Formulation of a sustained release docetaxel loaded cockle shell-derived calcium carbonate nanoparticles against breast cancer

Purpose: Here, we explored the formulation of a calcium carbonate nanoparticle delivery system aimed at enhancing docetaxel (DTX) release in breast cancer. Methods: The designed nano- anticancer formulation was characterized thorough X-ray diffraction (XRD), Fourier transformed infrared (FTIR), tran...

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Main Authors: Ibrahim Hammadi, Nahidah, Abba, Yusuf, Mohd Noor, Mohd Hezmee, Abdul Razak, Intan Shameha, Jaji, Alhaji Zubair, Isa, Tijani, Mahmood, Saffanah Khuder, Abu Bakar @ Zakaria, Md Zuki
Format: Article
Language:English
Published: Springer 2017
Online Access:http://psasir.upm.edu.my/id/eprint/61913/1/Formulation%20of%20a%20sustained%20release%20docetaxel%20loaded%20cockle%20shell-derived%20calcium%20carbonate%20nanoparticles%20against%20breast%20cancer.pdf
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author Ibrahim Hammadi, Nahidah
Abba, Yusuf
Mohd Noor, Mohd Hezmee
Abdul Razak, Intan Shameha
Jaji, Alhaji Zubair
Isa, Tijani
Mahmood, Saffanah Khuder
Abu Bakar @ Zakaria, Md Zuki
author_facet Ibrahim Hammadi, Nahidah
Abba, Yusuf
Mohd Noor, Mohd Hezmee
Abdul Razak, Intan Shameha
Jaji, Alhaji Zubair
Isa, Tijani
Mahmood, Saffanah Khuder
Abu Bakar @ Zakaria, Md Zuki
author_sort Ibrahim Hammadi, Nahidah
collection UPM
description Purpose: Here, we explored the formulation of a calcium carbonate nanoparticle delivery system aimed at enhancing docetaxel (DTX) release in breast cancer. Methods: The designed nano- anticancer formulation was characterized thorough X-ray diffraction (XRD), Fourier transformed infrared (FTIR), transmission electron microscopy (TEM) and field emission scanning electron microscopy (FESEM) and Brunauer-Emmett-Teller (BET) methods. The nano- anticancer formulation (DTX- CaCO3NP) was evaluated for drug delivery properties thorough in vitro release study in human body simulated solution at pH 7.4 and intracellular lysosomal pH 4.8. Results: Characterization revealed the successful synthesis of DTX- CaCO3NP, which had a sustained release at pH 7.4. TEM showed uniformly distributed pleomorphic shaped pure aragonite particles. The highest entrapment efficiency (96%) and loading content (11.5%) were obtained at docetaxel to nanoparticles ratio of 1:4. The XRD patterns revealed strong crystallizations in all the nanoparticles formulation, while FTIR showed chemical interactions between the drug and nanoparticles with negligible positional shift in the peaks before and after DTX loading. BET analysis showed similar isotherms before and after DTX loading. The designed DTX- CaCO3NP had lower (p < 0.05) cytotoxity against MCF-7 cells than DTX at 24 h but comparable (p > 0.05) effects at 48 h and 72 h. However, the DTX- CaCO3NP released less than 80% of bond DTX at 48 and 72 h but showed comparable effects with free DTX. Conclusions: The results showed that the developed DTX- CaCO3NP released DTX slower at pH 7.4 and had comparable cytotoxicity with free DTX at 48 and 72 h in MCF-7 cells.
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spelling upm.eprints-619132019-02-27T04:04:00Z http://psasir.upm.edu.my/id/eprint/61913/ Formulation of a sustained release docetaxel loaded cockle shell-derived calcium carbonate nanoparticles against breast cancer Ibrahim Hammadi, Nahidah Abba, Yusuf Mohd Noor, Mohd Hezmee Abdul Razak, Intan Shameha Jaji, Alhaji Zubair Isa, Tijani Mahmood, Saffanah Khuder Abu Bakar @ Zakaria, Md Zuki Purpose: Here, we explored the formulation of a calcium carbonate nanoparticle delivery system aimed at enhancing docetaxel (DTX) release in breast cancer. Methods: The designed nano- anticancer formulation was characterized thorough X-ray diffraction (XRD), Fourier transformed infrared (FTIR), transmission electron microscopy (TEM) and field emission scanning electron microscopy (FESEM) and Brunauer-Emmett-Teller (BET) methods. The nano- anticancer formulation (DTX- CaCO3NP) was evaluated for drug delivery properties thorough in vitro release study in human body simulated solution at pH 7.4 and intracellular lysosomal pH 4.8. Results: Characterization revealed the successful synthesis of DTX- CaCO3NP, which had a sustained release at pH 7.4. TEM showed uniformly distributed pleomorphic shaped pure aragonite particles. The highest entrapment efficiency (96%) and loading content (11.5%) were obtained at docetaxel to nanoparticles ratio of 1:4. The XRD patterns revealed strong crystallizations in all the nanoparticles formulation, while FTIR showed chemical interactions between the drug and nanoparticles with negligible positional shift in the peaks before and after DTX loading. BET analysis showed similar isotherms before and after DTX loading. The designed DTX- CaCO3NP had lower (p < 0.05) cytotoxity against MCF-7 cells than DTX at 24 h but comparable (p > 0.05) effects at 48 h and 72 h. However, the DTX- CaCO3NP released less than 80% of bond DTX at 48 and 72 h but showed comparable effects with free DTX. Conclusions: The results showed that the developed DTX- CaCO3NP released DTX slower at pH 7.4 and had comparable cytotoxicity with free DTX at 48 and 72 h in MCF-7 cells. Springer 2017-06 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/61913/1/Formulation%20of%20a%20sustained%20release%20docetaxel%20loaded%20cockle%20shell-derived%20calcium%20carbonate%20nanoparticles%20against%20breast%20cancer.pdf Ibrahim Hammadi, Nahidah and Abba, Yusuf and Mohd Noor, Mohd Hezmee and Abdul Razak, Intan Shameha and Jaji, Alhaji Zubair and Isa, Tijani and Mahmood, Saffanah Khuder and Abu Bakar @ Zakaria, Md Zuki (2017) Formulation of a sustained release docetaxel loaded cockle shell-derived calcium carbonate nanoparticles against breast cancer. Pharmaceutical Research, 34 (6). 1193 - 1203. ISSN 0724-8741; ESSN: 1573-904X https://link.springer.com/article/10.1007/s11095-017-2135-1 10.1007/s11095-017-2135-1
spellingShingle Ibrahim Hammadi, Nahidah
Abba, Yusuf
Mohd Noor, Mohd Hezmee
Abdul Razak, Intan Shameha
Jaji, Alhaji Zubair
Isa, Tijani
Mahmood, Saffanah Khuder
Abu Bakar @ Zakaria, Md Zuki
Formulation of a sustained release docetaxel loaded cockle shell-derived calcium carbonate nanoparticles against breast cancer
title Formulation of a sustained release docetaxel loaded cockle shell-derived calcium carbonate nanoparticles against breast cancer
title_full Formulation of a sustained release docetaxel loaded cockle shell-derived calcium carbonate nanoparticles against breast cancer
title_fullStr Formulation of a sustained release docetaxel loaded cockle shell-derived calcium carbonate nanoparticles against breast cancer
title_full_unstemmed Formulation of a sustained release docetaxel loaded cockle shell-derived calcium carbonate nanoparticles against breast cancer
title_short Formulation of a sustained release docetaxel loaded cockle shell-derived calcium carbonate nanoparticles against breast cancer
title_sort formulation of a sustained release docetaxel loaded cockle shell derived calcium carbonate nanoparticles against breast cancer
url http://psasir.upm.edu.my/id/eprint/61913/1/Formulation%20of%20a%20sustained%20release%20docetaxel%20loaded%20cockle%20shell-derived%20calcium%20carbonate%20nanoparticles%20against%20breast%20cancer.pdf
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