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An optical label-free aptasensor based on dye doped leaky waveguide (DDLW) for biomarker detection (2019)
Thesis
Alamrani, N. A. An optical label-free aptasensor based on dye doped leaky waveguide (DDLW) for biomarker detection. (Thesis). University of Hull. https://hull-repository.worktribe.com/output/4749483

Due to the rapid increase in routine measurement of biomarkers, such as a protein, in blood samples for healthcare monitoring, different techniques have been developed to facilitate this measurement in terms of cost-effective and fast measurement. La... Read More about An optical label-free aptasensor based on dye doped leaky waveguide (DDLW) for biomarker detection.

Developing a novel spheroid-on-chip microfluidic device for investigations into metastasis (2019)
Thesis
Collins, T. C. (2019). Developing a novel spheroid-on-chip microfluidic device for investigations into metastasis. (Thesis). University of Hull. Retrieved from https://hull-repository.worktribe.com/output/4221851

One in two people born after 1960 will develop cancer, with 90% of all cancer deaths arising from metastasis. Conventional 2D in vitro metastasis models do not fully replicate tumour complexity. In vivo models can address tumour complexity, but do no... Read More about Developing a novel spheroid-on-chip microfluidic device for investigations into metastasis.

A label-free aptamer-based nanogap capacitive biosensor with greatly diminished electrode polarization effects (2019)
Journal Article
Ghobaei Namhil, Z., Kemp, C., Verrelli, E., Iles, A., Pamme, N., Adawi, A. M., & Kemp, N. (2019). A label-free aptamer-based nanogap capacitive biosensor with greatly diminished electrode polarization effects. Physical chemistry chemical physics : PCCP, 21(2), 681-691. https://doi.org/10.1039/c8cp05510f

A significant impediment to the use of impedance spectroscopy in bio-sensing is the electrode polarization effect that arises from the movement of free ions to the electrode-solution interface, forming an electrical double layer (EDL). The EDL screen... Read More about A label-free aptamer-based nanogap capacitive biosensor with greatly diminished electrode polarization effects.