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Identification and Engineering of Aptamers for Theranostic Application in Human Health and Disorders

期刊

出版社

MDPI
DOI: 10.3390/ijms22189661

关键词

aptamer; systematic evolution of ligands by exponential enrichment (SELEX); aptasensor; lateral flow assay (LFA); COVID-19; theranostic; single cell proteomics

资金

  1. Council of Scientific and Industrial Research, Ministry of Science and Technology, INDIA
  2. University Grants Commission, Ministry of Human Resource Development, INDIA
  3. Science and Engineering Research Board (SERB), Govt. INDIA [SRG/2019/001880]
  4. Department of Biotechnology (DBT), Government of India [BT/PR30159/MED/15/188/2018]

向作者/读者索取更多资源

Aptamers are short sequences of synthetic oligonucleotides that can bind specifically to their target with similar or higher sensitivity compared to antibodies. The in-vitro selection process, known as SELEX, involves a combination of chemistry and molecular biology. Chemical modifications are made to enhance stability in biofluids, with a focus on maintaining sensitivity and specificity. Aptamer applications have expanded beyond in-vitro systems to include molecular imaging for disease pathology and treatment.
An aptamer is a short sequence of synthetic oligonucleotides which bind to their cognate target, specifically while maintaining similar or higher sensitivity compared to an antibody. The in-vitro selection of an aptamer, applying a conjoining approach of chemistry and molecular biology, is referred as Systematic Evolution of Ligands by Exponential enrichment (SELEX). These initial products of SELEX are further modified chemically in an attempt to make them stable in biofluid, avoiding nuclease digestion and renal clearance. While the modification is incorporated, enough care should be taken to maintain its sensitivity and specificity. These modifications and several improvisations have widened the window frame of aptamer applications that are currently not only restricted to in-vitro systems, but have also been used in molecular imaging for disease pathology and treatment. In the food industry, it has been used as sensor for detection of different diseases and fungal infections. In this review, we have discussed a brief history of its journey, along with applications where its role as a therapeutic plus diagnostic (theranostic) tool has been demonstrated. We have also highlighted the potential aptamer-mediated strategies for molecular targeting of COVID-19. Finally, the review focused on its future prospective in immunotherapy, as well as in identification of novel biomarkers in stem cells and also in single cell proteomics (scProteomics) to study intra or inter-tumor heterogeneity at the protein level. Small size, chemical synthesis, low batch variation, cost effectiveness, long shelf life and low immunogenicity provide advantages to the aptamer over the antibody. These physical and chemical properties of aptamers render them as a strong biomedical tool for theranostic purposes over the existing ones. The significance of aptamers in human health was the key finding of this review.

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