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PAX7, a Key for Myogenesis Modulation in Muscular Dystrophies through Multiple Signaling Pathways: A Systematic
Nor Idayu A Rahman1, Chung Liang Lam1, Nadiah Sulaiman1
1Centre for Tissue Engineering & Regenerative Medicine, Faculty of Medicine, Universiti Kebangsaan Malaysia Medical Centre, Jalan Yaacob Latif, Cheras, Kuala Lumpur 56000, Malaysia.
Abstract:
Muscular dystrophy is a heterogenous group of hereditary muscle disorders caused by mutations in the genes responsible for muscle development, and is generally defined by a disastrous progression of muscle wasting and massive loss in muscle regeneration. Pax7 is closely associated with myogenesis, which is governed by various signaling pathways throughout a lifetime and is frequently used as an indicator in muscle research. In this review, an extensive literature search adhering to the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines was performed to identify research that examined signaling pathways in living models, while quantifying Pax7 expression in myogenesis. A total of 247 articles were retrieved from the Web of Science (WoS), PubMed and Scopus databases and were thoroughly examined and evaluated, resulting in 19 articles which met the inclusion criteria. Admittedly, we were only able to discuss the quantification of Pax7 carried out in research affecting various type of genes and signaling pathways, rather than the expression of Pax7 itself, due to the massive differences in approach, factor molecules and signaling pathways analyzed across the research. However, we highlighted the thorough evidence for the alteration of the muscle stem cell precursor Pax7 in multiple signaling pathways described in different living models, with an emphasis on the novel approach that could be taken in manipulating Pax7 expression itself in dystrophic muscle, towards the discovery of an effective treatment for muscular dystrophy. Therefore, we believe that this could be applied to the potential gap in muscle research that could be filled by tuning the well-established marker expression to improve dystrophic muscle.
Insights
Pax7, a marker for muscle development, is altered in various signaling pathways in muscular dystrophy models. Manipulating Pax7 expression offers a potential therapeutic strategy for muscular dystrophy treatment.
Area of Science:
- Muscle Biology and Regenerative Medicine
- Genetics and Molecular Biology
Background:
- Muscular dystrophy encompasses hereditary muscle disorders characterized by progressive muscle wasting and impaired regeneration.
- Pax7 is a crucial marker for myogenesis (muscle formation) and is integral to muscle stem cell function.
Approach:
- A systematic literature review following PRISMA guidelines was conducted.
- Searched Web of Science, PubMed, and Scopus databases for studies on signaling pathways and Pax7 expression in myogenesis.
- 19 articles were selected from 247 retrieved for detailed analysis.
Key Points:
- Pax7 expression is altered across diverse signaling pathways in various living models of muscular dystrophy.
- While direct quantification of Pax7 expression was challenging due to study heterogeneity, its association with altered pathways was evident.
- Muscle stem cell precursor Pax7 is significantly affected in multiple signaling pathways relevant to muscular dystrophy.
Conclusions:
- Evidence supports the alteration of Pax7 in signaling pathways implicated in muscular dystrophy.
- Targeting Pax7 expression presents a novel therapeutic avenue for treating muscular dystrophy.
- Tuning Pax7 expression could fill a critical gap in muscle research and improve outcomes for muscular dystrophy patients.
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