In vitro photothermal therapy of 4T1 cells using semiconducting polymer nanoparticle PDVT-10

Advancement in nanotechnology has provided insights to cancer therapy considerably. Even though various photothermal nano-agents have emerged in light of the unique benefits which photothermal therapy offers in cancer therapy, semiconducting polymer nanoparticle PDVT-10 (SPN-PDVT-10) has yet to come...

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Bibliographic Details
Main Author: Shirin Zahra Mohammod
Other Authors: Pu Kanyi
Format: Thesis
Language:English
Published: 2018
Subjects:
Online Access:http://hdl.handle.net/10356/75268
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author Shirin Zahra Mohammod
author2 Pu Kanyi
author_facet Pu Kanyi
Shirin Zahra Mohammod
author_sort Shirin Zahra Mohammod
collection NTU
description Advancement in nanotechnology has provided insights to cancer therapy considerably. Even though various photothermal nano-agents have emerged in light of the unique benefits which photothermal therapy offers in cancer therapy, semiconducting polymer nanoparticle PDVT-10 (SPN-PDVT-10) has yet to come into picture. Hence, this sets as a motivation for this study to explore the nanoparticle characteristics and photothermal properties of SPN-PDVT-10, in the search of a novel photothermal nano-agent. In this study, the synthesis and nanoparticle characterization of SPN-PDVT-10 in terms of its size and chemical structure stability, were successfully reported. Its chemical property via the tolerance with HClO was tested to further understand its chemical stability. After which, the photothermal properties of SPN-PDVT-10 was investigated, followed by its cytotoxicity and essentially its photothermal therapy efficiency. The results reported in this study are likely sufficient to push SPN-PDVT-10 to in vivo applications, paving the road towards its place as a novel and efficient photothermal nano-agent.
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spelling ntu-10356/752682023-03-03T16:00:09Z In vitro photothermal therapy of 4T1 cells using semiconducting polymer nanoparticle PDVT-10 Shirin Zahra Mohammod Pu Kanyi School of Chemical and Biomedical Engineering DRNTU::Engineering::Bioengineering Advancement in nanotechnology has provided insights to cancer therapy considerably. Even though various photothermal nano-agents have emerged in light of the unique benefits which photothermal therapy offers in cancer therapy, semiconducting polymer nanoparticle PDVT-10 (SPN-PDVT-10) has yet to come into picture. Hence, this sets as a motivation for this study to explore the nanoparticle characteristics and photothermal properties of SPN-PDVT-10, in the search of a novel photothermal nano-agent. In this study, the synthesis and nanoparticle characterization of SPN-PDVT-10 in terms of its size and chemical structure stability, were successfully reported. Its chemical property via the tolerance with HClO was tested to further understand its chemical stability. After which, the photothermal properties of SPN-PDVT-10 was investigated, followed by its cytotoxicity and essentially its photothermal therapy efficiency. The results reported in this study are likely sufficient to push SPN-PDVT-10 to in vivo applications, paving the road towards its place as a novel and efficient photothermal nano-agent. ​Master of Science (Biomedical Engineering) 2018-05-30T06:57:02Z 2018-05-30T06:57:02Z 2018 Thesis http://hdl.handle.net/10356/75268 en 41 p. application/pdf
spellingShingle DRNTU::Engineering::Bioengineering
Shirin Zahra Mohammod
In vitro photothermal therapy of 4T1 cells using semiconducting polymer nanoparticle PDVT-10
title In vitro photothermal therapy of 4T1 cells using semiconducting polymer nanoparticle PDVT-10
title_full In vitro photothermal therapy of 4T1 cells using semiconducting polymer nanoparticle PDVT-10
title_fullStr In vitro photothermal therapy of 4T1 cells using semiconducting polymer nanoparticle PDVT-10
title_full_unstemmed In vitro photothermal therapy of 4T1 cells using semiconducting polymer nanoparticle PDVT-10
title_short In vitro photothermal therapy of 4T1 cells using semiconducting polymer nanoparticle PDVT-10
title_sort in vitro photothermal therapy of 4t1 cells using semiconducting polymer nanoparticle pdvt 10
topic DRNTU::Engineering::Bioengineering
url http://hdl.handle.net/10356/75268
work_keys_str_mv AT shirinzahramohammod invitrophotothermaltherapyof4t1cellsusingsemiconductingpolymernanoparticlepdvt10