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prostate cancer

Reduced DAPK1 Expression Promotes Stem Cell-Like Characteristics of Prostate Cancer Cells by Activating ZEB1via Hippo/YAP Signaling Pathway

[Stem Cells and Development] Scientists reported that reduced death-associated protein kinase 1 (DAPK1) expression promoted stem cell-like characteristics of prostate cancer cells through activating zinc finger E-box binding homeobox-1 (ZEB1) via Hippo/YAP signaling pathway.

Gestalt Diagnostics and Deep Bio Announce Strategic Relationship to Deliver Image Analysis Algorithms within Gestalt’s Digital Pathology Platform

[Gestalt Diagnostics (Business Wire, Inc.)] Gestalt Diagnostics and Deep Bio announced their strategic relationship on the development of an integrated workflow for pathologists to use Artificial Intelligence algorithms directly within Gestalt's PathFlow® platform. Deep Bio's algorithm analyzes whole slide images of H&E-stained prostate core needle biopsy tissue specimens to detect and classify prostate cancer.

Autophagy-Related circRNA Evaluation Reveals hsa_circ_0001747 as a Potential Favorable Prognostic Factor for Biochemical Recurrence in Patients with Prostate Cancer

[Cell Death & Disease] The hsa_circ_0001747 signature was selected for further experimental verification in vitro and in vivo, which showed that downregulated hsa_circ_0001747 might facilitate prostate cancer via augmenting autophagy.

Cellular Senescence as a Possible Link between Prostate Diseases of the Aging Male

[Nature Reviews Urology] The theory of senescence as a mechanism for prostate disease has a number of clinical implications and could offer opportunities for targeting in the future.

Targeted Delivery of Cytotoxic Proteins to Prostate Cancer via Conjugation to Small Molecule Urea-Based PSMA Inhibitors

[Scientific Reports] The authors conjugated a Prostate-Specific Membrane Antigen (PSMA) inhibitor to the apoptosis-inducing human protease Granzyme B and the potent Pseudomonas exotoxin protein toxin fragment, PE35.

SHH-N Non-Canonically Sustains Androgen Receptor Activity in Androgen-Independent Prostate Cancer Cells

[Scientific Reports] Researchers investigated the role of Hedgehog-GLI signaling in sustaining androgen-independent growth of prostate cancer cells.

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