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Cholesterol metabolism pathways potentially influenced by Bifidobacteria are illustrated. Bile salt hydrolase activity and direct cholesterol assimilation represent key mechanisms for hypercholesterolemia management.

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![Figure 3: Cholesterol metabolism pathways potentially influenced by Bifidobacteria are illustrated. Bile salt hydrolase activity and direct cholesterol assimilation represent key mechanisms for hypercholesterolemia management.]()

> Source: Luisa Marras et al. "The Role of Bifidobacteria in Predictive and Preventive Medicine: A Focus on Ecz." *Microorganisms*, 2021. PMID: [33919907](https://pubmed.ncbi.nlm.nih.gov/33919907/)
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  <img src="" alt="Cholesterol metabolism pathways potentially influenced by Bifidobacteria are illustrated. Bile salt hydrolase activity and direct cholesterol assimilation represent key mechanisms for hypercholesterolemia management." />
  <figcaption>Figure 3. Cholesterol metabolism pathways potentially influenced by Bifidobacteria are illustrated. Bile salt hydrolase activity and direct cholesterol assimilation represent key mechanisms for hypercholesterolemia management.<br>  Source: Luisa Marras et al. "The Role of Bifidobacteria in Predictive and Preventive Medicine: A Focus on Ecz." <em>Microorganisms</em>, 2021. PMID: <a href="https://pubmed.ncbi.nlm.nih.gov/33919907/">33919907</a></figcaption>
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