BCAAs and Di-Alanine supplementation in the prevention of skeletal muscle atrophy: preclinical evaluation in a murine model of hind limb unloading

后肢 骨骼肌 肌肉萎缩 丙氨酸 萎缩 医学 腿部肌肉 内分泌学 内科学 物理医学与康复 化学 生物化学 氨基酸
作者
Paola Mantuano,Brigida Boccanegra,Gianluca Bianchini,Elena Conte,Michela De Bellis,Francesca Sanarica,Giulia Maria Camerino,Sabata Pierno,Ornella Cappellari,Marcello Allegretti,Andrea Aramini,Annamaria De Luca
出处
期刊:Pharmacological Research [Elsevier BV]
卷期号:171: 105798-105798 被引量:29
标识
DOI:10.1016/j.phrs.2021.105798
摘要

Abstract Skeletal muscle atrophy occurs in response to various pathophysiological stimuli, including disuse, aging, and neuromuscular disorders, mainly due to an imbalance of anabolic/catabolic signaling. Branched Chain Amino Acids (BCAAs: leucine, isoleucine, valine) supplements can be beneficial for counteracting muscle atrophy, in virtue of their reported anabolic properties. Here, we carried out a proof-of-concept study to assess the in vivo/ex vivo effects of a 4-week treatment with BCAAs on disuse-induced atrophy, in a murine model of hind limb unloading (HU). BCAAs were formulated in drinking water, alone, or plus two equivalents of L -Alanine (2 ALA) or the dipeptide L -Alanyl- L -Alanine (Di-ALA), to boost BCAAs bioavailability. HU mice were characterized by reduction of body mass, decrease of soleus – SOL – muscle mass and total protein, alteration of postural muscles architecture and fiber size, dysregulation of atrophy-related genes (Atrogin-1, MuRF-1, mTOR, Mstn). In parallel, we provided new robust readouts in the HU murine model, such as impaired in vivo isometric torque and ex vivo SOL muscle contractility and elasticity, as well as altered immune response. An acute pharmacokinetic study confirmed that L -ALA, also as dipeptide, enhanced plasma exposure of BCAAs. Globally, the most sensitive parameters to BCAAs action were muscle atrophy and myofiber cross-sectional area, muscle force and compliance to stress, protein synthesis via mTOR and innate immunity, with the new BCAAs + Di-ALA formulation being the most effective treatment. Our results support the working hypothesis and highlight the importance of developing innovative formulations to optimize BCAAs biodistribution.
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