Global protective cultures market size to record 23.6% CAGR through 2027

The research analysis on ‘global protective cultures market’ offers comprehensive insights to the major growth trends, restraining factors, and additional expansion opportunities which are influencing the growth matrix of this business domain.


Selbyville, Delaware, March 18, 2021 (GLOBE NEWSWIRE) -- According to credible estimations, global protective cultures market size accounted for USD 124.96 million in the year 2019 and is predicted to expand with a CAGR of 23.6% during the study duration, subsequently reaching USD 689.96 million by the year 2027. The growth can be credited to high demand for clean-label and organic goods and widespread adoption of frozen crops.

Additionally, the document talks about the several market segmentations such as product varieties, target microorganisms, composition type, and application scope. The report concludes by offering critical information regarding the geographical landscape as well as the competitive dynamics of this industry vertical.

For those uninitiated, protective cultures are basically microbial cultures which contain bacterial of a specific capacity that help in preventing the growth of pathogenic and harmful microorganisms. Several food manufacturers are adopting protective cultures in a bid to improve the shelf-life of the product.

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According to Statista, cow milk was the largest consumed dairy product in India, accounting for around 81 million metric tons, followed by the European Union which had reached 33.4 million metric tons.

Thus, increasing consumption of dairy and frozen products coupled with growing demand for foods with longer shelf-life are stimulating global protective cultures industry outlook.

The USFDA (United States Food & Drug Administration) has also given preventive cultures a GRAS status, which is a commonly considered healthy item. Apart from favorable approval ratings from authorities, collective inclination towards opting for preservative-free goods is also aiding towards the market expansion.

Focus among key participants towards technological advancements and innovative product launches are also contributing towards global protective cultures industry remuneration. Although high costs associated with the product could potentially emerge as a challenge for the industry participants, growing demand for milk and dairy products are providing lucrative growth opportunities.

Highlighting the geographical scope

Global protective cultures market, based on regional analysis, is divided into Latin America, Europe, North America, Asia-Pacific, and the rest of the world.

According to reliable predictions, Europe currently accounts for the largest market share and is likely to continue with its dominance in the following years. Factors such as increasing consumption of milk products and focus towards improving the production capabilities are favoring the regional market outlook.

Asia-Pacific, meanwhile, is expected to emerge as a lucrative growth avenue for global protective cultures industry. Mounting consumption of organic products as well as dairy foods, growing population, and improving cognizance regarding protective cultures are positively swaying the business dynamics in Asia-Pacific. 

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Global Protective Cultures Market Product Varieties (Revenue USD Million, 2017-2027)

  • Frozen
  • Freeze-Dried

Global Protective Cultures Market by Target Microorganism (Revenue USD Million, 2017-2027)

  • Bacteria
  • Yeasts and Molds

Global Protective Cultures Market by Composition (Revenue USD Million, 2017-2027)

  • Multi-Strain Mixed
  • Multi-Strain
  • Single-Strain

Global Protective Cultures Market Application Spectrum (Revenue USD Million, 2017-2027)

  • Seafood
  • Meat and Poultry Products
  • Dairy and Dairy Products
  • Others

Global Protective Cultures Market Regional Dynamics (Revenue USD Million, 2017-2027)

North America

  • United States
  • Canada

Latin America

  • Mexico
  • Brazil

Asia-Pacific

  • South Korea
  • India
  • China
  • Japan
  • Australia
  • Rest of Asia-Pacific

Europe

  • Italy
  • France
  • Spain
  • United Kingdom
  • Germany
  • Rest of Europe

Rest of the World

Global Protective Cultures Market Competitive Analysis (Revenue USD Million, 2017-2027)

  • THT s.a
  • Meat Cracks Technologie GmbH
  • Sacco S.r.l.
  • Biochem S.r.l.
  • Koninklijke DSM N.V.
  • DuPont de Nemours Inc.
  • Dalton Biotecnologie S.r.l.
  • CSK Food Enrichment B.V.
  • Chr. Hansen A/S
  • Bioprox

Table of Content:

Chapter 1. Executive Summary

1.1.      Market Snapshot

1.2.      Global & Segmental Market Estimates & Forecasts, 2018-2027 (USD Million)

1.2.1.   Protective Cultures Market, by Region, 2018-2027 (USD Million)

1.2.2.   Protective Cultures Market, by Product Form, 2018-2027 (USD Million)

1.2.3.   Protective Cultures Market, by Target Microorganism, 2018-2027 (USD Million)

1.2.4.   Protective Cultures Market, by Composition, 2018-2027 (USD Million)

1.2.5.   Protective Cultures Market, by Application, 2018-2027 (USD Million)

1.3.      Key Trends

1.4.      Estimation Methodology

1.5.      Research Assumption

Chapter 2. Global Protective Cultures Market Definition and Scope

2.1.      Objective of the Study

2.2.      Market Definition & Scope

2.2.1.   Scope of the Study

2.2.2.   Industry Evolution

2.3.      Years Considered for the Study

2.4.      Currency Conversion Rates

Chapter 3. Global Protective Cultures Market Dynamics          

3.1.      Protective Cultures Market Impact Analysis (2018-2027)

3.1.1.   Market Drivers

3.1.2.   Market Challenges

3.1.3.   Market Opportunities

Chapter 4. Global Protective Cultures Market Industry Analysis

4.1.      Porter's 5 Force Model

4.2.      PEST Analysis

4.2.1.   Political

4.2.2.   Economical

4.2.3.   Social

4.2.4.   Technological

4.3.      Investment Adoption Model

4.4.      Analyst Recommendation & Conclusion

Chapter 5. Global Protective Cultures Market, by Product Form

5.1.      Market Snapshot

5.2.      Global Protective Cultures Market by Product Form, Performance - Potential Analysis

5.3.      Global Protective Cultures Market Estimates & Forecasts by Product Form 2017-2027 (USD Million)

5.4.      Protective Cultures Market, Sub Segment Analysis

5.4.1.   Freeze-Dried

5.4.2.   Frozen

Chapter 6. Global Protective Cultures Market, by Target Microorganism         

6.1.      Market Snapshot

6.2.      Global Protective Cultures Market by Target Microorganism, Performance - Potential Analysis

6.3.      Global Protective Cultures Market Estimates & Forecasts by Target Microorganism 2017-2027 (USD Million)

6.4.      Protective Cultures Market, Sub Segment Analysis

6.4.1.   Yeasts and Molds

6.4.2.   Bacteria

Chapter 7. Global Protective Cultures Market, by Composition

7.1.      Market Snapshot

7.2.      Global Protective Cultures Market by Composition, Performance - Potential Analysis

7.3.      Global Protective Cultures Market Estimates & Forecasts by Composition 2017-2027 (USD Million)

7.4.      Protective Cultures Market, Sub Segment Analysis

7.4.1.   Single-Strain

7.4.2.   Multi-Strain

7.4.3.   Multi-Strain Mixed

Chapter 8. Global Protective Cultures Market, by Application       

8.1.      Market Snapshot

8.2.      Global Protective Cultures Market by Application, Performance - Potential Analysis

8.3.      Global Protective Cultures Market Estimates & Forecasts by Application 2017-2027 (USD Million)

8.4.      Protective Cultures Market, Sub Segment Analysis

8.4.1.   Dairy and Dairy Products

8.4.2.   Meat and Poultry Products

8.4.3.   Seafood

8.4.4.   Other

Chapter 9. Global Protective Cultures Market, Regional Analysis

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Global 3D Cell Culture Market Size study and Regional Forecasts 2020-2027

Global 3D Cell Culture Market to reach USD 2864.4 million by 2027, as per new research report. Global 3D Cell Culture Market is valued approximately at USD 892 million in 2019 and is anticipated to grow with a healthy growth rate of more than 15.7% over the forecast period 2020-2027. A 3D cell culture is an in-vitro technique wherein the cells can grow in controlled simulated or artificially created environment, outside of a living organism. This environment has similar architecture and functioning of the native tissue. 3D cell culture technique helps biological cells to differentiate, proliferate, and migrate by interacting with their surroundings in all three dimensions. This technique has varied applications in the fields of stem cell therapies, regenerative medicine, drug screening, cancer research and cell biology.

The extracellular matrix in this technique enables cell-cell communication by direct contact, by secreting cytokines and trophic factors. The growing prevalence of chronic diseases rise in demand in organ transplantation, tissue regeneration, and regenerative medicine are the few factors responsible for growth of the market over the forecast period. The rising number of organ donors due to the favourable government initiatives & growing number of deceased donors is creating a lucrative opportunity for the growth of market over the forecast years. For instance: in 1994, India government framed Transplantation of Human Organ Act to enable a proper system for removal, storage and transplantation of human organ and framed budget of approx. USD 19.95 million to promote organ donation from deceased person. Similarly, In October 1982, a federal agency, Health Resources and Services Administration (HRSA) was established in United States. The agency monitors the transplantation system of organ in the economy and provides the safest and most equitable system for allocation, transplantation, and distribution of donated organs. Thus, such factors escalate the number of organ donors across the globe, creating a lucrative thrust to the market growth. Whereas, lack of infrastructure for 3d cell-based research and high cost of cell biology research is the major factor restraining the growth of global 3D Cell Culture market during the forecast period.

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