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Celma, A.

Publications and source records attributed to Celma, A..

2 recordsLinked to original sources

p21(CIP1/WAF1)-mediated partial senescence supports steroidogenesis and therapy resistance in primary prostate cancer cultures

BackgroundProgression of prostate cancer to castration-resistant disease is driven by early adaptive mechanisms that remain poorly defined. Increasing evidence suggests that senescence-associated programs and intratumoral steroidogenesis may contribute to therapeutic resistance, but their functional interplay in hormone-naive disease is unclear. MethodsHormone-naive primary prostate cancer cultures (hnPCs) were established from diagnostic biopsies and characterized for proliferation, therapeutic response, senescence markers, and steroidogenic gene expression. Functional relevance of CDKN1A was assessed by knockdown experiments. Public transcriptomic datasets from ETS fusion-negative, AR signaling inhibitor-naive metastatic castration-resistant prostate cancer (mCRPC) were interrogated for clinical validation. ResultshnPCs exhibited low proliferative capacity yet intrinsic resistance to androgen deprivation therapy and docetaxel. Most cultures displayed coordinated overexpression of CDKN1A/p21CIP1 together with steroidogenic enzymes, particularly AKR1C3, alongside p16INK4a expression and SA-{beta}-galactosidase activity, consistent with a partial senescence-like state. CDKN1A depletion selectively reduced AKR1C3 expression and increased proliferation in a subset of cultures, indicating that p21 maintains specific senescence-associated features while permitting adaptive plasticity. Analysis of ETS fusion-negative, ARSI-naive mCRPC tumors revealed positive correlations between CDKN1A and steroidogenic genes, supporting the translational relevance of this program. ConclusionsThese findings identify a previously underrecognized CDKN1A-associated partial senescence program that supports steroidogenic reprogramming, survival, and early therapeutic resistance in aggressive prostate cancer. This adaptive state may predispose tumors to progression toward castration resistance and represents a potential biomarker and therapeutic vulnerability in high-risk, ETS-negative disease.

cancer biology↗

Circulating tumor extracellular vesicles to monitor metastatic prostate cancer genomics and transcriptomic evolution

Extracellular vesicles (EVs) secreted by tumors are abundant in plasma, but their potential for interrogating the molecular features of tumors through multi-omic profiling remains widely unexplored. Genomic and transcriptomic profiling of circulating EV-DNA and EV-RNA isolated from a range of in-vitro and in-vivo models of metastatic prostate cancer (mPC) revealed a high contribution of tumor material to EV-loaded DNA/RNA. Findings were validated in a cohort of longitudinal plasma samples collected from mPC patients during androgen receptor signaling inhibitor (ARSI) therapy. EV-DNA genomic features recapitulated matched-patient biopsies and associated with clinical progression. We developed a novel approach to enable the transcriptomic profiling of EV-RNA (RExCuE). We report how the transcriptomic profile in mPC EV-RNA is enriched for tumor-associated transcripts when compared to same patient blood RNA and healthy individuals EV-RNA, and reflect early on-therapy tumor adaptation changes. Altogether, we show that EV profiling enables longitudinal transcriptomic and genomic profiling of mPC in liquid biopsy.

cancer biology↗