Biogenetics Research

Past the peritoneum. Into the tumour. Past platinum resistance.

We build targeted nanoparticle carriers for high-grade serous ovarian cancer — and we run the quantitative image analysis that turns tissue into evidence, for our own pipeline and for yours.

96.4 nm

Z-average diameter

0.087

Polydispersity index

−24.3 mV

Zeta potential

91.2 %

Encapsulation efficiency

Annotated cross-section of the BGX-101 targeted nanocarrier A schematic nanoparticle showing a PEG corona, a lipid bilayer, an aqueous core carrying a platinum prodrug and siRNA payload, and folate-receptor targeting ligands on the outer surface. PEG CORONA 2 kDa dense brush LIPID BILAYER DSPC / chol / PEG AQUEOUS CORE Pt(IV) prodrug + siRNA TARGETING LIGAND anti-FRα fragment
Fig. 1 — BGX-101 carrier architecture, schematic cross-section

We run a drug pipeline and a services lab out of the same building — on purpose.

The image analysis methods we sell were built to answer our own questions about tumour penetration and dose response. Clients get tooling that has already survived contact with a live pre-clinical programme.

Track A — Internal pipeline

Nanomedicine for ovarian cancer

High-grade serous ovarian cancer relapses in most patients, and platinum resistance is what usually kills them. We design carriers that reach disseminated peritoneal disease, stay there, and deliver two agents at once.

  • Folate receptor alpha as the primary targeting vector
  • Intraperitoneal administration with retention-tuned carriers
  • Co-delivery of cytotoxic payload plus a resistance-reversal nucleic acid
Explore the R&D programme

Track B — Client services

AI-enabled research services

Quantitative digital pathology and AI image analysis for pharma, biotech and academic groups — from single chromogenic IHC through to high-plex immunofluorescence, at discovery scale or to a regulatory standard.

  • Cell-by-cell quantification of nuclear, membrane and cytoplasmic markers
  • Custom segmentation and classification models, verified then locked
  • Short-term fee-for-service or longer-term embedded FTE scientists
See all services

Research & development

Built for the tumour that keeps coming back

Ovarian cancer spreads across the peritoneal surface rather than through a single solid mass, so carrier residence time matters as much as potency. Every programme below is designed around that.

CodeProgrammeCarrierStage
BGX-101 FRα-targeted platinum prodrugPt(IV) prodrug in a folate-decorated liposome for platinum-sensitive relapse PEGylated liposome
Lead optimisation
BGX-204 Resistance-reversal co-deliverysiRNA against efflux and repair pathways, co-loaded with a taxane Ionisable lipid nanoparticle
Discovery
BGX-310 Peritoneal-retentive micellePARP inhibitor with a STING agonist for intraperitoneal dosing PLGA–PEG polymeric micelle
Discovery
BGX-PLAT Organoid response platformPatient-derived organoid imaging with automated response scoring Enabling platform
In routine use

How a study runs

  1. STAGE 1 Scope and endpoints

    We agree what the images need to prove before anything is analysed. Output is a signed statement of work naming the markers, regions, endpoints and delivery dates.

  2. STAGE 2 Image QC

    Every slide is checked for focus, staining consistency, tissue folds and artefacts. Anything that would distort the numbers is flagged to you and excluded or re-scanned.

  3. STAGE 3 Annotation and algorithm development

    Regions of interest are annotated, then a segmentation and classification approach is developed on a training subset and reviewed against your pathologist's read.

  4. STAGE 4 Verification and lock

    Performance is verified against ground truth. For clinical and GCP work the algorithm is then locked, so every subsequent batch is analysed identically.

  5. STAGE 5 Analysis and reporting

    You receive per-cell object data, summary tables, annotated image exports and a written report describing methods in enough detail to reproduce them.

Operating standards

  • GCP-compliant environment
  • Documented QMS
  • UK GDPR
  • Audit trail on every run
  • Data held in the UK/EU

Send us a handful of slides.

A short feasibility pass tells you whether your endpoint is measurable before you commit a cohort to it. Most take under two weeks.