Beschreibung
Probiotic strain-specific effects on atherosclerosis biomarkers in animal studies, distinguishing between Lactobacillus, Bifidobacterium, and multi-strain formulations. The data from this meta-analysis of animal studies support a role for microbiome modulation in cardiovascular protection.
Figure 9
DiagramSource Paper
Effects of Berries, Phytochemicals, and Probiotics on Atherosclerosis through Gut Microbiota Modification: A Meta-Analysis of Animal Studies.Cite This Figure
![Figure 9: Probiotic strain-specific effects on atherosclerosis biomarkers in animal studies, distinguishing between Lactobacillus, Bifidobacterium, and multi-strain formulations. The data from this meta-analysis of animal studies support a role for microbiome modulation in cardiovascular protection.]() > Source: Leila Khalili et al. "Effects of Berries, Phytochemicals, and Probiotics on Atherosclerosis through Gu." *International journal of molecular sciences*, 2023. PMID: [36834497](https://pubmed.ncbi.nlm.nih.gov/36834497/)
<figure> <img src="" alt="Probiotic strain-specific effects on atherosclerosis biomarkers in animal studies, distinguishing between Lactobacillus, Bifidobacterium, and multi-strain formulations. The data from this meta-analysis of animal studies support a role for microbiome modulation in cardiovascular protection." /> <figcaption>Figure 9. Probiotic strain-specific effects on atherosclerosis biomarkers in animal studies, distinguishing between Lactobacillus, Bifidobacterium, and multi-strain formulations. The data from this meta-analysis of animal studies support a role for microbiome modulation in cardiovascular protection.<br> Source: Leila Khalili et al. "Effects of Berries, Phytochemicals, and Probiotics on Atherosclerosis through Gu." <em>International journal of molecular sciences</em>, 2023. PMID: <a href="https://pubmed.ncbi.nlm.nih.gov/36834497/">36834497</a></figcaption> </figure>