E-ISSN 0976-2779 | ISSN 0975-8453
 

Review Article 


Drug Loading on Carbon Nanotubes synthesized by Flame Fragments Deposition Technique

Asmaa H. Hammadi, Lateef N. Assi, Falah H. Hussien.

Abstract
Doxorubicin (DOX) is widely used for anticancer, and it regards as one of the effective therapeutic drugs for solid tumors, such as carcinomas, sarcomas, and hematological malignancies. In this work, multiwall carbon nanotubes (MWCNTs) were selected as carriers to load DOX. The concentrations of (20mg) functionalization -CNTs as a nanocarrier were added to 100 ml of DOX aqueous solution (100 ppm). Each mixture was stirred for 24 hours at 25oC under dark conditions. The functionalization CNTs/DOX mixture was isolated by centrifuging for 15 min at a rate of 6000 rpm. Fourier Transform Infrared (FTIR) and Scanning Electron Microscope (SEM) were used to investigate the characterization of the nanocarrier. The results showed that the used dosage of CNT (1mg/ml) showed good loading ability for DOX over CNTs.

Key words: Drug delivery; doxorubicin; multiwall carbon nanotubes (MWCNTs); flame fragments deposition; SEM; FTIR.


 
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How to Cite this Article
Pubmed Style

Asmaa H. Hammadi, Lateef N. Assi, Falah H. Hussien. Drug Loading on Carbon Nanotubes synthesized by Flame Fragments Deposition Technique. SRP. 2020; 11(3): 275-281. doi:10.5530/srp.2020.3.31


Web Style

Asmaa H. Hammadi, Lateef N. Assi, Falah H. Hussien. Drug Loading on Carbon Nanotubes synthesized by Flame Fragments Deposition Technique. http://www.sysrevpharm.org//?mno=92901 [Access: March 31, 2020]. doi:10.5530/srp.2020.3.31


AMA (American Medical Association) Style

Asmaa H. Hammadi, Lateef N. Assi, Falah H. Hussien. Drug Loading on Carbon Nanotubes synthesized by Flame Fragments Deposition Technique. SRP. 2020; 11(3): 275-281. doi:10.5530/srp.2020.3.31



Vancouver/ICMJE Style

Asmaa H. Hammadi, Lateef N. Assi, Falah H. Hussien. Drug Loading on Carbon Nanotubes synthesized by Flame Fragments Deposition Technique. SRP. (2020), [cited March 31, 2020]; 11(3): 275-281. doi:10.5530/srp.2020.3.31



Harvard Style

Asmaa H. Hammadi, Lateef N. Assi, Falah H. Hussien (2020) Drug Loading on Carbon Nanotubes synthesized by Flame Fragments Deposition Technique. SRP, 11 (3), 275-281. doi:10.5530/srp.2020.3.31



Turabian Style

Asmaa H. Hammadi, Lateef N. Assi, Falah H. Hussien. 2020. Drug Loading on Carbon Nanotubes synthesized by Flame Fragments Deposition Technique. Systematic Reviews in Pharmacy, 11 (3), 275-281. doi:10.5530/srp.2020.3.31



Chicago Style

Asmaa H. Hammadi, Lateef N. Assi, Falah H. Hussien. "Drug Loading on Carbon Nanotubes synthesized by Flame Fragments Deposition Technique." Systematic Reviews in Pharmacy 11 (2020), 275-281. doi:10.5530/srp.2020.3.31



MLA (The Modern Language Association) Style

Asmaa H. Hammadi, Lateef N. Assi, Falah H. Hussien. "Drug Loading on Carbon Nanotubes synthesized by Flame Fragments Deposition Technique." Systematic Reviews in Pharmacy 11.3 (2020), 275-281. Print. doi:10.5530/srp.2020.3.31



APA (American Psychological Association) Style

Asmaa H. Hammadi, Lateef N. Assi, Falah H. Hussien (2020) Drug Loading on Carbon Nanotubes synthesized by Flame Fragments Deposition Technique. Systematic Reviews in Pharmacy, 11 (3), 275-281. doi:10.5530/srp.2020.3.31





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