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INNOVATIVE TECHNOLOGIES RESHAPING THE FOOD INDUSTRY

A look at new technologies and applications
Summer 2024

INTRODUCTION TO TECHNOLOGICAL TRANSFORMATION IN THE FOOD INDUSTRY

The food industry is undergoing a technological transformation that promises to enhance sustainability, efficiency, and innovation. Technologies such as CRISPR, precision fermentation, and cultivated meat are at the forefront of this revolution, offering solutions that could reshape the way we produce and consume food.

TECHNOLOGICAL
TRANSFORMATION IN
THE FOOD INDUSTRY

CRISPR: A NEW ERA IN GENE EDITING

CRISPR’s Origin in Bacterial Defense

  • Discovered in bacterial immune systems
  • Acts as a defense against viruses

Evolution into Genome Editing

  • Transformed into a genome editing tool
  • Enables precise DNA modifications

Impact on Genetic Research

  • Provides control over genetic information
  • Applicable to almost any organism

A new era in gene editing

ADVANTAGES OF CRISPR

Simplicity Over Traditional Methods

  • CRISPR’s ease of use contrasts with previous cumbersome techniques.

Cost-Effectiveness

  • Affordable compared to earlier gene-editing methods.

Precision in Gene Targeting

  • Enables specific alterations in the genetic code.

Controlled Genetic Modifications

  • Allows for minor, regulated changes with significant impact.

Advancements in Genetic Research

  • Potential to enhance crop yields, disease resistance, and nutrition.

bean

CRISPR VS. GMOS

Gene Editing with CRISPR

  • Modifies DNA within the same species
  • Enhances traits like drought resistance
  • Increases livestock production efficiency

Genetically Modified Organisms (GMOs)

  • Inserts genes from different species
  • Creates unnatural gene combinations
  • Example: Bacterium gene in plants for pest resistance

Regulatory and Acceptance Implications

  • CRISPR modifications lead to fewer regulations
  • Potentially broader acceptance due to natural species boundaries

Dna strip

REGULATORY LANDSCAPE FOR GENE EDITING

FDA’s Role in Regulation

  • Ensures food safety and public trust for genetically edited animals

CRISPR Technology Advancements

  • Highlights the need for evolving regulatory frameworks

Balance of Innovation and Ethics

  • Addresses ethical concerns and potential risks while fostering innovation

law

PRECISION FERMENTATION
Engineered Microorganisms

PRECISION FERMENTATION VS. TRADITIONAL METHODS

Advancements in Fermentation Techniques

  • Traditional fermentation utilizes natural microorganisms
  • Precision fermentation employs engineered microorganisms for specific products

Comparison of Fermentation Methods

  • Traditional: Natural metabolic processes create alcohol, acids, or gases
  • Precision: Modified microorganisms produce targeted substances like proteins

Control and Innovation in Food Production

  • Precision fermentation offers greater control over the fermentation process
  • Enables the creation of novel food products not possible with traditional methods

trade"

INNOVATIVE COMPANIES IN PRECISION FERMENTATION

Nature’s Fynd

  • Protein from Yellowstone microbes via fermentation
  • Sustainable and nutritious food production

The EVERY Company

  • Precision fermentation for egg proteins
  • Supports vegan market, reduces environmental impact

Oobli

  • Zero-sugar chocolate through precision fermentation
  • Healthier chocolate alternative

Re-Milk

  • Lab-grown milk from modified yeast
  • Cow-free dairy, industry revolution potential

innovate

ENVIRONMENTAL AND NUTRITIONAL BENEFITS

Advancements in Food Production

  • Precision fermentation improves nutritional profiles
  • Reduces environmental impact of food ingredients

Innovations in Cheese-Making

  • Cultivated rennet replaces traditional sources
  • Enzyme sourced from cow stomachs now produced sustainably

Market Adoption

  • 80% of rennet in cheese market from precision fermentation

innovate

CULTIVATED MEAT
Sustainable Protein Production

CULTIVATED MEAT APPROVAL AND ADOPTION

Introduction to Cultivated Meat

  • Also known as lab-grown meat, it’s produced by growing meat cells in a lab setting

FDA Approval and Industry Milestone

  • As of November 2022, the FDA has approved labgrown meat for sale

Global Adoption Status

  • Currently, only the U.S. and Singapore allow the commercial sale of cultivated meat

UPSIDE Foods’ Pioneering Achievement

  • First company to receive FDA approval, utilizing bioreactors for cell growth.

testing

REGULATORY CONSIDERATIONS FOR CULTIVATED MEAT

Regulatory Oversight in the U.S.

  • FDA manages cell sourcing and growth phases
  • USDA oversees processing and labeling postharvest

International and Regional Challenges

  • Regulatory hurdles leading to bans in certain European regions
  • Cultural concerns affecting acceptance in Alabama and Florida

testing

UNDERSTANDING CULTIVATED MEAT

Biological Identity to Conventional Meat

  • Produced in a lab, not a farm
  • Biologically identical to meat from animals

UPSIDE Foods’ Cultivated Chicken

  • Made from real animal cells from a chicken egg

Benefits of Cultivated Meat

  • Addresses animal welfare concerns
  • Reduces environmental impact

Cellular Level Considerations

  • Minimal loss of life at the cellular level involved

chicken

CULTIVATED INGREDIENTS BEYOND MEAT

Expanding Applications of Cultivated Meat Technology

  • Cell-based cocoa development to combat deforestation and child labor
  • Kokomodo’s pursuit of sustainable and ethical cocoa alternatives

chocho

WHY SHOULD YOU WORK WITH HELA SPICE?

  • R&D Team experienced in many different product categories
  • Ability to create products based on customers’ ideas
  • Ability to bring new product ideas and fully developed concepts for customer review
  • Real plant production experience that enables Hela Spice to create an easy to produce system of blends and raw materials including processing instructions, to make processing simple for companies
  • We can adapt procedures to best utilize available plant processing equipment




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