Recent advances in Metal-Organic Framework derived nanocomposites in gas and chemical sensors: a review DOI Creative Commons
Santosh Nandi, Vinayak Adimule, Shankramma S. Kerur

et al.

Sensing Technology, Journal Year: 2024, Volume and Issue: 2(1)

Published: March 3, 2024

Purpose This systematic review aims to elucidate recent developments in MOF-derived nanocomposites for gas and chemical sensors. The goal is explore the potential of MOF-based devices, specifically miniaturized sensors, addressing critical requirements such as sensitivity, selectivity, stability, low power consumption, cost-effectiveness, extended lifetime. It focuses applications ranging from air quality monitoring industrial leaks medical diagnostics.

Language: Английский

Organic Electronics in Biosensing: A Promising Frontier for Medical and Environmental Applications DOI Creative Commons
Jyoti Kaushal,

Pratima Raut,

Sanjay Kumar

et al.

Biosensors, Journal Year: 2023, Volume and Issue: 13(11), P. 976 - 976

Published: Nov. 7, 2023

The promising field of organic electronics has ushered in a new era biosensing technology, thus offering frontier for applications both medical diagnostics and environmental monitoring. This review paper provides comprehensive overview electronics’ remarkable progress potential applications. It explores the multifaceted aspects materials devices, thereby highlighting their unique advantages, such as flexibility, biocompatibility, low-cost fabrication. delves into diverse range biosensors enabled by electronics, including electrochemical, optical, piezoelectric, thermal sensors, showcasing versatility detecting biomolecules, pathogens, pollutants. Furthermore, integrating wearable devices Internet Things (IoT) ecosystem is discussed, wherein they offer real-time, remote, personalized monitoring solutions. also addresses current challenges future prospects biosensing, emphasizing breakthroughs medicine, sustainability, advancement human health well-being.

Language: Английский

Citations

42

Strategy, Design, and Fabrication of Electrochemical Biosensors: A Tutorial DOI
Karthika Sankar,

Uroš Kuzmanović,

Scott E. Schaus

et al.

ACS Sensors, Journal Year: 2024, Volume and Issue: 9(5), P. 2254 - 2274

Published: April 18, 2024

Advanced healthcare requires novel technologies capable of real-time sensing to monitor acute and long-term health. The challenge relies on converting a quantitative biological chemical signal into desired measurable output. Given the success in detecting glucose commercialization glucometers, electrochemical biosensors continue be mainstay academic industrial research activities. Despite wealth literature biosensors, reports are often specific particular application (e.g., pathogens, cancer markers, glucose, etc.), most fail convey underlying strategy design, if it is transferable detection different analyte. Here we present tutorial review for those entering this area that summarizes basic techniques utilized as well discusses designs optimization strategies employed improve sensitivity maximize

Language: Английский

Citations

27

Label-free electrochemical immunosensors: A practical guide DOI
Rocco Cancelliere, Elisa Paialunga, Asia Grattagliano

et al.

TrAC Trends in Analytical Chemistry, Journal Year: 2024, Volume and Issue: 180, P. 117949 - 117949

Published: Sept. 3, 2024

Language: Английский

Citations

23

Innovations in Biosensor Technologies for Healthcare Diagnostics and Therapeutic Drug Monitoring: Applications, Recent Progress, and Future Research Challenges DOI Creative Commons
Mohamed Hemdan, Mohamed A. Ali, Ahmed S. Doghish

et al.

Sensors, Journal Year: 2024, Volume and Issue: 24(16), P. 5143 - 5143

Published: Aug. 8, 2024

This comprehensive review delves into the forefront of biosensor technologies and their critical roles in disease biomarker detection therapeutic drug monitoring. It provides an in-depth analysis various types applications, including enzymatic sensors, immunosensors, DNA elucidating mechanisms specific healthcare applications. The highlights recent innovations such as integrating nanotechnology, developing wearable devices, trends miniaturisation, showcasing transformative potential healthcare. In addition, it addresses significant sensitivity, specificity, reproducibility, data security challenges, proposing strategic solutions to overcome these obstacles. is envisaged that will inform decision-making, drive technological innovation, enhance global outcomes by synthesising multidisciplinary insights.

Language: Английский

Citations

22

Use, Potential, Needs, and Limits of AI in Wastewater Treatment Applications DOI Open Access
Andrea G. Capodaglio, Arianna Callegari

Water, Journal Year: 2025, Volume and Issue: 17(2), P. 170 - 170

Published: Jan. 10, 2025

Artificial intelligence (AI) uses highly powerful computers to mimic human intelligent behavior; it is a major research hotspot in science and technology, with an increasing number of applications wider range fields, including complex process supervision control. Wastewater treatment example involving many uncertainties external factors achieve final product specific requisites (effluents prescribed quality). Reducing energy consumption, greenhouse gas emissions, resources recovery are additional requirements these facilities’ operation. AI could extend the purpose expected results previously adopted tools present operational approaches by leveraging superior simulation, prediction, control, adaptation capabilities. This paper reviews current wastewater field discusses achievements potentials. So far, almost all sector involve predictive studies, often at small scale or limited data use. Frontline aimed creation AI-supported digital twins real systems being conducted, few encouraging but still applications. aims identifying discussing key barriers adoption field, which include laborious instrumentation maintenance, lack expertise design software, instability control loops, insufficient incentives for resource efficiency achievement.

Language: Английский

Citations

2

Artificial intelligence-assisted electrochemical sensors for qualitative and semi-quantitative multiplexed analyses DOI Creative Commons
Rocco Cancelliere, Mario Molinara,

Antonio Licheri

et al.

Digital Discovery, Journal Year: 2025, Volume and Issue: unknown

Published: Jan. 1, 2025

AI-integrated electrochemical sensors boost peak resolution and sensitivity, enabling precise detection of electroactive species in complex matrices. This method enhances analytical capabilities, providing an analytically robust solution.

Language: Английский

Citations

2

Paper-based biosensing using single-stranded oligonucleotide aptamers for enhanced food safety DOI Creative Commons

Kiyana Fatemi,

Sie Yon Lau,

Reza Fatemi

et al.

Journal of Food Composition and Analysis, Journal Year: 2025, Volume and Issue: unknown, P. 107331 - 107331

Published: Feb. 1, 2025

Language: Английский

Citations

2

Advancements in food quality monitoring: integrating biosensors for precision detection DOI Creative Commons
Soumitra Nath

Sustainable Food Technology, Journal Year: 2024, Volume and Issue: 2(4), P. 976 - 992

Published: Jan. 1, 2024

The integration of advanced biosensors enhances the detection contaminants in food. This approach addresses challenges related to sensitivity, specificity, and environmental factors, ensuring food safety quality.

Language: Английский

Citations

15

Biomarker-specific biosensors revolutionise breast cancer diagnosis DOI

Mugip Rahaman Abdul Wahab,

Thirunavukkarasu Palaniyandi,

Sandhiya Viswanathan

et al.

Clinica Chimica Acta, Journal Year: 2024, Volume and Issue: 555, P. 117792 - 117792

Published: Jan. 22, 2024

Language: Английский

Citations

14

Impact of Metabolites from Foodborne Pathogens on Cancer DOI Creative Commons
Alice Njolke Mafe, Dietrich Büsselberg

Foods, Journal Year: 2024, Volume and Issue: 13(23), P. 3886 - 3886

Published: Dec. 1, 2024

Foodborne pathogens are microorganisms that cause illness through contamination, presenting significant risks to public health and food safety. This review explores the metabolites produced by these pathogens, including toxins secondary metabolites, their implications for human health, particularly concerning cancer risk. We examine various such as Salmonella sp., Campylobacter Escherichia coli, Listeria monocytogenes, detailing specific of concern carcinogenic mechanisms. study discusses analytical techniques detecting chromatography, spectrometry, immunoassays, along with challenges associated detection. covers effective control strategies, processing techniques, sanitation practices, regulatory measures, emerging technologies in pathogen control. manuscript considers broader highlighting importance robust policies, awareness, education. identifies research gaps innovative approaches, recommending advancements detection methods, preventive policy improvements better manage foodborne metabolites.

Language: Английский

Citations

11