Abstract / Summary
Background. Hematoporphyrin derivative (HpD, Hiporfin) is used for photodynamic therapy (PDT) of solid tumors but had never been evaluated for fluorescence guided resection (FGR) in glioma. We assessed Hiporfin fluorescence accuracy against histopathology in recurrent glioblastoma (rGBM) and the feasibility of adding cavity PDT to FGR. Methods. In this prospective single arm series, adults with rGBM received a single preoperative intravenous Hiporfin dose of 5 mg/kg before FGR under blue light excitation and 630 nm cavity PDT. Intraoperative fluorescence assessment was the index test and histopathology the reference standard. Specimen level diagnostic accuracy was pooled with bivariate random-effects modeling. Results. Of 63 specimens, 35 were true positive, 7 false positive, 8 false negative and 13 true negative. Pooled sensitivity was 0.751 (95% confidence interval 0.600 to 0.858) and specificity 0.606 (0.407 to 0.775); the crude positive predictive value was 0.833 (0.694 to 0.917) and the negative predictive value 0.619 (0.409 to 0.792). All seven false positive specimens were peritumoral tissue and the eight false negatives were non fluorescent tumor. FGR combined with cavity PDT was completed in all six patients without new neurological deficits. Conclusions. Hiporfin fluorescence identified rGBM with moderate accuracy: fluorescent regions were likely tumor, while non fluorescent tissue often still contained tumor. The main source of error was peritumoral tissue of the treated cavity, and not the drug or the optics. Hiporfin is a new fluorescence agent for glioma. One drug provides both fluorescence guidance during resection and immediate cavity PDT.