The Effect Of Gold Nanoparticle Size In Breast Cancer MCF-7 Cell Line Treatment By X-Ray And Linear Accelerator (LINAC)

Gold Nanoparticles (AuNPs) has been used to enhance the radiation effects in MCF-7 breast ardenocarcinoma cell line by radiotherapy equipments. AuNPs can be used during radiation therapy to kill cancer cells in order to reduce the dose of radiation to kill the tumours, while at the same time sparing...

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Main Author: Rosli, Nur Shafawati
Format: Thesis
Language:English
Published: 2017
Subjects:
Online Access:http://eprints.usm.my/45461/1/NUR%20SHAFAWATI%20ROSLI.pdf
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author Rosli, Nur Shafawati
author_facet Rosli, Nur Shafawati
author_sort Rosli, Nur Shafawati
collection USM
description Gold Nanoparticles (AuNPs) has been used to enhance the radiation effects in MCF-7 breast ardenocarcinoma cell line by radiotherapy equipments. AuNPs can be used during radiation therapy to kill cancer cells in order to reduce the dose of radiation to kill the tumours, while at the same time sparing the normal tissue. The irradiation were done using superficial kilovoltage X-rays and megavoltage photon beams in radiotherapy which are via X-ray machine and Linear Accelerator (LINAC). In this work, MCF-7 cells are seeded in the 96-well plate and were treated with three different sizes of AuNPs (13 nm, 50 nm, and 70 nm) before they were irradiated with 80 kVp and 20 mAs X-ray beams, 6 MV, and 10 MV photon beam at various radiation doses.
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spelling usm.eprints-454612019-09-18T01:49:46Z http://eprints.usm.my/45461/ The Effect Of Gold Nanoparticle Size In Breast Cancer MCF-7 Cell Line Treatment By X-Ray And Linear Accelerator (LINAC) Rosli, Nur Shafawati QC1-999 Physics Gold Nanoparticles (AuNPs) has been used to enhance the radiation effects in MCF-7 breast ardenocarcinoma cell line by radiotherapy equipments. AuNPs can be used during radiation therapy to kill cancer cells in order to reduce the dose of radiation to kill the tumours, while at the same time sparing the normal tissue. The irradiation were done using superficial kilovoltage X-rays and megavoltage photon beams in radiotherapy which are via X-ray machine and Linear Accelerator (LINAC). In this work, MCF-7 cells are seeded in the 96-well plate and were treated with three different sizes of AuNPs (13 nm, 50 nm, and 70 nm) before they were irradiated with 80 kVp and 20 mAs X-ray beams, 6 MV, and 10 MV photon beam at various radiation doses. 2017-05 Thesis NonPeerReviewed application/pdf en http://eprints.usm.my/45461/1/NUR%20SHAFAWATI%20ROSLI.pdf Rosli, Nur Shafawati (2017) The Effect Of Gold Nanoparticle Size In Breast Cancer MCF-7 Cell Line Treatment By X-Ray And Linear Accelerator (LINAC). PhD thesis, Universiti Sains Malaysia.
spellingShingle QC1-999 Physics
Rosli, Nur Shafawati
The Effect Of Gold Nanoparticle Size In Breast Cancer MCF-7 Cell Line Treatment By X-Ray And Linear Accelerator (LINAC)
title The Effect Of Gold Nanoparticle Size In Breast Cancer MCF-7 Cell Line Treatment By X-Ray And Linear Accelerator (LINAC)
title_full The Effect Of Gold Nanoparticle Size In Breast Cancer MCF-7 Cell Line Treatment By X-Ray And Linear Accelerator (LINAC)
title_fullStr The Effect Of Gold Nanoparticle Size In Breast Cancer MCF-7 Cell Line Treatment By X-Ray And Linear Accelerator (LINAC)
title_full_unstemmed The Effect Of Gold Nanoparticle Size In Breast Cancer MCF-7 Cell Line Treatment By X-Ray And Linear Accelerator (LINAC)
title_short The Effect Of Gold Nanoparticle Size In Breast Cancer MCF-7 Cell Line Treatment By X-Ray And Linear Accelerator (LINAC)
title_sort effect of gold nanoparticle size in breast cancer mcf 7 cell line treatment by x ray and linear accelerator linac
topic QC1-999 Physics
url http://eprints.usm.my/45461/1/NUR%20SHAFAWATI%20ROSLI.pdf
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