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Biological protein mediated ferroptotic tumor nanotherapeutics
Jiaoyang Tao1, Chaoqun Li2, Yongquan Zheng2
1Department of Pharmacy, the Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou 310009, China.
Abstract:
Ferroptosis, a cell death pathway involving iron-related generation of lipid hydroperoxides for achieving incredible tumor suppression, has reignited the hope of chemotherapy in tumor treatment in the past decade. With extensive research studies, various bioactive proteins and cellular pathways have been demonstrated to regulate the occurrence and development of ferroptosis. The gradually established ferroptotic regulatory network is conducive to find effective proteins from a holistic perspective and guides better designs for future ferroptotic tumor therapies. The first section of this review summarizes the recent advances in ferroptotic regulatory mechanisms of proteins and attempts to clarify their latent function in the ferroptotic regulatory network. Second, the existing protein-mediated ferroptotic tumor nanotherapeutic strategies were reviewed, including the protein-mediated iron supplement, cell membrane transporter inhibition, glutathione peroxidase 4 interference, glutathione depletion, bioenzyme-mediated reactive oxygen species generation, heat shock protein inhibition, and tumor-overexpressed protein-triggered drug release for ferroptotic therapy. Finally, the future expectations and challenges of ferroptotic tumor nanotherapeutics for clinical cancer therapy are highlighted.
Insights
Ferroptosis, an iron-dependent cell death pathway, shows promise for cancer therapy. This review explores proteins regulating ferroptosis and protein-based nanotherapeutics for improved tumor suppression.
Area of Science:
- Biochemistry
- Molecular Biology
- Nanomedicine
Background:
- Ferroptosis is an iron-dependent cell death pathway crucial for tumor suppression.
- Numerous bioactive proteins and cellular pathways regulate ferroptosis.
- Understanding the ferroptotic network is key for developing novel cancer therapies.
Purpose of the Study:
- To review recent advances in protein-mediated ferroptosis regulation.
- To summarize protein-based nanotherapeutic strategies for ferroptosis induction.
- To highlight future challenges and opportunities in ferroptotic cancer therapy.
Main Methods:
- Literature review of ferroptosis regulatory mechanisms.
- Analysis of protein-mediated nanotherapeutic approaches.
- Discussion of clinical translation challenges.
Main Results:
- Identified key proteins and pathways regulating ferroptosis.
- Cataloged various protein-mediated nanotherapeutics for ferroptosis induction (e.g., iron supplementation, enzyme interference, drug release).
- Highlighted the potential of these strategies in tumor suppression.
Conclusions:
- Protein-mediated ferroptosis offers a promising avenue for cancer treatment.
- Nanotherapeutic strategies targeting ferroptosis are advancing rapidly.
- Further research is needed to overcome challenges for clinical application.
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