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Published on: January 12, 2009
Controlled and Selective Photo-oxidation of Amyloid-β Fibrils by Oligomeric p-Phenylene Ethynylenes
Adeline M Fanni1,2, Daniel Okoye1, Florencia A Monge1,2
1Center for Biomedical Engineering, University of New Mexico, Albuquerque, New Mexico 87131, United States.
Abstract:
Photodynamic therapy (PDT) has been explored as a therapeutic strategy to clear toxic amyloid aggregates involved in neurodegenerative disorders such as Alzheimer's disease. A major limitation of PDT is off-target oxidation, which can be lethal for the surrounding cells. We have shown that a novel class of oligo-p-phenylene ethynylenes (OPEs) exhibit selective binding and fluorescence turn-on in the presence of prefibrillar and fibrillar aggregates of disease-relevant proteins such as amyloid-β (Aβ) and α-synuclein. Concomitant with fluorescence turn-on, OPE also photosensitizes singlet oxygen under illumination through the generation of a triplet state, pointing to the potential application of OPEs as photosensitizers in PDT. Herein, we investigated the photosensitizing activity of an anionic OPE for the photo-oxidation of Aβ fibrils and compared its efficacy to the well-known but nonselective photosensitizer methylene blue (MB). Our results show that, while MB photo-oxidized both monomeric and fibrillar conformers of Aβ40, OPE oxidized only Aβ40 fibrils, targeting two histidine residues on the fibril surface and a methionine residue located in the fibril core. Oxidized fibrils were shorter and more dispersed but retained the characteristic β-sheet rich fibrillar structure and the ability to seed further fibril growth. Importantly, the oxidized fibrils displayed low toxicity. We have thus discovered a class of novel theranostics for the simultaneous detection and oxidization of amyloid aggregates. Importantly, the selectivity of OPE's photosensitizing activity overcomes the limitation of off-target oxidation of traditional photosensitizers and represents an advancement of PDT as a viable strategy to treat neurodegenerative disorders.
Insights
Novel oligo-p-phenylene ethynylenes (OPEs) selectively target and photosensitize amyloid aggregates for photodynamic therapy (PDT). This overcomes off-target oxidation issues, offering a promising strategy for neurodegenerative diseases like Alzheimer's.
Area of Science:
- Biochemistry
- Photochemistry
- Neuroscience
Background:
- Photodynamic therapy (PDT) shows potential for clearing toxic amyloid aggregates in neurodegenerative diseases.
- Off-target oxidation by traditional PDT photosensitizers poses a significant safety concern.
- Oligo-p-phenylene ethynylenes (OPEs) demonstrate selective binding and fluorescence turn-on with amyloid aggregates.
Purpose of the Study:
- To investigate the photosensitizing activity of an anionic OPE for amyloid-beta (Aβ) fibril photo-oxidation.
- To compare the efficacy of OPE with methylene blue (MB), a nonselective photosensitizer.
- To evaluate the impact of OPE-mediated oxidation on Aβ fibril structure, seeding potential, and toxicity.
Main Methods:
- Utilized an anionic oligo-p-phenylene ethynylene (OPE) as a photosensitizer.
- Compared OPE's photo-oxidation of Aβ40 fibrils with methylene blue (MB).
- Analyzed oxidized Aβ fibrils for structural changes, seeding capacity, and toxicity.
Main Results:
- OPE selectively photo-oxidized Aβ40 fibrils, unlike MB which oxidized both monomers and fibrils.
- OPE targeted specific histidine and methionine residues within the Aβ fibrils.
- Oxidized fibrils showed altered morphology but retained structure and seeding ability, with low toxicity.
Conclusions:
- OPEs represent a novel class of theranostics for simultaneous detection and targeted oxidation of amyloid aggregates.
- The selectivity of OPEs overcomes the off-target oxidation limitations of traditional PDT photosensitizers.
- This advancement positions OPEs as a promising strategy for treating neurodegenerative disorders.
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