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Molecular dynamics simulation output (panel 2) depicting structural parameters of astaxanthin-protein complexes. These computational analyses complement the in vitro findings showing astaxanthin's minimum inhibitory concentration was lower than novobiocin against Staphylococcus aureus.

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![Figure 5: Molecular dynamics simulation output (panel 2) depicting structural parameters of astaxanthin-protein complexes. These computational analyses complement the in vitro findings showing astaxanthin's minimum inhibitory concentration was lower than novobiocin against Staphylococcus aureus.]()

> Source: Jamiu Olaseni Aribisala et al. "Astaxanthin-Mediated Bacterial Lethality: Evidence from Oxidative Stress Contrib." *Oxidative medicine and cellular longevity*, 2021. PMID: [34925700](https://pubmed.ncbi.nlm.nih.gov/34925700/)
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  <img src="" alt="Molecular dynamics simulation output (panel 2) depicting structural parameters of astaxanthin-protein complexes. These computational analyses complement the in vitro findings showing astaxanthin's minimum inhibitory concentration was lower than novobiocin against Staphylococcus aureus." />
  <figcaption>Figure 5. Molecular dynamics simulation output (panel 2) depicting structural parameters of astaxanthin-protein complexes. These computational analyses complement the in vitro findings showing astaxanthin's minimum inhibitory concentration was lower than novobiocin against Staphylococcus aureus.<br>  Source: Jamiu Olaseni Aribisala et al. "Astaxanthin-Mediated Bacterial Lethality: Evidence from Oxidative Stress Contrib." <em>Oxidative medicine and cellular longevity</em>, 2021. PMID: <a href="https://pubmed.ncbi.nlm.nih.gov/34925700/">34925700</a></figcaption>
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