Ferrini, F , Lorenzo, L-E, Godin, A G , Le Quang, M , De Koninck, Y (2017)
Enhancing KCC2 function counteracts morphine-induced hyperalgesia.
https://iris.unito.it/handle/2318/1642801
Salio, Chiara, Ferrini, Francesco (2016)
BDNF and GDNF expression in discrete populations of nociceptors.
https://iris.unito.it/handle/2318/1572472
Francesco, Ferrini, Arianna, Russo, Chiara, Salio (2014)
Fos and pERK immunoreactivity in spinal cord slices: comparative analysis of in vitro models for testing putative antinociceptive molecules.
https://iris.unito.it/handle/2318/142578
Francesco Ferrini, Tuan Trang, Theresa-Alexandra M Mattioli, Sophie Laffray, Thomas Del', Guidice, Louis-Etienne Lorenzo, Annie Castonguay, Nicolas Doyon, Wenbo Zhang, Antoine G Godin, Daniela Mohr, Simon Beggs, Karen Vandal, Jean-Martin Beaulieu, Catherine M Cahill, Michael W Salter, Yves De Koninck (2013)
Morphine hyperalgesia gated through microglia-mediated disruption of neuronal Cl? homeostasis.
https://iris.unito.it/handle/2318/129219
Francesco Ferrini, Yves De Koninck (2013)
Role of spinal microglia in the development of morphine-induced hyperalgesia.
https://iris.unito.it/handle/2318/139194
La mia attività di ricerca principale riguarda lo studio morfofunzionale delle vie nocicettive spinali, in condizioni normali e patologiche, utilizzando tecniche di elettrofisiologia, imaging del calcio e analisi morofologica. In questo ambito di ricerca, mi sono particolarmente interessato allo studio dei circuiti inibitori spinali, analizzando come questi vengano modificati da:
per maggiori informazioni, visitate la mia pagina su researchgate
My main research area is basic research in nociceptive pathways by electrophysiological and morphological approaches. In this field, I grew interested in the role of spinal inhibitory circuits and their plastic changes in shaping nociceptive information under physiological and pathological settings, by analyzing the role of :
for more infromation, please visit my personal page on researchgate