Literature DB >> 30529259

Cabazitaxel-loaded Poly(2-ethylbutyl cyanoacrylate) nanoparticles improve treatment efficacy in a patient derived breast cancer xenograft.

Markus Fusser1, Anders Øverbye2, Abhilash D Pandya1, Ýrr Mørch3, Sven Even Borgos3, Wanja Kildal4, Sofie Snipstad5, Einar Sulheim5, Karianne Giller Fleten1, Hanne Arenberg Askautrud4, Olav Engebraaten6, Kjersti Flatmark6, Tore Geir Iversen2, Kirsten Sandvig7, Tore Skotland8, Gunhild M Mælandsmo9.   

Abstract

The effect of poly(2-ethyl-butyl cyanoacrylate) nanoparticles containing the cytotoxic drug cabazitaxel was studied in three breast cancer cell lines and one basal-like patient-derived xenograft model grown in the mammary fat pad of immunodeficient mice. Nanoparticle-encapsulated cabazitaxel had a much better efficacy than similar concentrations of free drug in the basal-like patient-derived xenograft and resulted in complete remission of 6 out of 8 tumors, whereas free drug gave complete remission only with 2 out of 9 tumors. To investigate the different efficacies obtained with nanoparticle-encapsulated versus free cabazitaxel, mass spectrometry quantification of cabazitaxel was performed in mice plasma and selected tissue samples. Nanoparticle-encapsulated drug had a longer circulation time in blood. There was approximately a three times higher drug concentration in tumor tissue 24 h after injection, and two times higher 96 h after injection of nanoparticles with drug compared to the free drug. The tissue biodistribution obtained after 24 h using mass spectrometry analyses correlates well with biodistribution data obtained using IVIS® Spectrum in vivo imaging of nanoparticles labeled with the fluorescent substance NR668, indicating that these data also are representative for the nanoparticle distribution. Furthermore, immunohistochemistry was used to estimate infiltration of macrophages into the tumor tissue following injection of nanoparticle-encapsulated and free cabazitaxel. The higher infiltration of anti-tumorigenic versus pro-tumorigenic macrophages in tumors treated with the nanoparticles might also contribute to the improved effect obtained with the nanoparticle-encapsulated drug. Tumor infiltration of pro-tumorigenic macrophages was four times lower when using nanoparticles containing cabazitaxel than when using particles without drug, and we speculate that the very good therapeutic efficacy obtained with our cabazitaxel-containing particles may be due to their ability to reduce the level of pro-tumorigenic macrophages in the tumor. In summary, encapsulation of cabazitaxel in poly(2-ethyl-butyl cyanoacrylate) nanoparticles seems promising for treatment of breast cancer.
Copyright © 2018 Oslo University Hospital. Published by Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Biodistribution; Breast cancer; Cabazitaxel; Cell toxicity; Macrophage infiltration; Poly(alkyl cyanoacrylate) nanoparticles

Mesh:

Substances:

Year:  2018        PMID: 30529259     DOI: 10.1016/j.jconrel.2018.11.029

Source DB:  PubMed          Journal:  J Control Release        ISSN: 0168-3659            Impact factor:   9.776


  8 in total

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Authors:  Zhen Qu; Yuning Ren; Hongyu Shen; Huihui Wang; Lijie Shi; Deyong Tong
Journal:  Drug Des Devel Ther       Date:  2021-08-20       Impact factor: 4.162

2.  Biodistribution of Poly(alkyl cyanoacrylate) Nanoparticles in Mice and Effect on Tumor Infiltration of Macrophages into a Patient-Derived Breast Cancer Xenograft.

Authors:  Abhilash D Pandya; Tore-Geir Iversen; Siver Moestue; Maria T Grinde; Ýrr Mørch; Sofie Snipstad; Andreas K O Åslund; Geir F Øy; Wanja Kildal; Olav Engebråten; Kirsten Sandvig; Tore Skotland; Gunhild M Mælandsmo
Journal:  Nanomaterials (Basel)       Date:  2021-04-28       Impact factor: 5.076

3.  A comparative biodistribution study of polymeric and lipid-based nanoparticles.

Authors:  Andreas K O Åslund; Rob J Vandebriel; Fanny Caputo; Wim H de Jong; Christiaan Delmaar; Astrid Hyldbakk; Emilie Rustique; Ruth Schmid; Sofie Snipstad; Isabelle Texier; Kai Vernstad; Sven Even F Borgos
Journal:  Drug Deliv Transl Res       Date:  2022-04-15       Impact factor: 5.671

4.  Identification of novel cyanoacrylate monomers for use in nanoparticle drug delivery systems prepared by miniemulsion polymerisation - A multistep screening approach.

Authors:  Astrid Hyldbakk; Yrr Mørch; Sofie Snipstad; Andreas K O Åslund; Geir Klinkenberg; Vu To Nakstad; Ane-Marit Wågbø; Ruth Schmid; Peter P Molesworth
Journal:  Int J Pharm X       Date:  2022-07-20

5.  Drug-Loaded Photosensitizer-Chitosan Nanoparticles for Combinatorial Chemo- and Photodynamic-Therapy of Cancer.

Authors:  Abhilash D Pandya; Anders Øverbye; Priyanka Sahariah; Vivek S Gaware; Håkon Høgset; Màr Masson; Anders Høgset; Gunhild M Mælandsmo; Tore Skotland; Kirsten Sandvig; Tore-Geir Iversen
Journal:  Biomacromolecules       Date:  2020-03-05       Impact factor: 6.988

6.  Paclitaxel-loaded biodegradable ROS-sensitive nanoparticles for cancer therapy.

Authors:  Abhilash D Pandya; Eliézer Jäger; Shahla Bagheri Fam; Anita Höcherl; Alessandro Jäger; Vladimir Sincari; Bo Nyström; Petr Štěpánek; Tore Skotland; Kirsten Sandvig; Martin Hrubý; Gunhild M Mælandsmo
Journal:  Int J Nanomedicine       Date:  2019-08-06

7.  Biological response and cytotoxicity induced by lipid nanocapsules.

Authors:  Marzena Szwed; Maria Lyngaas Torgersen; Remya Valsala Kumari; Sunil Kumar Yadava; Sascha Pust; Tore Geir Iversen; Tore Skotland; Jyotsnendu Giri; Kirsten Sandvig
Journal:  J Nanobiotechnology       Date:  2020-01-06       Impact factor: 10.435

8.  Perturbation of Cellular Redox Homeostasis Dictates Divergent Effects of Polybutyl Cyanoacrylate (PBCA) Nanoparticles on Autophagy.

Authors:  Tonje Sønstevold; Nikolai Engedal; Maria Lyngaas Torgersen
Journal:  Cells       Date:  2021-12-06       Impact factor: 6.600

  8 in total

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