Biosensors for the detection of pathogenic bacteria in water – Complete Phd and Masters Thesis

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Table of Contents

Chapter 1: Introduction
1.1 Background of study
1.2 Problem statement
1.3 Objectives of study
1.4 Research questions
1.5 Significance of study
1.6 Limitations of study
1.7 Scope of study

Chapter 2: Literature Review
2.1 Overview of biosensors
2.2 Types of biosensors for pathogenic bacteria detection
2.3 Current technologies for water quality monitoring
2.4 Challenges in pathogenic bacteria detection in water
2.5 Previous studies on biosensors for pathogenic bacteria detection in water

Chapter 3: Research Methodology
3.1 Research design
3.2 Sampling methods
3.3 Data collection methods
3.4 Data analysis techniques
3.5 Validation of biosensor performance

Chapter 4: Discussion of Findings
4.1 Analysis of biosensor performance
4.2 Comparison with existing technologies
4.3 Implications for water quality monitoring
4.4 Recommendations for future research

Chapter 5: Conclusion and Summary
5.1 Summary of key findings
5.2 Conclusion
5.3 Contributions to the field
5.4 Recommendations for practice

Brief Overview on Biosensors for the Detection of Pathogenic Bacteria in Water

Biosensors are analytical devices that combine a biological recognition element with a transducer to detect specific analytes. In the case of pathogenic bacteria detection in water, biosensors offer a rapid, sensitive, and cost-effective solution for monitoring water quality. The development of biosensors for this application is crucial to prevent waterborne diseases and ensure public health safety.

There are various types of biosensors that can be used for pathogenic bacteria detection, including enzymatic biosensors, immunosensors, and DNA-based biosensors. These biosensors rely on specific interactions between the recognition element and the target bacteria to produce a measurable signal, such as fluorescence or electrochemical response.

Current technologies for water quality monitoring, such as culture-based methods and polymerase chain reaction (PCR), have limitations in terms of sensitivity, specificity, and time-consuming procedures. Biosensors overcome these challenges by providing real-time detection of pathogenic bacteria in water, with high accuracy and sensitivity.

Previous studies have demonstrated the feasibility of using biosensors for pathogenic bacteria detection in water, showing promising results in terms of detection limits and specificity. However, there are still challenges to be addressed, such as the stability of the biosensor, matrix effect in complex water samples, and cost-effectiveness for large-scale application.

In this research project, the aim is to develop a novel biosensor for the detection of pathogenic bacteria in water, with a focus on improving sensitivity, specificity, and practicality for field deployment. By evaluating the performance of the biosensor and comparing it with existing technologies, this study will contribute to the advancement of water quality monitoring and public health protection.

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