A blood test that reads chemical marks on DNA rather than its letters separated the aggressive neuroendocrine form of prostate cancer from the ordinary form almost perfectly.
Neuroendocrine prostate cancer is a resistance phenotype that emerges in men with metastatic castration-resistant prostate adenocarcinoma and is difficult to detect in practice. Methylated DNA immunoprecipitation and high-throughput sequencing was performed on a training set of tumours, differentially methylated regions between neuroendocrine prostate cancer and castration-resistant adenocarcinoma were identified, and a model was built to predict the presence of neuroendocrine disease, termed a risk score. The same assay was then applied to cell-free DNA from two independent cohorts. The test cohort comprised 48 men, 9 with neuroendocrine disease and 39 with castration-resistant adenocarcinoma; risk scores were significantly higher in the neuroendocrine group and discriminated with an area under the receiver operating curve of 0.96, with the optimal cut-off giving 100% sensitivity and 90% specificity. The validation cohort included 53 men, 12 with neuroendocrine disease and 41 with adenocarcinoma; discrimination was perfect, area under the curve 1.0, and the predefined cut-off gave 100% sensitivity and 95% specificity.
It is the right shape of answer for a transition that is epigenetic rather than genetic, and it could in principle spare the biopsy that is currently the only way to make this diagnosis.
Shares Treatment-emergent neuroendocrine transformation (recognising it), Histologic transformation, Neuroendocrine and small-cell prostate cancer, Lineage plasticity & neuroendocrine transformation.
Shares Treatment-emergent neuroendocrine transformation (recognising it), Histologic transformation, Neuroendocrine and small-cell prostate cancer, Epigenetic reprogramming.
Shares Treatment-emergent neuroendocrine transformation (recognising it), Histologic transformation, Neuroendocrine and small-cell prostate cancer, Clinical Cancer Research.
Shares Treatment-emergent neuroendocrine transformation (recognising it), Histologic transformation, Neuroendocrine and small-cell prostate cancer, Epigenetic reprogramming.
Shares Histologic transformation, Neuroendocrine and small-cell prostate cancer, Lineage plasticity & neuroendocrine transformation, Androgen receptor.
Shares Histologic transformation, Neuroendocrine and small-cell prostate cancer, Lineage plasticity & neuroendocrine transformation, Androgen receptor.
Shares Treatment-emergent neuroendocrine transformation (recognising it), Histologic transformation, Neuroendocrine and small-cell prostate cancer, Lineage plasticity & neuroendocrine transformation.
Shares Cell-free DNA (cfDNA), Clinical Cancer Research, Circulating tumour DNA (ctDNA), Liquid biopsy (ctDNA).