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Updated: Feb 13, 2026

Use of MRI-ultrasound Fusion to Achieve Targeted Prostate Biopsy
Published on: April 9, 2019
Genes involved in prostate cancer progression determine MRI visibility
Ping Li1, Sungyong You1,2, Christopher Nguyen2,3
1Cedars Sinai Medical Center, Department of Surgery.
Abstract:
MRI is used to image prostate cancer and target tumors for biopsy or therapeutic ablation. The objective was to understand the biology of tumors not visible on MRI that may go undiagnosed and untreated. Methods: Prostate cancers visible or invisible on multiparametric MRI were macrodissected and examined by RNAseq. Differentially expressed genes (DEGs) based on MRI visibility status were cross-referenced with publicly available gene expression databases to identify genes associated with disease progression. Genes with potential roles in determining MRI visibility and disease progression were knocked down in murine prostate cancer xenografts, and imaged by MRI. Results: RNAseq identified 1,654 DEGs based on MRI visibility status. Comparison of DEGs based on MRI visibility and tumor characteristics revealed that Gleason score (dissimilarity test, p<0.0001) and tumor size (dissimilarity test, p<0.039) did not completely determine MRI visibility. Genes in previously reported prognostic signatures significantly correlated with MRI visibility suggesting that MRI visibility was prognostic. Cross-referencing DEGs with external datasets identified four genes (PHYHD1, CENPF, ALDH2, GDF15) that predict MRI visibility, progression free survival and metastatic deposits. Genetic modification of a human prostate cancer cell line to induce miR-101 and suppress CENPF decreased cell migration and invasion. As prostate cancer xenografts in mice, these cells had decreased visibility on diffusion weighted MRI and decreased perfusion, which correlated with immunostaining showing decreased cell density and proliferation. Conclusions: Genes involved in prostate cancer prognosis and metastasis determine MRI visibility, indicating that MRI visibility has prognostic significance. MRI visibility was associated with genetic features linked to poor prognosis.
Insights
Prostate tumors invisible on MRI possess distinct genetic profiles linked to poorer prognosis and metastasis. Understanding these genes improves diagnosis and treatment strategies for advanced prostate cancer.
Area of Science:
- Oncology
- Medical Imaging
- Genomics
Background:
- Multiparametric MRI is crucial for prostate cancer imaging and guiding interventions.
- Tumors invisible on MRI may evade diagnosis and treatment, posing a clinical challenge.
Purpose of the Study:
- To investigate the biological basis of prostate tumors undetectable by MRI.
- To identify genetic factors influencing MRI visibility and disease progression.
Main Methods:
- RNA sequencing of MRI-visible and invisible prostate tumors.
- Differential gene expression analysis and cross-referencing with public databases.
- Gene knockdown in murine xenografts and MRI evaluation.
Main Results:
- 1,654 differentially expressed genes (DEGs) identified based on MRI visibility.
- MRI visibility correlated with prognostic gene signatures, indicating prognostic significance.
- Four genes (PHYHD1, CENPF, ALDH2, GDF15) identified as predictors of MRI visibility, survival, and metastasis.
Conclusions:
- Prostate cancer's metastatic and prognostic genetic features dictate MRI visibility.
- MRI visibility is a significant prognostic indicator, associated with aggressive disease characteristics.
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