Electrophysiological analysis of healthy and dystrophic 3D bioengineered skeletal muscle tissues

Author:

Nguyen Christine T,Ebrahmi Majid,Gilbert Penney MORCID,Stewart Bryan AORCID

Abstract

AbstractRecently, methods for creating three-dimensional (3D) human skeletal muscle tissues from myogenic cell lines have been reported. Bioengineered muscle tissues are contractile and respond to electrical and chemical stimulation. In this study we provide an electrophysiological analysis of healthy and dystrophic 3D bioengineered skeletal muscle tissues. We focus on Duchenne muscular dystrophy (DMD), a fatal muscle disorder involving the skeletal muscle system. The dystrophin gene, which when mutated causes DMD, encodes for the Dystrophin protein, which anchors the cytoskeletal network inside of a muscle cell to the extracellular matrix outside the cell. Here, we enlist a 3D in vitro model of DMD muscle tissue, to evaluate an understudied aspect of DMD, muscle cell electrical properties uncoupled from presynaptic neural inputs. Our data shows that electrophysiological aspects of DMD are replicated in the 3D bioengineered skeletal muscle tissue model. Furthermore, we test a block co-polymer, poloxamer 188, and demonstrate capacity for improving the membrane potential in DMD muscle.Therefore, this study serves as the baseline for a new in vitro method to examine potential therapies directed at muscular disorders.

Publisher

Cold Spring Harbor Laboratory

Reference65 articles.

1. Amoasii, L. , Hildyard, J. C. W. , Li, H. , Sanchez-Ortiz, E. , Mireault, A. , Caballero, D. , … Olson, E. N. (2018). Gene editing restores dystrophin expression in a canine model of Duchenne muscular dystrophy. Science.

2. Andrews, N. W. , & Corrotte, M. (2018). Plasma membrane repair. Current Biology, 28(8).

3. Bakooshli, M. A. , Lippmann, E. S. , Mulcahy, B. , Iyer, N. , Nguyen, C. T. , Tung, K. , … Gilbert, P. M. (2019). Author response: A 3D culture model of innervated human skeletal muscle enables studies of the adult neuromuscular junction.

4. Defective membrane repair in dysferlin-deficient muscular dystrophy

5. Bengtsson, N. E. , Hall, J. K. , Odom, G. L. , Phelps, M. P. , Andrus, C. R. , Hawkins, R. D. , … Chamberlain, J. S. (2017). Muscle-specific CRISPR/Cas9 dystrophin gene editing ameliorates pathophysiology in a mouse model for Duchenne muscular dystrophy. Nature Communications, 8(1).

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