Redox-Responsive Nanophotosensitizer Composed of Chlorin e6-Conjugated Dextran for Photodynamic Treatment of Colon Cancer Cells
Окислительно-восстановительно-чувствительный нанофотосенсибилизатор на основе декстрана, конъюгированного с хлорином e6, для фотодинамического лечения клеток рака толстой кишки
2016-01-01
SCID: 54.1/nr9dx5q3
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Chlorin e6Colon cancerDextranase-triggered deliveryPhotodynamic therapyRedox-responsive nanoparticles
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Abstract (AI)
We synthesized dextran-chlorin e6 conjugates having disulfide linkage for specific targeting of colonic region and cancer cells. Reductive end group of dextran was treated with sodium borocyanohydride and conjugated with cystamine. Cystamine end group was conjugated with carboxylic acid of chlorin e6 (DEX6ss). DEX6ss conjugates were formed as spherical nanoparticles with small sizes less than 100 nm. Chlorin e6 (Ce6) was specifically released from DEX6ss nanoparticles in the presence of dextranase or glutathione (GSH), indicating that DEX6ss nanoparticles have responsiveness against dextranase and redox-environment. In dark-toxicity test using normal cells and cancer cells, Ce6 and DEX6ss nanoparticles were practically nontoxic. Intracellular delivery of DEX6ss nanoparticles was significantly improved compared to Ce6 itself. DEX6ss nanoparticles achieved significantly higher ROS production and phototoxicity against HCT116 colon cancer cells than Ce6 itself. Furthermore, DEX6ss nanoparticles showed enhanced tumor targeting efficiency and longer retention in the tumor tissues atin vivoanimal study with HCT116 tumor-bearing mice. Furthermore, DEX6ss nanoparticles have responsiveness against colonic enzyme, dextranase, indicating that they have potential of colon-specific delivery and dextranase-specific drug delivery capacity. We fabricated colon-specific and tumor-targetable nanophotosensitizer using DEX6ss conjugates. They showed improved cellular uptake ratio, phototoxicity, and colon-specificity. We suggest that DEX6ss nanoparticles can be considered as a promising candidate for PDT of colon cancer.
Key Findings
1
Compared with free chlorin e6, DEX6ss nanoparticles generated higher reactive oxygen species levels and phototoxicity against HCT116 colon cancer cells.
2
DEX6ss nanoparticles released chlorin e6 in response to dextranase or glutathione, demonstrating enzymatic and redox responsiveness.
3
DEX6ss nanoparticles were practically nontoxic in the dark to normal and cancer cells while significantly improving intracellular chlorin e6 delivery.
4
Dextran–chlorin e6 conjugates with disulfide linkages self-assembled into spherical nanoparticles smaller than 100 nm.
5
In HCT116 tumor-bearing mice, DEX6ss nanoparticles showed enhanced tumor targeting and prolonged tumor retention, supporting colon-specific photodynamic therapy.
Research Object
DEX6ss dextran–chlorin e6 conjugate nanoparticles for photodynamic treatment of HCT116 colon cancer cells and tumors
Research Subject
The dextranase- and redox-responsive release, cellular uptake, ROS generation, phototoxicity, and colon/tumor-targeting performance of DEX6ss nanoparticles
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2016-01-01
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