Real-time diagnosis and Gleason grading of prostate core needle biopsies using nonlinear microscopy.
Lucas C CahillSeymour RosenTadayuki YoshitakeYubo WuLinda YorkLeo L TsaiBoris GershmanJames G FujimotoYue SunPublished in: Modern pathology : an official journal of the United States and Canadian Academy of Pathology, Inc (2021)
Rapid histologic assessment of fresh prostate biopsies may reduce patient anxiety, aid in biopsy sampling, and enable specimen triaging for molecular/genomic analyses and research that could benefit from fresh tissue analysis. Nonlinear microscopy (NLM) is a fluorescence microscopy technique that can produce high-resolution images of freshly excised tissue resembling formalin-fixed paraffin-embedded (FFPE) H&E. NLM enables evaluation of tissue up to ~100 µm below the surface, analogous to serial sectioning, but without requiring microtome sectioning. One hundred and seventy biopsies were collected from 63 patients who underwent in-bore MRI or MRI/ultrasound fusion biopsy procedures. Biopsies were stained in acridine orange and sulforhodamine 101, a nuclear and cytoplasmic/stromal fluorescent dye, for 45 s. Genitourinary pathologists evaluated the biopsies using NLM by translating the biopsies in real time to areas of interest and NLM images were recorded. After NLM evaluation, the biopsies were processed for standard FFPE H&E and similarities and differences between NLM and FFPE H&E were investigated. Accuracies of NLM diagnoses and Gleason scores were calculated using FFPE histology as the gold standard. Pathologists achieved a 92.4% sensitivity (85.0-96.9%, 95% confidence intervals) and 100.0% specificity (94.3-100.0%) for detecting carcinoma compared to FFPE histology. The agreement between the Grade Group determined by NLM versus FFPE histology had an unweighted Cohen's Kappa of 0.588. The average NLM evaluation time was 2.10 min per biopsy (3.08 min for the first 20 patients, decreasing to 1.54 min in subsequent patients). Further studies with larger patient populations, larger number of pathologists, and multiple institutions are warranted. NLM is a promising method for future rapid evaluation of prostate needle core biopsies.
Keyphrases
- ultrasound guided
- prostate cancer
- end stage renal disease
- high resolution
- newly diagnosed
- ejection fraction
- chronic kidney disease
- magnetic resonance imaging
- optical coherence tomography
- fine needle aspiration
- single molecule
- prognostic factors
- peritoneal dialysis
- high throughput
- bone marrow
- high speed
- physical activity
- dna methylation
- machine learning
- gene expression
- case report
- quantum dots
- benign prostatic hyperplasia
- copy number
- inflammatory response
- label free