Kim Min Seok, Park Sunmin, Kwon Yeeun, Kim TaeHee, Lee Chan Ho, Jang HyeonDu, Kim Eun Ji, Jung Jae In, Min Sangil, Park Kwang-Hyun, Choi Sun Eun
Dr. Oregonin Inc., #802 Bodeum Hall, Kangwondaehakgil 1, Chuncheon 24341, Republic of Korea.
Department of Forest Biomaterials Engineering, Kangwon National University, Chuncheon 24341, Republic of Korea.
Curr Issues Mol Biol. 2024 Aug 1;46(8):8320-8339. doi: 10.3390/cimb46080491.
Muscle atrophy is known to be one of the symptoms leading to sarcopenia, which significantly impacts the quality of life, mortality, and morbidity. Therefore, the development of therapeutics for muscle atrophy is essential. This study focuses on addressing muscle loss and atrophy using extract and its marker compound, catechin 7-O--D-apiofuranoside, by investigating their effects on biomarkers associated with muscle cell apoptosis. Additionally, protein and gene expression in a muscle atrophy model were examined using Western blotting and RT-PCR. has been used as food or medicine due to its safety, including its roots, barks, and fruit. Catechin 7-O--D apiofuranoside is an indicator substance of plants of the genus and has been reported to have various effects such as antioxidant and anti-inflammatory effects. The experimental results demonstrated that catechin glycoside and extract decreased the expression of the muscle-degradation-related proteins Atrogin-1 and Muscle RING-Finger protein-1 (MuRF1) while increasing the expression of the muscle-synthesis-related proteins Myoblast determination (MyoD) and Myogenin. Gene expression confirmation experiments validated a decrease in the expression of Atrogin and MuRF1 mRNA and an increase in the expression of MyoD and Myogenin mRNA. Furthermore, an examination of muscle protein expression associated with the protein kinase B (Akt)/forkhead box O (FoxO) signaling pathway confirmed a decrease in the expression of FoxO, a regulator of muscle protein degradation. These results confirm the potential of extract to inhibit muscle apoptosis, prevent muscle decomposition, and promote the development of functional materials for muscle synthesis, health-functional foods, and natural-product-derived medicines.
肌肉萎缩是导致肌肉减少症的症状之一,这会显著影响生活质量、死亡率和发病率。因此,开发治疗肌肉萎缩的疗法至关重要。本研究聚焦于使用提取物及其标记化合物儿茶素7 - O - β - D - 芹菜呋喃糖苷来解决肌肉损失和萎缩问题,通过研究它们对与肌肉细胞凋亡相关生物标志物的影响。此外,还使用蛋白质印迹法和逆转录 - 聚合酶链反应检测了肌肉萎缩模型中的蛋白质和基因表达。由于其安全性,包括其根、树皮和果实,已被用作食物或药物。儿茶素7 - O - β - D - 芹菜呋喃糖苷是该属植物的指示性物质,据报道具有多种作用,如抗氧化和抗炎作用。实验结果表明,儿茶素糖苷和提取物降低了与肌肉降解相关的蛋白质萎缩基因1(Atrogin - 1)和肌肉环形指蛋白1(MuRF1)的表达,同时增加了与肌肉合成相关的蛋白质成肌细胞决定因子(MyoD)和肌细胞生成素的表达。基因表达确认实验验证了Atrogin和MuRF1 mRNA表达的降低以及MyoD和肌细胞生成素mRNA表达的增加。此外,对与蛋白激酶B(Akt)/叉头框O(FoxO)信号通路相关的肌肉蛋白质表达的检测证实了肌肉蛋白质降解调节因子FoxO表达的降低。这些结果证实了提取物在抑制肌肉凋亡、防止肌肉分解以及促进肌肉合成功能材料、健康功能食品和天然产物衍生药物开发方面的潜力。