Description
Protein expression analysis of oxidative stress and cell signaling markers in H. pylori-infected gastric cells treated with varying concentrations of N-acetylcysteine.
Figure 9
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N-Acetylcysteine Reduces ROS-Mediated Oxidative DNA Damage and PI3K/Akt Pathway Activation Induced by Helicobacter pylori Infection.Cite This Figure
![Figure 9: Protein expression analysis of oxidative stress and cell signaling markers in H. pylori-infected gastric cells treated with varying concentrations of N-acetylcysteine.]() > Source: Chuan Xie et al. "N-Acetylcysteine Reduces ROS-Mediated Oxidative DNA Damage and PI3K/Akt Pathway ." *Oxidative medicine and cellular longevity*, 2018. PMID: [29854076](https://pubmed.ncbi.nlm.nih.gov/29854076/)
<figure> <img src="" alt="Protein expression analysis of oxidative stress and cell signaling markers in H. pylori-infected gastric cells treated with varying concentrations of N-acetylcysteine." /> <figcaption>Figure 9. Protein expression analysis of oxidative stress and cell signaling markers in H. pylori-infected gastric cells treated with varying concentrations of N-acetylcysteine.<br> Source: Chuan Xie et al. "N-Acetylcysteine Reduces ROS-Mediated Oxidative DNA Damage and PI3K/Akt Pathway ." <em>Oxidative medicine and cellular longevity</em>, 2018. PMID: <a href="https://pubmed.ncbi.nlm.nih.gov/29854076/">29854076</a></figcaption> </figure>