Detect and monitor disease from a blood draw — the science of liquid biopsy.
Liquid Biopsy and Circulating Biomarker Analysis explores a minimally invasive revolution in diagnostics: reading disease from a simple blood draw. You learn the biology of circulating biomarkers — circulating tumour DNA, circulating tumour cells, and extracellular vesicles — and the sensitive methods used to detect and analyse them. The course connects these to real clinical uses in oncology: early detection, monitoring treatment response and resistance, and guiding precision therapy, alongside the sensitivity and standardisation challenges the field faces. You finish able to reason about a liquid-biopsy approach to a clinical question. A verified e-Certificate of competency and e-Marksheet from the Deep Science & Technology Consortium.
This course covers liquid biopsy — analysing circulating tumour DNA, cells and other biomarkers in blood for cancer detection, monitoring and precision oncology.
1. Explain circulating biomarkers: ctDNA, CTCs and vesicles.
2. Describe methods to detect and analyse them.
3. Apply liquid biopsy to detection and monitoring.
4. Connect biomarkers to precision oncology.
5. Assess sensitivity and standardisation challenges.
• Oncology and molecular-diagnostics researchers
• Clinical and pathology professionals
• Biotech and diagnostics R&D staff
• Students of biomedical science
• An understanding of liquid-biopsy science.
• The ability to reason about a diagnostic approach.
• A foundation in precision oncology.
• A verified e-Certificate of competency and e-Marksheet from the Deep Science & Technology Consortium.
Analyze the fundamental principles of liquid biopsy and circulating biomarker analysis, including the biology of circulating tumor DNA and RNA • Evaluate the clinical applications and limitations of liquid biopsy in cancer diagnosis and treatment monitoring • Develop a comprehensive understanding of the core biological principles underlying liquid biopsy and circulating biomarker analysis, including epigenetics and gene expression
Configure and optimize laboratory protocols for the collection and processing of liquid biopsy samples, including plasma and urine • Implement quality control measures to ensure the integrity and reliability of laboratory data • Design and develop standardized operating procedures for the handling and analysis of liquid biopsy samples
Apply bioinformatics tools and pipelines to analyze and interpret liquid biopsy data, including next-generation sequencing and machine learning algorithms • Develop and implement computational models to predict biomarker performance and identify potential biases • Evaluate the strengths and limitations of various bioinformatics tools and pipelines for liquid biopsy data analysis
Design and develop experimental protocols for the validation and verification of liquid biopsy biomarkers • Analyze and interpret the results of liquid biopsy studies, including the assessment of sensitivity, specificity, and accuracy • Develop and implement strategies for the optimization of liquid biopsy assay performance and the minimization of errors
Investigate the applications of liquid biopsy in precision medicine, including personalized cancer treatment and monitoring • Evaluate the potential of liquid biopsy to enable early cancer detection and diagnosis • Develop and implement strategies for the translation of liquid biopsy research into clinical practice
Analyze the regulatory frameworks and guidelines governing the development and use of liquid biopsy tests • Evaluate the bioethical implications of liquid biopsy research and testing, including issues related to informed consent and patient privacy • Develop and implement strategies for ensuring compliance with regulatory requirements and safety standards in liquid biopsy research and testing
Investigate the applications of liquid biopsy in various industries, including pharmaceuticals and biotechnology • Evaluate the career pathways and opportunities available to professionals in the field of liquid biopsy and circulating biomarker analysis • Analyze case studies of successful liquid biopsy research and development projects, including the challenges and opportunities encountered
| Parameter | Requirement |
|---|---|
| Covered Tool / Platform | Python |
| Covered Tool / Platform | TensorFlow |
| Covered Tool / Platform | next-generation sequencing |
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