Javascript must be enabled to continue!
Activatable Silicon-Xanthene Photosensitizer for Photodynamic Therapy of Glioblastoma
View through CrossRef
Background: Photodynamic therapy (PDT) offers a promising complementary strategy for treating glioblastoma multiforme (GBM); however, limited control over photosensitizer activation and reduced efficacy under hypoxic conditions remain significant limitations. Methods: In this study, we present the synthesis and functional evaluation of Gal-SiX, an enzymatically activatable Si-xanthene-based activatable PDT agent designed to address these challenges. Prepared via an improved 10-step synthetic route, Gal-SiX exhibits clear turn-on fluorescence and absorbance responses upon β-galactosidase activation and efficiently generates reactive oxygen species in aqueous media. Results: Mechanistic studies revealed that Gal-SiX enables both Type I and Type II PDT pathways, a favorable feature for GBM environments characterized by restricted oxygen availability. In vitro assays conducted on U87MG glioblastoma cells and L929 healthy fibroblasts demonstrated light-dependent cytotoxicity, with IC50 values of 3.30 μM and 7.19 μM, respectively. Gal-SiX also showed minimal dark toxicity (>80 μM) and potent light-induced cytotoxicity, yielding a phototoxicity index of 24.8 in glioblastoma cells. Confocal imaging and MTT assays consistently confirmed enzymatic activation and effective PDT response at the cellular level. Conclusions: Overall, this work introduces the first activatable Si-xanthene-based PDT agent for glioblastoma and provides the first evidence that the Si-xanthene scaffold can support dual Type I/II phototoxicity. These results underscore Gal-SiX’s potential as a PDT platform for addressing the unique constraints of GBM biology.
Title: Activatable Silicon-Xanthene Photosensitizer for Photodynamic Therapy of Glioblastoma
Description:
Background: Photodynamic therapy (PDT) offers a promising complementary strategy for treating glioblastoma multiforme (GBM); however, limited control over photosensitizer activation and reduced efficacy under hypoxic conditions remain significant limitations.
Methods: In this study, we present the synthesis and functional evaluation of Gal-SiX, an enzymatically activatable Si-xanthene-based activatable PDT agent designed to address these challenges.
Prepared via an improved 10-step synthetic route, Gal-SiX exhibits clear turn-on fluorescence and absorbance responses upon β-galactosidase activation and efficiently generates reactive oxygen species in aqueous media.
Results: Mechanistic studies revealed that Gal-SiX enables both Type I and Type II PDT pathways, a favorable feature for GBM environments characterized by restricted oxygen availability.
In vitro assays conducted on U87MG glioblastoma cells and L929 healthy fibroblasts demonstrated light-dependent cytotoxicity, with IC50 values of 3.
30 μM and 7.
19 μM, respectively.
Gal-SiX also showed minimal dark toxicity (>80 μM) and potent light-induced cytotoxicity, yielding a phototoxicity index of 24.
8 in glioblastoma cells.
Confocal imaging and MTT assays consistently confirmed enzymatic activation and effective PDT response at the cellular level.
Conclusions: Overall, this work introduces the first activatable Si-xanthene-based PDT agent for glioblastoma and provides the first evidence that the Si-xanthene scaffold can support dual Type I/II phototoxicity.
These results underscore Gal-SiX’s potential as a PDT platform for addressing the unique constraints of GBM biology.
Related Results
Investigating the role of the apelinergic system in glioblastoma
Investigating the role of the apelinergic system in glioblastoma
<p>Elucidating the molecular signalling circuitry that underpins the pathogenesis of cancers is critical to understanding and developing effective treatment paradigms for can...
Activatable Silicon-Xanthene Dye for Selective PDT of Glioblastoma
Activatable Silicon-Xanthene Dye for Selective PDT of Glioblastoma
Photodynamic therapy (PDT) offers a promising complementary strategy for the treatment of glioblastoma multiforme (GBM); however, achieving selective activation in tumor tissue and...
Glioblastoma: Características Histopatológicas e Marcadores Diagnósticos
Glioblastoma: Características Histopatológicas e Marcadores Diagnósticos
O glioblastoma representa a neoplasia maligna primária mais comum e agressiva do sistema nervoso central em adultos, caracterizando-se por um comportamento biológico altamente infi...
Phytolith extraction and counting procedure for modern plant material rich in silica skeletons v1
Phytolith extraction and counting procedure for modern plant material rich in silica skeletons v1
Modern plant tissues are often processed for phytolith analysis. They represent a fundamental source of comparison for archeological and palaeoenvironmental phytolith assemblages; ...
Phytolith extraction and counting procedure for modern plant material rich in silica skeletons v2
Phytolith extraction and counting procedure for modern plant material rich in silica skeletons v2
Modern plant tissues are often processed for phytolith analysis. They represent a fundamental source of comparison for archeological and palaeoenvironmental phytolith assemblages; ...
Phytolith extraction and counting procedure for modern plant material rich in silica skeletons v1
Phytolith extraction and counting procedure for modern plant material rich in silica skeletons v1
Modern plant tissues are often processed for phytolith analysis. They represent a fundamental source of comparison for archeological and palaeoenvironmental phytolith assemblages; ...
Understanding glioblastoma : cell identity in tissue space
Understanding glioblastoma : cell identity in tissue space
<p dir="ltr"><b>Abstract</b></p><p dir="ltr">Glioblastoma is the most prevalent form of brain cancer among adults. Inherently malignant and aggressive...
Understanding glioblastoma : cell identity in tissue space
Understanding glioblastoma : cell identity in tissue space
<p dir="ltr"><b>Abstract</b></p><p dir="ltr">Glioblastoma is the most prevalent form of brain cancer among adults. Inherently malignant and aggressive...

