肌萎缩
内科学
内分泌学
促炎细胞因子
医学
兰克尔
肌发生
骨保护素
骨质疏松症
骨重建
骨量减少
心肌细胞
骨矿物
炎症
激活剂(遗传学)
受体
作者
Laura Salvadori,Martina Paiella,Beatrice Castiglioni,Maria Laura Belladonna,Tommaso Manenti,Catia Ercolani,Luca Cornioli,Nausicaa Clemente,Andrea Scircoli,Roccaldo Sardella,Leonardo Tensi,Andrea Astolfi,Maria Letizia Barreca,Sara Chiappalupi,Giulia Gentili,Michela Bosetti,Guglielmo Sorci,Nicoletta Filigheddu,Francesca Riuzzi
标识
DOI:10.1016/j.biopha.2024.116517
摘要
Age-associated osteosarcopenia is an unresolved syndrome characterized by the concomitant loss of bone (osteopenia) and skeletal muscle (sarcopenia) tissues increasing falls, immobility, morbidity, and mortality. Unbalanced resorption of bone in the remodeling process and excessive protein breakdown, especially fast type II myosin heavy chain (MyHC-II) isoform and myofiber metabolic shift, are the leading causes of bone and muscle deterioration in the elderly, respectively. Equisetum arvense (EQ) is a plant traditionally recommended for many pathological conditions due to its anti-inflammatory properties. Thus, considering that a chronic low-grade inflammatory state predisposes to both osteoporosis and sarcopenia, we tested a standardized hydroalcoholic extract of EQ in in vitro models of muscle atrophy [C2C12 myotubes treated with proinflammatory cytokines (TNFα/IFNγ), excess glucocorticoids (dexamethasone), or the osteokine, receptor activator of nuclear factor kappa-B ligand (RANKL)] and osteoclastogenesis (RAW 264.7 cells treated with RANKL). We found that EQ counteracted myotube atrophy, blunting the activity of several pathways depending on the applied stimulus, and reduced osteoclast formation and activity. By in silico target fishing, IKKB-dependent nuclear factor kappa-B (NF-κB) inhibition emerges as a potential common mechanism underlying EQ′s anti-atrophic effects. Consumption of EQ (500 mg/kg/day) by pre-geriatric C57BL/6 mice for 3 months translated into: i) maintenance of muscle mass and performance; ii) restrained myofiber oxidative shift; iii) slowed down age-related modifications in osteoporotic bone, significantly preserving trabecular connectivity density; iv) reduced muscle- and spleen-related inflammation. EQ can preserve muscle functionality and bone remodeling during aging, potentially valuable as a natural treatment for osteosarcopenia.
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