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Medical grade tubing offers a wide range of applications in the pharmaceutical and medical industry. The applications include administration of fluids, transfer of gases, and drug delivery, among others. Owing to the tubes' mechanical, thermal and chemical properties these can be used for a wide range of minimally invasive applications such as catheterization, delivery systems, and drug delivery systems.
The global medical grade tubing market is an emerging market in the medical device ecosystem. The market has witnessed a rise in sales of the products owing to the growing use of medical tubing in catheters and interventional cardiology. Furthermore, the market also offers advanced designs for customized products that would further improve the need of the medical industry. The major factors that have a positive impact on the market’s growth include high prevalence and growing incidences of congenital heart defects, rise in cardiac catheterization, and increasingly in interventional cardiology. There are a wide variety of materials associated with medical grade tubing including fluoropolymers, polyolefins, PVC, and silicone among others.
Impact of COVID-19 on the Global Medical Grade Tubing Market
During COVID-19, the growth of the medical grade tubing market was negatively impacted, especially in 2020. The market has witnessed an increase in the growth of nasogastric tubes, nebulizers, spacer devices, and others. The market is projected to witness considerable growth during the forecast period 2021-2030. The increasing innovations and products designs in the global market and growing use in emerging economies are the factors for the growth of the market.
Key Market Players and Competition Synopsis
Some of the key players operating in the global medical grade tubing market include AP Technologies Group Pte Ltd., A.P. Extrusion Inc., Asahi Tec Corporation, ATAG spa, B. Braun Melsungen AG, Compagnie de Saint-Gobain S.A., Cook Group Incorporated, FBK Medical Tubing, Freudenberg Medical, MDC Industrie MicroLumen Inc., Nordson Corporation, Optinova Group, TE Connectivity, and Trelleborg Group.
Key Questions Answered in the Global Medical Grade Tubing Market Report
- What are the key trends that have a strong influence on the global medical grade tubing market? How did the COVID-19 pandemic impact the growth of the medical grade tubing market?
- What are the key development strategies which are implemented by the key players to maintain and capture market share?
- How does the patent landscape of medical grade tubing look like?
- What are the major market drivers, challenges, and opportunities in the global medical grade tubing market?
- Which leading companies are dominating the global medical grade tubing market?
- What are the regulations about the global medical grade tubing market? What are the initiatives implemented by different government bodies?
- What was the market value of the leading segments and sub-segments of the global medical grade tubing market?
- How is each segment of the global medical grade tubing market expected to grow during the forecast period, and what is the expected revenue to be generated by each of the segments by the end of 2030?
- Which region carries the potential for the significant expansion of key companies for the medical grade tubing market?
Some of the strategies covered in this segment are:
- Funding activities
- Mergers and acquisitions (m&as)
- Partnerships
- Alliances and business expansion
- Regulatory and legal activities
- New offerings
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Table of Contents
1 Product Definition
2 Scope of Research
2.1 Scope of the Study
2.2 Inclusion and Exclusion Criteria
2.3 Key Questions Answered in the Report
3 Research Methodology
3.1 Data Collection and Analysis
3.2 Data Sources
3.3 Data Triangulation
3.4 Market Estimation
3.5 Forecast Period Selection Criteria
3.6 Assumption and Limitations
4 Impact of COVID-19 on the Global Medical Grade Tubing Market
4.1 Impact on Manufacturing Facilities
4.2 Impact on Supply Chain
4.3 Impact on Market Size
4.3.1 Scenario Comparative Analysis (Pre-COVID, During-COVID, Post-COVID)
4.4 Future Outlook and Recommendations
5 Industry Analysis
5.1 Technology Landscape
5.1.1 Key Trends
5.1.1.1 Short-Term Potential
5.1.1.2 Mid-Term Potential
5.1.1.3 Long-Term Potential
5.2 Value Chain Analysis
5.3 Regulatory Framework
5.3.1 North America
5.3.2 Europe
5.3.3 Rest-of-the-World
5.4 Patent Analysis
5.4.1 Patents Filed, by Year
5.4.2 Patents Filed, by Country/Cluster
5.5 Product Benchmarking Matrix
5.6 Porter’s Five Forces Analysis
5.6.1 Bargaining Power of Suppliers
5.6.2 Bargaining Power of Buyers
5.6.3 Threat of Substitutes
5.6.4 Threat of New Entrants
5.6.5 Intensity of Competition
6 Competitive Landscape
6.1 Market Share Analysis
6.2 Key Strategies and Developments
6.2.1 Funding Activities
6.2.2 M&A Activities
6.2.3 Partnerships, Alliances and Business Expansions
6.2.4 Regulatory and Legal
6.2.5 New Offerings
6.3 Business Model Analysis
6.4 Key Players - Competitive Benchmarking
7 Global Medical Grade Tubing Market Scenario
7.1 Assumptions and Limitations
7.2 Key Findings and Opportunity Assessment
7.3 Global Medical Grade Tubing Market Size and Forecast
7.3.1 Realistic Growth Scenario
7.3.2 Pessimistic/Conservative Scenario
7.3.3 Optimistic Scenario
7.4 Market Dynamics
7.4.1 Impact Analysis
7.4.2 Market Growth Promoting Factors
7.4.3 Market Growth Restraining Factors
7.4.4 Market Growth Opportunities
8 Global Medical Grade Tubing Market (by Material), 2018-2030
8.1 Opportunity Assessment
8.2 Growth Share Matrix
8.3 Fluoropolymers
8.3.1 Fluorinated ethylene propylene (FEP)
8.3.2 Polyvinylidene fluoride (PVDF)
8.3.3 Polytetrafluoroethylene (PTFE)
8.3.4 Ethylene Tetrafluoroethylene (ETFE)
8.3.5 Other Fluoropolymers
8.4 Polyolefins
8.4.1 Polypropylene (PP)
8.4.2 Polyethylene (PE)
8.4.2.1 High-Density Polyethylene (HDPE)
8.4.2.2 Low-Density Polyethylene (LDPE)
8.4.2.3 Linear Low-Density Polyethylene (LLDPE)
8.5 Polyvinyl Chloride (PVC)
8.6 Silicone
8.7 Thermoplastic Elastomers
8.7.1 Polyether block amide (PEBAX)
8.7.2 Other TPEs
8.8 Other Materials (Polyamide (PA), Polyether Ether Ketone (PEEK), Polyester, etc.)
9 Global Medical Grade Tubing Market (by Product), 2018-2030
9.1 Opportunity Assessment
9.2 Growth Share Matrix
9.3 Single Lumen Tubing
9.4 Multi-Lumen Tubing
9.5 Heat Shrink Tubing
9.6 Coextruded Tubing
9.7 Flexible (TPE) and Rigid Tubing
9.8 Class VI Tubing
9.9 Multi-Layer
9.10 Para-Tubing
9.11 Multi-Bore Tubing
10 Global Medical Grade Tubing Market (by Application), 2018-2030
10.1 Opportunity Assessment
10.2 Growth Share Matrix
10.3 Abrasion Protection
10.4 Drug Delivery
10.5 Bulk Disposable Tubing
10.5.1 IV Tubing
10.5.2 Dialysis Tubing
10.6 Catheters
10.7 Special Applications
10.7.1 Peristaltic Pump Tubing
10.7.2 Gas Supply Tubing
10.7.3 Smoke Evacuation Tubing
10.7.4 Feeding Tubes
10.8 Other Applications (Arthroscopy, Endoscopy, Laparoscopy, etc.)
11 Global Medical Grade Tubing Market (by End Market), 2018-2030
11.1 Opportunity Assessment
11.2 Growth Share Matrix
11.3 Medical
11.4 Bio-Pharmaceutical
11.5 Life Science
11.6 Clinical Testing
12 Global Medical Grade Tubing Market (by Region), 2018-2030
12.1 Overview
12.2 North America Medical Grade Tubing Market
12.2.1 Key Findings and Opportunity Assessment
12.2.2 Market Dynamics: Impact Analysis
12.2.3 Market Size and Forecast
12.2.3.1 By Material
12.2.3.2 By Application
12.2.3.3 By End Market
12.2.3.4 By Country
12.2.3.4.1 U.S.
12.2.3.4.2 Canada
12.3 Europe Medical Grade Tubing Market
12.3.1 Key Findings and Opportunity Assessment
12.3.2 Market Dynamics: Impact Analysis
12.3.3 Market Size and Forecast
12.3.3.1 By Material
12.3.3.2 By Application
12.3.3.3 By End Market
12.3.3.4 By Country
12.3.3.4.1 Germany
12.3.3.4.2 U.K.
12.3.3.4.3 France
12.3.3.4.4 Italy
12.3.3.4.5 Spain
12.3.3.4.6 Rest-of-Europe
12.4 Asia-Pacific Medical Grade Tubing Market
12.4.1 Key Findings and Opportunity Assessment
12.4.2 Market Dynamics: Impact Analysis
12.4.3 Market Size and Forecast
12.4.3.1 By Material
12.4.3.2 By Application
12.4.3.3 By End Market
12.4.3.4 By Country
12.4.3.4.1 Japan
12.4.3.4.2 China
12.4.3.4.3 South Korea
12.4.3.4.4 Australia & New Zealand
12.4.3.4.5 India
12.4.3.4.6 Rest-of-Asia-Pacific
12.5 Latin America Medical Grade Tubing Market
12.5.1 Key Findings and Opportunity Assessment
12.5.2 Market Dynamics: Impact Analysis
12.5.3 Market Size and Forecast
12.5.3.1 By Material
12.5.3.2 By Application
12.5.3.3 By End Market
12.5.3.4 By Country
12.5.3.4.1 Brazil
12.5.3.4.2 Mexico
12.5.3.4.3 Argentina
12.5.3.4.4 Colombia
12.5.3.4.5 Rest-of-Latin-America
12.6 Middle-East and Africa Medical Grade Tubing Market
12.6.1 Key Findings and Opportunity Assessment
12.6.2 Market Dynamics: Impact Analysis
12.6.3 Market Size and Forecast
12.6.3.1 By Material
12.6.3.2 By Application
12.6.3.3 By End Market
12.6.3.4 By Country
12.6.3.4.1 K.S.A.
12.6.3.4.2 U.A.E
12.6.3.4.3 South Africa
12.6.3.4.4 Rest-of-Middle-East and Africa
13 Company Profiles
13.1 Overview
13.2 AP Technologies Group Pte Ltd.
13.2.1 Company Overview
13.2.2 Role of AP Technologies Group Pte Ltd. in the Market
13.2.3 Key Financials
13.2.4 R&D Insights
13.2.5 Recent Developments
13.2.6 SWOT Analysis
13.3 A.P. Extrusion Inc.
13.4 Asahi Tec Corporation
13.5 ATAG spa
13.6 B. Braun Melsungen AG
13.7 Compagnie de Saint-Gobain S.A.
13.8 Cook Group Incorporated
13.9 FBK Medical Tubing
13.10 Freudenberg Medical
13.11 MDC Industries
13.12 MicroLumen Inc.
13.13 Nordson Corporation
13.14 Optinova Group
13.15 TE Connectivity
13.16 Trelleborg Group
Note: The list of players above is indicative in nature, and is subject to change/modification based on research
**Financial Information will be provided for public listed companies
Companies Mentioned
- A.P. Extrusion Inc.
- AP Technologies Group Pte Ltd.
- Asahi Tec Corporation
- ATAG spa
- B. Braun Melsungen AG
- Compagnie de Saint-Gobain S.A.
- Cook Group Incorporated
- FBK Medical Tubing
- Freudenberg Medical
- MDC Industries
- MicroLumen Inc.
- Nordson Corporation
- Optinova Group
- TE Connectivity
- Trelleborg Group