Related Experiment Video
Updated: Mar 21, 2026

Utilizing 18F-FDG PET/CT Imaging and Quantitative Histology to Measure Dynamic Changes in the Glucose Metabolism in Mouse Models of Lung Cancer
Published on: July 21, 2018
Anti-Tumor Effects of Ketogenic Diets in Mice: A Meta-Analysis
Rainer J Klement1, Colin E Champ2, Christoph Otto3
1Department of Radiotherapy and Radiation Oncology, Leopoldina Hospital Schweinfurt, Schweinfurt, Germany.
Background:
Currently ketogenic diets (KDs) are hyped as an anti-tumor intervention aimed at exploiting the metabolic abnormalities of cancer cells. However, while data in humans is sparse, translation of murine tumor models to the clinic is further hampered by small sample sizes, heterogeneous settings and mixed results concerning tumor growth retardation. The aim was therefore to synthesize the evidence for a growth inhibiting effect of KDs when used as a monotherapy in mice.
Methods:
We conducted a Bayesian random effects meta-analysis on all studies assessing the survival (defined as the time to reach a pre-defined endpoint such as tumor volume) of mice on an unrestricted KD compared to a high carbohydrate standard diet (SD). For 12 studies meeting the inclusion criteria either a mean survival time ratio (MR) or hazard ratio (HR) between the KD and SD groups could be obtained. The posterior estimates for the MR and HR averaged over four priors on the between-study heterogeneity τ2 were MR = 0.85 (95% highest posterior density interval (HPDI) = [0.73, 0.97]) and HR = 0.55 (95% HPDI = [0.26, 0.87]), indicating a significant overall benefit of the KD in terms of prolonged mean survival times and reduced hazard rate. All studies that used a brain tumor model also chose a late starting point for the KD (at least one day after tumor initiation) which accounted for 26% of the heterogeneity. In this subgroup the KD was less effective (MR = 0.89, 95% HPDI = [0.76, 1.04]).
Conclusions:
There was an overall tumor growth delaying effect of unrestricted KDs in mice. Future experiments should aim at differentiating the effects of KD timing versus tumor location, since external evidence is currently consistent with an influence of both of these factors.
Insights
Ketogenic diets (KDs) show a tumor growth delaying effect in mice. Further research is needed to understand the impact of diet timing and tumor location on KD efficacy.
Area of Science:
- Oncology
- Metabolic Research
- Nutritional Science
Background:
- Ketogenic diets (KDs) are explored as an anti-tumor strategy targeting cancer cell metabolism.
- Human data is limited, and findings from murine models are inconsistent, necessitating further investigation.
Purpose of the Study:
- To synthesize evidence on the tumor growth inhibiting effects of ketogenic diets (KDs) as a monotherapy in mice.
- To evaluate the efficacy of KDs in preclinical cancer models.
Main Methods:
- A Bayesian random effects meta-analysis was performed on 12 studies comparing KDs to standard diets (SD) in mice.
- Survival outcomes, including mean survival time ratio (MR) and hazard ratio (HR), were analyzed.
Main Results:
- An overall tumor growth delaying effect was observed with unrestricted KDs (MR = 0.85, HR = 0.55).
- KDs significantly prolonged mean survival times and reduced hazard rates in mice.
- When initiated late in brain tumor models, KD efficacy was reduced (MR = 0.89).
Conclusions:
- Unrestricted ketogenic diets demonstrate an overall tumor growth delaying effect in mouse models.
- Future research should differentiate the impact of KD initiation timing and tumor location on therapeutic outcomes.
Related Concept Videos
Mouse Models of Cancer Study
The development of transgenic, knockout, and knock-in mice has led to an exponential increase in their use as model organisms in research,...
Mouse Models of Cancer Study

