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Gene expression analysis of senescence-associated markers in macrophages across experimental conditions. Quantitative data show that Bifidobacterium lactis BB-12 attenuates the expression of p16, p21, and other aging markers induced by D-galactose.

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![Figure 8: Gene expression analysis of senescence-associated markers in macrophages across experimental conditions. Quantitative data show that Bifidobacterium lactis BB-12 attenuates the expression of p16, p21, and other aging markers induced by D-galactose.]()

> Source: Da-Yong Zhang et al. "Bifidobacterium lactis BB-12 Attenuates Macrophage Aging Induced by D-Galactose ." *Journal of immunology research*, 2019. PMID: [31930149](https://pubmed.ncbi.nlm.nih.gov/31930149/)
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  <img src="" alt="Gene expression analysis of senescence-associated markers in macrophages across experimental conditions. Quantitative data show that Bifidobacterium lactis BB-12 attenuates the expression of p16, p21, and other aging markers induced by D-galactose." />
  <figcaption>Figure 8. Gene expression analysis of senescence-associated markers in macrophages across experimental conditions. Quantitative data show that Bifidobacterium lactis BB-12 attenuates the expression of p16, p21, and other aging markers induced by D-galactose.<br>  Source: Da-Yong Zhang et al. "Bifidobacterium lactis BB-12 Attenuates Macrophage Aging Induced by D-Galactose ." <em>Journal of immunology research</em>, 2019. PMID: <a href="https://pubmed.ncbi.nlm.nih.gov/31930149/">31930149</a></figcaption>
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