Molecular Predictions

Using GNNs to optimize drug discovery and molecular property prediction.

A close-up view of a stylized DNA helix with a digital and futuristic design, featuring intricate patterns and hexagonal shapes within the strands. The image has a monochromatic blue color scheme, emphasizing a modern, scientific aesthetic.
A close-up view of a stylized DNA helix with a digital and futuristic design, featuring intricate patterns and hexagonal shapes within the strands. The image has a monochromatic blue color scheme, emphasizing a modern, scientific aesthetic.
Drug Design

Enhancing identification of potential drug candidates through AI.

A complex network of interconnected wires and nodes forms a geometric grid pattern against a bright background. The structure appears intricate and symmetrical, with intersecting lines creating diamond shapes.
A complex network of interconnected wires and nodes forms a geometric grid pattern against a bright background. The structure appears intricate and symmetrical, with intersecting lines creating diamond shapes.
GNN Applications

Analyzing molecular structures for effective drug development strategies.

A colorful, abstract image featuring various pills and capsules in soft focus. The out-of-focus elements create a dreamy, almost surreal effect with light reflections and blurred shapes.
A colorful, abstract image featuring various pills and capsules in soft focus. The out-of-focus elements create a dreamy, almost surreal effect with light reflections and blurred shapes.
A low-light image featuring a blurred, glowing white Google Bard logo in the background and a clear OpenAI logo with a knot design in the foreground, set against a dark background.
A low-light image featuring a blurred, glowing white Google Bard logo in the background and a clear OpenAI logo with a knot design in the foreground, set against a dark background.
AI Screening

High-throughput virtual screening of extensive compound databases.

Graph Networks

Transforming molecular data into predictive machine learning models.