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https://www.arca.fiocruz.br/handle/icict/44192
EFFECTS OF IGF-1 ON PROLIFERATION, ANGIOGENESIS, TUMOR STEM CELL POPULATIONS AND ACTIVATION OF AKT AND HEDGEHOG PATHWAYS IN ORAL SQUAMOUS CELL CARCINOMA
Autor(es)
Afiliação
Fundação Oswaldo Cruz. Instituto Gonçalo Moniz. Salvador, BA, Brasil / São Rafael Hospital. Center for Biotechnology and Cell Therapy. Salvador, BA,Brazil.
Fundação Oswaldo Cruz. Instituto Gonçalo Moniz. Salvador, BA, Brasil.
Fundação Oswaldo Cruz. Instituto Gonçalo Moniz. Salvador, BA, Brasil.
São Rafael Hospital. Center for Biotechnology and Cell Therapy. Salvador, BA,Brazil / D’Or Institute for Research and Education. Rio de Janeiro, RJ, Brazil.
São Rafael Hospital. Center for Biotechnology and Cell Therapy. Salvador, BA, Brazil / D’Or Institute for Research and Education. Rio de Janeiro, RJ, Brazil.
Campinas State University. Department of Oral Diagnosis, School of Dentistry. Piracicaba, SP, Brazil.
Fundação Oswaldo Cruz. Instituto Gonçalo Moniz. Salvador, BA, Brasil / São Rafael Hospital. Center for Biotechnology and Cell Therapy. Salvador, BA, Brazil / D’Or Institute for Research and Education. Rio de Janeiro, RJ, Brazil.
Fundação Oswaldo Cruz. Instituto Gonçalo Moniz. Salvador, BA, Brasil / Federal University of Bahia. Department of Pathology, School of Medicine and School of Dentistry. Salvador, BA, Brazil.
Fundação Oswaldo Cruz. Instituto Gonçalo Moniz. Salvador, BA, Brasil.
Fundação Oswaldo Cruz. Instituto Gonçalo Moniz. Salvador, BA, Brasil.
São Rafael Hospital. Center for Biotechnology and Cell Therapy. Salvador, BA,Brazil / D’Or Institute for Research and Education. Rio de Janeiro, RJ, Brazil.
São Rafael Hospital. Center for Biotechnology and Cell Therapy. Salvador, BA, Brazil / D’Or Institute for Research and Education. Rio de Janeiro, RJ, Brazil.
Campinas State University. Department of Oral Diagnosis, School of Dentistry. Piracicaba, SP, Brazil.
Fundação Oswaldo Cruz. Instituto Gonçalo Moniz. Salvador, BA, Brasil / São Rafael Hospital. Center for Biotechnology and Cell Therapy. Salvador, BA, Brazil / D’Or Institute for Research and Education. Rio de Janeiro, RJ, Brazil.
Fundação Oswaldo Cruz. Instituto Gonçalo Moniz. Salvador, BA, Brasil / Federal University of Bahia. Department of Pathology, School of Medicine and School of Dentistry. Salvador, BA, Brazil.
Resumo em Inglês
Background: Activation of the PI3K-AKT pathway controls most hallmarks of cancer,
and the hedgehog (HH) pathway has been associated with oral squamous cell carcinoma (OSCC)
development and progression. We hypothesized that fibroblast-derived insulin-like growth factor-1
(IGF-1) acts in oral squamous cell carcinoma (OSCC) cells, leading to the non-canonical activation
of the HH pathway, maintaining AKT activity and promoting tumor aggressiveness. (2) Methods:
Primary fibroblasts (MF1) were genetically engineered for IGF-1 overexpression (MF1-IGF1) and
CRISPR/Cas9-mediated IGF1R silencing was performed in SCC-4 cells. SCC-4 cells were co-cultured
with fibroblasts or incubated with fibroblast conditioned medium (CM) or rIGF-1 for functional assays
and the evaluation of AKT and HH pathways. (3) Results: Gene expression analysis confirmed IGF-1
overexpression in MF1-IGF1 and the absence of IGF-1 expression in SCC-4, while elevated IGF1R
expression was detected. IGF1R silencing was associated with decreased survival of SCC-4 cells.
Ihh was expressed in both MF1 and MF1-IGF1, and increased levels of GLI1 mRNA were observed in
SCC-4 after stimulation with CM-MF1. Activation of both PI3K-AKT and the HH pathway (GLI1,
Ihh and SMO) were identified in SCC-4 cells cultured in the presence of MF1-IGF1-CM. rIGF-1
promoted tumor cell proliferation, migration, invasion and tumorsphere formation, whereas CM-MF1
significantly stimulated angiogenesis. (4) Conclusions: IGF-1 exerts pro-tumorigenic e ects by
stimulating SCC-4 cell proliferation, migration, invasion and stemness. AKT and HH pathways were
activated by IGF-1 in SCC-4, reinforcing its influence on the regulation of these signaling pathways.
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