Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Aptasensors and Advancement in Molecular Recognition Technology

View through CrossRef
AbstractSynthetic oligonucleic acids known as aptamers exhibit remarkable selectivity and affinity for target recognition and binding. Selected via an iterative process known as “selective evolution of ligands by exponential enrichment” (SELEX), aptamers fold into defined 3D conformations to interact with their targets. The incorporation of aptamers as recognition elements has driven notable progress in biosensors, giving rise to the development of aptasensors. Here, the process of aptamer discovery and the development of various types of aptasensors are summarized. The fundamental design principles of aptasensors are elaborated along with the superiority of aptamers compared to antibodies. The various modes employed by aptasensors, such as structure‐switching design, hybridization chain reaction amplification, enzyme‐assisted recycling, and split aptamer design are examined. Further light is shed on the diverse landscape of aptasensors, their adaptability to different analytes aptasensors as well as their potential to propel advancements in modern biosensor technology. As a nucleic acids‐based biosensor platform, aptasensors poise to become a next generation of sensitive and cost‐effective technology to shape the future of molecular recognition in biosensing.
Title: Aptasensors and Advancement in Molecular Recognition Technology
Description:
AbstractSynthetic oligonucleic acids known as aptamers exhibit remarkable selectivity and affinity for target recognition and binding.
Selected via an iterative process known as “selective evolution of ligands by exponential enrichment” (SELEX), aptamers fold into defined 3D conformations to interact with their targets.
The incorporation of aptamers as recognition elements has driven notable progress in biosensors, giving rise to the development of aptasensors.
Here, the process of aptamer discovery and the development of various types of aptasensors are summarized.
The fundamental design principles of aptasensors are elaborated along with the superiority of aptamers compared to antibodies.
The various modes employed by aptasensors, such as structure‐switching design, hybridization chain reaction amplification, enzyme‐assisted recycling, and split aptamer design are examined.
Further light is shed on the diverse landscape of aptasensors, their adaptability to different analytes aptasensors as well as their potential to propel advancements in modern biosensor technology.
As a nucleic acids‐based biosensor platform, aptasensors poise to become a next generation of sensitive and cost‐effective technology to shape the future of molecular recognition in biosensing.

Related Results

Investigating the Sensing Mechanisms of Carbon Nanotube Aptasensors for Point of Care Hormone Tests
Investigating the Sensing Mechanisms of Carbon Nanotube Aptasensors for Point of Care Hormone Tests
<p><strong>Point of care medical tests have the potential to greatly improve the quality, affordability, and accessibility of health care services. This work uses carbo...
Photoelectrochemical Aptasensors for Biosensing: A Review
Photoelectrochemical Aptasensors for Biosensing: A Review
Biodetection, the basis of many biotechnologies, has rapidly developed in recent years. Among various biodetection methods, the photoelectrochemical (PEC) sensor is an emerging ana...
Aptasensors for mycotoxins in foods: Recent advances and future trends
Aptasensors for mycotoxins in foods: Recent advances and future trends
Abstract Mycotoxin contamination in foods has posed serious threat to public health and raised worldwide concern. The development of simple, rapid, facile, and co...
Gold nanoparticle based fluorescent aptasensors: A chemical and biological detection perspective
Gold nanoparticle based fluorescent aptasensors: A chemical and biological detection perspective
Introduction: In recent decades, the development of simple and reliable techniques for detecting chemical and biological molecules has gained considerable importance. These methods...
A Comprehensive Study on Aptasensors For Cancer Diagnosis
A Comprehensive Study on Aptasensors For Cancer Diagnosis
Cancer is the most devastating disease in the present scenario, killing millions of people every year. Early detection, accurate diagnosis, and timely treatment are considered to b...
EPD Electronic Pathogen Detection v1
EPD Electronic Pathogen Detection v1
Electronic pathogen detection (EPD) is a non - invasive, rapid, affordable, point- of- care test, for Covid 19 resulting from infection with SARS-CoV-2 virus. EPD scanning techno...
Multimodal Emotion Recognition and Human Computer Interaction for AI-Driven Mental Health Support (Preprint)
Multimodal Emotion Recognition and Human Computer Interaction for AI-Driven Mental Health Support (Preprint)
BACKGROUND Mental health has become one of the most urgent global health issues of the twenty-first century. The World Health Organization (WHO) reports tha...
Ultrasensitive Aptasensors for the Detection of Viruses Based on Opto-Electrochemical Readout Systems
Ultrasensitive Aptasensors for the Detection of Viruses Based on Opto-Electrochemical Readout Systems
Viral infections are becoming the foremost driver of morbidity, mortality and economic loss all around the world. Treatment for diseases associated to some deadly viruses are chall...

Back to Top