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[Targeting chimera technology: A new tool for undruggable in breast cancer]
Zhongwu Chen1, Sandi Shen2, Xiaoyu Song3
1Department of Breast Surgery, Affiliated Qingyuan Hospital (Qingyuan People's Hospital), Guangzhou Medical University, Qingyuan 511500. chenzhongwu12@163.com.
Abstract:
Breast cancer is one of the most common and fatal malignancies among women worldwide, and its treatment efficacy is often limited by drug resistance and the presence of undruggable targets. Traditional small-molecule drugs have difficulty effectively modulating certain critical targets such as transcription factors and non-coding RNAs, necessitating new therapeutic strategies. Proteolysis-targeting chimeras (PROTACs) function by recruiting pathogenic proteins to the cellular ubiquitin-proteasome system, thereby inducing their specific degradation. In contrast, ribonuclease-targeting chimeras (RIBOTACs) utilize small-molecule ligands but bind to RNA and direct endogenous RNases to selectively degrade pathogenic RNA molecules. By employing a "degradation rather than inhibition" mechanism, targeting chimera technology broadens the druggable landscape and offers a novel precision therapeutic strategy for breast cancer, particularly for refractory and drug-resistant cases. This approach not only overcomes the limitations of traditional drugs, such as the absence of suitable binding sites or poor selectivity, but also reduces required dosages and potential adverse effects. Recent studies have preliminarily demonstrated the therapeutic potential of PROTACs and RIBOTACs in breast cancer, encompassing target design, mechanistic investigation, and preclinical as well as early clinical applications. Research into these technologies reveals their ability to tackle previously undruggable targets, thereby providing theoretical support for the development of safer and more effective precision therapies for breast cancer. In the future, with advances in drug delivery systems and clinical trials, PROTACs and RIBOTACs are expected to be used synergistically with immunotherapy and chemotherapy, offering breast cancer patients more promising comprehensive treatment options and potentially driving oncology toward broader intervention of undruggable targets.
Insights
New chimera technologies, proteolysis-targeting chimeras (PROTACs) and ribonuclease-targeting chimeras (RIBOTACs), offer novel precision therapies for breast cancer by degrading target proteins and RNA, overcoming drug resistance and targeting previously undruggable molecules.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Breast cancer treatment faces challenges from drug resistance and undruggable targets like transcription factors and non-coding RNAs.
- Traditional small-molecule drugs have limitations in effectively modulating these critical targets.
Purpose of the Study:
- To explore the potential of chimera technologies, specifically proteolysis-targeting chimeras (PROTACs) and ribonuclease-targeting chimeras (RIBOTACs), as novel therapeutic strategies for breast cancer.
- To address limitations of traditional therapies by targeting previously undruggable molecules and overcoming drug resistance.
Main Methods:
- Utilizing PROTACs to recruit pathogenic proteins to the ubiquitin-proteasome system for degradation.
- Employing RIBOTACs to direct endogenous RNases to selectively degrade pathogenic RNA molecules.
- Investigating the mechanism of action and therapeutic potential through preclinical and early clinical studies.
Main Results:
- Chimera technologies demonstrate a "degradation rather than inhibition" mechanism, broadening the druggable landscape for breast cancer.
- These approaches show potential in overcoming limitations of traditional drugs, including poor selectivity and the absence of suitable binding sites.
- Preliminary studies indicate therapeutic promise for PROTACs and RIBOTACs in breast cancer, including tackling undruggable targets.
Conclusions:
- PROTACs and RIBOTACs represent a promising precision therapeutic strategy for breast cancer, especially for refractory and drug-resistant cases.
- These technologies offer the potential for reduced dosages and fewer adverse effects compared to traditional treatments.
- Future integration with immunotherapy and chemotherapy may provide more comprehensive treatment options for breast cancer patients.
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