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Effect of the mechanical activation on size reduction of crystalline acetaminophen drug particles

The decrease in particle size may offer new properties to drugs. In this study, we investigated the size reduction influence of the acetaminophen (C(8)H(9)O(2)N) particles by mechanical activation using a dry ball mill. The activated samples with the average size of 1 μm were then investigated in di...

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Autores principales: Biazar, Esmaeil, Beitollahi, Ali, Rezayat, S Mehdi, Forati, Tahmineh, Asefnejad, Azadeh, Rahimi, Mehdi, Zeinali, Reza, Ardeshir, Mahmoud, Hatamjafari, Farhad, Sahebalzamani, Ali, Heidari, Majid
Formato: Texto
Lenguaje:English
Publicado: Dove Medical Press 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2802041/
https://www.ncbi.nlm.nih.gov/pubmed/20054432
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author Biazar, Esmaeil
Beitollahi, Ali
Rezayat, S Mehdi
Forati, Tahmineh
Asefnejad, Azadeh
Rahimi, Mehdi
Zeinali, Reza
Ardeshir, Mahmoud
Hatamjafari, Farhad
Sahebalzamani, Ali
Heidari, Majid
author_facet Biazar, Esmaeil
Beitollahi, Ali
Rezayat, S Mehdi
Forati, Tahmineh
Asefnejad, Azadeh
Rahimi, Mehdi
Zeinali, Reza
Ardeshir, Mahmoud
Hatamjafari, Farhad
Sahebalzamani, Ali
Heidari, Majid
author_sort Biazar, Esmaeil
collection PubMed
description The decrease in particle size may offer new properties to drugs. In this study, we investigated the size reduction influence of the acetaminophen (C(8)H(9)O(2)N) particles by mechanical activation using a dry ball mill. The activated samples with the average size of 1 μm were then investigated in different time periods with the infrared (IR), inductively coupled plasma (ICP), atomic force microscopy (AFM), and X-ray diffraction (XRD) methods. The results of the IR and XRD images showed no change in the drug structure after the mechanical activation of all samples. With the peak height at full width at half maximum from XRD and the Scherrer equation, the size of the activated crystallite samples illustrated that the AFM images were in sound agreement with the Scherrer equation. According to the peaks of the AFM images, the average size of the particles in 30 hours of activation was 24 nm with a normal particle distribution. The ICP analysis demonstrated the presence of tungsten carbide particle impurities after activation from the powder sample impacting with the ball and jar. The greatest reduction in size was after milling for 30 hours.
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spelling pubmed-28020412010-01-06 Effect of the mechanical activation on size reduction of crystalline acetaminophen drug particles Biazar, Esmaeil Beitollahi, Ali Rezayat, S Mehdi Forati, Tahmineh Asefnejad, Azadeh Rahimi, Mehdi Zeinali, Reza Ardeshir, Mahmoud Hatamjafari, Farhad Sahebalzamani, Ali Heidari, Majid Int J Nanomedicine Original Research The decrease in particle size may offer new properties to drugs. In this study, we investigated the size reduction influence of the acetaminophen (C(8)H(9)O(2)N) particles by mechanical activation using a dry ball mill. The activated samples with the average size of 1 μm were then investigated in different time periods with the infrared (IR), inductively coupled plasma (ICP), atomic force microscopy (AFM), and X-ray diffraction (XRD) methods. The results of the IR and XRD images showed no change in the drug structure after the mechanical activation of all samples. With the peak height at full width at half maximum from XRD and the Scherrer equation, the size of the activated crystallite samples illustrated that the AFM images were in sound agreement with the Scherrer equation. According to the peaks of the AFM images, the average size of the particles in 30 hours of activation was 24 nm with a normal particle distribution. The ICP analysis demonstrated the presence of tungsten carbide particle impurities after activation from the powder sample impacting with the ball and jar. The greatest reduction in size was after milling for 30 hours. Dove Medical Press 2009 2009-12-29 /pmc/articles/PMC2802041/ /pubmed/20054432 Text en © 2009 Biazar et al, publisher and licensee Dove Medical Press Ltd. This is an Open Access article which permits unrestricted noncommercial use, provided the original work is properly cited.
spellingShingle Original Research
Biazar, Esmaeil
Beitollahi, Ali
Rezayat, S Mehdi
Forati, Tahmineh
Asefnejad, Azadeh
Rahimi, Mehdi
Zeinali, Reza
Ardeshir, Mahmoud
Hatamjafari, Farhad
Sahebalzamani, Ali
Heidari, Majid
Effect of the mechanical activation on size reduction of crystalline acetaminophen drug particles
title Effect of the mechanical activation on size reduction of crystalline acetaminophen drug particles
title_full Effect of the mechanical activation on size reduction of crystalline acetaminophen drug particles
title_fullStr Effect of the mechanical activation on size reduction of crystalline acetaminophen drug particles
title_full_unstemmed Effect of the mechanical activation on size reduction of crystalline acetaminophen drug particles
title_short Effect of the mechanical activation on size reduction of crystalline acetaminophen drug particles
title_sort effect of the mechanical activation on size reduction of crystalline acetaminophen drug particles
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2802041/
https://www.ncbi.nlm.nih.gov/pubmed/20054432
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