Abstract

Skeletal muscle tissue is characterized by high metabolic requirements, defined structure and high regenerative potential. As such, it constitutes an appealing platform for tissue engineering to address volumetric defects, as proven by recent works in this field. Several issues common to all engineered constructs constrain the variety of tissues that can be realized in vitro, principal among them the lack of a vascular system and the absence of reliable cell sources; as it is, the only successful tissue engineering constructs are not characterized by active function, present limited cellular survival at implantation and possess low metabolic requirements. Recently, functionally competent constructs have been engineered, with vascular structures supporting their metabolic requirements. In addition to the use of biochemical cues, physical means, mechanical stimulation and the application of electric tension have proven effective in stimulating the differentiation of cells and the maturation of the constructs; while the use of co-cultures provided fine control of cellular developments through paracrine activity. This review will provide a brief analysis of some of the most promising improvements in the field, with particular attention to the techniques that could prove easily transferable to other branches of tissue engineering.

Highlights

  • Giorgio Cittadella Vigodarzere and Sara Mantero *Skeletal muscle tissue is characterized by high metabolic requirements, defined structure and high regenerative potential

  • Skeletal muscle tissue represents the most abundant tissue type in the human body, amounting to 60% of the average weight

  • It is necessary to mention that lesions occurring in craniofacial skeletal muscles (Garland and Pomerantz, 2012) must be set apart from the previous generalizations, as these tissues present a different cellular milieu compared to the muscles of the limbs and trunk (Kelly, 2010; Lemos et al, 2012); as such, it could be argued that different models should be produced to study these pathologies, though discipline may still prove of use for www.frontiersin.org

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Summary

Giorgio Cittadella Vigodarzere and Sara Mantero *

Skeletal muscle tissue is characterized by high metabolic requirements, defined structure and high regenerative potential. As such, it constitutes an appealing platform for tissue engineering to address volumetric defects, as proven by recent works in this field. Several issues common to all engineered constructs constrain the variety of tissues that can be realized in vitro, principal among them the lack of a vascular system and the absence of reliable cell sources; as it is, the only successful tissue engineering constructs are not characterized by active function, present limited cellular survival at implantation and possess low metabolic requirements. Functionally competent constructs have been engineered, with vascular structures supporting their metabolic requirements.

INTRODUCTION
Cittadella Vigodarzere and Mantero
SKELETAL MUSCLE REPAIR PROCESS
In vitro model In vitro model In vitro model
Clinical case
CURRENT APPROACHES
Findings
CONCLUSIONS
Full Text
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