Mandal Samanwita, Mitra Akash, Bose Bipasha, Shenoy P Sudheer
Stem Cells and Regenerative Medicine Centre, Yenepoya Research Centre, Yenepoya (Deemed to Be University), Mangalore, Karnataka, India.
Specialized Research Centre, Yenepoya Medical College, Yenepoya (Deemed to Be University), Mangalore, Karnataka, India.
FASEB J. 2025 Jul 15;39(13):e70790. doi: 10.1096/fj.202501184R.
The loss of muscle mass or muscle atrophy is a significant health concern associated with aging, diabetes, cardiovascular diseases, environmental toxicity, and inflammation, and it is becoming a significant issue requiring effective therapeutic strategies. Sepsis is caused by bacterial infection leading to inflammation and has a plethora of consequences, one of which is loss of muscle mass commonly observed for intensive care unit patients with a high morbidity rate. Flavonoids are well-known natural compounds for restoring muscle wasting. Our study investigates the efficacy of two flavonoids, quercetin and kaempferol, in mitigating lipopolysaccharide (LPS)-induced muscle atrophy. LPS treatment was followed by increased ROS production, upregulated inflammation (NF-Kβ, TLR4, MyD88, IL-6), and disruption of mitochondrial homeostasis in C2C12 myoblasts. The KLF15 knockdown cellular model also revealed a negligible effect of LPS in C2C12. Furthermore, the antioxidant properties of quercetin and kaempferol, individually and in combination, were evidenced to attenuate LPS-induced cellular oxidative stress and promote myogenesis by downregulating inflammatory regulators and atrophy-related genes triggered by LPS. Hence, this study illuminates the status of quercetin's and kaempferol's cytoprotective effect, individually and in combination, on muscle cells affected by sepsis-induced atrophy.
肌肉质量的丧失或肌肉萎缩是一个与衰老、糖尿病、心血管疾病、环境毒性和炎症相关的重大健康问题,并且正成为一个需要有效治疗策略的重要问题。脓毒症由细菌感染引起,会导致炎症,并有诸多后果,其中之一是重症监护病房患者中常见的肌肉质量丧失,其发病率很高。黄酮类化合物是众所周知的可恢复肌肉消耗的天然化合物。我们的研究调查了两种黄酮类化合物槲皮素和山奈酚在减轻脂多糖(LPS)诱导的肌肉萎缩方面的功效。LPS处理后,C2C12成肌细胞中ROS生成增加、炎症上调(NF-Kβ、TLR4、MyD88、IL-6)以及线粒体稳态破坏。KLF15基因敲低细胞模型也显示LPS对C2C12的影响可忽略不计。此外,槲皮素和山奈酚单独及联合使用的抗氧化特性被证明可减轻LPS诱导的细胞氧化应激,并通过下调LPS触发的炎症调节因子和萎缩相关基因来促进肌生成。因此,本研究阐明了槲皮素和山奈酚单独及联合使用对受脓毒症诱导萎缩影响的肌肉细胞的细胞保护作用情况。