2022
DOI: 10.1080/10408347.2022.2091920
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Current Progress in Aptasensor for Ultra-Low Level Monitoring of Parkinson’s Disease Biomarkers

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Cited by 3 publications
(4 citation statements)
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“…To assess the morphology and mobility of the parasite, the feces sample was emulsified in normal saline. A droplet of normal saline was positioned on the center of the slide, and a slight portion of the stool specimen sample was mixed and emulsified in the saline using a sterile swab stick and examined microscopically using ×10 and ×40 objectives [ 11 13 ].…”
Section: Methodsmentioning
confidence: 99%
“…To assess the morphology and mobility of the parasite, the feces sample was emulsified in normal saline. A droplet of normal saline was positioned on the center of the slide, and a slight portion of the stool specimen sample was mixed and emulsified in the saline using a sterile swab stick and examined microscopically using ×10 and ×40 objectives [ 11 13 ].…”
Section: Methodsmentioning
confidence: 99%
“…The development of easy-of-use electrochemical aptamer-based platforms with a high sensitivity and specificity is probably one of the most promising methods to solve some of the problems regarding fast and cost-effective measurements appropriate for POC diagnostics due to their potential in terms of their portability and novel microfabrication technologies [88][89][90][91].…”
Section: Neurodegenerative Diseases Biomarkersmentioning
confidence: 99%
“…The next aptasensor developed for the detection AβOs, characterized by a lower LOD (0.5 fM) than those previously described [91], was based on a triple-helix aptamer switch (THAS) [123]. A gold electrode was modified with a thiolated aptamer possessing two symmetrical arm segments via a covalent bond.…”
Section: Amyloid β Peptidementioning
confidence: 99%
“…Along with this, the many unique characteristics of aptamers include, but are not limited to, longer shelf lives, simpler surface modifications, minor batch variations, and cost-effectiveness, which have led to significant efforts toward the development of aptasensors [9,10]. Figure 1 presents a chronological chart of key review article developments over the last decade on a range of important topics starting from the origin of aptamers [6,7] and aptasensors [10], along with pioneering review articles such as aptasensors in clinical diagnostics [11], for multi-analyte detection [12], biomedical applications of quantum dots [13], nanoparticles application in high-sensitive aptasensor design [14], aptasensors for organic pollutants and food and environment monitoring [15,16], aptasensors for prostate-antigen detection [17], disease-associated analyses of aptasensors [18], cytokine detection [19], and a recent article on Parkinson's disease-biomarkers-based aptasensors [20]. It is evident from this analysis that this review article is timely and needed to fill in the gap for a detailed analysis on recent advances and applications of specialized detection strategies that have gained less attention in the field of apta-biosensors, along with presenting a perspective and future directive for presenting the readers with a comprehensive review.…”
Section: Introductionmentioning
confidence: 99%