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一个根源在于联会,另一个根源在于肠道微生物群-脑轴:生酮饮食的两极足以对抗胶质母细胞瘤吗?

A Root in Synapsis and the Other One in the Gut Microbiome-Brain Axis: Are the Two Poles of Ketogenic Diet Enough to Challenge Glioblastoma?

作者信息

Montella Liliana, Sarno Federica, Altucci Lucia, Cioffi Valentina, Sigona Luigi, Di Colandrea Salvatore, De Simone Stefano, Marinelli Alfredo, Facchini Bianca Arianna, De Vita Ferdinando, Berretta Massimiliano, de Falco Raffaele, Facchini Gaetano

机构信息

Medical Oncology Complex Unit, "Santa Maria delle Grazie" Hospital, ASL Napoli 2 Nord, Naples, Italy.

Precision Medicine Department, "Luigi Vanvitelli" University of Campania, Naples, Italy.

出版信息

Front Nutr. 2021 Jul 22;8:703392. doi: 10.3389/fnut.2021.703392. eCollection 2021.

Abstract

Glioblastoma is the most frequent and aggressive brain cancer in adults. While precision medicine in oncology has produced remarkable progress in several malignancies, treatment of glioblastoma has still limited available options and a dismal prognosis. After first-line treatment with surgery followed by radiochemotherapy based on the 2005 STUPP trial, no significant therapeutic advancements have been registered. While waiting that genomic characterization moves from a prognostic/predictive value into therapeutic applications, practical and easy-to-use approaches are eagerly awaited. Medical reports on the role of the ketogenic diet in adult neurological disorders and in glioblastoma suggest that nutritional interventions may condition outcomes and be associated with standard therapies. The acceptable macronutrient distribution of daily calories in a regular diet are 45-65% of daily calories from carbohydrates, 20-35% from fats, and 10-35% from protein. Basically, the ketogenic diet follows an approach based on low carbohydrates/high fat intake. In carbohydrates starvation, body energy derives from fat storage which is used to produce ketones and act as glucose surrogates. The ketogenic diet has several effects: metabolic interference with glucose and insulin and IGF-1 pathways, influence on neurotransmission, reduction of oxidative stress and inflammation, direct effect on gene expression through epigenetic mechanisms. Apart from these central effects working at the synapsis level, recent evidence also suggests a role for microbiome and gut-brain axis induced by a ketogenic diet. This review focuses on rationales supporting the ketogenic diet and clinical studies will be reported, looking at future possible perspectives.

摘要

胶质母细胞瘤是成人中最常见且侵袭性最强的脑癌。虽然肿瘤学中的精准医学在多种恶性肿瘤的治疗上取得了显著进展,但胶质母细胞瘤的治疗选择仍然有限,预后也很糟糕。自2005年STUPP试验确定手术联合放化疗作为一线治疗方案后,在治疗方面并未取得显著进展。在等待基因组特征分析从具有预后/预测价值转变为具有治疗应用价值的同时,人们急切期待着实用且易于使用的治疗方法。有关生酮饮食在成人神经系统疾病和胶质母细胞瘤中作用的医学报告表明,营养干预可能会影响治疗结果,并与标准疗法相关联。常规饮食中每日热量的可接受宏量营养素分布为:碳水化合物提供每日热量的45 - 65%,脂肪提供20 - 35%,蛋白质提供10 - 35%。基本上,生酮饮食采用的是低碳水化合物/高脂肪摄入的方法。在碳水化合物缺乏的情况下,身体能量来源于脂肪储备,脂肪被用来产生酮并替代葡萄糖发挥作用。生酮饮食有多种作用:对葡萄糖、胰岛素和IGF - 1信号通路产生代谢干扰,影响神经传递,减轻氧化应激和炎症,通过表观遗传机制直接影响基因表达。除了这些在突触水平发挥作用的核心效应外,最近的证据还表明生酮饮食对微生物群和肠道 - 脑轴也有影响。本综述重点关注支持生酮饮食的理论依据,并将报告相关临床研究,探讨未来可能的发展前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4e4/8378133/2c1981067e1c/fnut-08-703392-g0001.jpg

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