Research Pipeline

Our theranostics pipeline.

Targeted compounds paired with AI dosimetry across three tumour types. Each programme is built around the same patient-specific PK modelling framework.

Development Stages

Programme status overview.

Compound Indication Target Preclinical Phase I Phase II
YSO-001 Prostate Cancer PSMA
YSO-002 Thyroid Cancer TG / Iodine uptake
YSO-003 Neuroendocrine Tumours SSTR
YSO-004 Prostate Cancer (2nd line) PSMA (resistant)
Complete Active Planned
Research Focus Areas

Three tumour types. One dosimetry framework.

Each indication has distinct receptor biology and pharmacokinetic characteristics. YSOTOPE's PK framework is validated across all three.

YSO-001 / YSO-004

Prostate Cancer

PSMA receptor expression varies substantially between patients and declines over treatment cycles, making fixed-activity Lu-177-PSMA prescriptions increasingly inaccurate after the first cycle. YSOTOPE's cycle-by-cycle PK modelling adjusts the dose recommendation as receptor expression evolves. YSO-004 extends the programme to the second-line setting, where altered expression patterns require a modified model.

Lu-177 PSMA PET PK fitting
YSO-002

Differentiated Thyroid Cancer

Radioiodine ablation for differentiated thyroid cancer is one of the oldest forms of targeted radionuclide therapy, yet most centres still use empiric fixed-dose protocols. I-124 PET allows true dosimetry-driven activity calculation before I-131 treatment. YSOTOPE's YSO-002 programme provides automated I-124 PET quantification and absorbed dose modelling to replace the empiric approach.

I-131 I-124 PET Dosimetry-driven
YSO-003

Neuroendocrine Tumours

Somatostatin receptor expression in neuroendocrine tumours is highly heterogeneous between lesions in the same patient, and receptor density changes across cycles of Lu-177 DOTATATE therapy. YSOTOPE quantifies inter-lesion uptake differences from serial quantitative SPECT and models dose to the kidney as the primary organ-at-risk constraint across treatment cycles.

Lu-177 DOTATATE SPECT/CT Renal dosimetry