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HAVNOZ'S XCELLI™
xeno-Cognitive Engine for Living Laboratory Simulation

XCELLI™ AISEM
Automated In-Silico Strain Engineering Module
AISEM is Havnoz’s AI-native engine for designing next‑generation microbial cell factories before they ever reach the lab.
Smarter Strain Engineering
• Maps host metabolism and pinpoints pathway bottlenecks
• Prioritizes gene interventions for growth and production
• Scores host–product compatibility and native homologues
• Quantifies growth vs. production trade‑offs
Design → Map → Simulate → Predict → Prioritize → Translate
AISEM turns a production goal into a clear, lab-ready strain‑engineering playbook.
XCELLI™ Ecosystem Intelligence
AISEM powers the Design–Build–Test–Learn loop across XCELLI™ FORGE and the microfluidics-based XCELLI™ µ1‑FORGE platform—so you design intelligently and build purposefully.
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XCELLI™ FORGE
Fabrication and Optimization Resource for Guided Experimentation
XCELLI™ FORGE is the experimental automation and execution layer of the XCELLI™ ecosystem. It translates
AISEM-generated strain designs into standardized biological workflows for construction, cultivation, testing and data capture.
By connecting experimental outcomes back to AISEM, FORGE enables a continuous Design–Build–Test–Learn cycle, accelerating the development of microbial cell factories while improving reproducibility, scalability and data-driven decision-making.
Modular Workflow Planning
Automated Execution
Real-Time Data Capture
DBTL Learning Loop
XCELLI-Arberpesto™ Precision Peptide-Pesticide
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We engineer next-generation biological solutions that combine synthetic biology with advanced nanoformulation to protect global agriculture with precision and intelligence.
Targeted Peptide-Mediated Active Delivery
Protective Nanoformulation
Advanced Biological Actives
Intelligent Biological Design
Platform Capabilities
A comprehensive overview of our technological stack, bridging computational intelligence with physical automation and biological application.
Software Intelligence
Advanced AI-enabled software platforms for predictive design and engineering of microbial cell factories.
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In Silico Design
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Automated Iteration
Host/Pathway Assessment
Physical Automation
Modular, cost-efficient automated biofoundry platforms for scalable microbial strain engineering.
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Modular Workflow Planning
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Automated Execution
DBTL Learning Loop
Biological Application
Next-generation precision biopesticides combining engineered biological actives with protective nanoformulation.
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Engineered Actives
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Protective Nanoformulation
Scalable Application

