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Aptamer-Based Targeting of Cancer: A Powerful Tool for Diagnostic and Therapeutic Aims
Arash Mohammadinejad1,2, Laura Elena Gaman3, Ghazaleh Aleyaghoob4,5
1Department of Fundamental, Prophylactic and Clinical Disciplines, Faculty of Medicine, Transilvania University of Brasov, 500019 Brașov, Romania.
Abstract:
Cancer is known as one of the most significant causes of death worldwide, and, in spite of novel therapeutic methods, continues to cause a considerable number of deaths. Targeted molecular diagnosis and therapy using aptamers with high affinity have become popular techniques for pathological angiogenesis and cancer therapy scientists. In this paper, several aptamer-based diagnostic and therapeutic techniques such as aptamer-nanomaterial conjugation, aptamer-drug conjugation (physically or covalently), and biosensors, which have been successfully designed for biomarkers, were critically reviewed. The results demonstrated that aptamers can potentially be incorporated with targeted delivery systems and biosensors for the detection of biomarkers expressed by cancer cells. Aptamer-based therapeutic and diagnostic methods, representing the main field of medical sciences, possess high potential for use in cancer therapy, pathological angiogenesis, and improvement of community health. The clinical use of aptamers is limited due to target impurities, inaccuracy in the systematic evolution of ligands via exponential enrichment (SELEX)stage process, and in vitro synthesis, making them unreliable and leading to lower selectivity for in vivo targets. Moreover, size, behavior, probable toxicity, low distribution, and the unpredictable behavior of nanomaterials in in vivo media make their usage in clinical assays critical. This review is helpful for the implementation of aptamer-based therapies which are effective and applicable for clinical use and the design of future studies.
Insights
Aptamers show promise for cancer diagnosis and therapy by targeting cancer biomarkers. However, challenges in aptamer selection and nanomaterial use limit their clinical application.
Area of Science:
- Biotechnology
- Nanotechnology
- Oncology
Background:
- Cancer remains a leading global cause of death despite advancements in treatment.
- Aptamers offer high-affinity targeting for molecular diagnosis and therapy in oncology.
- Pathological angiogenesis is a key area where aptamer technology is being explored.
Purpose of the Study:
- To critically review aptamer-based diagnostic and therapeutic techniques for cancer.
- To assess the potential of aptamers in targeted delivery systems and biosensors for cancer detection.
- To identify limitations and challenges hindering the clinical application of aptamers.
Main Methods:
- Review of aptamer-nanomaterial conjugation techniques.
- Analysis of aptamer-drug conjugation strategies (physical and covalent).
- Evaluation of aptamer-based biosensors for biomarker detection.
Main Results:
- Aptamers can be integrated with targeted delivery systems and biosensors for detecting cancer biomarkers.
- Aptamer-based methods show significant potential for cancer therapy and pathological angiogenesis.
- Clinical use is limited by issues in aptamer selection (SELEX), target purity, and in vivo behavior.
Conclusions:
- Aptamer-based approaches hold great potential for cancer therapy, angiogenesis, and public health.
- Challenges related to aptamer reliability, selectivity, and nanomaterial safety need to be addressed for clinical translation.
- This review aids in developing effective aptamer therapies and guiding future research.
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