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  Cocktail of lipophilic and hydrophilic chemotherapeutics in high-load core@shell nanocarriers to treat pancreatic tumours

Rudolph, D., Ischyropoulou, M., Pfeifer, J., Napp, J., Schepers, U., Alves, F., et al. (2024). Cocktail of lipophilic and hydrophilic chemotherapeutics in high-load core@shell nanocarriers to treat pancreatic tumours. Nanoscale Advances, 6, 973-984. doi:10.1039/d3na00720k.

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Other : Cocktail of lipophilic and hydrophilic chemotherapeutics in high-load core(at)shell nanocarriers to treat pancreatic tumours
Other : Cocktail of lipophilic and hydrophilic chemotherapeutics in high-load core-at-shell nanocarriers to treat pancreatic tumours

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 Creators:
Rudolph, David, Author
Ischyropoulou, Myrto1, Author           
Pfeifer, Juliana, Author
Napp, Joanna1, Author           
Schepers, Ute, Author
Alves, Frauke1, Author           
Feldmann, Claus, Author
Affiliations:
1Research Group of Translational Molecular Imaging, Max Planck Institute for Multidisciplinary Sciences, Max Planck Society, ou_3350306              

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 Abstract: ITC/Toc@Gd2(FLP)3 core@shell nanocarriers with a chemotherapeutic cocktail of lipophilic irinotecan (ITC) as the particle core and hydrophilic fludarabine phosphate (FLP) in the particle shell are realized. They are prepared via a microemulsion approach with ITC dissolved in tocopherol (Toc) as droplet phase and stabilized by water-insoluble Gd2(FLP)3. The synthesis can be followed by zeta-potential analysis. X-ray powder diffraction, infrared spectroscopy, elemental analysis, thermogravimetry, and photometry show a drug load of 49 μg per mL ITC and 317 μg per mL FLP at a nanocarrier concentration of 1.5 mg mL−1. Size and structure are evidenced by electron microscopy, resulting in a total diameter of 45 ± 16 nm, an inner core of 40 ± 17 nm, and a shell of 3–8 nm. In vitro studies with different cancer cell lines (i.e., human melanoma/SK-Mel-28, cervical cancer/HeLa, mouse pancreatic cancer/Panc02 and KPC as well as human pancreatic cancer/Capan-1 cells) prove efficient nanocarrier uptake and promising cytostatic efficacy. Specifically for KPC cells, ITC/Toc@Gd2(FLP)3 nanocarriers show an increased efficacy, with half maximal inhibitory concentration (IC50: 4.2 μM) > 10 times lower than the free drugs (IC50: ITC: 47.7 μM, FLP: 143 μM). This points to the synergistic effect of the ITC/FLP drug cocktail in the nanocarriers and may result in a promising strategy to treat pancreatic ductal adenocarcinoma (PDAC).

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Language(s): eng - English
 Dates: 2024-01-022024
 Publication Status: Issued
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 Rev. Type: Peer
 Identifiers: DOI: 10.1039/d3na00720k
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Title: Nanoscale Advances
  Abbreviation : Nanoscale Adv.
Source Genre: Journal
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Publ. Info: Cambridge, UK : Royal Society of Chemistry
Pages: - Volume / Issue: 6 Sequence Number: - Start / End Page: 973 - 984 Identifier: ISSN: 2516-0230
CoNE: https://pure.mpg.de/cone/journals/resource/2516-0230