AimForce expression is characterized by an interplay of biological and molecular determinants that are expected to differentiate males and females in terms of maximal performance. These include muscle characteristics (muscle size, fiber type, contractility), neuromuscular regulation (central and peripheral factors of force expression), and individual genetic factors (miRNAs and gene/protein expression). This research aims to comprehensively assess these physiological variables and their role as determinants of maximal force difference between sexes.MethodsExperimental evaluations include neuromuscular components of isometric contraction, intrinsic muscle characteristics (proteins and fiber type), and some biomarkers associated with muscle function (circulating miRNAs and gut microbiome) in 12 young and healthy males and 12 females.ResultsMale strength superiority appears to stem primarily from muscle size while muscle fiber-type distribution plays a crucial role in contractile properties. Moderate-to-strong pooled correlations between these muscle parameters were established with specific circulating miRNAs, as well as muscle and plasma proteins.ConclusionMuscle size is crucial in explaining the differences in maximal voluntary isometric force generation between males and females with similar fiber type distribution. Potential physiological mechanisms are seen from associations between maximal force, skeletal muscle contractile properties, and biological markers.

Sex differences in neuromuscular and biological determinants of isometric maximal force / Giuriato, Gaia; Romanelli, Maria Grazia; Bartolini, Desirée; Vernillo, Gianluca; Pedrinolla, Anna; Moro, Tatiana; Franchi, Martino; Locatelli, Elena; Emadi Andani, Mehran; Giuseppe Laginestra, Fabio; Barbi, Chiara; Fiorini Aloisi, Gloria; Cavedon, Valentina; Milanese, Chiara; Orlandi, Elisa; De Simone, Tonia; Fochi, Stefania; Patuzzo, Cristina; Malerba, Giovanni; Fabene, Paolo; Donadelli, Massimo; Maria Stabile, Anna; Pistilli, Alessandra; Rende, Mario; Galli, Francesco; Schena, Federico; Venturelli, Massimo. - In: ACTA PHYSIOLOGICA. - ISSN 1748-1716. - 240:4 (e14118)(2024). [10.1111/apha.14118]

Sex differences in neuromuscular and biological determinants of isometric maximal force

Maria Grazia Romanelli;Anna Pedrinolla;Elena Locatelli;Valentina Cavedon;Federico Schena;Massimo Venturelli
2024-01-01

Abstract

AimForce expression is characterized by an interplay of biological and molecular determinants that are expected to differentiate males and females in terms of maximal performance. These include muscle characteristics (muscle size, fiber type, contractility), neuromuscular regulation (central and peripheral factors of force expression), and individual genetic factors (miRNAs and gene/protein expression). This research aims to comprehensively assess these physiological variables and their role as determinants of maximal force difference between sexes.MethodsExperimental evaluations include neuromuscular components of isometric contraction, intrinsic muscle characteristics (proteins and fiber type), and some biomarkers associated with muscle function (circulating miRNAs and gut microbiome) in 12 young and healthy males and 12 females.ResultsMale strength superiority appears to stem primarily from muscle size while muscle fiber-type distribution plays a crucial role in contractile properties. Moderate-to-strong pooled correlations between these muscle parameters were established with specific circulating miRNAs, as well as muscle and plasma proteins.ConclusionMuscle size is crucial in explaining the differences in maximal voluntary isometric force generation between males and females with similar fiber type distribution. Potential physiological mechanisms are seen from associations between maximal force, skeletal muscle contractile properties, and biological markers.
2024
4 (e14118)
Giuriato, Gaia; Romanelli, Maria Grazia; Bartolini, Desirée; Vernillo, Gianluca; Pedrinolla, Anna; Moro, Tatiana; Franchi, Martino; Locatelli, Elena; ...espandi
Sex differences in neuromuscular and biological determinants of isometric maximal force / Giuriato, Gaia; Romanelli, Maria Grazia; Bartolini, Desirée; Vernillo, Gianluca; Pedrinolla, Anna; Moro, Tatiana; Franchi, Martino; Locatelli, Elena; Emadi Andani, Mehran; Giuseppe Laginestra, Fabio; Barbi, Chiara; Fiorini Aloisi, Gloria; Cavedon, Valentina; Milanese, Chiara; Orlandi, Elisa; De Simone, Tonia; Fochi, Stefania; Patuzzo, Cristina; Malerba, Giovanni; Fabene, Paolo; Donadelli, Massimo; Maria Stabile, Anna; Pistilli, Alessandra; Rende, Mario; Galli, Francesco; Schena, Federico; Venturelli, Massimo. - In: ACTA PHYSIOLOGICA. - ISSN 1748-1716. - 240:4 (e14118)(2024). [10.1111/apha.14118]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/471032
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