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Uriarte-Arrazola, I.

Publications and source records attributed to Uriarte-Arrazola, I..

2 recordsLinked to original sources

iPSC-derived NF1-CDKN2A-PRC2 deficient neural crest cells mimic glial-to-neuro-mesenchymal transition and form MPNST-like tumors in vivo

Neurofibromatosis Type 1 (NF1) predisposes to peripheral nerve tumor development. Commonly, the progression from a benign plexiform neurofibroma (PNF) towards a deadly malignant peripheral nerve sheath tumor (MPNST) involves a poorly understood glial-to-mesenchymal transition and the sequential loss of NF1, CDKN2A, and polycomb repressive complex 2 (PRC2). Using an iPSC-derived neural crest (NC) model, we reproduced this malignant transformation through gene editing. NF1-CDKN2A double-knockout (2KO) NCs retained glial differentiation capacity and formed neurofibroma-like tumors in vivo, requiring inactivation of p14ARF and p16INK4a. Additional PRC2 loss (3KO) disrupted pluripotency and induced mesenchymal stem cell-like features in iPSCs an NCs. 3KO NCs suffered a global chromatin reprograming that silenced SOX10 preventing gliogenesis and activated neuro-mesenchymal programs. Gene signatures characterizing this glial-to-neuro-mesenchymal transition were recapitulated in human PNF-ANNUBP-MPNST tumors. 3KO NC spheres formed MPNST-like tumors in vivo upon nerve engraftment, genuinely mimicking an early-stage MPNST. We used the developed 3D NC spheroid models for the discovery of drugs targeting MPNSTs by performing a high-throughput screening of an epigenetic compound library. We found that poly(ADP-ribose) polymerase inhibitors (PARPi) exhibit selective efficacy in PRC2-deficient NC spheroids. We confirmed that Olaparib-Selumetinib combination in a MPNST PDX mouse model was well tolerated and significantly suppressed tumor growth.

cancer biology↗

Unbalancing cAMP and Ras/MAPK pathways as a therapeutic strategy for cutaneous neurofibromas

Cutaneous neurofibromas (cNFs) are benign Schwann cell (SC) tumors arising from subepidermal glia. Neurofibromatosis Type 1 (NF1) individuals may develop thousands of cNFs, greatly affecting their quality of life. cNF growth is governed by the proliferation of NF1(-/-) SCs, highly influenced by the interaction with a NF1(+/-) microenvironment, consisting of fibroblasts (FBs), immune cells, etc. To decompose crosstalk between SCs and the microenvironment we used single cultures and co-cultures of cNF-derived SCs and FBs and identified an expression signature specific to SC-FB interaction. This signature was enriched in genes involved in immune cell migration, that were functionally validated by secretion analysis of SC-FB co-cultures, suggesting a role of SC-FB crosstalk in immune cell recruitment. The signature also captured components of different developmental signaling pathways, among them, the cAMP elevator G protein-coupled receptor 68 (GPR68). Activation of Gpr68 by Ogerin reduced the viability and proliferation of cNF-derived SCs and SC-FB co-cultures. Moreover, Ogerin in combination with the MEKi Selumetinib induced loss of viability, SC differentiation, and death. These results were corroborated using an iPSC-derived 3D neurofibromasphere model. The unbalancing of the Ras and cAMP pathways by combining a MEKi and a cAMP elevator arises as a potential treatment for cNFs.

cancer biology↗