoskeletal conditions. An effective medical examination is a must for treating chronic diseases, and some medical imaging procedures also include nuclear substances that are used for diagnosis and examination purposes. Radiopharmaceuticals such as technetium-99m and iodine-123 are used in SPECT, and similarly, fluorine-18 and copper-64 are used in positron emission tomography (PET). Thus, with a surge in the prevalence of chronic diseases, the demand for medical imaging is also increasing the technetium-99m market size.
However, the short shelf-life of radiopharmaceuticals hampers the market growth. The shelf-life of radiopharmaceuticals depends mainly on the radioisotopes' half-life, radiochemical stability, and the concentration of radionuclide impurities in the preparation. Most radiopharmaceutical preparations contain radioisotopes with very short half-lives. For example, technetium-based and SPECT preparations must be used within 6 hours of preparation. The shelf-life of a multidose radiopharmaceutical preparation after aseptic withdrawal of the first dose depends on microbiological considerations. In case of a short half-life of radionuclides, the diagnostic radiopharmaceuticals are usually prepared in the hospital radiopharmacy departments just before the administration to patients. For example, the physical half-life of technetium-99m is 6 hours and does not remain in the body for long. Therefore, short-lived radiopharmaceuticals are becoming a matter of concern in long-term procedures, which is a major factor restraining the technetium-99m market growth.
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Technetium-99m Market: Strategic Insights
Market Size Value in US$ 4,268.15 million in 2022 Market Size Value by US$ 6,072.86 million by 2030 Growth rate CAGR of 4.5% from 2022 to 2030 Forecast Period 2022-2030 Base Year 2022
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Technetium-99m Market: Strategic Insights
Market Size Value in | US$ 4,268.15 million in 2022 |
Market Size Value by | US$ 6,072.86 million by 2030 |
Growth rate | CAGR of 4.5% from 2022 to 2030 |
Forecast Period | 2022-2030 |
Base Year | 2022 |
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Speak to AnalystReport Segmentation and Scope:
The technetium-99m market analysis is drawn by considering the following segments: application area and end user. Based on application area, the market is segmented into cardiovascular, bone scan, respiratory, tumor imaging, and others. In terms of end user, the market is categorized into hospitals, diagnostic and imaging centers, and others. The scope of the technetium-99m market report covers North America (the US, Canada, and Mexico), Europe (Germany, France, Italy, the UK, Russia, and the Rest of Europe), Asia Pacific (Australia, China, Japan, India, South Korea, and the Rest of Asia Pacific), the Middle East & Africa (South Africa, Saudi Arabia, the UAE, and the Rest of Middle East & Africa), and South & Central America (Brazil, Argentina, and the Rest of South & Central America).
Segmental Analysis:
Based on application area, the technetium-99m market is segmented into cardiovascular, bone scan, respiratory, tumor imaging, and others. The cardiovascular segment held the largest technetium-99m market share in 2022. The bone scan segment is anticipated to register the highest CAGR during 2022–2030.
Based on end user, the market is segmented into hospitals, diagnostic and imaging centers, and others. In 2022, the diagnostic and imaging centers segment held the largest technetium-99m market share, and the hospitals segment is anticipated to register the highest CAGR during 2022–2030.
Regional Analysis:
Geographically, the global technetium-99m market is segmented into five key regions: North America, Europe, Asia Pacific, South & Central America, and the Middle East & Africa.
In 2022, North America held the largest global share in the market. The availability of advanced healthcare infrastructure, the presence of major market players, the rising incidence and prevalence of target conditions, and product innovations introduced by key players operating in the region are likely to introduce new technetium-99m market trends in the coming years. According to the International Agency for Research on Cancer (IARC), the number of cancer cases in the US is expected to increase from 2.28 million cases in 2020 to 3.12 million cases in 2040. Therefore, an increase in chronic diseases, including cancer, will fuel the demand for medical imaging, thereby boosting the market growth. Additionally, the Centers for Medicare & Medicaid Services (CMS) in the US has adopted standards associated with human laboratory research under the Clinical Laboratory Improvement Amendments (CLIA), which has favorably improved the technetium-99m market performance.
Industry Developments and Future Opportunities:
A few initiatives taken by key players operating in the global market are listed below:
- In November 2023, the International Atomic Energy Agency (IAEA) announced a new coordinated research project (CRP) to create a global network of producers and researchers to develop a new generation of Technetium-99m kits and radiopharmaceuticals. The CRP is anticipated to create standard processes and guidelines for the manufacturing, quality control, and preclinical testing of innovative technetium-99m radiopharmaceuticals. The CRP will also concentrate on the most therapeutically relevant supplies in demand and the implementation of innovative radiolabeling strategies.
- In February 2023, BWXT Medical completed the key Tc-99m generator program milestone with Laurentis. Laurentis Energy Partners and BWXT Medical Ltd. have installed and commissioned an innovative isotope system at Ontario Power Generation's (OPG) Darlington Nuclear Generating Station, enabling them to generate molybdenum-99 (Mo-99) isotopes. Mo-99 is used to generate Technetium-99 metastable (Tc-99m), one of the most often used diagnostic imaging agents in nuclear medicine, which aids in detecting conditions such as cancer and heart disease. Darlington will be the first commercial power reactor to produce Mo-99.
- In February 2022, Theragnostics announced that the company received the US FDA approval for its radiodiagnostic imaging drug NephroScan (Technetium Tc 99m Succimer injection kit). NephroScan is a proprietary kit for the preparation of technetium Tc 99m succimer injection, which acts as an aid for the diagnosis of renal parenchymal disorders in term neonates and adult patients.
- In March 2021, NorthStar Medical Radioisotopes LLC and Ion Beam Applications SA (IBA) announced a collaboration to increase the global availability of technetium-99m (Tc-99m), the most widely used medical radioisotope. The agreement allows businesses outside the US to use NorthStar's patented non-uranium-based Mo-99 generated using IBA's accelerators and beamlines. Furthermore, the collaboration builds on an existing agreement under which IBA will supply NorthStar with up to eight Rhodotron TT 300-HE electron beam accelerators. This aids in the production of non-uranium-based Mo-99, allowing NorthStar's FDA-approved and commercially accessible RadioGenix System (technetium Tc 99m generator) to manufacture Tc-99m in the US.
Technetium-99m Market Report Scope
Competitive Landscape and Key Companies:
Lantheus Medical Imaging Inc, Curium, Jubilant Pharma Company, NorthStar Medical Radioisotopes LLC, Sun Pharmaceutical Industries Inc, Advancing Nuclear Medicine, NTP Radioisotopes SOC Ltd, Northwest Medical Isotopes LLC, SHINE Technologies LLC, and Cardinal Health are among the prominent players profiled in the technetium-99m market report. These companies focus on new technologies, advancements in existing products, and geographic expansions to meet the growing consumer demand worldwide and increase their product range in specialty portfolios.
Report Coverage
Revenue forecast, Company Analysis, Industry landscape, Growth factors, and Trends
Segment Covered
Application Area, End User, and Geography
Regional Scope
North America, Europe, Asia Pacific, Middle East & Africa, South & Central America
Country Scope
This text is related
to country scope.
Frequently Asked Questions
Key factors driving the market are the high prevalence of chronic diseases and advancements in nuclear imaging techniques.
Technetium-99m is a metastable nuclear isomer of technetium-99, an isotope of technetium. Technetium-99m is among the most commonly used medical radioisotopes in medical diagnostic procedures globally.
The technetium-99m market majorly consists of the players, including Lantheus Medical Imaging Inc, Curium, Jubilant Pharma Company, NorthStar Medical Radioisotopes LLC, Sun Pharmaceutical Industries Inc, Advancing Nuclear Medicine, NTP Radioisotopes SOC Ltd, Northwest Medical Isotopes LLC, SHINE Technologies LLC, and Cardinal Health.
The technetium-99m market was valued at US$ 4,268.15 million in 2022.
Based on end user, the market is segmented into hospitals, diagnostic and imaging centers, and others. In 2022, the diagnostic and imaging centers segment held the largest technetium-99m market share, and the hospitals segment is anticipated to register the highest CAGR during 2022–2030.
The technetium-99m market is expected to be valued at US$ 6,072.86 million in 2030.
Based on application area, the technetium-99m market is segmented into cardiovascular, bone scan, respiratory, tumor imaging, and others. The cardiovascular segment held the largest technetium-99m market share in 2022. The bone scan segment is anticipated to register the highest CAGR during 2022–2030.
1. Introduction
1.1 Scope of the Study
1.2 Market Definition, Assumptions and Limitations
1.3 Market Segmentation
2. Executive Summary
2.1 Key Insights
2.2 Market Attractiveness Analysis
3. Research Methodology
4. Technetium-99m Market Landscape
4.1 Overview
4.2 PEST Analysis
4.3 Ecosystem Analysis
4.3.1 List of Vendors in the Value Chain
5. Technetium-99m Market - Key Market Dynamics
5.1 Key Market Drivers
5.2 Key Market Restraints
5.3 Key Market Opportunities
5.4 Future Trends
5.5 Impact Analysis of Drivers and Restraints
6. Technetium-99m Market - Global Market Analysis
6.1 Technetium-99m - Global Market Overview
6.2 Technetium-99m - Global Market and Forecast to 2030
7. Technetium-99m Market – Revenue Analysis (USD Million) – By Application Area, 2020-2030
7.1 Overview
7.2 Cardiovascular
7.3 Bone Scan
7.4 Respiratory
7.5 Tumor Imaging
7.6 Others
8. Technetium-99m Market – Revenue Analysis (USD Million) – By End Users, 2020-2030
8.1 Overview
8.2 Hospitals
8.3 Diagnostic and Imaging Centers
8.4 Others
9. Technetium-99m Market - Revenue Analysis (USD Million), 2020-2030 – Geographical Analysis
9.1 North America
9.1.1 North America Technetium-99m Market Overview
9.1.2 North America Technetium-99m Market Revenue and Forecasts to 2030
9.1.3 North America Technetium-99m Market Revenue and Forecasts and Analysis - By Application Area
9.1.4 North America Technetium-99m Market Revenue and Forecasts and Analysis - By End Users
9.1.5 North America Technetium-99m Market Revenue and Forecasts and Analysis - By Countries
9.1.5.1 United States Technetium-99m Market
9.1.5.1.1 United States Technetium-99m Market, by Application Area
9.1.5.1.2 United States Technetium-99m Market, by End Users
9.1.5.2 Canada Technetium-99m Market
9.1.5.2.1 Canada Technetium-99m Market, by Application Area
9.1.5.2.2 Canada Technetium-99m Market, by End Users
9.1.5.3 Mexico Technetium-99m Market
9.1.5.3.1 Mexico Technetium-99m Market, by Application Area
9.1.5.3.2 Mexico Technetium-99m Market, by End Users
Note - Similar analysis would be provided for below mentioned regions/countries
9.2 Europe
9.2.1 Germany
9.2.2 France
9.2.3 Italy
9.2.4 Spain
9.2.5 United Kingdom
9.2.6 Rest of Europe
9.3 Asia-Pacific
9.3.1 Australia
9.3.2 China
9.3.3 India
9.3.4 Japan
9.3.5 South Korea
9.3.6 Rest of Asia-Pacific
9.4 Middle East and Africa
9.4.1 South Africa
9.4.2 Saudi Arabia
9.4.3 U.A.E
9.4.4 Rest of Middle East and Africa
9.5 South and Central America
9.5.1 Brazil
9.5.2 Argentina
9.5.3 Rest of South and Central America
10. Industry Landscape
10.1 Mergers and Acquisitions
10.2 Agreements, Collaborations, Joint Ventures
10.3 New Product Launches
10.4 Expansions and Other Strategic Developments
11. Competitive Landscape
11.1 Heat Map Analysis by Key Players
11.2 Company Positioning and Concentration
12. Technetium-99m Market - Key Company Profiles
12.1 Lantheus Medical Imaging Inc
12.1.1 Key Facts
12.1.2 Business Description
12.1.3 Products and Services
12.1.4 Financial Overview
12.1.5 SWOT Analysis
12.1.6 Key Developments
Note - Similar information would be provided for below list of companies
12.2 Curium
12.3 Jubilant Pharma Company
12.4 NorthStar Medical Radioisotopes LLC
12.5 Sun Pharmaceutical Industries
12.6 Advancing Nuclear Medicine
12.7 NTP Radioisotopes SOC Ltd
12.8 Northwest Medical Isotopes LLC
12.9 SHINE Technologies LLC
12.10 Cardinal Health
13. Appendix
13.1 Glossary
13.2 About The Insight Partners
13.3 Market Intelligence Cloud
The List of Companies - Technetium-99m Market
- Lantheus Medical Imaging Inc
- Curium
- Jubilant Pharma Company
- NorthStar Medical Radioisotopes LLC
- Sun Pharmaceutical Industries Inc
- Advancing Nuclear Medicine
- NTP Radioisotopes SOC Ltd
- Northwest Medical Isotopes LLC
- SHINE Technologies LLC
- Cardinal Health
The Insight Partners performs research in 4 major stages: Data Collection & Secondary Research, Primary Research, Data Analysis and Data Triangulation & Final Review.
- Data Collection and Secondary Research:
As a market research and consulting firm operating from a decade, we have published many reports and advised several clients across the globe. First step for any study will start with an assessment of currently available data and insights from existing reports. Further, historical and current market information is collected from Investor Presentations, Annual Reports, SEC Filings, etc., and other information related to company’s performance and market positioning are gathered from Paid Databases (Factiva, Hoovers, and Reuters) and various other publications available in public domain.
Several associations trade associates, technical forums, institutes, societies and organizations are accessed to gain technical as well as market related insights through their publications such as research papers, blogs and press releases related to the studies are referred to get cues about the market. Further, white papers, journals, magazines, and other news articles published in the last 3 years are scrutinized and analyzed to understand the current market trends.
- Primary Research:
The primarily interview analysis comprise of data obtained from industry participants interview and answers to survey questions gathered by in-house primary team.
For primary research, interviews are conducted with industry experts/CEOs/Marketing Managers/Sales Managers/VPs/Subject Matter Experts from both demand and supply side to get a 360-degree view of the market. The primary team conducts several interviews based on the complexity of the markets to understand the various market trends and dynamics which makes research more credible and precise.
A typical research interview fulfils the following functions:
- Provides first-hand information on the market size, market trends, growth trends, competitive landscape, and outlook
- Validates and strengthens in-house secondary research findings
- Develops the analysis team’s expertise and market understanding
Primary research involves email interactions and telephone interviews for each market, category, segment, and sub-segment across geographies. The participants who typically take part in such a process include, but are not limited to:
- Industry participants: VPs, business development managers, market intelligence managers and national sales managers
- Outside experts: Valuation experts, research analysts and key opinion leaders specializing in the electronics and semiconductor industry.
Below is the breakup of our primary respondents by company, designation, and region:
Once we receive the confirmation from primary research sources or primary respondents, we finalize the base year market estimation and forecast the data as per the macroeconomic and microeconomic factors assessed during data collection.
- Data Analysis:
Once data is validated through both secondary as well as primary respondents, we finalize the market estimations by hypothesis formulation and factor analysis at regional and country level.
- 3.1 Macro-Economic Factor Analysis:
We analyse macroeconomic indicators such the gross domestic product (GDP), increase in the demand for goods and services across industries, technological advancement, regional economic growth, governmental policies, the influence of COVID-19, PEST analysis, and other aspects. This analysis aids in setting benchmarks for various nations/regions and approximating market splits. Additionally, the general trend of the aforementioned components aid in determining the market's development possibilities.
- 3.2 Country Level Data:
Various factors that are especially aligned to the country are taken into account to determine the market size for a certain area and country, including the presence of vendors, such as headquarters and offices, the country's GDP, demand patterns, and industry growth. To comprehend the market dynamics for the nation, a number of growth variables, inhibitors, application areas, and current market trends are researched. The aforementioned elements aid in determining the country's overall market's growth potential.
- 3.3 Company Profile:
The “Table of Contents” is formulated by listing and analyzing more than 25 - 30 companies operating in the market ecosystem across geographies. However, we profile only 10 companies as a standard practice in our syndicate reports. These 10 companies comprise leading, emerging, and regional players. Nonetheless, our analysis is not restricted to the 10 listed companies, we also analyze other companies present in the market to develop a holistic view and understand the prevailing trends. The “Company Profiles” section in the report covers key facts, business description, products & services, financial information, SWOT analysis, and key developments. The financial information presented is extracted from the annual reports and official documents of the publicly listed companies. Upon collecting the information for the sections of respective companies, we verify them via various primary sources and then compile the data in respective company profiles. The company level information helps us in deriving the base number as well as in forecasting the market size.
- 3.4 Developing Base Number:
Aggregation of sales statistics (2020-2022) and macro-economic factor, and other secondary and primary research insights are utilized to arrive at base number and related market shares for 2022. The data gaps are identified in this step and relevant market data is analyzed, collected from paid primary interviews or databases. On finalizing the base year market size, forecasts are developed on the basis of macro-economic, industry and market growth factors and company level analysis.
- Data Triangulation and Final Review:
The market findings and base year market size calculations are validated from supply as well as demand side. Demand side validations are based on macro-economic factor analysis and benchmarks for respective regions and countries. In case of supply side validations, revenues of major companies are estimated (in case not available) based on industry benchmark, approximate number of employees, product portfolio, and primary interviews revenues are gathered. Further revenue from target product/service segment is assessed to avoid overshooting of market statistics. In case of heavy deviations between supply and demand side values, all thes steps are repeated to achieve synchronization.
We follow an iterative model, wherein we share our research findings with Subject Matter Experts (SME’s) and Key Opinion Leaders (KOLs) until consensus view of the market is not formulated – this model negates any drastic deviation in the opinions of experts. Only validated and universally acceptable research findings are quoted in our reports.
We have important check points that we use to validate our research findings – which we call – data triangulation, where we validate the information, we generate from secondary sources with primary interviews and then we re-validate with our internal data bases and Subject matter experts. This comprehensive model enables us to deliver high quality, reliable data in shortest possible time.
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