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Inhibition of neuronal FLT3 receptor tyrosine kinase alleviates peripheral neuropathic pain in mice.

Nature communications (2018-03-14)
Cyril Rivat, Chamroeun Sar, Ilana Mechaly, Jean-Philippe Leyris, Lucie Diouloufet, Corinne Sonrier, Yann Philipson, Olivier Lucas, Sylvie Mallié, Antoine Jouvenel, Adrien Tassou, Henri Haton, Stéphanie Venteo, Jean-Philippe Pin, Eric Trinquet, Fabienne Charrier-Savournin, Alexandre Mezghrani, Willy Joly, Julie Mion, Martine Schmitt, Alexandre Pattyn, Frédéric Marmigère, Pierre Sokoloff, Patrick Carroll, Didier Rognan, Jean Valmier
RESUMEN

Peripheral neuropathic pain (PNP) is a debilitating and intractable chronic disease, for which sensitization of somatosensory neurons present in dorsal root ganglia that project to the dorsal spinal cord is a key physiopathological process. Here, we show that hematopoietic cells present at the nerve injury site express the cytokine FL, the ligand of fms-like tyrosine kinase 3 receptor (FLT3). FLT3 activation by intra-sciatic nerve injection of FL is sufficient to produce pain hypersensitivity, activate PNP-associated gene expression and generate short-term and long-term sensitization of sensory neurons. Nerve injury-induced PNP symptoms and associated-molecular changes were strongly altered in Flt3-deficient mice or reversed after neuronal FLT3 downregulation in wild-type mice. A first-in-class FLT3 negative allosteric modulator, discovered by structure-based in silico screening, strongly reduced nerve injury-induced sensory hypersensitivity, but had no effect on nociception in non-injured animals. Collectively, our data suggest a new and specific therapeutic approach for PNP.

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