Endolysosomal targeting of a clinical chlorin photosensitiser for light-triggered delivery of nano-sized medicines

Таргетирование эндолизосом клинически применяемым хлориновым фотосенсибилизатором для светоуправляемой доставки лекарственных средств наноразмерного типа
Elnaz Yaghini, Ruggero Dondi, Kunal M. Tewari, Marilena Loizidou, Ian M. Eggleston, Alexander J. MacRobert
2017-07-14

cell-penetrating peptidechlorin e6endolysosomal targetingnano-sized cytotoxinphotochemical internalisation
Abstract A major problem with many promising nano-sized biotherapeutics including macromolecules is that owing to their size they are subject to cellular uptake via endocytosis, and become entrapped and then degraded within endolysosomes, which can significantly impair their therapeutic efficacy. Photochemical internalisation (PCI) is a technique for inducing cytosolic release of the entrapped agents that harnesses sub-lethal photodynamic therapy (PDT) using a photosensitiser that localises in endolysosomal membranes. Using light to trigger reactive oxygen species-mediated rupture of the photosensitised endolysosomal membranes, the spatio-temporal selectivity of PCI then enables cytosolic release of the agents at the selected time after administration so that they can reach their intracellular targets. However, conventional photosensitisers used clinically for PDT are ineffective for photochemical internalisation owing to their sub-optimal intracellular localisation. In this work we demonstrate that such a photosensitiser, chlorin e6, can be repurposed for PCI by conjugating the chlorin to a cell penetrating peptide, using bioorthogonal ligation chemistry. The peptide conjugation enables targeting of endosomal membranes so that light-triggered cytosolic release of an entrapped nano-sized cytotoxin can be achieved with consequent improvement in cytotoxicity. The photoproperties of the chlorin moiety are also conserved, with comparable singlet oxygen quantum yields found to the free chlorin.
1
Conjugation preserved chlorin e6 photochemical function, with singlet oxygen quantum yields comparable to those of free chlorin e6.
2
Light-triggered release mediated by the chlorin e6 conjugate improved the cytotoxicity of the nano-sized cytotoxin.
3
Peptide conjugation redirected chlorin e6 to endosomal membranes, enabling reactive oxygen species-mediated membrane rupture and cytosolic release of an entrapped nano-sized cytotoxin.
4
Photochemical internalisation enables light-triggered, spatiotemporally controlled cytosolic release of nano-sized therapeutics trapped in endolysosomes.
5
The clinically used photosensitiser chlorin e6 was repurposed for photochemical internalisation by conjugation to a cell-penetrating peptide using bioorthogonal ligation chemistry.

chlorin e6–cell-penetrating peptide conjugate targeting endolysosomal membranes for photochemical internalisation of entrapped nano-sized cytotoxins

light-triggered reactive oxygen species-mediated rupture of endolysosomal membranes and cytosolic release of entrapped nano-sized cytotoxins, including the resulting cytotoxicity and conserved singlet oxygen generation

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2017-07-14
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Elnaz Yaghini
Ruggero Dondi
Kunal M. Tewari
Marilena Loizidou
Ian M. Eggleston
Alexander J. MacRobert
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