Author/Editor     Fornetti, Ersilia; Testa, Stefano; De Paolis, Francesca; Fuoco, Claudia; Bernardini, Sergio; Pozo Devoto, Victorio Martin; Stokin, Gorazd Bernard; Giannitelli, Sara Maria; Rainer, Alberto; Bigot, Anne
Title     Dystrophic muscle affects motoneuron axon outgrowth and NMJ assembly
Type     članek
Publication year     2022
Volume     str. str.
ISSN     2365-709X
Language     eng
Abstract     The Neuromuscular Junction (NMJ) is a chemical synapse localized between the terminal branches of the spinal motor neurons and myofibers. In the past two decades coculture systems to generate the NMJ in culture are developed to address concerns about animal models, despite the complexity of its highly spe-cialized structure makes the in vitro modeling a challenging task. Microfluidics, unlike mass cocultures, allow spatial and temporal control over different microenvironment by manipulating either neural cells or muscle cell populations independently. Therefore, exploiting an organ-on-a-chip approach, the aim is to obtain a reliable and predictive in vitro human model of NMJ in physiological and pathological conditions, to investigate the occurrence of synapse detri-ment in α-sarcoglycanopathy, a subtype of limb-girdle muscular dystrophy. For this purpose, motor neurons derived from human induced pluripotent stem cells (hiPSCs) and either healthy or α-sarcoglycan mutant human myogenic progenitors are seeded in two separated chambers of a microfluidic device. Differentiated myotubes and hiPSCs-derived motor neurons on-chip are able to establish points of interaction where pre- and postsynaptic structures colocalize. Moreover, the attraction of motor neurons axons by muscle fibers and the NMJ maturation appear to be affected by the muscular compartment, being impaired by the dystrophic cellular component.
Keywords     dystrophic muscle
motor neurons
spine
distrofična mišica
motorični nevroni
hrbtenica