2021
DOI: 10.1039/d0cs01492c
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Applications of bioluminescence in biotechnology and beyond

Abstract: Bioluminescent probes have hugely benefited from the input of synthetic chemistry and protein engineering. Here we review the latest applications of these probes in biotechnology and beyond, with an eye on current limitations and future directions.

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Cited by 154 publications
(117 citation statements)
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References 371 publications
(390 reference statements)
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“…Oxidation of the luciferin diphenyterazine (DTZ) by Antares2 leads to orange-red light emission, rather than the blue light emitted by teLuc alone, due to bioluminescent energy transfer (BRET) of the energy of DTZ oxidation to the fluorophores of the CyOFP1 moieties. This is pronounced shift in the wavelength of emitted light is critical to the detection of functional mRNA delivery in vivo, as the absorbance of tissues is inversely proportion to the wavelength of light (63).…”
Section: Creation Of Antares2 Mrna-loaded Exosomesmentioning
confidence: 99%
“…Oxidation of the luciferin diphenyterazine (DTZ) by Antares2 leads to orange-red light emission, rather than the blue light emitted by teLuc alone, due to bioluminescent energy transfer (BRET) of the energy of DTZ oxidation to the fluorophores of the CyOFP1 moieties. This is pronounced shift in the wavelength of emitted light is critical to the detection of functional mRNA delivery in vivo, as the absorbance of tissues is inversely proportion to the wavelength of light (63).…”
Section: Creation Of Antares2 Mrna-loaded Exosomesmentioning
confidence: 99%
“…Various luciferases have been incorporated into a diverse array of cell types and long been used as reporter tools for tracking gene expression patterns and cell movements in research animals (Love and Prescher, 2020). The knowledge of all enzymes participating in bioluminescence cascades opens the possibility of engineering organisms with self-sustained luminescence, thus allowing the development of substrateindependent bioluminescence-based reporter technologies (Syed and Anderson, 2021). Apart from practical importance the exploration of luciferin biosynthetic pathways promotes our understanding of the origins and function of bioluminescence and provides new insights into ecological significance of this trait.…”
Section: Discussionmentioning
confidence: 99%
“…В настоящее время известно не менее десятка различных неапоптотических механизмов программируемой клеточной гибели, таких как аутофагия, некроптоз, ферроптоз, пироптоз, партанатоз, энтоз, нетоз и др. [ [10]. Такие системы широко распространены в природе, однако хорошо изучено и адаптировано для применения всего несколько.…”
Section: ферроптоз -новый вид программируемой клеточной гибелиunclassified