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    1. Medicin
    2. Andra medicinska specialiteter
    3. Patologi

    Biosensors for Foodborne Pathogen Detection

    A Rapid Detection Approach

    AvManoj Kumar Pal,Minhaz Uddin Ahmed

    Häftad, Engelska, 2024

    1 431 kr

    Beställningsvara. Skickas inom 10-15 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Biosensors for Foodborne Pathogens Detection: A Rapid Detection Approach covers rapid and accurate measurement for biosensing analysis. This book is organized in a systematic way, covering basic introduction and advanced approaches in biosensing and their use in the detection of food pathogens. This compilation includes chapters such as Methods, techniques and latest developments in the detection of foodborne pathogens; Basic principles in Biosensors and bioelectronics for the foodborne pathogens; Various bio-recognition receptors used in the biosensors; Nanomaterials and signal amplification in biosensors for foodborne pathogens; electrochemical biosensors for foodborne pathogens; Optical biosensors for foodborne pathogens, and more.

    This book act as a comprehensive resource for researchers or scientists working in food safety, especially in microbial food spoilage detection using biosensors.



    • Explores biosensing in the detection of food pathogens, from basic introduction to advanced approaches
    • Covers advancements in electrochemical impedance spectroscopy (EIS) based biosensors because of its enhanced sensitivity and specificity
    • Brings the role of nanotechnology in biosensing

    Produktinformation

    • Utgivningsdatum:2024-03-22
    • Mått:152 x 229 x 16 mm
    • Vikt:500 g
    • Format:Häftad
    • Språk:Engelska
    • Antal sidor:302
    • Förlag:Elsevier Science
    • ISBN:9780323955867

    Utforska kategorier

    • Patologi inom Medicin
    • Tillverkningsteknik inom Naturvetenskap och teknik

    Mer om författaren

    Manoj Kumar Pal is currently a Professor at Graphic Era (Deemed to be University) Dehradun, India. He has worked on the development of chemical and biological sensors. He was a postdoctoral Research Fellow at the Department of Life Sciences, Hebrew University of Jerusalem, Israel, from 2010 to 2011. He also worked as a Research Associate with the Department of Biotechnology, IIT Roorkee, from 2011 to 2012, where his research work was focused on drug encapsulation in biodegradable nanoparticles and delivery into Leishmanian infected microphages using CD14 biomarker. He did second Post-Doctoral Research at the Department of Life Science, Ben-Gurion University of the Negev Israel, from 2012 to 2015. He has authored numerous research articles in peer reviewed journals and conferences of international repute. His core area of research is the utilization of different physio-chemical sensing methods in development of the new biosensing concepts for therapeutic purposes. He is currently working on bioelectrochemical system (BESs) particularly on microbial fuel cells (MFC) for last 5 years. Dr. Minhaz Uddin Ahmed is an Associate Professor of Analytical Chemistry and Biotechnology at the Universiti Brunei Darussalam. He obtained his Ph.D. in Chemical Materials Science from Japan Advanced Institute of Science and Technology in 2008 and later worked as JSPS post-doctoral fellow at Osaka University, Japan (2008-2009), DARPA post-doctoral research associate at Duke University, USA (2009-2010) and NSERC post-doctoral fellow at INRS-EMT, Canada (2010-2012). Dr Ahmed is an alumnus of JAIST and a prestigious young participant/fellow of 57th Lindau Nobel Laureate Meeting for Physiology and Medicine, 2007, Germany. In 2008, he was awarded with the prestigious Japanese Society for the Promotion of Science young scientist award to work in Graduate School of Engineering of Osaka University. In 2009, he was awarded with the United States Defense Advanced Research Project Agency post-doctoral fellowship to work at Pratt School of Engineering of Duke University. Katrina Campbell is a Professor in Food Security and heads the Biosensors Strand within the Centre for ASsured, SafE and Traceable food (ASSET). Katrina is a member of the Royal Society of Chemistry, the Institute of Biology, Irish Toxicology Society and International Society for the study of harmful algae. Katrina obtained a BSc (Hons) in Biochemistry in 1995 and a MMedSc in Ultrastructural Anatomy and Pathology in 1996 from Queen's University Belfast. Her research focussed on developing innovative biosensor screening methods for the detection of chemical contaminants, toxins and foodborne pathogens in food, animal feeds and the environment. She has extensive experience in bioanalytical method development, validation and evaluation with state-of-the-art technologies, end product formation as kits and technology transfer workshops and events for dissemination.

    Innehållsförteckning

    • 1. Foodborne pathogens and source of contamination2. Methods, techniques and latest developments in the detection of foodborne pathogens3. Need of rapid detection methods and strategies for food borne pathogens4. Biosensors and bioelectronics for the foodborne pathogens: Basic principle5. Various bio-recognition receptors used in the biosensors and biosensors for foodborne pathogens. Antibody, aptamer, DNA, RNA, Protein, MIP, nanozyme etc.6. Nanomaterials and signal amplification in biosensors for foodborne pathogens7. Electrochemical biosensors for foodborne pathogens8. Magneto sensors9. Photoelectrochemical sensors10. Chemiluminescent and Electrochemiluminescence (ECL) biosensors for foodborne pathogens11. Optical biosensors for foodborne pathogens11 (i) Surface Plasmon Resonance biosensors for foodborne pathogens12. Microcantilever biosensors for pathogen detection13. Liquid Crystal/piezoelectric/QCM Biosensors for foodborne pathogens14. Phage based biosensors for foodborne pathogens15. MEMS/Microfluidics in biosensors and their applications in the detection of foodborne pathogens16. Colorimetric/smartphone/paper-based biosensors17. Label free Biosensors18. Label based Biosensors19. Cost effectiveness, reliability, selectivity, the sensitivity of current and future foodborne pathogen biosensors20. Recent trends and challenges on CRISPR-Cas food borne pathogen biosensors21. Application of Biosensors in food safety and management