Litcius/Paper detail

Anti-glioblastoma activity of monensin and its analogs in an organoid model of cancer

Alicja Urbaniak, Megan R. Reed, Billie Heflin, John Gaydos, Sergio Piña‐Oviedo, Marta Jędrzejczyk, Greta Klejborowska, Natalia Stępczyńska, Timothy C. Chambers, Alan J. Tackett, Analiz Rodriguez, Adam Huczyński, Robert L. Eoff, Angus M. MacNicol

2022Biomedicine & Pharmacotherapy25 citationsDOIOpen Access PDF

Abstract

= 612.6 ± 184.4 nM). Five of these compounds induced substantial DNA fragmentation in GBM organoids, suggestive of apoptotic cell death. The most active analog, compound 1, significantly reduced GBM cell migration, induced PARP degradation, diminished phosphorylation of STAT3, Akt and GSK3β, increased ɣH2AX signaling and upregulated expression of the autophagy associated marker LC3-II. To investigate the activity of MON and compound 1 in a tumor microenvironment, we developed human cerebral organoids (COs) from human induced pluripotent stem cells (iPSCs). The COs showed features of early developing brain such as multiple neural rosettes with a proliferative zone of neural stem cells (Nestin+), neurons (TUJ1 +), primitive ventricular system (SOX2 +/Ki67 +), intermediate zone (TBR2 +) and cortical plate (MAP2 +). In order to generate host:tumor organoids, we co-cultured RFP-labeled U87MG cells with fully formed COs. Compound 1 and MON reduced U87MG tumor size in the COs after four days of treatment and induced a significant reduction of PARP expression. These findings highlight the therapeutic potential of MON analogs towards GBM and support the application of organoid models in anti-cancer drug discovery.

Topics & Concepts

OrganoidMonensinGlioblastomaCancerCancer researchChemistryMedicineInternal medicineBiologyNeuroscienceBiochemistryVeterinary medicine and infectious diseasesCoccidia and coccidiosis researchToxin Mechanisms and Immunotoxins