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Survivin-Targeting Antisense Oligonucleotides in Cancer Therapy
Bal Hari Poudel1,2,3, Suxiang Chen1,2, Rakesh N Veedu1,2,3
1Personalised Medicine Centre, Health Futures Institute, Murdoch University, Murdoch, WA 6150, Australia.
Abstract:
Survivin (BIRC5) is a key inhibitor of apoptosis that is highly overexpressed in many cancers, where it promotes tumour cell survival, mitotic progression, and resistance to therapy. Because survivin is largely absent from normal adult tissues, it represents a selective and promising target for cancer treatment. Antisense oligonucleotides (ASOs) provide a precise approach to silence survivin by targeting its transcripts. Preclinical studies have shown that ASO-mediated reduction of survivin is associated with increased cancer cell death, inhibition of tumour growth, and enhanced sensitivity to other treatments. Early-phase clinical trials of survivin-targeting ASOs have shown evidence of target engagement but ultimately failed to demonstrate consistent clinical benefit and/or encountered dose-limiting toxicities, which hindered their further development. This review outlines survivin's central role in cancer biology, the principles of ASO therapeutics (sequence design, mechanisms of action, chemical modifications, and delivery strategies), and the progress in preclinical and clinical development of survivin-targeting ASOs, while also discussing key challenges that may contribute to their clinical limitations, including inefficient delivery, off-target effects, and systemic toxicities. Collectively, the current status of survivin-targeting ASOs underscores the need for synergistic optimization of delivery platforms and molecular chemistry to improve efficacy and safety, thereby enabling their use in personalised and combination cancer treatment approaches.
Insights
Survivin (BIRC5) is a promising cancer target, but antisense oligonucleotides (ASOs) face challenges. Optimizing delivery and chemistry is crucial for effective cancer therapy.
Area of Science:
- Oncology
- Molecular Biology
- Therapeutics
Background:
- Survivin (BIRC5) is overexpressed in cancers, promoting tumor survival and therapy resistance.
- Its absence in normal tissues makes survivin a selective cancer treatment target.
- Antisense oligonucleotides (ASOs) offer a precise method to silence survivin by targeting its mRNA.
Purpose of the Study:
- To review the role of survivin in cancer biology.
- To discuss the principles and development of survivin-targeting ASOs.
- To identify challenges and future directions for ASO therapeutics in cancer.
Main Methods:
- Review of preclinical and clinical studies on survivin-targeting ASOs.
- Analysis of ASO design, mechanisms of action, chemical modifications, and delivery strategies.
- Discussion of factors limiting clinical efficacy and safety.
Main Results:
- Preclinical studies show ASO-mediated survivin reduction inhibits tumor growth and enhances treatment sensitivity.
- Early clinical trials demonstrated target engagement but lacked consistent clinical benefit.
- Dose-limiting toxicities and inefficient delivery were identified as key limitations.
Conclusions:
- Survivin-targeting ASOs hold promise but require improved delivery systems and molecular chemistry for enhanced efficacy and safety.
- Addressing off-target effects and systemic toxicities is essential for clinical success.
- Optimized ASOs could enable personalized and combination cancer treatment strategies.
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