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Utilizing Functional Genomics Screening to Identify Potentially Novel Drug Targets in Cancer Cell Spheroid Cultures
Published on: December 26, 2016
Targeting proteostasis pathways for cancer therapy
Xiaofeng Dai1, Ruohan Lyu2, Guanqun Ge3
1National Local Joint Engineering Research Center for Precision Surgery & Regenerative Medicine, Shaanxi Provincial Center for Regenerative Medicine and Surgical Engineering, The First Affiliated Hospital of Xi'an Jiaotong University, Xi'an, 710061, China.
Heat shock protein 90 (HSP90) inhibition shows promise for cancer therapy by targeting proteostasis. Cold atmospheric plasma (CAP) offers a safer alternative, potentially treating cancers and autoimmune diseases linked to inflammation.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Protein homeostasis (proteostasis) is crucial for preventing cancer development.
- Heat shock protein 90 (HSP90) inhibitors are explored for cancer therapy but face toxicity issues.
- There is an urgent need for safer, effective cancer therapeutics targeting proteostasis.
Purpose of the Study:
- To explore HSP90 inhibition as a strategy to target cancer hallmarks by modulating proteostasis.
- To investigate cold atmospheric plasma (CAP) as a potential alternative to HSP90 inhibitors with reduced adverse effects.
- To extend the therapeutic potential of HSP90 inhibitors and CAP to inflammation-driven diseases.
Main Methods:
- Delineating the role of HSP90 inhibitors in cancer hallmark progression.
- Interrogating the link between proteostasis and redox homeostasis.
- Evaluating cold atmospheric plasma (CAP) as a therapeutic modality.
Main Results:
- HSP90 inhibition effectively targets multiple cancer properties by modulating cellular proteostasis.
- Cold atmospheric plasma (CAP) emerges as a promising alternative to HSP90 inhibitors with fewer side effects.
- Both HSP90 inhibitors and CAP show potential for treating autoimmune diseases linked to inflammation and failed proteostasis.
Conclusions:
- HSP90 inhibition is a viable strategy for simultaneously targeting key cancer properties through proteostasis modulation.
- Cold atmospheric plasma (CAP) presents a novel, safer therapeutic approach for cancers and inflammation-related disorders.
- The findings may reshape cancer treatment paradigms and offer new avenues for managing proteostasis and inflammation-related diseases.
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