Anti-tumor effects of ketogenic diets and their synergism with other treatments in mice: Bayesian evidence synthesis of 1755 individual mouse survival data

IF 4.1 3区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Biomedical Journal Pub Date : 2024-02-01 DOI:10.1016/j.bj.2023.100609
Rainer J. Klement
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Abstract

Background

Ketogenic diets (KDs) are high-fat diets with putative anti-tumor effects. The aim of this study was to synthesize the evidence for the anti-tumor effects of KDs in mice, with a focus on their possible synergism with chemotherapy (CT), radiotherapy (RT), or targeted therapies (TT).

Methods

Relevant studies were retrieved from a literature search. A total of 43 articles reporting on 65 mouse experiments fulfilled the inclusion criteria, and 1755 individual mouse survival times were collated from the study authors or the publications. The restricted mean survival time ratio (RMSTR) between the KD and control groups served as the effect size. Bayesian evidence synthesis models were used to estimate pooled effect sizes and to assess the impact of putative confounders and synergism between KD and other therapies.

Results

Overall, there was a significant survival-prolonging effect of KD monotherapy (RMSTR = 1.161 ± 0.040), which was confirmed in meta-regression accounting for syngeneic versus xenogeneic models, early versus late KD start and subcutaneous versus other organ growth. Combining the KD with RT or TT, but not CT, was associated with a further 30% (RT) or 21% (TT) prolongation of survival. An analysis accounting for 15 individual tumor entities showed that KDs exerted significant survival-prolonging effects in pancreatic cancer (all treatment combinations), gliomas (KD + RT and KD + TT), head and neck cancer (KD + RT), and stomach cancer (KD+RT and KD + TT).

Conclusions

This analytical study confirmed the overall anti-tumor effects of KDs in a large number of mouse experiments and provides evidence for synergistic effects with RT and TT.

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小鼠生酮饮食的抗肿瘤作用及其与其他疗法的协同作用:对1755只小鼠存活数据的贝叶斯证据综述
背景生酮饮食(KDs)是一种推测具有抗肿瘤作用的高脂肪饮食。本研究旨在总结 KDs 在小鼠中的抗肿瘤作用的证据,重点关注其与化疗 (CT)、放疗 (RT) 或靶向治疗 (TT) 可能的协同作用。符合纳入标准的文章共有 43 篇,报告了 65 项小鼠实验,并从研究作者或出版物中整理出了 1755 个小鼠个体的存活时间。KD组和对照组之间的限制性平均存活时间比(RMSTR)作为效应大小。结果总体而言,KD单药治疗具有显著的延长生存期效应(RMSTR = 1.161 ± 0.040),这一点在考虑了同种异体模型、KD起始早与晚以及皮下与其他器官生长的元回归中得到了证实。将 KD 与 RT 或 TT(而非 CT)结合使用可进一步延长 30% (RT)或 21% (TT)的生存期。对 15 个肿瘤实体的分析表明,KDs 在胰腺癌(所有治疗组合)、胶质瘤(KD + RT 和 KD + TT)、头颈癌(KD + RT)和胃癌(KD+RT 和 KD + TT)中具有显著的延长生存期的作用。
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来源期刊
Biomedical Journal
Biomedical Journal Medicine-General Medicine
CiteScore
11.60
自引率
1.80%
发文量
128
审稿时长
42 days
期刊介绍: Biomedical Journal publishes 6 peer-reviewed issues per year in all fields of clinical and biomedical sciences for an internationally diverse authorship. Unlike most open access journals, which are free to readers but not authors, Biomedical Journal does not charge for subscription, submission, processing or publication of manuscripts, nor for color reproduction of photographs. Clinical studies, accounts of clinical trials, biomarker studies, and characterization of human pathogens are within the scope of the journal, as well as basic studies in model species such as Escherichia coli, Caenorhabditis elegans, Drosophila melanogaster, and Mus musculus revealing the function of molecules, cells, and tissues relevant for human health. However, articles on other species can be published if they contribute to our understanding of basic mechanisms of biology. A highly-cited international editorial board assures timely publication of manuscripts. Reviews on recent progress in biomedical sciences are commissioned by the editors.
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