Dissecting the Interactions between Chlorin e6 and Human Serum Albumin

Исследование взаимодействий между хлорином e6 и сывороточным альбумином человека
Alessia Marconi, Edoardo Jun Mattioli, Filippo Ingargiola, Giulia Giugliano, Tainah Dorina Marforio, Luca Prodi, Matteo Di Giosia, Matteo Calvaresi
2023-03-03

Chlorin e6Ensemble dockingHuman serum albuminMolecular dynamics simulationsPhotodynamic therapy
Chlorin e6 (Ce6) is among the most used sensitizers in photodynamic (PDT) and sonodynamic (SDT) therapy; its low solubility in water, however, hampers its clinical exploitation. Ce6 has a strong tendency to aggregate in physiological environments, reducing its performance as a photo/sono-sensitizer, as well as yielding poor pharmacokinetic and pharmacodynamic properties. The interaction of Ce6 with human serum albumin (HSA) (i) governs its biodistribution and (ii) can be used to improve its water solubility by encapsulation. Here, using ensemble docking and microsecond molecular dynamics simulations, we identified the two Ce6 binding pockets in HSA, i.e., the Sudlow I site and the heme binding pocket, providing an atomistic description of the binding. Comparing the photophysical and photosensitizing properties of Ce6@HSA with respect to the same properties regarding the free Ce6, it was observed that (i) a red-shift occurred in both the absorption and emission spectra, (ii) a maintaining of the fluorescence quantum yield and an increase of the excited state lifetime was detected, and (iii) a switch from the type II to the type I mechanism in a reactive oxygen species (ROS) production, upon irradiation, took place.
1
Albumin binding preserves the fluorescence quantum yield, increases the excited-state lifetime, and switches ROS generation from a type II to a type I mechanism upon irradiation.
2
Chlorin e6 binds human serum albumin at two sites: the Sudlow I site and the heme-binding pocket.
3
Compared with free Chlorin e6, the Chlorin e6–albumin complex exhibits red-shifted absorption and emission spectra.
4
Encapsulation in human serum albumin addresses Chlorin e6’s poor water solubility and may influence its biodistribution.
5
Ensemble docking and microsecond molecular dynamics simulations provided an atomistic description of Chlorin e6 binding within albumin.

Chlorin e6–human serum albumin complexes

Binding-site interactions and the resulting photophysical, photosensitizing, and reactive oxygen species generation properties of chlorin e6 upon complexation with human serum albumin

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2023-03-03
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Alessia Marconi
Edoardo Jun Mattioli
Filippo Ingargiola
Giulia Giugliano
Tainah Dorina Marforio
Luca Prodi
Matteo Di Giosia
Matteo Calvaresi
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