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Circulating tumor cell monitoring systems for recurrence & metastasis
- Real-time CTC Monitoring: Advances in microfluidic devices and wearable biosensors are being explored to allow real-time or near real-time monitoring of CTCs, providing continuous data on a patient’s cancer status.
- Machine learning-enhanced Analysis: Machine learning algorithms can improve the identification and classification of CTCs from blood samples. These algorithms can analyze vast amounts of imaging and molecular data from CTCs to provide more accurate predictions of recurrence or metastasis.
- CTC Data Integration: AI models can integrate CTC data with other patient data, such as genetic mutations, treatment history, and imaging results, to provide a comprehensive risk assessment for recurrence or metastasis.
- Targeting CTCs for Therapy: Beyond monitoring, researchers are investigating ways to target CTCs for therapeutic purposes, potentially preventing them from causing metastasis
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Realtime Cell Tracking System
– A real-time cell tracking system refers to a technology platform or setup designed to monitor and analyze the behavior and movements of individual cells or groups of cells in real time. Such systems are highly relevant in biological research, medical diagnostics, and pharmaceutical testing. They typically use advanced imaging techniques, automated software, and sometimes AI-driven algorithms to track cellular dynamics, such as migration, division, or interactions.
– And combining real-time cell tracking systems with CTC-derived organoid models provides an advanced platform for studying cancer biology and testing anticancer therapies. These technologies enable personalized and dynamic analysis of CTC behavior, which is crucial for developing more effective cancer treatments.
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Long-Term Monitoring of Biomarkers associated with Dementia
Kinase profiling for biomarkers in early detection of diseases, especially cancer and other chronic conditions, has become an area of significant research. Kinases are enzymes that modify other proteins by chemically adding phosphate groups, a process known as phosphorylation. Since kinase activity regulates many critical cellular processes—such as cell growth, differentiation, and apoptosis—abnormal kinase activity is frequently associated with disease development, including cancer.