Hu Fangchao, Yu Lu, Tu Xingyu, Huang Rong, Yan Xinyue, Wang Liping, Wei Yang, Wei Xinlin, Wu Ziyun
Department of Food Science and Engineering, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai, China.
Nat Commun. 2025 Jul 1;16(1):5917. doi: 10.1038/s41467-025-61046-z.
Caloric restriction (CR) delays aging-related hallmarks in various organisms by slowing growth and development while enhancing metabolic homeostasis. However, desirable diets that harness the metabolic benefits of CR without imposing food intake restrictions remain elusive. Here we evaluated the effects of a high-fiber diet we developed, in which 30% of the macronutrients in a standard diet are replaced with indigestible cellulose, compared to a CR control consisting of a nighttime-2h-restricted feeding regimen. Our findings show that the 2h-restricted feeding triggered a robust systemic response associated with the anti-aging benefits typically observed with CR. Intriguingly, the high-fiber diet did not reduce food intake but mimicked the aging-related signatures of CR in male mice from young to old age. These results indicate that the high-fiber diet confers promising benefits for metabolic homeostasis and represents a valuable candidate for further health and aging studies.
热量限制(CR)通过减缓生长和发育,同时增强代谢稳态,延缓了各种生物体中与衰老相关的特征。然而,在不限制食物摄入的情况下利用CR代谢益处的理想饮食仍然难以实现。在这里,我们评估了我们开发的一种高纤维饮食的效果,与由夜间2小时限制进食方案组成的CR对照组相比,该饮食中标准饮食中30%的宏量营养素被不可消化的纤维素所替代。我们的研究结果表明,2小时限制进食引发了一种强大的全身反应,这种反应与CR通常观察到的抗衰老益处相关。有趣的是,高纤维饮食并没有减少食物摄入量,但在从年轻到老年的雄性小鼠中模拟了CR与衰老相关的特征。这些结果表明,高纤维饮食对代谢稳态具有有前景的益处,并且是进一步健康和衰老研究的有价值候选者。