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Phthalic Acid Ester-Binding DNA Aptamer Selection, Characterization, and Application to an Electrochemical Aptasensor
Published on: March 21, 2018
Current advances in aptamer-assisted technologies for detecting bacterial and fungal toxins
N Alizadeh1,2, M Y Memar2,3, B Mehramuz3
1Drug Applied Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Abstract:
Infectious diseases are among the common leading causes of morbidity and mortality worldwide. Associated with the emergence of new infectious diseases, the increasing number of antimicrobial-resistant isolates presents a serious threat to public health and hospitalized patients. A microbial pathogen may elicit several host responses and use a variety of mechanisms to evade host defences. These methods and mechanisms include capsule, lipopolysaccharides or cell wall components, adhesions and toxins. Toxins inhibit phagocytosis, cause septic shock and host cell damages by binding to host surface receptors and invasion. Bacterial and fungal pathogens are able to apply many different toxin-dependent mechanisms to disturb signalling pathways and the structural integrity of host cells for establishing and maintaining infections Initial techniques for analysis of bacterial toxins were based on in vivo or in vitro assessments. There is a permanent demand for appropriate detection methods which are affordable, practical, careful, rapid, sensitive, efficient and economical. Aptamers are DNA or RNA oligonucleotides that are selected by systematic evolution of ligands using exponential enrichment (SELEX) methods and can be applied in diagnostic applications. This review provides an overview of aptamer-based methods as a novel approach for detecting toxins in bacterial and fungal pathogens.
Insights
Antimicrobial resistance and infectious diseases pose global health threats. Aptamer-based methods offer a novel, sensitive approach for detecting bacterial and fungal toxins, crucial for diagnostics.
Area of Science:
- Microbiology and Infectious Diseases
- Biotechnology and Molecular Diagnostics
Background:
- Infectious diseases are a leading cause of global morbidity and mortality.
- Antimicrobial resistance and emerging pathogens present significant public health challenges.
- Microbial toxins are key virulence factors that damage host cells and evade immune responses.
Purpose of the Study:
- To review aptamer-based methods for detecting toxins from bacterial and fungal pathogens.
- To highlight the need for rapid, sensitive, and economical toxin detection techniques.
Main Methods:
- Systematic Evolution of Ligands by Exponential Enrichment (SELEX) to generate aptamers.
- Overview of aptamer selection and application in diagnostic assays for microbial toxins.
Main Results:
- Aptamers demonstrate potential as highly specific and sensitive detection tools.
- Aptamer-based assays offer a promising alternative to traditional toxin detection methods.
Conclusions:
- Aptamer technology represents a novel and effective strategy for pathogen toxin detection.
- This approach can significantly enhance diagnostic capabilities for infectious diseases.
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