Department of Food and Nutrition, Pukyong National University, Busan 48513, Republic of Korea.
Research Center for Food Technology and Processing, National Research and Innovation Agency, Yogyakarta 55861, Indonesia.
Mar Drugs. 2024 Jul 23;22(8):330. doi: 10.3390/md22080330.
This study explores the anti-obesity effects of the ethyl acetate extract of (EC-ETAC) on 3T3-L1 preadipocytes, focusing on its impact on adipogenesis, lipolysis, and adipose browning via the HO-1/Nrf2 pathway. Western blot analysis revealed that EC-ETAC significantly inhibited adipogenic transcription factors (PPARγ, C/EBPα, SREBP-1) and lipogenesis-related proteins (FAS, LPL). Concurrently, EC-ETAC enhanced lipolytic markers (p-AMPK, p-HSL) and adipose browning-related proteins (UCP-1, PGC-1α), indicating its role in promoting lipolysis and adipose browning. The inhibition of HO-1 by zinc protoporphyrin (ZnPP) significantly reversed these effects, underscoring the critical role of HO-1 in mediating the anti-obesity properties of EC-ETAC. Additionally, fluorescence measurements and Oil Red O staining confirmed the reduction of lipid accumulation and oxidative stress upon EC-ETAC treatment. These findings suggest that EC-ETAC exerts its anti-obesity effects by modulating the HO-1/Nrf2 pathway, which is crucial for regulating adipogenesis, lipolysis, and adipose browning. This study highlights the potential of EC-ETAC as a natural therapeutic agent for obesity management and supports further research into its clinical applications. By targeting the HO-1/Nrf2 pathway, EC-ETAC could offer a novel approach to enhancing energy expenditure and reducing fat mass, thereby improving metabolic health.
本研究探讨了(EC-ETAC)乙酸乙酯提取物对 3T3-L1 前脂肪细胞的抗肥胖作用,重点研究其通过 HO-1/Nrf2 通路对脂肪生成、脂肪分解和脂肪棕色化的影响。Western blot 分析显示,EC-ETAC 显著抑制脂肪生成转录因子(PPARγ、C/EBPα、SREBP-1)和脂肪生成相关蛋白(FAS、LPL)。同时,EC-ETAC 增强了脂肪分解标志物(p-AMPK、p-HSL)和脂肪棕色化相关蛋白(UCP-1、PGC-1α),表明其在促进脂肪分解和脂肪棕色化方面发挥作用。HO-1 的抑制剂锌原卟啉(ZnPP)显著逆转了这些作用,突出了 HO-1 在介导 EC-ETAC 抗肥胖特性中的关键作用。此外,荧光测量和油红 O 染色证实了 EC-ETAC 处理后脂质积累和氧化应激的减少。这些发现表明,EC-ETAC 通过调节 HO-1/Nrf2 通路发挥其抗肥胖作用,该通路对于调节脂肪生成、脂肪分解和脂肪棕色化至关重要。本研究强调了 EC-ETAC 作为肥胖管理天然治疗剂的潜力,并支持进一步研究其临床应用。通过靶向 HO-1/Nrf2 通路,EC-ETAC 可能为增强能量消耗和减少脂肪量提供一种新方法,从而改善代谢健康。