Biology, with intention.

Earth may hold a trillion microbial species, and an estimated 99% of bacteria can produce bacteriocins: distinct antimicrobial proteins shaped by evolution to target competing bacteria. This gives us an immense collection of natural defenses, refined through billions of years of competition.

Nature’s precision

Organicin’s role is to discover and understand these existing solutions rather than invent new ones. The filter we built to do that is CinThesis.

Discover the science

Explore the platform
Our scienceBacteriocin discovery & development
An enlarged sage-green molecular surface of Colicin E5, extending beyond the left edge of the page.
Microbial competition inspires discovery.

Bacteria have been
solving this
for billions of years.

Bacteriocins are antimicrobial proteins produced by bacteria. Their selective activity gives us a starting point for a more precise approach to microbial challenges.

Organicin connects that biological foundation with computational discovery and experimental development, advancing candidates for animal health, nutrition, and microbiome applications.

Discover the science
The CinThesis platformComputation meets microbial intelligence

A new lens on
nature’s precision.

CinThesis brings molecular properties, evolutionary relationships, and predicted structure together to find promising bacteriocin candidates.

Six perspectives. One platform.01 / 06
Illustration of a protein surface with positive and negative charges and a molecular ball-and-stick detail

Understand the molecule.

Examine the physicochemical properties that help characterize a candidate, including its charge, hydrophobicity, and molecular composition.

From sequence to biological interpretation.Explore platform access

Inside CinThesis.

Explore the CinThesis research workspace.

7:27 walkthrough

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Bacteriocin prediction.

Accuracy
98.68%

Evaluated across 4,482 sequences.

99.74%
99.41%
96.37%
0.9945

ML alone: Accuracy 93.95% · Specificity 97.76% · Precision 94.58% · Sensitivity 85.62% · ROC-AUC 0.9824.

Research at scale.

Literature, sequences, and antimicrobial activity
brought together for discovery.

Research articles indexed
359k+
Distinct protein sequences indexed
59k+
Gene records indexed
1.8M+
Genomes in the catalogue
529
Antimicrobial activity records
18k+

Catalogue as of September 5, 2026. Activity records include MIC measurements, inhibition zones, and qualitative observations.

Organicin ScientificBuilt around the biology

Deep science.
Shared ambition.

We bring together microbiology, computational discovery, and bacteriocin expertise to advance promising biology through focused product development.

Let’s collaborateGood questions start here.

What could we
discover together?

Start a conversation