Synthesis, Characterisation And Evaluation Of Biocompatible Disulphide Cross-Linked Sodium Alginate Derivative Nanoparticles For Colon Targeted Drug Delivery

Colon specific nano-drug delivery is a challenging system for a drug to reach the colon target site without any release along the stomach and small intestines. The application of layer-by-layer (LbL) on nanoparticles surface coating has been applied to improve the colon targeted oral drug delivery o...

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التفاصيل البيبلوغرافية
المؤلف الرئيسي: Ayub, Asila Dinie
التنسيق: أطروحة
اللغة:الإنجليزية
منشور في: 2018
الموضوعات:
الوصول للمادة أونلاين:http://eprints.usm.my/42901/
Abstract Abstract here
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author Ayub, Asila Dinie
author_facet Ayub, Asila Dinie
author_sort Ayub, Asila Dinie
description Colon specific nano-drug delivery is a challenging system for a drug to reach the colon target site without any release along the stomach and small intestines. The application of layer-by-layer (LbL) on nanoparticles surface coating has been applied to improve the colon targeted oral drug delivery of insoluble drugs. Here, we aimed to formulate a self-assembly cysteamine-based disulphide cross-linked sodium alginate (SA) (with LbL) to improve the delivery of paclitaxel to colonic cancer cells to promote oral chemotherapy. Cysteamine was conjugated to the backbone of oxidised SA to form a core of self-assembly disulphide cross-linked nanospheres.
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spelling usm-429012019-04-12T05:24:51Z http://eprints.usm.my/42901/ Synthesis, Characterisation And Evaluation Of Biocompatible Disulphide Cross-Linked Sodium Alginate Derivative Nanoparticles For Colon Targeted Drug Delivery Ayub, Asila Dinie RS1-441 Pharmacy and materia medica Colon specific nano-drug delivery is a challenging system for a drug to reach the colon target site without any release along the stomach and small intestines. The application of layer-by-layer (LbL) on nanoparticles surface coating has been applied to improve the colon targeted oral drug delivery of insoluble drugs. Here, we aimed to formulate a self-assembly cysteamine-based disulphide cross-linked sodium alginate (SA) (with LbL) to improve the delivery of paclitaxel to colonic cancer cells to promote oral chemotherapy. Cysteamine was conjugated to the backbone of oxidised SA to form a core of self-assembly disulphide cross-linked nanospheres. 2018-03 Thesis NonPeerReviewed application/pdf en http://eprints.usm.my/42901/1/ASILA_DINIE__AYUB.pdf Ayub, Asila Dinie (2018) Synthesis, Characterisation And Evaluation Of Biocompatible Disulphide Cross-Linked Sodium Alginate Derivative Nanoparticles For Colon Targeted Drug Delivery. Masters thesis, Universiti Sains Malaysia.
spellingShingle RS1-441 Pharmacy and materia medica
Ayub, Asila Dinie
Synthesis, Characterisation And Evaluation Of Biocompatible Disulphide Cross-Linked Sodium Alginate Derivative Nanoparticles For Colon Targeted Drug Delivery
thesis_level Master
title Synthesis, Characterisation And Evaluation Of Biocompatible Disulphide Cross-Linked Sodium Alginate Derivative Nanoparticles For Colon Targeted Drug Delivery
title_full Synthesis, Characterisation And Evaluation Of Biocompatible Disulphide Cross-Linked Sodium Alginate Derivative Nanoparticles For Colon Targeted Drug Delivery
title_fullStr Synthesis, Characterisation And Evaluation Of Biocompatible Disulphide Cross-Linked Sodium Alginate Derivative Nanoparticles For Colon Targeted Drug Delivery
title_full_unstemmed Synthesis, Characterisation And Evaluation Of Biocompatible Disulphide Cross-Linked Sodium Alginate Derivative Nanoparticles For Colon Targeted Drug Delivery
title_short Synthesis, Characterisation And Evaluation Of Biocompatible Disulphide Cross-Linked Sodium Alginate Derivative Nanoparticles For Colon Targeted Drug Delivery
title_sort synthesis characterisation and evaluation of biocompatible disulphide cross linked sodium alginate derivative nanoparticles for colon targeted drug delivery
topic RS1-441 Pharmacy and materia medica
url http://eprints.usm.my/42901/
work_keys_str_mv AT ayubasiladinie synthesischaracterisationandevaluationofbiocompatibledisulphidecrosslinkedsodiumalginatederivativenanoparticlesforcolontargeteddrugdelivery