Effective transport of aggregated hypericin encapsulated in SBA-15 nanoporous silica particles for photodynamic therapy of cancer cells

被引:6
|
作者
Pevna, Viktoria [1 ]
Zauska, Lubos [2 ]
Benziane, Anass [3 ]
Vamosi, Gyorgy [3 ]
Girman, Vladimir [4 ]
Miklosova, Monika [5 ]
Zelenak, Vladimir [2 ]
Huntosova, Veronika [6 ]
Almasi, Miroslav [2 ]
机构
[1] PJ Safarik Univ Kosice, Fac Sci, Inst Phys, Dept Biophys, Jesenna 5, SK-04154 Kosice, Slovakia
[2] PJ Safarik Univ Kosice, Fac Sci, Dept Inorgan Chem, Moyzesova 11, SK-04154 Kosice, Slovakia
[3] Univ Debrecen, Fac Med, Dept Biophys & Cell Biol, Egyet Ter 1, H-4032 Debrecen, Hungary
[4] PJ Safarik Univ Kosice, Fac Sci, Dept Solid State Phys, Pk Angelinum, SK-04154 Kosice, Slovakia
[5] PJ Safarik Univ Kosice, Fac Med, Dept Surg 2, Rastislavova 43, SK-04001 Kosice, Slovakia
[6] PJ Safarik Univ Kosice, Ctr Interdisciplinary Biosci Technol & Innovat Pk, Jesenna 5, SK-04154 Kosice, Slovakia
关键词
Nanoporous silica; Hypericin; Transport; Cancer cells; Fluorescence lifetime; Photodynamic therapy; GLIOMA-CELLS; FLUORESCENCE; DYNAMICS;
D O I
10.1016/j.jphotobiol.2023.112785
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Photodynamic therapy (PDT) represents an interesting modality for the elimination of damaged biomaterials and cells. This treatment takes advantage of the photosensitizing properties of molecules that are active only when irradiated with light. In the present work, a dual property of hypericin, a hydrophobic molecule with high performance in photodiagnostics and photodynamic therapy, was exploited. The non-fluorescent and photodynamically inactive form of hypericin aggregates was loaded into the nanopores of SBA-15 silica particles. The synthesized particles were characterized by infrared spectroscopy, thermogravimetry, differential thermal analysis, small-angle X-ray scattering and transmission electron microscopy. Hypericin aggregates were confirmed by absorption spectra typical of aggregated hypericin and by its short fluorescence lifetime. Release of hypericin from the particles was observed toward serum proteins, mimicking physiological conditions. Temperature- and time-dependent uptake of hypericin by cancer cells showed gradual release of hypericin from the particles and active cellular transport by endocytosis. A closer examination of SBA-15-hypericin uptake by fluorescence lifetime imaging showed that aggregated hypericin molecules, characterized by a short fluorescence lifetime (-4 ns), were still present in the SBA-15 particles upon uptake by cells. However, monomerization of hypericin in cancer cells was observed by extending the hypericin fluorescence lifetime by -8 ns, preferentially in lipid compartments and the plasma membrane. This suggests a promising prognosis for delayed biological activity of the entire cargo, which was confirmed by effective PDT in vitro. In summary, this work presents an approach for safe, inactive delivery of hypericin that is activated at the target site in cells and tissues.
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页数:11
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