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Liquid biopsy research has emerged as a promising area in the oncology field. As a less invasive approach to tissue biopsies, liquid biopsies contain a heterogenous mixture of biomolecules and have the potential to revolutionize the cancer research world by providing us insight into the possible prevention, diagnosis, monitoring, and treatment of cancer. Advancements are constantly unfolding and as the area continues to grow, researchers are looking for reliable multi-analyte approaches to study cancer and its complexity. Thermo Fisher Scientific provides end-to-end oncology research workflow solutions that enable various liquid biopsy applications. Find robust sample preparation tools and automated technologies to help drive results in your fight against cancer.
Begin your liquid biopsy workflow with automated sample purification technology that helps provide consistent and reliable downstream results.
Nucleic acids found in liquid biopsy samples serve as useful biomarkers in translational research offering insights into early cancer detection and treatment response by revealing chromosomal abnormalities, gene mutations, and epigenetic changes contributing to cancer screening, diagnosis, and monitoring as well as the development of targeted therapies and personalized medicines. While tumor tissue is the standard for diagnosis, less invasive liquid biopsies from blood, urine, and saliva are becoming increasingly used for biomarker analysis studies. Effective isolation techniques are crucial to solve for common purification challenges with low concentrations of target isolates, limited sample volumes, and tedious sample processing.
Analyzing circulating tumor cells (CTCs) from liquid biopsies is important in cancer research for disease monitoring studies. With such low number of CTCs in circulation, highly sensitive methods are necessary to capture and detect down to single cells. Dynabeads magnetic bead technology enhances this process by using antibody-coated beads to selectively bind and isolate target cells when exposed to a magnetic field. This method allows for efficient separation and analysis of CTCs, helping provide insights into the development of minimal residual disease testing and cancer characteristics, mutations, and treatment responses, which are essential for personalized medicine.
Exosomes are small extracellular vesicles (EV) released by cells into various body fluids, carrying nucleic acids and proteins that facilitate intercellular signaling. When secreted from cancer cells, exosomes transport molecular cargo between primary and secondary tumors, potentially influencing growth, invasion, and drug resistance. As a result, exosomes are emerging as a source of valuable information for research into metastatic cancers. However, isolation and analysis of exosomes and their subpopulations can be challenging due to their small size and specificity. Leveraging targeted and sensitive isolation, detection, and analysis techniques can help address these challenges.
The study of proteins relevant to cancer helps provide crucial insights into cancer mechanisms, aiding in the identification of biomarkers, understanding tumor biology, and monitoring disease progression. Reliable protein isolation using modern technologies is essential to achieve the purity and yield needed for accurate downstream protein analysis that may ultimately support with the identification of therapeutic targets and development of diagnostic and prognostic tools.
As liquid biopsy sampling and analysis studies continue to advance, efficient and reliable workflow solutions are becoming increasingly crucial. Automating sample processing upfront of downstream analysis can help researchers increase consistency and generate reproducible results needed for clinical research and diagnostic product development.
Isolate and purify DNA, RNA, cells, exosomes, and proteins using a single automated purification instrument. Stay flexible with multianalyte isolation options and customizable protocols.
Molecular analysis of cancer through liquid biopsies is helping researchers understand its complexities in development and progression. Cancer genomic and cancer transcriptomic approaches in molecular profiling enable improved biomarker discovery which may lead to future identification and validation of diagnostic, predictive, prognostic, and therapeutic cancer biomarkers. Continued technological innovation with enhanced specificity, sensitivity and reproducibility has the potential to take liquid biopsy techniques into clinical practice.
Analyzing cancer cells and their proteins enables researchers to understand the complex interactions and characteristics of tumors. Visualization of these cells and their contents provides us a view into specific cancer biology and treatment effects. At the protein level, we can reveal information around protein targets and signaling pathways related to cancer growth and metastasis. Proteomics, the large-scale study of proteins, has emerged as a key area in liquid biopsy research. Integrating proteomic data into liquid biopsy studies may enhance its utility by detecting and quantifying cancer-specific proteins and related biomarkers. As research progresses, understanding cell-to-cell interactions will help identify communication defects that alter normal cellular functions.
OEM, commercial supply, and customized solutions are crucial as liquid biopsy technology advances, helping ensure consistent access to essential reagents, assays, and instruments for accurate and reliable biomarker detection. We partner with leading life science companies to create customized solutions for specific applications and regulatory needs. Our scientific specialists collaborate with your R&D teams offering expertise to optimize development of molecular assays, immunoassays, vaccine development, and other life science applications. Reliable supply chains and OEM support streamline product development and help ensure the robustness and reproducibility of liquid biopsy tests, thereby enhancing clinical utility and patient outcomes from initial assay development to scale-up and commercialization.
All our premium sample preparation consumables, including Dynabeads magnetic beads for protein and cell isolation and MagMAX nucleic acid purification kits, are analytically validated with a distinct level of reproducibility within and between batches. Our offerings also include customization of existing instrumentation and software, such as KingFisher instruments and software, supply of instrument components, and development of new instruments and software, helping ensure that our solutions meet high standards of quality and performance.
If you require a custom formulation, are looking for large-scale production capabilities, or need a manufacturing partner that meets specific quality or regulatory standards; our manufacturing services are here to support you. Our manufacturing capabilities offer scalable solutions that offer high-quality, reliable products tailored to your specific needs.
For Research Use Only. Not for use in diagnostic procedures.