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Embryonic stem cells overexpressing high molecular weight FGF2 isoform enhance recovery of pre-ganglionic spinal root lesion in combination with fibrin biopolymer mediated root repair

Embryonic stem cells overexpressing high molecular weight FGF2 isoform enhance recovery of pre-ganglionic spinal root lesion in combination with fibrin biopolymer mediated root repair

B. H. M. Lima, L. P. Cartarozzi, S. Kyrylenko, R. S. Ferreira, B. Barraviera, Alexandre L. R. Oliveira

ARTIGO

Inglês

Agradecimentos: This work was supported by the São Paulo Research Foundation—FAPESP (grant numbers 2014/06892-3 and 2018/05006-0), Coordination of Superior Level Staff Improvement (CAPES, Finance Code 001), and The National Council for Scientific and Technological Development (CNPq). The funding... Ver mais
Abstract: Spinal ventral root avulsion results in massive motoneuron degeneration with poor prognosis and high costs. In this study, we compared different isoforms of basic fibroblast growth factor 2 (FGF2), overexpressed in stably transfected Human embryonic stem cells (hESCs), following motor root... Ver mais

FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULO - FAPESP

2014/06892-3; 2018/05006-0

COORDENAÇÃO DE APERFEIÇOAMENTO DE PESSOAL DE NÍVEL SUPERIOR - CAPES

001

CONSELHO NACIONAL DE DESENVOLVIMENTO CIENTÍFICO E TECNOLÓGICO - CNPQ

Aberto

Embryonic stem cells overexpressing high molecular weight FGF2 isoform enhance recovery of pre-ganglionic spinal root lesion in combination with fibrin biopolymer mediated root repair

B. H. M. Lima, L. P. Cartarozzi, S. Kyrylenko, R. S. Ferreira, B. Barraviera, Alexandre L. R. Oliveira

										

Embryonic stem cells overexpressing high molecular weight FGF2 isoform enhance recovery of pre-ganglionic spinal root lesion in combination with fibrin biopolymer mediated root repair

B. H. M. Lima, L. P. Cartarozzi, S. Kyrylenko, R. S. Ferreira, B. Barraviera, Alexandre L. R. Oliveira

    Fontes

    Stem cell research & therapy (Fonte avulsa)