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Aptamers: novelty tools for cancer biology
Ricardo L Pereira1, Isis C Nascimento1, Ana P Santos1
1Department of Biochemistry, Institute of Chemistry, University of São Paulo, São Paulo, SP 05508-900, Brazil.
Abstract:
Although the term 'cancer' was still over two thousand years away of being coined, the first known cases of the disease date back to about 3000BC, in ancient Egypt. Five thousand years later, still lacking a cure, it has become one of the leading causes of death, killing over half a dozen million people yearly. So far, monoclonal antibodies are the most successful immune-therapy tools when it comes to fighting cancer. The number of clinical trials that use them has been increasing steadily during the past few years, especially since the Food and Drug Administration greenlit the use of the first immune-checkpoint blockade antibodies. However, albeit successful, this approach does come with the cost of auto-inflammatory toxicity. Taking this into account, the development of new therapeutic reagents with low toxicity becomes evident, particularly ones acting in tandem with the tools currently at our disposal. Ever since its discovery in the early nineties, aptamer technology has been used for a wide range of diagnostic and therapeutic applications. With similar properties to those of monoclonal antibodies, such as high-specificity of recognition and high-affinity binding, and the advantages of being developed using in vitro selection procedures, aptamers quickly became convenient building blocks for the generation of multifunctional constructs. In this review, we discuss the steps involved in the in vitro selection process that leads to functional aptamers - known as Systematic Evolution of Ligands by Exponential Enrichment - as well as the most recent applications of this technology in diagnostic and treatment of oncological illnesses. Moreover, we also suggest ways to improve such use.
Insights
Aptamers offer a promising low-toxicity alternative to monoclonal antibodies for cancer immunotherapy. This review explores aptamer technology, including its selection process and applications in diagnosing and treating oncological illnesses.
Area of Science:
- Biotechnology
- Oncology
- Immunotherapy
Background:
- Cancer remains a leading cause of death despite advancements like monoclonal antibodies.
- Monoclonal antibodies, while effective cancer immunotherapies, can cause auto-inflammatory toxicity.
- Aptamer technology, emerging in the 1990s, presents a promising alternative with high specificity and affinity.
Purpose of the Study:
- To review the Systematic Evolution of Ligands by Exponential Enrichment (SELEX) process for aptamer generation.
- To discuss current applications of aptamers in cancer diagnostics and treatment.
- To suggest improvements for aptamer-based cancer therapies.
Main Methods:
- The review details the *in vitro* selection process (SELEX) for aptamer development.
- It analyzes the properties of aptamers, comparing them to monoclonal antibodies.
- Current literature on aptamer applications in oncology is synthesized.
Main Results:
- Aptamers exhibit high specificity and affinity, similar to monoclonal antibodies.
- Aptamers offer advantages in development and potential for lower toxicity in cancer treatment.
- The technology has diverse applications in cancer diagnostics and therapy.
Conclusions:
- Aptamers are versatile tools for developing novel cancer diagnostics and therapeutics.
- Further research can optimize aptamer use to complement existing cancer treatments.
- Aptamer technology holds significant potential for advancing oncology care with reduced side effects.
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