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Inorganic Chemicals Commons

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Full-Text Articles in Inorganic Chemicals

Synthesis Of A Zn(Ii)-Responsive Paracest Mri Agent For Improved Diagnosis Of Prostate Cancer, Megan Martin, Holly Clancy Apr 2019

Synthesis Of A Zn(Ii)-Responsive Paracest Mri Agent For Improved Diagnosis Of Prostate Cancer, Megan Martin, Holly Clancy

Creative Activity and Research Day - CARD

In the United States, prostate cancer is the leading type of cancer diagnosed in men. Prostate cancer is currently diagnosed with the Prostate-Specific Antigen (PSA) test; however, it leads to many false positives and therefore unneeded biopsies. Previous studies have shown that cancerous prostates have a much lower concentration of zinc than healthy prostates. The goal of this project is to create an MRI contrast agent capable of non-invasively quantifying zinc in the human prostate. Five out of the eight synthetic steps have been successfully completed so far, and the identities of these intermediate products have been verified by 1 …


Impact Of Quinoline Amide Substituents On The Luminescence And Paracest Mri Properties Of Bimodal Europium (Iii) Complexes, Brooke Aloe, Marisa Poveda, Osasere M. Evbuomwan Apr 2019

Impact Of Quinoline Amide Substituents On The Luminescence And Paracest Mri Properties Of Bimodal Europium (Iii) Complexes, Brooke Aloe, Marisa Poveda, Osasere M. Evbuomwan

Creative Activity and Research Day - CARD

Lanthanide ions exhibit optical imaging properties; however, the amount of energy needed to directly excite these ions could potentially be damaging to biological tissue. To overcome this limitation, organic chromophores, such as quinolines, can be used to absorb the excited light and transfer the energy obtained to the attached lanthanide ion. This intramolecular energy transfer results in the sensitization of the lanthanide ion luminescence. The goal of this project is to assess how the amide proton position in relation to the quinoline substituent affects the sensitivity of luminescence and the optical imaging properties of Europium (III) complexes. To achieve this …