Acetylcholinesterase biosensors for electrochemical detection of neurotoxic pesticides and acetylcholine neurotransmitter: A literature review
Биосенсоры на основе ацетилхолинэстеразы для электрохимического обнаружения нейротоксичных пестицидов и нейромедиатора ацетилхолина: обзор литературы
2023-03-21
SCID: 54.1/82yhbahb
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acetylcholine neurotransmitteracetylcholinesterase biosensorselectrochemical detectionenzyme immobilizationneurotoxic pesticides
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Abstract (AI)
Neurotoxic pesticides are a group of chemicals that pose a severe threat to both human health and the environment. These molecules are also known to accumulate in the food chain and persist in the environment, which can lead to long-term exposure and adverse effects on non-target organisms. The detrimental effects of these pesticides on neurotransmitter levels and function can lead to a range of neurological and behavioral symptoms, which are closely associated with neurodegenerative diseases. Hence, the accurate and reliable detection of these neurotoxic pesticides and associated neurotransmitters is essential for clinical applications, such as diagnosis and treatment. Over the past few decades, acetylcholinesterase (AchE) biosensors have emerged as a sensitive and reliable tool for the electrochemical detection of neurotoxic pesticides and acetylcholine. These biosensors can be tailored to utilize the high specificity and sensitivity of AchE, enabling the detection of these chemicals. Additionally, enzyme immobilization and the incorporation of nanoparticles have further improved the detection capabilities of these biosensors. AchE biosensors have shown tremendous potential in various fields, including environmental monitoring, clinical diagnosis, and pesticide residue analysis. This review summarizes the advancements in AchE biosensors for electrochemical detection of neurotoxic pesticides and acetylcholine over the past two decades.
Key Findings
1
Acetylcholinesterase biosensors provide sensitive and reliable electrochemical detection of neurotoxic pesticides and acetylcholine by exploiting the enzyme’s specificity.
2
Acetylcholinesterase biosensors show potential for environmental monitoring, clinical diagnosis, and pesticide residue analysis, with major advances reported over the past two decades.
3
Changes in neurotransmitter levels and function caused by neurotoxic pesticides are associated with neurological and behavioral symptoms and neurodegenerative diseases.
4
Enzyme immobilization and nanoparticle incorporation improve the detection capabilities of acetylcholinesterase biosensors.
5
Neurotoxic pesticides persist in the environment and accumulate in food chains, creating prolonged risks to human health and non-target organisms.
Research Object
Acetylcholinesterase biosensors for electrochemical detection of neurotoxic pesticides and acetylcholine
Research Subject
Advancements in the sensitivity, specificity, and detection capabilities of acetylcholinesterase biosensors, including effects of enzyme immobilization and nanoparticle incorporation
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2023-03-21
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