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Placental mesenchymal stem cells: A promising platform for advancing gene therapy in pancreatic ductal adenocarcinoma

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BUOCIKOVA Verona ALTANEROVA Ursula SOLTYSOVA Andrea ANDREZAL Michal VANOVA Dajana JAKUBECHOVA Jana CIHOVA Marina BURIKOVA Monika URBANOVA Maria JUHASIKOVA Lucia DRNDAKOVA Laura KAJABOVA Viera Horvathova DEMKOVA Lucia KOZOVSKA Zuzana SPANIK Benjamin MEGO Michal TOMAS Miroslav DUBOVAN Peter KOLNIKOVA Georgina NOVOTOVA Marta FIALA Radovan ZDRÁHAL Zbyněk PUSTKA Václav POTĚŠIL David SMOLKOVÁ Božena ALTANERA Cestmir

Rok publikování 2025
Druh Recenzovaný odborný článek
Časopis / Zdroj Biomedicine & Pharmacotherapy
Fakulta / Pracoviště MU

Středoevropský technologický institut

Citace
www https://www.sciencedirect.com/science/article/pii/S0753332225006225?getft_integrator=scopus&pes=vor&utm_source=scopus
Doi https://doi.org/10.1016/j.biopha.2025.118428
Klíčová slova Conditioned medium; Extracellular vesicle; Gene-directed enzyme prodrug therapy; Mesenchymal stem cell; Pancreatic ductal adenocarcinoma
Popis The extreme lethality and limited treatment options for pancreatic ductal adenocarcinoma (PDAC) underscore the urgent need for innovative therapeutic strategies. This study presents the first preclinical investigation of a cell-free gene-directed enzyme prodrug therapy (GDEPT) based on conditioned medium (CM) from placenta-derived mesenchymal stem cells (PlacMSCs) engineered to express the yeast cytosine deaminase::uracil phosphoribosyltransferase (yCD::UPRT) fusion enzyme. The CM was concentrated tenfold (cCM) and characterized by proteomics, transmission electron microscopy, and Western blotting, confirming extracellular vesicle (EV) enrichment and UPRT expression. Therapeutic efficacy was evaluated in coculture models comprising PDAC cell lines (BxPC-3, MIA PaCa-2, SU.86.86), patient-derived xenograft organoids (PDXOs), and cancer-associated fibroblasts (PCAFs). Immunocytochemistry and Western blot analyses revealed a predominant myofibroblastic CAF phenotype, characterized by strong alpha-smooth muscle actin (?SMA) expression and low interleukin-6 levels. Treatment with yCD::UPRT-PlacMSC-cCM in the presence of 5-fluorocytosine (5-FC) enabled efficient enzymatic conversion to 5-fluorouracil (5-FU), yielding 10 µg/mL from an initial 100 µg/mL of 5-FC. This resulted in robust, dose-dependent cytotoxicity (50 % to 80 % reduction in viability) across monocultures and stromal-rich cocultures, effectively overcoming PCAF-mediated drug resistance. Therapeutic response was governed primarily by tumor cell characteristics rather than PCAF heterogeneity. In PDXOs derived from two early-stage (IA, IIB) primary tumors and one metastatic lesion, 100 µL of yCD::UPRT-PlacMSC-cCM induced cytotoxicity comparable to 1 µg/mL of 5-FU, while 25 µL was insufficient to significantly reduce viability. Collectively, these findings demonstrate that yCD::UPRT-PlacMSC-cCM delivers potent, stromal-bypassing cytotoxicity in PDAC models and represents a promising cell-free therapeutic approach for this treatment-refractory cancer.
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