Resistance Bypass Engine
Evidence-first oncology resistance analysis
Acquired resistance / evidence review

Examine resistance.
Review the evidence.

Enter a treatment and a resistance-related gene change. The report checks the gene names, maps related proteins, and shows the supporting records and missing evidence.

05 biological databases 02 resistance patterns 01 reproducible report ID
How the report is built
01 Check the genesOfficial gene and protein records HGNC · UniProt
02 Map related proteinsKnown protein interactions STRING
03 Review the evidenceDisease, drug, and study records Clinical data
sequence / acquired resistanceEGFR → MET
Evidence-based starting points
19reviewed examples across 11 cancer types. Start with a known resistance pattern, then examine the current database records.
Evidence review / new analysis

Build a resistance evidence report.

Describe the treated target and the change observed after therapy. The report connects gene records, protein interactions, drug activity, and clinical sources without turning a research score into a treatment recommendation.

Method / limits

What the analysis can—and cannot—show.

The tool distinguishes a biological link from evidence that a treatment works. It can organize findings for expert review, but it cannot determine patient suitability, dose, expected response, or treatment benefit.

Check namesMatch common gene names, such as HER2, to their official HGNC, UniProt, Ensembl, and ChEMBL records.
Map interactionsBuild a protein-interaction map from live databases and state when a source is unavailable.
Assess supportShow what supports the result, what conflicts with it, and which drug-activity data are missing.
Data sources / report details

Five biological databases are checked.

Each report shows which databases responded, when they were checked, what evidence they returned, and a non-identifying ID for repeating the same request.

HGNC + UniProtOfficial gene names and reviewed human protein records.
STRING-DBReported physical interactions between proteins.
Open Targets + ChEMBLDrug, disease, clinical-development, and laboratory activity records.
How to read the report
Research priorityOrders results for expert review. It is not measured drug synergy or a treatment recommendation.
Network influenceDescribes where a protein sits in the interaction map. Drugs aimed at the same protein can therefore receive the same value.
Supporting evidenceShows whether the result has relevant disease, drug-activity, and drug-pair records. Missing evidence remains visible.
Clinical resistance scenariosBrowse 19 reviewed examples across 11 cancer types. Open library
Reported resistance patterns
Choose a documented resistance example from 11 cancer types. Each example fills in the gene change, prior treatment, and cancer type before opening the live analysis.
Find a resistance pattern 19 reviewed scenarios · 11 cancer types
Showing 19 reviewed scenarios
No scenario matches those filters. Try a gene, mutation, drug, or cancer type.
EGFR + MET Amplification MET amplification after treatment · check sample and assay
Chr 7p11.2 (EGFR) ➔ Chr 7q31.2 (MET)
Proposed mechanism: MET amplification may support signaling through ERBB3 and PI3K despite EGFR inhibition with osimertinib.
EGFR + C797S Secondary Mutation Drug-binding change · confirm the reported variant
Chr 7p11.2 (Exon 20 C797S)
Proposed mechanism: EGFR C797S changes the drug-binding site and can reduce covalent binding of osimertinib.
ALK + MET signaling Alternative receptor signaling · check prior ALK therapy
Chr 2p23.2 (ALK) ➔ Chr 7q31.2 (MET)
Proposed mechanism: MET activation may provide an alternative signaling route during alectinib treatment in ALK-positive NSCLC.
ROS1 + G2032R Solvent-front mutation · inspect TKI history
Chr 6q22.1 (ROS1 G2032R)
Mechanism: A solvent-front substitution can impair binding of earlier ROS1 inhibitors. Drug sensitivity remains inhibitor-specific and must be checked against the current clinical record.
Primary translational evidence ↗
01 / Define the caseTreatment and resistance details
A
Rx
B
Describe the observed changes optional but useful

Use this report to organize research evidence. It does not determine treatment suitability or predict response.

02 / Evidence reportProtein interactions and research priorities
Case preview

The report will follow this treatment-to-resistance relationship.

Ready to analyze
TARGETEGFRtreated protein
targeted by
Rx
Osimertinib
resistance observed
CHANGEMETNSCLC context
01Confirm the recordsMatch gene and protein names to reviewed database entries.HGNC · UNIPROT
02Retrieve interactionsBuild a connected map from reported protein interactions.STRING
03Review the supportSeparate network findings from drug and clinical evidence.OPEN TARGETS · CHEMBL
01 / CHECKOfficial gene recordsMatch common gene names to HGNC, UniProt, Ensembl, and ChEMBL records.
02 / MAPProtein interactionsRetrieve reported protein interactions and relevant drug and disease records.
03 / REVIEWStrength of evidenceKeep the research score separate from clinical evidence and clearly show missing data.
EXTRACELLULAR RECEPTOR DOMAIN PLASMA MEMBRANE LIPID BILAYER EGFR p-Y Chr 7p11.2 (Primary Driver) MET p-Y MET · chromosome 7q31.2 GRB2 KRAS PIK3CA AKT1 MAPK1 SOS1 Activation Alternative Signaling

How the analysis works

Run an analysis to view reported protein interactions, evidence records, and any linked experimental protein structure.