Fasting Mimicking Diets Reverse Accelerated Biological Aging in Multiple Sclerosis.

IF 7.7 1区 医学 Q1 CLINICAL NEUROLOGY
Fatemeh Siavoshi, Matthew D Smith, Sandra Cassard, G Brett Moreau, J Nicholas Brenton, Ellen M Mowry, Kathryn C Fitzgerald, Pavan Bhargava
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引用次数: 0

Abstract

Reversing the aging process may yield significant benefits in people with multiple sclerosis (PwMS), as accelerated biological aging is observed in this population. Secondary analyses of 2 previously conducted dietary interventions including a 6-month modified ketogenic diet in 39 participants and an 8-week randomized comparison of intermittent and daily calorie restriction versus a weight-stable regimen in 36 participants demonstrated significant decreases in metabolomic age (mAge) following the ketogenic diet (p = 0.009) and intermittent calorie restriction (p = 0.04), whereas daily calorie reduction had no effect. These findings indicate that fasting-mimicking diets (FMDs) can reverse accelerated metabolomic aging in PwMS. ANN NEUROL 2025.

禁食模拟饮食逆转多发性硬化症加速的生物衰老。
逆转衰老过程可能会对多发性硬化症(PwMS)患者产生显著的益处,因为在该人群中观察到加速的生物衰老。对先前进行的2项饮食干预的二次分析,包括39名参与者的6个月改良生酮饮食和36名参与者的8周随机比较间歇性和每日卡路里限制与体重稳定方案,结果显示生酮饮食(p = 0.009)和间歇性卡路里限制(p = 0.04)后代谢组年龄(mAge)显著降低,而每日卡路里减少没有影响。这些发现表明,模拟禁食饮食(FMDs)可以逆转PwMS加速的代谢组学衰老。Ann neurol 2025。
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来源期刊
Annals of Neurology
Annals of Neurology 医学-临床神经学
CiteScore
18.00
自引率
1.80%
发文量
270
审稿时长
3-8 weeks
期刊介绍: Annals of Neurology publishes original articles with potential for high impact in understanding the pathogenesis, clinical and laboratory features, diagnosis, treatment, outcomes and science underlying diseases of the human nervous system. Articles should ideally be of broad interest to the academic neurological community rather than solely to subspecialists in a particular field. Studies involving experimental model system, including those in cell and organ cultures and animals, of direct translational relevance to the understanding of neurological disease are also encouraged.
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