Lesion sampling error resulting tumor heterogeneity is probably the biggest pitfall when determining the HER2 status. Moreover, IHC expression or gene amplification can be affected by procedural differences and sample handling differences that are influenced by the experience and training of the pathologist's team. Last but not least, immunohistochemistry interpretation remains a semiquantitative subjective scoring which is susceptible to considerable interobserver variability.
68Ga-ABS011, is a NOTA (chelating agent to label sdAbs with radionuclides) linked single domain antibody (sdAb) with the capability to bind HER2 tumor antigens very fast, while the unbound fraction is rapidly cleared from the blood. ABS011 is labeled with gallium-68, a short-lived isotope (68Ga, t1/2: 68 min). Combining rapid targeting of HER2, fast clearance and low radiation burden make 68Ga-ABS011 is suited for specific tumor marker whole body PET/CT imaging. The available preclinical and clinical results with 68Ga-ABS011 (or its first generation product), including a phase I and a phase II clinical trials, did not reveal any safety signals. Extended safety assessments, including anti-drug antibody (ADA) serum evaluations after 2 consecutive administrations, supported the previously observed low immunogenicity risk profile with these sdAbs. Besides safety, this tracer showed potential in the assessment of inter-lesional HER2 expression heterogeneity and also displayed some higher sensitive and more specific determination of disease extent compared to 18F-FDG.
Whole body mapping of HER2, an antigen present in multiple cancer types, might (I) Reduce tumor lesion sampling errors and resultingly reduce false negative HER2 IHC outcomes, potentially broadening the therapeutic and interventional treatment options for the patient; (II) Enable identification of inter-and intratumor heterogeneity; and (III) Support follow-up of HER2 targeted treatment response, and accompanied treatment decisions.