Surface Modified Carvacrol-rich Satureja khuzestanica Essential Oil Nanoemulsion: A Novel Paclitaxel Formulation Induced Apoptosis on Paclitaxel-Resistant Breast Cancer Cells

Background: The ability of cancer cells to develop multidrug resistance (MDR) is a major challenge in modern chemotherapy. The current generation of commercially available paclitaxel formulations have not been designed to treat resistant tumours. In this study, a nanoemulsion-based delivery system w...

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Main Authors: Zeinab Mazarei (Author), Houri Sepehri (Author), Ladan Delphi (Author), David Julian McClements (Author), Hasan Rafati (Author)
Format: Book
Published: Tabriz University of Medical Sciences, 2024-01-01T00:00:00Z.
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LEADER 00000 am a22000003u 4500
001 doaj_4ed8527dbd3a4d87b59da3c4e4fd8b4f
042 |a dc 
100 1 0 |a Zeinab Mazarei  |e author 
700 1 0 |a Houri Sepehri  |e author 
700 1 0 |a Ladan Delphi  |e author 
700 1 0 |a David Julian McClements  |e author 
700 1 0 |a Hasan Rafati  |e author 
245 0 0 |a Surface Modified Carvacrol-rich Satureja khuzestanica Essential Oil Nanoemulsion: A Novel Paclitaxel Formulation Induced Apoptosis on Paclitaxel-Resistant Breast Cancer Cells 
260 |b Tabriz University of Medical Sciences,   |c 2024-01-01T00:00:00Z. 
500 |a 2383-2886 
500 |a 10.34172/PS.2023.22 
520 |a Background: The ability of cancer cells to develop multidrug resistance (MDR) is a major challenge in modern chemotherapy. The current generation of commercially available paclitaxel formulations have not been designed to treat resistant tumours. In this study, a nanoemulsion-based delivery system was developed to enhance the efficacy of paclitaxel against resistant breast cancer cells. Methods: The nanoemulsion was formulated using carvacrol-rich Satureja khuzestanica essential oil. Modification of nanoemulsion was performed by incorporating tocopheryl polyethylene glycol 1000 succinate (TPGS) which could inhibit drug resistance in cancer cells. Fabrication of paclitaxel nanoemulsion was performed by high speed homogenization. The cytotoxicity of prepared formulation against resistant breast cancer cells was investigated by MTT assay. Flow cytometry technique was used for cell cycle arrest analysis and examination of the apoptosis induction ability of prepared nanoemulsion. Results: The nanoemulsion had a relatively small mean droplet diameter (93.6 ± 4.2 nm) and good long-term stability. The ability of paclitaxel to inhibit P-gp function in paclitaxel-resistant breast cancer cells (MCF-7/PTX) was synergistically enhanced by administering it within the nanoemulsion. The cytotoxicity of the prepared nanoemulsion on the HUVEC normal cells was much lower than that of MCF-7/PTX cells. Cell cycle analysis utilizing flow cytometry showed that the paclitaxel-loaded nanoemulsion promoted G2-M arrest. Flow cytometry also demonstrated that this nanoemulsion induced apoptosis in MCF-7/PTX cells. Interestingly, apoptosis increased from 20.0% for the free paclitaxel treated group to 85.2 % for the paclitaxel-loaded nanoemulsion treated group. Conclusion: This novel paclitaxel nanoemulsion efficiently suppressed the drug resistance of breast cancer cells and induced effective apoptosis in very low concentrations of paclitaxel. 
546 |a EN 
690 |a breast cancer 
690 |a multidrug resistance 
690 |a nanoemulsion 
690 |a paclitaxel 
690 |a tpgs 
690 |a Pharmacy and materia medica 
690 |a RS1-441 
655 7 |a article  |2 local 
786 0 |n Pharmaceutical Sciences, Vol 30, Iss 1, Pp 85-97 (2024) 
787 0 |n https://ps.tbzmed.ac.ir/PDF/ps-30-85.pdf 
787 0 |n https://doaj.org/toc/2383-2886 
856 4 1 |u https://doaj.org/article/4ed8527dbd3a4d87b59da3c4e4fd8b4f  |z Connect to this object online.