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支链氨基酸和二丙氨酸补充在预防骨骼肌萎缩中的作用:在下肢去负荷的小鼠模型中的临床前评估。

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

机构信息

Section of Pharmacology, Department of Pharmacy-Drug Sciences, University of Bari "Aldo Moro", Orabona 4 - Campus, 70125 Bari, Italy.

Research & Early Development, Dompé farmaceutici S.p.A., Via Campo di Pile, s.n.c., 67100 L'Aquila, Italy.

出版信息

Pharmacol Res. 2021 Sep;171:105798. doi: 10.1016/j.phrs.2021.105798. Epub 2021 Aug 2.

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.

摘要

骨骼肌萎缩是对各种病理生理刺激的反应,包括废用、衰老和神经肌肉疾病,主要是由于合成代谢/分解代谢信号的失衡。支链氨基酸(BCAAs:亮氨酸、异亮氨酸、缬氨酸)补充剂可以通过其报道的合成代谢特性有益于对抗肌肉萎缩。在这里,我们进行了一项概念验证研究,以评估 4 周 BCAAs 治疗对去负荷(HU)小鼠模型中废用性萎缩的体内/体外影响。BCAAs 被配制在饮用水中,单独或加两个当量的 L-丙氨酸(2ALA)或二肽 L-丙氨酰-L-丙氨酸(Di-ALA),以提高 BCAAs 的生物利用度。HU 小鼠的特征是体重减轻、比目鱼肌(SOL)肌肉质量和总蛋白减少、姿势肌结构和纤维大小改变、萎缩相关基因(Atrogin-1、MuRF-1、mTOR、Mstn)失调。同时,我们在 HU 小鼠模型中提供了新的可靠指标,例如受损的体内等长扭矩和体外 SOL 肌肉收缩性和弹性,以及改变的免疫反应。一项急性药代动力学研究证实,L-丙氨酸(也作为二肽)增强了 BCAAs 的血浆暴露。总体而言,对 BCAAs 作用最敏感的参数是肌肉萎缩和肌纤维横截面积、肌肉力量和对压力的顺应性、通过 mTOR 进行的蛋白质合成和先天免疫,新的 BCAAs + Di-ALA 配方是最有效的治疗方法。我们的结果支持工作假设,并强调开发创新配方以优化 BCAAs 分布的重要性。

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