Monitoring protein activity by resonance energy transfer based on intrinsic fluorescence
dc.contributor.advisor | Olaf | |
dc.contributor.author | SAHAR FARHAN H ALSHAMMARI | |
dc.date | 2020 | |
dc.date.accessioned | 2022-05-28T17:14:03Z | |
dc.date.available | 2022-05-28T17:14:03Z | |
dc.degree.department | Physics Nano science | |
dc.degree.grantor | University of Strathclyde | |
dc.description.abstract | FRET mechanism was prescribed before few decades. Now, it’s being used mostly in medical science, drug development and pharmaceutical. Its process is dependent on the radiation-free energy conversion between two light responsive chromophores. A donor which is in electronically exited state, passes energy to an acceptor chromophore, by non-radiative dipole-dipole coupling. In FRET, energy is transferred without molecular collision and conversion to thermal energy. The energy conversion leads to a decrease in the fluorescence intensity of the donor and the lifetime of the higher energy level, and an increase in the emission intensity of the acceptor. I would use different references for the assessment of the FRET and through different parameters and frame of references due to surprising results which are based on instrument error and time-based issues. | |
dc.identifier.uri | https://drepo.sdl.edu.sa/handle/20.500.14154/37393 | |
dc.language.iso | en | |
dc.title | Monitoring protein activity by resonance energy transfer based on intrinsic fluorescence | |
sdl.thesis.level | Master | |
sdl.thesis.source | SACM - United Kingdom |