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May 29, 2026International Journal of Molecular Sciences0 citationsOpen Access

Regenerative Medicine: Advanced Therapy for Muscle Tissue Restoration

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РДРоман ДеевEKEvgeniy KopylovISIurii Slepov

Key Points

  • This review aims to explore advanced therapeutic strategies for restoring skeletal muscle mass and function.
  • Systematic review of biomedical therapeutic approaches including gene therapy, microRNA, and tissue engineering.
  • Discussion of mechanisms involved in muscle regeneration, focusing on key biological components.
  • Assessment of preclinical studies and clinical trial findings related to muscle repair and functional outcomes.
  • Preclinical studies indicate that delivery of myogenic factors improves muscle repair and reduces fibrosis.
  • Clinical trials show modest gains in strength and lean mass using therapies like anti-myostatin antibodies.
  • Challenges such as immune response and reinnervation hinder the translation of therapies to clinical practice.

Abstract

Skeletal muscle loss resulting from traumatic injury, sarcopenia, and myopathies remains a major clinical challenge due to the limited regenerative capacity of adult muscle tissue. This review systematically examines advanced biomedical therapeutic approaches to restoring muscle mass and function, including gene therapy, microRNA, cell-based strategies, and tissue engineering. Key mechanisms of muscle histogenesis and regeneration are discussed, with emphasis on the roles of satellite cells, growth factors (IGF-1, VEGF), and transcriptional regulators. Preclinical studies demonstrate that viral and non-viral delivery of myogenic factors can enhance muscle repair, reduce fibrosis, and improve functional outcomes. However, translation to clinical practice is hindered by challenges such as immune responses, inadequate reinnervation, and the complexity of replicating native tissue architecture. Emerging strategies combining gene delivery with rehabilitation, immunomodulation, or exosome therapy show synergistic effects. Although clinical trials targeting sarcopenia and muscle defects using anti-myostatin antibodies, stem cell-derived products, and acellular scaffolds have reported modest gains in strength and lean mass, no definitive regenerative therapy has been approved. While significant progress has been made, achieving full structural and functional muscle regeneration will require combinatorial approaches that address vascularization, innervation, and the inflammatory microenvironment.

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Cite This Study

Деев et al. (2026) studied this question.

synapsesocial.com/papers/6a192ed7fab5b468c4418123https://doi.org/10.3390/ijms27114762
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