Formation Of Stable Gold Nanoparticles Via Laser Ablation Conjugated In-Situ By BSA In Harsh Saline Condition For Cells Antiproliferative Activity

Colloidal AuNPs is known to aggregate and precipitate in the saline solution below the NaCl concentration of many bodily fluids and blood plasma. This research focused on the preparation of high stability and bioactivity colloidal gold nanoparticles (AuNPs) in simulated body fluid (SBF), which can c...

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Библиографические подробности
Главный автор: Abdulateef, Sinan Adnan
Формат: Диссертация
Язык:English
Опубликовано: 2018
Предметы:
Online-ссылка:http://eprints.usm.my/44272/1/SINAN%20ADNAN%20ABDULATEEF.pdf
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author Abdulateef, Sinan Adnan
author_facet Abdulateef, Sinan Adnan
author_sort Abdulateef, Sinan Adnan
collection USM
description Colloidal AuNPs is known to aggregate and precipitate in the saline solution below the NaCl concentration of many bodily fluids and blood plasma. This research focused on the preparation of high stability and bioactivity colloidal gold nanoparticles (AuNPs) in simulated body fluid (SBF), which can closely mimic the blood plasma that is free from contamination through a low-cost technique that can be done at room temperature within a short period of time. To achieve this aim, the following three specific objectives were designed; Firstly, to produce a high stability colloidal suspension of AuNPs in media close to blood plasma by using pulse laser ablation synthesis techniques.
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spelling usm.eprints-442722019-05-06T03:04:53Z http://eprints.usm.my/44272/ Formation Of Stable Gold Nanoparticles Via Laser Ablation Conjugated In-Situ By BSA In Harsh Saline Condition For Cells Antiproliferative Activity Abdulateef, Sinan Adnan QC1 Physics (General) Colloidal AuNPs is known to aggregate and precipitate in the saline solution below the NaCl concentration of many bodily fluids and blood plasma. This research focused on the preparation of high stability and bioactivity colloidal gold nanoparticles (AuNPs) in simulated body fluid (SBF), which can closely mimic the blood plasma that is free from contamination through a low-cost technique that can be done at room temperature within a short period of time. To achieve this aim, the following three specific objectives were designed; Firstly, to produce a high stability colloidal suspension of AuNPs in media close to blood plasma by using pulse laser ablation synthesis techniques. 2018-03 Thesis NonPeerReviewed application/pdf en http://eprints.usm.my/44272/1/SINAN%20ADNAN%20ABDULATEEF.pdf Abdulateef, Sinan Adnan (2018) Formation Of Stable Gold Nanoparticles Via Laser Ablation Conjugated In-Situ By BSA In Harsh Saline Condition For Cells Antiproliferative Activity. PhD thesis, Universiti Sains Malaysia.
spellingShingle QC1 Physics (General)
Abdulateef, Sinan Adnan
Formation Of Stable Gold Nanoparticles Via Laser Ablation Conjugated In-Situ By BSA In Harsh Saline Condition For Cells Antiproliferative Activity
title Formation Of Stable Gold Nanoparticles Via Laser Ablation Conjugated In-Situ By BSA In Harsh Saline Condition For Cells Antiproliferative Activity
title_full Formation Of Stable Gold Nanoparticles Via Laser Ablation Conjugated In-Situ By BSA In Harsh Saline Condition For Cells Antiproliferative Activity
title_fullStr Formation Of Stable Gold Nanoparticles Via Laser Ablation Conjugated In-Situ By BSA In Harsh Saline Condition For Cells Antiproliferative Activity
title_full_unstemmed Formation Of Stable Gold Nanoparticles Via Laser Ablation Conjugated In-Situ By BSA In Harsh Saline Condition For Cells Antiproliferative Activity
title_short Formation Of Stable Gold Nanoparticles Via Laser Ablation Conjugated In-Situ By BSA In Harsh Saline Condition For Cells Antiproliferative Activity
title_sort formation of stable gold nanoparticles via laser ablation conjugated in situ by bsa in harsh saline condition for cells antiproliferative activity
topic QC1 Physics (General)
url http://eprints.usm.my/44272/1/SINAN%20ADNAN%20ABDULATEEF.pdf
work_keys_str_mv AT abdulateefsinanadnan formationofstablegoldnanoparticlesvialaserablationconjugatedinsitubybsainharshsalineconditionforcellsantiproliferativeactivity