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In vivo brain tissue analysis from the intracerebral hemorrhage model demonstrates that ALA treatment reduces iron deposition and associated neuronal damage.
Figure 8
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Neuroprotective Role of α-Lipoic Acid in Iron-Overload-Mediated Toxicity and Inflammation in In Vitro and In Vivo Models.Cite This Figure
![Figure 8: In vivo brain tissue analysis from the intracerebral hemorrhage model demonstrates that ALA treatment reduces iron deposition and associated neuronal damage.]() > Source: Giuseppe Carota et al. "Neuroprotective Role of α-Lipoic Acid in Iron-Overload-Mediated Toxicity and Inf." *Antioxidants (Basel, Switzerland)*, 2022. PMID: [36009316](https://pubmed.ncbi.nlm.nih.gov/36009316/)
<figure> <img src="" alt="In vivo brain tissue analysis from the intracerebral hemorrhage model demonstrates that ALA treatment reduces iron deposition and associated neuronal damage." /> <figcaption>Figure 8. In vivo brain tissue analysis from the intracerebral hemorrhage model demonstrates that ALA treatment reduces iron deposition and associated neuronal damage.<br> Source: Giuseppe Carota et al. "Neuroprotective Role of α-Lipoic Acid in Iron-Overload-Mediated Toxicity and Inf." <em>Antioxidants (Basel, Switzerland)</em>, 2022. PMID: <a href="https://pubmed.ncbi.nlm.nih.gov/36009316/">36009316</a></figcaption> </figure>