The demand has increased for sophisticated molecular tools with improved detection limits. Such molecules should be simple in structure, yet stable enough for clinical applications. Nucleic acid aptamers (NAAs) represent a class of molecules able to meet this demand. In particular, aptamers, a class of small nucleic acid ligands that are composed of single-stranded modified/unmodified RNA/DNA molecules, can be evolved from a complex library using Systematic Evolution of Ligands by EXponential enrichment (SELEX) against almost any molecule. Since its introduction in 1990, in stages, SELEX technology has itself undergone several modifications, improving selection and broadening the repertoire of targets. This review summarizes these milestone...
Aptamers are small and specific oligonucleotides [RNA or single-strand DNA (ssDNA)] with a high bind...
This review describes recent progress made in the aptamer and application of biomedically relevant a...
Aptamers are nucleic acid-based ligands identified through a process of molecular evolution named SE...
The demand has increased for sophisticated molecular tools with improved detection limits. Such mole...
Aptamers are short DNA or RNA oligonucleotides specialized in the specific and efficient binding to ...
The systematic evolution of ligands by exponential enrichment (SELEX) is a combinatorial oligonucleo...
Aptamers, single stranded DNA or RNA molecules, generated by a method called SELEX (systematic evolu...
Aptamers are molecules identified from large combinatorial nucleic acid libraries by their high affi...
Oligonucleotide aptamers (nucleic acid-based affinity reagents) are an emerging class of synthetic m...
Aptamers are small non-coding RNAs capable of recognizing, with high specificity and affinity, a wid...
Systematic evolution of ligands by exponential enrichment (SELEX) is an established procedure for de...
Systematic evolution of ligands by exponential enrichment (SELEX) is an established procedure for de...
The quest to improve the detection of biomolecules and cells in health and life sciences has led to ...
Abstract: Aptamers are nucleic acid-based ligands identified through a process of molecular evolutio...
Single-stranded oligonucleotide aptamers have attracted great attention in the past decade because o...
Aptamers are small and specific oligonucleotides [RNA or single-strand DNA (ssDNA)] with a high bind...
This review describes recent progress made in the aptamer and application of biomedically relevant a...
Aptamers are nucleic acid-based ligands identified through a process of molecular evolution named SE...
The demand has increased for sophisticated molecular tools with improved detection limits. Such mole...
Aptamers are short DNA or RNA oligonucleotides specialized in the specific and efficient binding to ...
The systematic evolution of ligands by exponential enrichment (SELEX) is a combinatorial oligonucleo...
Aptamers, single stranded DNA or RNA molecules, generated by a method called SELEX (systematic evolu...
Aptamers are molecules identified from large combinatorial nucleic acid libraries by their high affi...
Oligonucleotide aptamers (nucleic acid-based affinity reagents) are an emerging class of synthetic m...
Aptamers are small non-coding RNAs capable of recognizing, with high specificity and affinity, a wid...
Systematic evolution of ligands by exponential enrichment (SELEX) is an established procedure for de...
Systematic evolution of ligands by exponential enrichment (SELEX) is an established procedure for de...
The quest to improve the detection of biomolecules and cells in health and life sciences has led to ...
Abstract: Aptamers are nucleic acid-based ligands identified through a process of molecular evolutio...
Single-stranded oligonucleotide aptamers have attracted great attention in the past decade because o...
Aptamers are small and specific oligonucleotides [RNA or single-strand DNA (ssDNA)] with a high bind...
This review describes recent progress made in the aptamer and application of biomedically relevant a...
Aptamers are nucleic acid-based ligands identified through a process of molecular evolution named SE...