NEAXUSINSTITUTE OF BIODISCOVERY
Active BioDiscovery Platform

Decode.
Discover.
Advance.

The open computational operating system for genomics, rare disease modeling, and data-driven scientific discovery.

Discovery Telemetry
0%analysis pipeline readiness
24/7computational research environment
0active research domains
LIVEknowledge synthesis engine
System Modules
Genome IntelligenceVariant analysis · annotation · interpretation
Disease ModelingMechanisms · pathways · therapeutic hypotheses
Computational DiscoverySimulation · screening · literature synthesis
NEAXUS // HOLOGRAPHIC GENOME MAPHUMAN BIOLOGICAL SYSTEM
3D PARTICLE SYNCHRONIZED
Move pointer across canvas to tilt 3D particle helix · click Morph DNA to alter pitch
Genome scancompleteAnnotation engineactivePathway modelstableKnowledge graphsyncedRare disease moduleonlineGenome scancompleteAnnotation engineactivePathway modelstableKnowledge graphsyncedRare disease moduleonlineGenome scancompleteAnnotation engineactivePathway modelstableKnowledge graphsyncedRare disease moduleonline
Research Specimen
Current Focus

NPC1

Niemann-Pick disease type C1

Rare DiseaseLysosomeCholesterolComputational Biology
STRUCTURAL RIBBON MODEL // NPC1
100%
Residue Bounds: 1 – 1278 aa
Transmembrane Passes: 13 Helices
GeneNPC1
Protein ClassMembrane Transport
Primary OrganelleLysosome
Research StateExploratory
Analysis ModeComputational
LIVE SIMULATION HUD CONTROLS
LYSOSOMAL pH ENVIRONMENT5.5
STEROL CONCENTRATION (μM)45 μM
SIMULATION TEMP (K)310 K
TRANSFER RATE0.94 s⁻¹
RMSF FLEXIBILITY2.00 Å
ΔΔG STABILITY1.71 kcal
Discovery Activity
Inspect NPC1 Project
1,200+
Annotated Genomic Variants
500 ns
Molecular Dynamics Trajectories
100%
Open Reproducible Code
6 Domains
Active Computational Pipelines
Institutional Philosophy

Engineering intelligence for biological discovery.

Neaxus Institute of BioDiscovery is built around a simple premise: complex biology becomes understandable when computation, data, and biological reasoning are brought together. We build reproducible computational models and explore foundational questions that lead to new scientific directions.

01 // Genomics

Variant-level evolutionary scoring & structural effect prediction.

02 // Bioinformatics

High-throughput multi-omic pipeline integration & transcriptomics.

03 // Rare Disease

Focusing on NPC1 & lysosomal storage pathways as mechanistic models.

04 // Systems Biology

Dynamic flux balance constraint modeling & organelle dynamics.

Open Science & Collaboration

Partner with Neaxus on Computational Biology Initiatives

We collaborate with academic laboratories, rare disease foundations, and bio-data initiatives to accelerate genomic hypothesis testing.