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Marine Biotechnology Market 2024-2033: Trends, Analysis & Growth Forecast

04-30-2024 06:34 PM CET | Health & Medicine

Press release from: The Business research company

Marine Biotechnology Market 2024-2033: Trends, Analysis &

The marine biotechnology market size has grown strongly in recent years. It will grow from $5.79 billion in 2023 to $6.25 billion in 2024 at a compound annual growth rate (CAGR) of 7.9%. The growth in the historic period can be attributed to environmental concerns, bioprospecting opportunities, pharmaceutical and nutraceutical demand, aquaculture innovation, bioenergy exploration..

The marine biotechnology market size is expected to see strong growth in the next few years. It will grow to $8.28 billion in 2028 at a compound annual growth rate (CAGR) of 7.3%. The growth in the forecast period can be attributed to climate change mitigation, bioremediation applications, pharmaceutical drug discovery, food security solutions, bioinformatics integration.. Major trends in the forecast period include aquatic biotechnology in personal care, synthetic biology in marine organisms, marine biotechnology collaborations, climate-resilient agriculture, marine biotechnology education and awareness..

Market Overview -
Marine biotechnology is a branch of science that involves the utilization of marine creatures, their genetic material, and related bioactive substances for various uses. Marine biotechnology encompasses the study and manipulation of marine organisms, including plants, animals, and microorganisms, to develop products, processes, and technologies to be used in cosmetics, nutritional supplements, pharmaceuticals, and other industries.

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The Surge In Marine Biotechnology Demand Fuelling Market Growth In The Energy Sector
The increase in demand for marine biotechnology in the energy sector is expected to propel the growth of the marine biotechnology market going forward. The energy sector is a group of businesses that participate in extracting, refining, or providing consumable fuels such as coal, oil, and gas. Marine biotechnology contributes to the development of more efficient and ecologically friendly energy systems, such as those that use marine microbes to convert trash into electricity and microalgae to produce biofuels. Marine biotechnology is important in the energy sector because it uses marine organisms' unique features and capabilities for various applications, such as Biofuel generation, marine renewable energy, biodegradable products, and bioremediation. Thus, an increasing energy sector will boost the growth of the marine biotechnology market. For instance, in January 2022, according to a report released by the International Energy Agency (IEA), a France-based autonomous intergovernmental organization that provides analysis and data on the global energy sector, global energy demand increased by 6% in 2021. The growth of more than 1,500 terawatt-hours in 2021 was the biggest ever, measured in absolute terms. The report predicts an average annual increase in electricity demand of 2.7% for 2022-2024. Therefore, the rise in demand for marine biotechnology in the energy sector drives the marine biotechnology market.

Competitive Landscape -
Major companies operating in the marine biotechnology market report are Cyanotech Corporation, CP Kelco US Inc., PharmaMar S.A., Sea Run Holdings Inc., Nofima A.S., New England Biolabs Inc., Lonza Group Ltd., NovaMatrix, GlycoMar Ltd., SEPPIC Inc., Marinova Pty. Ltd., Prolume Ltd., Aker Biomarine Antarctic AS ., Badische Anilin- und Sodafabrik, Nutrex Hawaii Inc., Royal DSM N.V, Tequesta Bioventures LLC, Marinomed Biotech AG, AstaReal Co. Ltd., Euglena Co.Ltd., Earthrise Nutritionals LLC, Bluebiotech International GmbH, Sams Corporation, Abbott Laboratories, Qingdao Codo International Ltd., Nutrex Hawai Inc., Kepley Biosystems Incorporated, Finless Foods Inc., Jellagen Pty Ltd, Ingenza Ltd, AMSilk GmbH, Centre for Process Innovation Limited, KnipBio Inc.

Advancements In Product Offerings Driving Growth In The Marine Biotechnology Market
Product innovations are a key trend gaining popularity in the marine biotechnology market. Major companies operating in the marine biotechnology market are focused on innovating new products to strengthen their position in the market. For instance, in January 2021, Jellagen, a UK-based marine biotechnology company, launched jellyfish collagen hydrogel JellaGel, the first collagen type 0 hydrogel. A 3-dimensional hydrogel makes a significant difference by allowing cells to develop and interact with their environment. It has been demonstrated that 3D-grown cells exhibit better cell viability, morphology, proliferation, and differentiation than 2D-grown cells. The development of JellaGel as a potential matrix for new drug screening models or in the creation of human tumor xenograft models as part of cancer drug discovery programs is made possible by these crucial qualities. This new biomaterial, Collagen Type 0, is a chemical invention that offers the market an effective substitute for the traditional scaffold supplies utilized in 3D cell culture. The distinct qualities of JellaGel will now be used by researchers.

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https://www.thebusinessresearchcompany.com/report/marine-biotechnology-global-market-report

Key Segments -
The marine biotechnology market covered in this report is segmented -
1) By Type: Bio Active Substance, Bio Materials
2) By Source: Corals And Sponges, Algae, Marine Viruses, Marine Fungi, Other Sources
3) By Technology: Isolation And Cultivation of Microorganisms, Culture-Independent Techniques
4) By Application: Aquaculture And Food Products, Environment And Human Health, Drug Discovery
5) By End User: Medical And Pharmaceutical, Food Industry, Cosmetic Industry, Chemical Industry, Other End Users

Key highlights covered in the report -
1. Detailed market size forecast and historical data analysis
2. Key drivers influencing market growth
3. Identification of upcoming trends and potential opportunities in the market
4. Analysis of major players strategies, to understand competitive dynamics and market positioning
5. Evaluation of regional dynamics

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