
Our Platform
From Human Biology To Precision Therapeutics
An integrated, patient-centered platform that discovers, validates, and engineers ultra-precise targeted therapeutics from comprehensive human biology.
Overview

From Human Biology to Precision Therapeutics
Our platform is a patient-centered discovery and development engine designed to identify and build highly precise targeted therapeutics. Starting with deep characterization of healthy and diseased tissue, we create cellular maps that reveal ultra-specific targets and target pairs.
We comprehensively validate these targets using orthogonal methods to ensure cell-specific expression patterns, and translate them into first-in-class and best-in-class therapeutic candidates. By uniting discovery, validation, and therapeutic design with AI-enabled algorithms, we aim to de-risk programs before they enter development. The result is a streamlined path from human biology to highly specific and selective medicines.
What Drives The Platform
A Biology-First Approach
What drives our platform is a biology-first conviction that patient tissue is the ultimate source of truth. Every component – from comprehensive sample sourcing and optimized tissue processing to our large-scale cellular atlases and advanced computational pipelines – is built to extract maximal insight from human biology. We integrate genomics, AI models, and antibody engineering to move seamlessly from discovery to therapeutic design, thereby de-risking targets before advancing them.
ATLAS + SUMMIT platforms
From Human Biology to Precision Therapeutics
Our ATLAS and SUMMIT platforms were built to discover, validate, and develop precision therapeutics against single and paired targets. Both platforms leverage patient samples and state-of-the-art data processing pipelines to ensure a consistent, biology-first foundation. From there, they diverge into distinct discovery and validation workflows to identify single-antigen and paired-target strategies.
ATLAS focuses on identifying ultra-specific individual targets, while SUMMIT is designed to nominate and validate complementary target pairs that increase cell selectivity or modulate synthetic biology. Both platforms translate these target insights into first-in-class and best-in-class therapeutics.

Patient Sample Sourcing
Patient tissue is the foundation of our platform and an extraordinary gift from which we maximize scientific value. We collect and catalog normal and diseased tissues, and preserve each sample in multiple formats – enabling target identification, validation, and pharmacological testing.
By putting patient biology first, we can better understand expression, localization, and disease relevance – greatly improving the chances of success in the clinic.
Single Cell Expression
Our target identification engine begins with tissue from thousands of tumors and every human organ system. We have built one of the most comprehensive healthy and tumor cellular atlases to date, with an emphasis on highly annotated, accurate, and curated data. To generate this high-quality data, we have developed proprietary methods that break apart complex tissues into individual cells without disrupting or damaging the underlying cellular biology.
Specificity Index
We have developed a suite of analysis algorithms that assess targets across a multitude of factors. Our high-resolution atlases enable us to assess the off-tumor toxicity risk and on-tumor efficacy potential of every single antigen and antigen pair. This is integrated into a predictive toxicology index that quantifies the therapeutic potential of each target or pair in silico. This stringent analysis and filtering ensures that only the best targets and target pairs progress forward, and that the targets or target pairs that advance are precisely suited for the indication and therapeutic approach.
Target Discovery
Our healthy and tumor cell atlases contain tens of millions of cells spanning 1,000s of cell types and more than 100 tissue types. From that proprietary base of biologic data, we layer proprietary AI methods with computational algorithms to compare every antigen in each malignant cell to each healthy cell, looking for optimal targets and target pairs aligned with a given therapeutic strategy. This bespoke analysis pipeline results in a rank-ordering of the best targets and target pairs in any indication of interest, which serves as the basis for downstream validation and therapeutic work.
Target Validation
We comprehensively validate the biology and expression profile of all targets of interest.
Ultra-specific targets demand ultra-specific reagents, and we have built a state-of-the-art workflow to rapidly discover high-quality diagnostic antibodies. In addition to traditional validation methods, our tissue sourcing pipeline enables comprehensive measurements of target biology on patient tissues, allowing us to build deep conviction in each target or target pair.
AI-enabled Drug Design
Our antibody engineering engine combines the best of in silico analysis and design with wet lab discovery, optimization, and validation. We integrate immunization techniques with novel sequencing and display technologies alongside machine learning methods to discover the best human antibody sequences. Our internal AI optimization engine, which is built off more than a dozen individual AI/ML models, is used to tune affinity, specificity, and viability in the clinic. The result is faster cycle times and superior therapeutic candidates.
Pharmacological Testing
Cartography’s pharmacology-driven discovery engine uniquely enables patient-informed antibody drug design by directly integrating single-cell human biology into every stage of molecular testing.
The deep insights into target biology from our ATLAS and SUMMIT platforms enable the selection and design of cell models that optimally recapitulate human biology. We map target expression, surface density, kinetics, and off-tumor impact across tens of millions of patient cells, allowing targets and target pairs to be selected with maximal therapeutic index, broad patient coverage and minimal toxicity. These insights are then translated into rational molecular design. The result is new therapeutics like CBI-1214, which was engineered to perform across the full spectrum of patient antigen expression while minimizing toxicity.
Our Programs
From Platform to Pipeline
Translating deeply validated human biology into engineered therapeutic candidates, advancing rigorously selected targets into a focused and de-risked development pipeline.
