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AI-Enabled Strain Engineering

XCELLIâ„¢ AISEM is a high-fidelity software platform designed to bridge the gap between computational design and biological reality. We leverage deep learning to predict microbial performance with unprecedented accuracy.

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Objective
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Assessment
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Define the biological target and industrial application requirements.

Comprehensive data-driven evaluation of host strain viability and metabolic pathways.

Design

Generative AI-driven in silico design and ranking of optimal genetic constructs.

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Recommendation
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Iteration

Continuous evidence-led refinement and optimization of the engineered cell factory.

Experimental design and prioritization of high-impact biological modifications.

FORGE Foundry

We have engineered a modular, movable biofoundry platform designed to accelerate microbial strain engineering. FORGE bridges the gap between computational design and physical execution, providing a scalable, cost-efficient solution for distributed biomanufacturing.

Modular Workflow Planning

Automated Execution

Real-Time Data Capture

DBTL Learning Loop

Arberpestoâ„¢ Precision Biopesticide

We engineer next-generation biological solutions that combine synthetic biology with advanced nanoformulation to protect global agriculture with precision and intelligence.

Targeted 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

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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

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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

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Scalable Application

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