Skip to main content
S

Shreenika

The startup manufactures sustainable chemicals using a biocatalysis platform that employs engineered microbes to convert sugars, biomass, and waste into a wide range of chemicals. This process significantly reduces carbon emissions and environmental impact for industries such as pigments, cosmetics, pharmaceuticals, nutrition, and materials.

San Diego, United StatesFounded 20237100+ followers
Updated 3 months ago

Funding

$2.2M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

Funding rounds are not available yet.

Founders

Product

Problem

Traditional chemical manufacturing relies heavily on petrochemicals, leading to significant carbon emissions, resource depletion, and environmental pollution. Many industries seek sustainable alternatives that reduce their carbon footprint and minimize environmental impact.

Solution

Shreenika Bio offers a sustainable chemical manufacturing platform that utilizes engineered microbes and biocatalysis to convert renewable feedstocks like sugars, biomass, and waste into a variety of chemicals. Their technology provides drop-in replacements for petrochemical-derived products, enabling industries to transition to greener manufacturing processes without compromising performance. By harnessing the power of biotechnology, Shreenika Bio delivers cost-effective and high-performance chemicals with a significantly reduced environmental footprint. Their approach focuses on precision fermentation, proprietary biocatalysis, and green chemistry partnerships to create custom chemistry solutions.

Target Audience

Shreenika Bio serves industries such as pigments, cosmetics, pharmaceuticals, nutrition, and materials seeking sustainable and cost-effective chemical solutions.

Features

  • Biocatalysis platform using engineered microbes for chemical synthesis
  • Drop-in replacements for petrochemical-based products
  • Use of renewable feedstocks, including sugars, biomass, and waste
  • Reduced carbon footprint compared to traditional chemical manufacturing
  • Processes that operate at lower temperatures and pressures
  • Life Cycle Assessments (LCA) to measure environmental impact
  • Production of GMO-free products that are chemically pure and free of recombinant DNA
  • Capability to engineer processes that unlock new chemistry
This profile is AI-generated and may contain inaccuracies.