Targeting neural stem cells (NSCs) in the adult brain represents a promising approach for developing new regenerative strategies, because these cells can proliferate, self-renew, and differentiate into new neurons, astrocytes, and oligodendrocytes. Previous work showed that the NFL-TBS.40-63 peptide, corresponding to the sequence of a tubulin-binding site on neurofilaments, can target glioblastoma cells, where it disrupts their microtubules and inhibits their proliferation. We show that this peptide targets NSCs in vitro and in vivo when injected into the cerebrospinal fluid. Although neurosphere formation was not altered by the peptide, the NSC self-renewal capacity and proliferation were reduced and were associated with increased adhesion...
Despite aggressive therapies, including combinations of surgery, radiotherapy and chemotherapy, glio...
Differentiation of pluripotent stem cells, PSCs, towards neural lineages has attracted significant a...
The present invention provides a new drug to treat malignant glioma, which is the most prevalent typ...
Regenerative medicine is a promising approach to treat neurodegenerative diseases by replacing degen...
The Iaboratory discovered the presence of tubulin binding sites (TBS) on intermediate filaments, lik...
Glioblastoma stem cells correspond to brain tumor-initiating cells (BTICs) that have been identified...
Les travaux menés au laboratoire ont mis en évidence des sites de liaison de la tubuline (TBS pour T...
Regenerative medicine is a promising approach to treat neurodegenerative diseases by replacing degen...
In the laboratory, investigations on neurofilament biology and on their interactions with other cyto...
Des travaux menés au laboratoire sur la biologie des neurofilaments et sur leurs interactions avec l...
The replacement of injured neurons by the selective stimulation of neural stem cells in situ represe...
in situ differentiation of endogenous neural stem cells (NSC) represents a potential therapeutic str...
We previously described a neurofilament derived cell-penetrating peptide, NFL-TBS.40-63, that specif...
Glioblastoma are the most frequent and aggressive tumour of the nervous system despite surgical rese...
The replacement of injured neurons by the selective stimulation of neural stem cells in situ represe...
Despite aggressive therapies, including combinations of surgery, radiotherapy and chemotherapy, glio...
Differentiation of pluripotent stem cells, PSCs, towards neural lineages has attracted significant a...
The present invention provides a new drug to treat malignant glioma, which is the most prevalent typ...
Regenerative medicine is a promising approach to treat neurodegenerative diseases by replacing degen...
The Iaboratory discovered the presence of tubulin binding sites (TBS) on intermediate filaments, lik...
Glioblastoma stem cells correspond to brain tumor-initiating cells (BTICs) that have been identified...
Les travaux menés au laboratoire ont mis en évidence des sites de liaison de la tubuline (TBS pour T...
Regenerative medicine is a promising approach to treat neurodegenerative diseases by replacing degen...
In the laboratory, investigations on neurofilament biology and on their interactions with other cyto...
Des travaux menés au laboratoire sur la biologie des neurofilaments et sur leurs interactions avec l...
The replacement of injured neurons by the selective stimulation of neural stem cells in situ represe...
in situ differentiation of endogenous neural stem cells (NSC) represents a potential therapeutic str...
We previously described a neurofilament derived cell-penetrating peptide, NFL-TBS.40-63, that specif...
Glioblastoma are the most frequent and aggressive tumour of the nervous system despite surgical rese...
The replacement of injured neurons by the selective stimulation of neural stem cells in situ represe...
Despite aggressive therapies, including combinations of surgery, radiotherapy and chemotherapy, glio...
Differentiation of pluripotent stem cells, PSCs, towards neural lineages has attracted significant a...
The present invention provides a new drug to treat malignant glioma, which is the most prevalent typ...