Aptamers Chemistry: Chemical Modifications and Conjugation Strategies
Химия аптамеров: химические модификации и стратегии конъюгации
2019-12-18
SCID: 54.1/uaxh7u8y
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aptamer chemistrychemical modificationsconjugation strategiesnuclease resistancetargeted drug delivery
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Abstract (AI)
Soon after they were first described in 1990, aptamers were largely recognized as a new class of biological ligands that can rival antibodies in various analytical, diagnostic, and therapeutic applications. Aptamers are short single-stranded RNA or DNA oligonucleotides capable of folding into complex 3D structures, enabling them to bind to a large variety of targets ranging from small ions to an entire organism. Their high binding specificity and affinity make them comparable to antibodies, but they are superior regarding a longer shelf life, simple production and chemical modification, in addition to low toxicity and immunogenicity. In the past three decades, aptamers have been used in a plethora of therapeutics and drug delivery systems that involve innovative delivery mechanisms and carrying various types of drug cargos. However, the successful translation of aptamer research from bench to bedside has been challenged by several limitations that slow down the realization of promising aptamer applications as therapeutics at the clinical level. The main limitations include the susceptibility to degradation by nucleases, fast renal clearance, low thermal stability, and the limited functional group diversity. The solution to overcome such limitations lies in the chemistry of aptamers. The current review will focus on the recent arts of aptamer chemistry that have been evolved to refine the pharmacological properties of aptamers. Moreover, this review will analyze the advantages and disadvantages of such chemical modifications and how they impact the pharmacological properties of aptamers. Finally, this review will summarize the conjugation strategies of aptamers to nanocarriers for developing targeted drug delivery systems.
Key Findings
1
Aptamers are short RNA or DNA oligonucleotides that form complex three-dimensional structures and bind targets ranging from small ions to whole organisms.
2
Chemical modification strategies are being developed to improve aptamer pharmacological properties, although their benefits and disadvantages require evaluation.
3
Clinical translation of aptamer therapeutics is limited by nuclease degradation, rapid renal clearance, low thermal stability, and restricted functional-group diversity.
4
Compared with antibodies, aptamers offer longer shelf life, simpler production and chemical modification, and lower toxicity and immunogenicity.
5
Conjugating aptamers to nanocarriers enables targeted drug-delivery systems carrying diverse therapeutic cargos.
Research Object
aptamers and aptamer–nanocarrier conjugates used in therapeutic and targeted drug-delivery applications
Research Subject
chemical modifications and conjugation strategies for improving aptamers’ pharmacological properties and enabling targeted drug delivery
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2019-12-18
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