ProteAI™ Platform

ProteAI™ harnesses physics-based artificial intelligence to design the next generation of protein therapeutics.

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ProteAI™ Platform: Physics-Informed Protein Design

Platform Overview

ProteAI™ Platform: Physics-Informed Protein Design

The future of protein therapeutics requires a paradigm shift beyond data-driven pattern matching. ProteAI™ is a pioneering design platform that uniquely integrates artificial intelligence with the first principles of biophysics. We are developing next-generation AI that is trained to comprehend the fundamental physical laws governing protein folding and interactions. This enables our platform to move beyond conventional interpolation and extrapolation from existing data, empowering the intelligent de novo creation and multi-parameter optimization of novel, developable protein therapeutics across any modality, from antibodies to engineered scaffolds.

Disruptive Technology
 

Disruptive Technology

Excellent Team
 

Excellent Team

Diversified Pipeline
 

Diversified Pipeline

Customized Solutions
 

Customized Solutions

Platform Core

Core Architecture: The Learning Loop Powered by Physics

At the heart of ProteAI™ is a physics-grounded AI engine and a tightly closed design-validation loop.

Animal Model Development Services
  • The Intelligent Core: Our proprietary AI is engineered to master the universal physical principles governing protein behavior—moving beyond mere pattern recognition to genuine scientific reasoning. This foundational understanding empowers it to strategically explore the vast sequence space, enabling the purposeful design of novel proteins with tailored functions.
Animal Model Development Services
  • The Virtuous Cycle: ProteAI™ generates intelligent designs, which are then rapidly synthesized and rigorously tested in our state-of-the-art wet labs. The resulting high-fidelity experimental data flows back into the AI, continuously refining its understanding. This seamless integration of computation and experimentation accelerates the journey from concept to validated candidate.

Platform Advantages

Unique Advantages of the ProteAI™ Platform

Platform Application

Empowering Next-Generation Protein Therapeutics

De Novo Design of Novel Therapeutics

De Novo Design of Novel
Therapeutics

Create fully novel, functional protein sequences from scratch. Ideal for targeting novel epitopes, designing against targets with limited structural data, or pioneering entirely new therapeutic protein classes.

Lead Acceleration & Property Enhancement

Lead Acceleration & Property Enhancement

Rapidly transform early hits into optimized leads. Improve affinity, stability, and expression while mitigating developability issues, compressing years of iterative optimization into significantly shorter cycles.

Functional Scaffold Engineering

Functional Scaffold
Engineering

Re-imagine protein scaffolds. Engineer new binding sites or functions into stable frameworks (e.g., Fc regions) to create bespoke multi-specific or cell-engaging therapeutics, turning strategic concepts into tangible molecules.

Pipeline

Research & Development Pipeline

Projects Therapy Types Target Indication Discovery Preclinical IND Phase I Phase II Phase III
PTA005 Monoclonal Antibody PD-L1 Solid Tumors

PTA012 Bispecific Antibody HER2 x EGFR Solid Tumors

PTA024 Immunocytokine PD-1 / 1L-18V Solid Tumors

PTA019 Monoclonal Antibody ALK7 Fibrotic Diseases

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Get in Touch with Us

Please note that we are not a pharmacy or clinic, so we are unable to see patients and do not offer diagnostic and treatment services for individuals.

FAQs

Frequently Asked Questions

Q1: What makes ProteAI™ different from other AI protein design platforms?

A: While others excel at data interpolation, ProteAI™ is built to understand the physics behind the data. This first-principles core allows for more intelligent exploration, reliable extrapolation, and the design of truly novel sequences that are both creative and physically sound.

Q2: How do you validate the AI's designs?

A: Every design cycle is backed by our integrated wet lab. We express, purify, and characterize designs for binding, function, and key developability metrics, ensuring computational predictions translate into real-world performance.

Q3: What level of control do we have over the design process?

A: You have full control. You can set optimization goals, constrain designs to specific frameworks (e.g., human germline antibodies), and guide the platform towards your desired patent or functional landscape.

Q4: How does ProteAI™ handle immunogenicity risk in de novo designs?

A: It’s a core optimization parameter. We can constrain designs to clinically validated frameworks and directly optimize sequences for low immunogenicity prediction, ensuring novel molecules are also developable.

Q5: Can we collaborate if we only have a target idea, not a lead molecule?

A: Absolutely. De novo design is a core strength. Starting with just a target of interest, ProteAI™ can generate and validate novel, high-affinity binders from the ground up.

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