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#Polylysine Market Size
marketsndata · 3 months
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Polylysine Market Size, Share and Trend Analysis Report 2031
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Global polylysine market is projected to witness a CAGR of 7.9% during the forecast period 2024-2031, growing from USD 775.32 million in 2023 to USD 1424.47 million in 2031. Polylysine is progressively benefitting as its adoption is increasing in numerous applications, such as food preservative, cosmetic formulation, and pharma, due to its antimicrobial properties. According to recent data published by Cosmetics Design Europe, the accumulated sales for the L’Oréal Group during the first six months of 2023 was USD 22.55 billion, which is a remarkable growth of 12%, contributing to all regions and divisions where a strong share comprises from dermatological beauty and consumer products.
 The rising demand for long-term preserved food and lowered toxin-food bacteria significantly propels the polylysine market. Likewise, the growing trend for ready-to-eat (RTE) food across European nations is rising rapidly, which, in turn, has encouraged food companies to manufacture such products with valuable nutrients and extended shelf life without altering the aroma and flavor of food products. According to the recent data published by Food Drink Europe, a European Union food and beverage association, the food and beverage sector turnover in the European Union registered an annual growth rate of 2.6%, reaching USD 1,180.5 billion in 2022.
Polylysine is a naturally occurring compound that comprises polymer chains of the essential amino acid L-lysine, a prominent protein that essentially contributes to human health and growth. The polylysine market is experiencing massive growth due to its significant properties like its suitability for versatile applications in feed, food, and cosmeceutical. Polylysine finds extensive applications in food products as it provides a broad-gauge antibacterial spectrum, especially for Gram-negative bacteria, and it can deliver effective functional characteristics over a wide range of pH values. Polylysine is gaining prominence as natural food additives by fully or partially replacing synthetic additives. For instance, epsilon polylysine (ε-Polylysine) is recognized as a food grade that prominently meets the FAO/WHO specifications and is certified as GRAS (Generally Recognized as Safe) by the United States Food and Drug Administration (FDA). Consequently, the revenue advancement of the prominent food and cosmetic sectors are accelerating the adoption of the polylysine material range. As a result, the increase in the demand for polylysine is propelling the growth of the global market.
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Versatile Application as Food Additives is Contributing Towards the Growth of Polylysine Market
The increasing demand for replacing synthetic food preservatives encourages food companies to incorporate polylysine as an effective alternative. Polylysines are polymers of the naturally occurring canonical amino acid ‘Lysine’, which are linked via intra epsilon-nitrogen. Polylysine molecules are cationic charged and behave as surface active agents in water due to their positively charged amino groups. Polylysine possesses excellent antimicrobial properties that inhibit the multiple growths of bacteria, yeasts, and molds and bacteria, especially Gram+ bacteria. It is considered one of the safest food additives that substantially restricts the growth characteristics of pathogenic bacteria that release toxins in food that gradually cause food degradation. Polylysine can effectively work even in minor quantities, therefore not affecting the taste qualities of food. Hence, the overall positive market factors for effective food preservatives contribute to the polylysine market’s growth.
For instance, food and beverage is the highest revenue sector where the major share is attributable to rapid demand for food preservatives across various regions. Data released by Nutraceuticals World states that in 2023, the United States dietary supplement market has been estimated at an annual sale of USD 50 billion due to the rising demand for health and wellness products.
Antimicrobial Effect of Polylysine is Propelling their Usage in the Cosmetic Industry
Cosmetic products are more vulnerable to the pollution caused by microbes that can leave a bad impact on human skin, successively leading to harmful effects. The role of preservatives becomes imperative to control the deterioration of cosmetic products and extend their shelf life. Polylysines are Generally Recognized as Safe (GRAS) certified. They are effective over a wide range of pH values and possess excellent thermal stability. The GRAS-certified polylysine has extensive applications in soap solutions, sunscreen lotions, gels, hair conditioners, etc. ε-Polylysine is also used in cosmetics to deliver alcohol-free, paraben-free, and phenoxyethanol-free characteristics. Malassezia furfur is a dandruff-causing bacteria against which ε-Polylysine imparts a bactericidal effect, along with removing any unwanted side effects. Due to the above-mentioned factors, polylysine market is anticipated to experience massive growth.
For instance, a data published by Cosmetics Design Europe states that Unilever experienced a massive sales growth of 9.1% during the first half of 2023 where its beauty and wellbeing segment saw a sales growth of 8.6% at USD 6.67 billion and personal care was grown up by 7.3% at USD 8.0 billion. In addition, around 4.7 million prestige cosmetics and beauty outlets progressively contribute to generating revenue of USD 19.43 billion in 2023 across the United States.
Asia-Pacific Market is Progressively Contributing to the Growth of Polylysine Market
India and China comprise the maximum share of the global population, and people are becoming more health-conscious, which successively drives the market of polylysine. Companies like JNC Corporation, Henan Daken Chemical Co.,ltd, Bimal Pharma Pvt., Ltd., and Jiangsu Yiming Biological Technology Co., Ltd. are progressively developing active polylysine for providing different functional characteristics in the Asia-Pacific region.
The Asia-Pacific demographic has always been a strong driving factor in the growth of the world’s beauty and personal care products. The concept of ‘green chemistry’ in most Asian countries has been successively embraced, committing to transform entire cosmetic formulation towards a 95% bio-based ingredient portfolio. Furthermore, a recent report by IQVIA has ranked 21 countries as pharm-emerging where most companies are from Asia and have a high-growth pharmaceutical market. According to Nutraceuticals World, China, and Japan represent around 9% and 22% of the Nutri cosmetics/beauty supplements market, whereas the United States contributes only about 2% of skin health supplement sales. Therefore, with such a definite investment, Asia-Pacific is considered a prominent contributor to the growth of the polylysine market.
Impact of COVID-19
The shutdown of retail shops in different verticals due to the imposed lockdown in 2020 significantly deteriorated economic stability. The revenue for cosmetic sectors drastically reduced during the pandemic due to lower consumer demands. The unavailability of resources and manpower for building effective manufacturing solutions also significantly affected the polylysine market growth. During COVID-19, the food and personal care industries experienced unprecedented fluctuations. During the severe period of the pandemic, several verticals were forced to embrace an e-commerce mode of business in their sales operation. This diversion from the retail business encouraged cosmetic players to adopt the online platform and increase their revenue. These frequent measures showed a massive demand for polylysine that again re-established post-pandemic. Consecutively, the ease in restrictions and removal of lockdown shifted the worst phase of the market to probable growth, deriving impeccable market opportunities for the polylysine market.
Report Scope
“Polylysine Market Assessment, Opportunities, and Forecast, 2017-2031F” is a comprehensive report by Markets and Data, providing in-depth analysis and qualitative and quantitative assessment of the current state of the polylysine market globally, industry dynamics, and challenges. The report includes market size, segmental shares, growth trends, COVID-19 impact, opportunities, and forecast between 2024 and 2031. Additionally, the report profiles the leading players in the industry mentioning their respective market share, business model, competitive intelligence, etc.
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neha24blog · 2 years
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The increasing popularity of the product as a food preservative in packaged food items such as boiled rice, sushi, yogurt, soft drinks, bakery items, and confectionery products is expected to positively impact the market growth. Properties such as non-toxicity and broad-range antimicrobial effects are favoring the use of polylysine in the food industry. It also helps in extending the shelf life of food items.
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themarketupdate · 3 months
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Polylysine Market Growing Popularity and Emerging Trends in the Industry
Polylysine is natural source of amino acid. It is adsorbed electrostatically to the cell surface of the bacteria. It adsorbed by a stripping of the outer membrane. It consist of huge antimicrobial effect against Gram-positive and Gram-negative bacteria, fungi, mould and yeast. It is used as food preservative in Japan and Korea. It is known as imported items in the United States. It is mostly used on Japan in cooked vegetables, boiled rice, soups, noodles and sliced fish (sushi).  In addition, it has been using in feed and cosmeceutical industry.
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Latest released the research study on Global Polylysine Market, offers a detailed overview of the factors influencing the global business scope. Polylysine Market research report shows the latest market insights, current situation analysis with upcoming trends and breakdown of the products and services. The report provides key statistics on the market status, size, share, growth factors of the Polylysine The study covers emerging player’s data, including: competitive landscape, sales, revenue and global market share of top manufacturers are American International Chemical, LLC. (United States), Siveele B.V., Breda (Netherlands), Handary S.A. (Belgium), BOC Sciences (United States), Parchem fine & specialty chemicals (United States), DKSH Management Ltd. (Switzerland), Chitosanlab vegan (France), Jiangyin Healthway (China), Zhengzhou Bainafo Bioengineering (China), Bimal Pharma Pvt. Ltd. (India),
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pmiabsolute · 7 months
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martynnx-blog · 5 years
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Polymer-drug Conjugates Market To Exhibit Ravishing Growth By 2026
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Polymer-drug conjugates are nano-sized drug products currently used for treating cancer and hepatitis. Polymers are now being synthesized to be sensitive to specific enzymes that are apparent in diseased tissue. Conventional polymers are used in polymer-drug conjugates such as cellulose and chitin can be degraded through enzymatic activity and acidity. The drugs remain attached to the polymer and are not activated until the enzymes associated with the diseased tissue are present. This process significantly minimizes damage to healthy tissues. Click To Read More On Polymer-drug Conjugates Market
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Market Driver
New pipeline drugs developed using polymer-drug conjugation are expected to propel growth of the polymer-drug conjugates market. For instance, in march 2016, National Cancer Institute (NCI) started undergoing phase II clinical study for CRLX101, a nanoparticle drug conjugate composed of 20(S)-Camptothecin conjugated to a linear, cyclodextrin-polyethylene glycol-based polymer, for the treatment of metastatic prostate cancer and the trial is expected to complete by March 2020.
Key players operating in polymer-drug conjugates market include, Access Pharma, Abeona Therapeutics, Inc., ADAMA India Private Limited, Avadel., GlaxoSmithKline plc. JenKem Technology USA, Lipotek, Sansheng Pharmaceutical Group, Landec Corporation, and Gowan Company.
Polymer-drug Conjugates Market – Regional Analysis
On the basis of region, the global polymer-drug conjugates market is segmented into North America, Latin America, Europe, Asia Pacific, Middle East, and Africa.
North America is projected to hold dominant position in the global polymer-drug conjugates market due to increase in number of clinical trials in the U.S. For instance, in January 2018, Apellis Pharmaceuticals announced to conduct phase III clinical study for APL-2 in the U.S. APL-2 is a synthetic cyclic peptide drug conjugated to a polyethylene glycol polymer for the treatment of geographic atrophy associated with age-related macular degeneration.
Furthermore, increasing research on novel Drug Delivery Systems (DDS) in Asia Pacific is expected to contribute to significant growth of the polymer drug conjugates market in the region during the forecast period. For instance, in August 2018, Osaka University, in collaboration with Tokyo Institute of Technology, Japan, developed a DDS using polyethylene glycol and polylysine block copolymer, with ubenimex conjugate (PEG-b-PLys (Ube). Intravenous injection of ubenimex with these polymers in mice, found to reduce the tumor size significantly. Such results are expected to be a positive traction for growth of the market during the forecast period.
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market-reports-us · 5 years
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ε-Polylysine Market Report From 2020 To 2025 Analysis By Top Manufacturers – Handary, Chengdu Jinkai Biology, Zhengzhou Bainafo Bioengineering, Nanjing Shineking Biotech
ε-Polylysine Market Report From 2020 To 2025 Analysis By Top Manufacturers – Handary, Chengdu Jinkai Biology, Zhengzhou Bainafo Bioengineering, Nanjing Shineking Biotech
DecisionDatabases recently present the global ε-Polylysine Marketresearch report 2020 which reveals an extensive analysis of the global industry by delivering detailed information about upcoming market growth, trends, customer expectations, technological improvements, competitive dynamics, top manufacturers’ assessment, and working capital in the industry. This is an in-depth study of the market…
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wiseguy05 · 3 years
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June 2021 Report on Global Automotive Metal Market Overview, Size, Share and Trends 2021-2026
Under COVID-19 Outbreak, how the Automotive Metal Industry will develop is also analyzed in detail in Chapter 1.7 of the report. In Chapter 2.4, we analyzed industry trends in the context of COVID-19. In Chapter 3.5, we analyzed the impact of COVID-19 on the product industry chain based on the upstream and downstream markets. In Chapters 6 to 10 of the report, we analyze the impact of COVID-19 on various regions and major countries. In chapter 13.5, the impact of COVID-19 on the future development of the industry is pointed out.
A holistic study of the market is made by considering a variety of factors, from demographics conditions and business cycles in a particular country to market-specific microeconomic impacts. The study found the shift in market paradigms in terms of regional competitive advantage and the competitive landscape of major players.
Key players in the global Automotive Metal market covered in Chapter 4: Schaeffler AG ArcelorMittal SA Essar Steel Limited ThyssenKrupp AG Nippon Steel & Sumitomo Metal GKN plc Tata Steel Alcoa Corporation Voestalpine AG Benteler International POSCO Gestamp Magna International Inc. United States Steel Corporation
ALSO READ : http://www.marketwatch.com/story/global--polylysine-sales-market-outlook-industry-analysis-and-prospect-2021-2021-05-03
In Chapter 11 and 13.3, on the basis of types, the Automotive Metal market from 2015 to 2026 is primarily split into: Aluminum Steel Magnesium Others
In Chapter 12 and 13.4, on the basis of applications, the Automotive Metal market from 2015 to 2026 covers: Body structure Power train Suspension Others
ALSO READ : http://www.marketwatch.com/story/covid-19-outbreak-global-agriculture-genomics-industry-market-by-type-by-application-by-segmentation-by-region-and-by-country-2021-2021-05-04
 Geographically, the detailed analysis of consumption, revenue, market share and growth rate, historic and forecast (2015-2026) of the following regions are covered in Chapter 5, 6, 7, 8, 9, 10, 13: North America (Covered in Chapter 6 and 13) United States Canada Mexico Europe (Covered in Chapter 7 and 13) Germany UK France Italy Spain Russia Others Asia-Pacific (Covered in Chapter 8 and 13) China Japan South Korea Australia India Southeast Asia Others Middle East and Africa (Covered in Chapter 9 and 13) Saudi Arabia UAE Egypt Nigeria South Africa Others South America (Covered in Chapter 10 and 13) Brazil Argentina Columbia Chile Others
ALSO READ : http://www.marketwatch.com/story/global-distributed-antenna-system-das-market-by-type-by-application-by-segmentation-by-region-and-by-country-2021-2021-05-05
 Years considered for this report: Historical Years: 2015-2019 Base Year: 2019 Estimated Year: 2020 Forecast Period: 2020-2026
Table of Content
1 Report Overview 1.1 Study Scope 1.2 Key Market Segments 1.3 Regulatory Scenario by Region/Country 1.4 Market Investment Scenario Strategic 1.5 Market Analysis by Type 1.5.1 Global Automotive Metal Market Share by Type (2020-2026) 1.5.2 Aluminum 1.5.3 Steel 1.5.4 Magnesium 1.5.5 Others 1.6 Market by Application 1.6.1 Global Automotive Metal Market Share by Application (2020-2026) 1.6.2 Body structure 1.6.3 Power train 1.6.4 Suspension 1.6.5 Others 1.7 Automotive Metal Industry Development Trends under COVID-19 Outbreak 1.7.1 Global COVID-19 Status Overview 1.7.2 Influence of COVID-19 Outbreak on Automotive Metal Industry Development
ALSO READ : http://www.marketwatch.com/story/global-steer-axle-hubs-market-size-share-value-and-competitive-landscape-2021---2026-2021-05-06
2. Global Market Growth Trends 2.1 Industry Trends 2.1.1 SWOT Analysis 2.1.2 Porter’s Five Forces Analysis 2.2 Potential Market and Growth Potential Analysis 2.3 Industry News and Policies by Regions 2.3.1 Industry News 2.3.2 Industry Policies 2.4 Industry Trends Under COVID-19
ALSO READ : http://www.marketwatch.com/story/global-ibre-optic-sensors-market-size-share-value-and-competitive-landscape-2024-2021-05-07
3 Value Chain of Automotive Metal Market 3.1 Value Chain Status 3.2 Automotive Metal Manufacturing Cost Structure Analysis 3.2.1 Production Process Analysis 3.2.2 Manufacturing Cost Structure of Automotive Metal 3.2.3 Labor Cost of Automotive Metal 3.2.3.1 Labor Cost of Automotive Metal Under COVID-19 3.3 Sales and Marketing Model Analysis 3.4 Downstream Major Customer Analysis (by Region) 3.5 Value Chain Status Under COVID-19
….. continued
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