Search for dissertations about: "Ulf Landegren"
Showing result 21 - 25 of 33 swedish dissertations containing the words Ulf Landegren.
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21. Single-molecule Detection in situ
Abstract : The human body contains a variety of different cell types that share a common genome, but differ in how they use the information encoded therein. Variation in molecular content exists even at the level of individual cells, and to provide deeper insight into complex cellular processes methods that permit analysis of each cell on its own are needed. READ MORE
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22. High Content Analysis of Proteins and Protein Interactions by Proximity Ligation
Abstract : Fundamental to all biological processes is the interplay between biomolecules such as proteins and nucleic acids. Studies of interactions should therefore be more informative than mere detection of expressed proteins. Preferably, such studies should be performed in material that is as biologically and clinically relevant as possible, i.e. READ MORE
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23. Applications of in situ proximity ligation assays for cancer research and diagnostics
Abstract : In the field of cancer research and diagnostics it is crucial to have reliable methods for detecting molecules involved in the disease. New and better methods for diagnostics, prognostics and drug delivery therefore remain a permanent aim. READ MORE
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24. Proximity Extension Assay : a universal tool for proteomics in precision medicine
Abstract : Precision medicine aims to utilise biomarkers to ensure the right treatment is given to the right patient at the right time. In pursuit of this goal, sensitive protein detection is essential to improve opportunities for discovery, verification, validation and development of valuable protein biomarkers. READ MORE
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25. Proximity Ligation Assays for Disease Biomarkers Analysis
Abstract : One of the pressing needs in the field of disease biomarker discovery is new technologies that could allow high performance protein analysis in different types of clinical material, such as blood and solid tissues. This thesis includes four approaches that address important limitations of current technologies, thus enabling highly sensitive, specific and parallel protein measurements. READ MORE