04 Sep 2023

| Source: Research and Markets Research and Markets
Dublin, Aug. 31, 2023 (GLOBE NEWSWIRE) — The “Polymeric Biomaterials Market Size, Share & Trends Analysis Report By Product (Polylactic Acid (PLA), Polyglycolic Acid (PGA), Polyurathanes), By Application, By Region, And Segment Forecasts, 2023-2030” report has been added to ResearchAndMarkets.com’s offering.

The global polymeric biomaterials market size is anticipated to reach USD 148.87 billion by 2030 and is expected to expand at a CAGR of 16.49% from 2023 to 2030
The growth is attributed to the rising product innovations, increasing applications of polymeric biomaterials in tissue engineering, and the growing need for polymeric biomaterials in surgical procedures.

Increasing demand for polymeric biomaterials in the field of regenerative medicine is fueling market growth. Polymeric biomaterials such as injectable hydrogels act as a promising solution for the rising demand for minimally invasive cell delivery systems owing to the ability to undergo a flexible sol-gel transition and adaptively fill defects, enabling minimally invasive interventions.
Furthermore, several synthetic polymers, such as Poly (lactic-co-glycolic acid) (PLGA), Polyethylene Glycol (PEG), and Polycaprolactone (PCL), are widely utilized in cell delivery applications. Similarly, composite hydrogels incorporating inorganic constructs have also been investigated for their potential in facilitating minimally invasive cell delivery for tissue repair purposes.

The COVID-19 pandemic adversely affected the market in due to several lockdown strictures, hindrances in supply chain operations, and decreased clinical research activities.Despite the negative impact, the market is expected to witness strong growth prospects in the long term due to the increasing adoption of polymeric biomaterials for devising new therapeutic strategies for COVID-19 treatment.
For instance, according to an article published in the Emergent Materials Journal in April 2021, biomaterial substances were studied for the controlled delivery of drugs, such as interleukin 6 (IL-6) inhibitors, for COVID-19 treatment. As a result, with the increasing demand for novel therapeutics for COVID-19, the market is expected to witness significant growth in the coming years.

Furthermore, key players in the industry are adopting various strategies such as acquisitions, collaborations, partnerships, expansions and new product launches to strengthen their market position and expand their customer base. For instance, in January 2023, MicroPort Scientific Corporation received marketing approval for its Firehawk Liberty Rapamycin Target Eluting Coronary Stent System in Russia. This approval is anticipated to expand the company’s geographical presence.
Moreover, in July 2022, Corbion collaborated with STENTiT and Vivolta for the development of a regenerative stent for clinical use and treatment of patients suffering from critical limb ischemia. This increasing adoption of strategies by major companies are anticipated to drive market growth from 2023 to 2030.

Polymeric biomaterials lack mechanical strength and stability as compared to other biomaterial substances. Hence, for applications with high strength, durability, or load-bearing capabilities, it may find limited usage. However, increasing investment in the technological advancement of polymeric biomaterials by major players is anticipated to mitigate this challenge over the forecast period.

Polymeric Biomaterials Market Report Highlights
Key Attributes:
Companies Mentioned
Key Topics Covered:

Chapter 1 Methodology and Scope

Chapter 2 Executive Summary
2.1 Market Snapshot
2.2 Segment Snapshot
2.3 Competitive Landscape Snapshot

Chapter 3 Market Variables, Trends, And Scope
3.1 Market Lineage Outlook
3.1.1 Parent Market Outlook
3.1.2 Ancillary Market Outlook
3.2 Market Trends & Outlook
3.3 Market Dynamics
3.3.1 Market Driver Analysis Rising Demand For Polymeric Biomaterials For Minimally Invasive Applications Advancements In Biomaterials Technologies Expansion In The Scope Of Applications For Biomaterials
3.3.2 Market Restraint Analysis High Expenses Associated With The Development And Commercialization Of Biomaterials Problems Related To Mechanical Strength And Stability Of Polymeric Biomaterials
3.4 Business Environment Analysis
3.4.1 Pestel Analysis
3.4.2 Porter’s Five Forces Analysis
3.5 Covid-19 Impact Analysis

Chapter 4 Product Business Analysis
4.1 Polymeric Biomaterials Market: Product Movement Analysis
4.2 Polylactic Acid (Pla)
4.3 Polyglycolic Acid (Pga)
4.4 Polyurethanes
4.5 Polytetrafluoroethylene (Ptfe) & Expanded Polytetrafluoroethylene (Eptfe)
4.6 Polyaryletheretherketone (Peek)
4.7 Polydioxanone (Pdo)

Chapter 5 Application Business Analysis
5.1 Polymeric Biomaterials Market: Application Movement Analysis
5.2 Cardiovascular
5.2.1 Global Cardiovascular Market, 2018 – 2030 (USD Million)
5.2.2 Bioresorbable Stents
5.2.3 Vascular Grafts
5.2.4 Sensors
5.2.5 Guidewires
5.2.6 Implantable Cardiac Defibrillators
5.2.7 Pacemakers
5.3 Dental
5.3.1 Global Dental Market, 2018 – 2030 (USD Million)
5.3.2 Tissue Regeneration Materials
5.3.3 Dental Implants
5.3.4 Bone Grafts & Substitutes
5.3.5 Dental Membranes
5.3.6 Dental Sutures
5.4 Plastic Surgery
5.4.1 Global Plastic Surgery Market, 2018 – 2030 (USD Million)
5.4.2 Facial Wrinkle Treatment
5.4.3 Soft Tissue Fillers
5.4.4 Craniofacial Surgery Global Craniofacial Surgery Market, 2018 – 2030 (USD Million) Sutures
5.4.5 Bioengineered Skins
5.4.6 Peripheral Nerve Repair
5.4.7 Acellular Dermal Matrices
5.5 Neurology
5.5.1 Global Neurology Market, 2018 – 2030 (USD Million)
5.5.2 Neural Stem Cell Encapsulation
5.5.3 Shunting Systems
5.5.4 Hydrogel Scaffold
5.5.5 Cortical Neural Prosthetics
5.6 Orthopedic
5.6.1 Global Orthopedic Market, 2018 – 2030 (USD Million)
5.6.2 Joint Replacement Polymeric Biomaterials
5.6.3 Tissue Fixation Products Sutures
5.6.4 Orthobiologics
5.6.5 Viscosupplementation
5.6.6 Spine Biomaterials

Chapter 6 Regional Business Analysis

For more information about this report visit https://www.researchandmarkets.com/r/laqab9
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