Synthesis and Characterization of Carboxymethyl Starch for Drug Delivery Applications

In this study, carboxymethyl starch (CMS) was synthesized by reacting native sago starch with sodium monochloroacetate through single-step etherification reaction. Synthesis conditions such as reaction temperature, concentration of sodium hydroxide, amount of etherifying agent such as sodium monochl...

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Main Author: Nurfarahin, Yusop @ Ghazali
Format: Thesis
Language:English
Published: Universiti Malaysia Sarawak (UNIMAS) 2019
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Online Access:http://ir.unimas.my/id/eprint/27529/2/Nurfarahin.pdf
http://ir.unimas.my/id/eprint/27529/
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spelling my.unimas.ir.275292023-04-19T07:27:27Z http://ir.unimas.my/id/eprint/27529/ Synthesis and Characterization of Carboxymethyl Starch for Drug Delivery Applications Nurfarahin, Yusop @ Ghazali Q Science (General) QD Chemistry In this study, carboxymethyl starch (CMS) was synthesized by reacting native sago starch with sodium monochloroacetate through single-step etherification reaction. Synthesis conditions such as reaction temperature, concentration of sodium hydroxide, amount of etherifying agent such as sodium monochloroacetate and reaction time of carboxymethylation were used to achieve the highest degree of substitution (DS) value of CMS. The preparation of CMS was carried out in the form of nanoparticles and hydrogel membrane while their physicochemical characteristics were studied for the potential application as drug delivery carrier. The fabrication of CMS nanoparticles was carried out by using simple nanoprecipitation and microemulsion techniques with the aid of sonication process. CMS nanoparticles with the mean particle size of 137 nm were directly obtained using sonication aided nano-precipitation technique. CMS nanoparticles showed to exhibit a lower swell ability characteristic in simulated gastric fluid at pH 1.4 which can be explained by longer paracetamol release rate within 28 hours. In comparison, drug release rate of paracetamol was observed to be faster in higher pH value of pH 8.6 which also governed by the deionization activity that encourage matrix swelling of the nanoparticles, while a fair proliferation of paracetamol release rate was observed within 23 hours in simulated blood and saliva fluid at pH 7.4 . In addition, the role of CMS / PVA hydrogel as a potential drug carrier membrane was elucidated in this study. The physical entrapment of penicillin G onto hydrogel matrix was achieved at 16 mg/g and the mechanism of drug release was described. It was revealed that the controlled release of drug penicillin G from the CMS hydrogel undergoes Zero Order and Hixson – Crowell kinetics which prevailed by the erosion of mesoporous hydrogel occurred progressively with time. Besides, this biodegradable hydrogel characteristic can be further utilized as the potential application in green transdermal drug delivery without the usage of any harsh chemicals. This study also demonstrated that the fabrication of CMS materials can be achieved in the facile and environmentally friendly system. Keywords: pH-responsive, carboxymethyl starch nanoparticles, carboxymethyl starch hydrogel, drug delivery Universiti Malaysia Sarawak (UNIMAS) 2019-09-29 Thesis NonPeerReviewed text en http://ir.unimas.my/id/eprint/27529/2/Nurfarahin.pdf Nurfarahin, Yusop @ Ghazali (2019) Synthesis and Characterization of Carboxymethyl Starch for Drug Delivery Applications. Masters thesis, Universiti Malaysia Sarawak (UNIMAS).
institution Universiti Malaysia Sarawak
building Centre for Academic Information Services (CAIS)
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sarawak
content_source UNIMAS Institutional Repository
url_provider http://ir.unimas.my/
language English
topic Q Science (General)
QD Chemistry
spellingShingle Q Science (General)
QD Chemistry
Nurfarahin, Yusop @ Ghazali
Synthesis and Characterization of Carboxymethyl Starch for Drug Delivery Applications
description In this study, carboxymethyl starch (CMS) was synthesized by reacting native sago starch with sodium monochloroacetate through single-step etherification reaction. Synthesis conditions such as reaction temperature, concentration of sodium hydroxide, amount of etherifying agent such as sodium monochloroacetate and reaction time of carboxymethylation were used to achieve the highest degree of substitution (DS) value of CMS. The preparation of CMS was carried out in the form of nanoparticles and hydrogel membrane while their physicochemical characteristics were studied for the potential application as drug delivery carrier. The fabrication of CMS nanoparticles was carried out by using simple nanoprecipitation and microemulsion techniques with the aid of sonication process. CMS nanoparticles with the mean particle size of 137 nm were directly obtained using sonication aided nano-precipitation technique. CMS nanoparticles showed to exhibit a lower swell ability characteristic in simulated gastric fluid at pH 1.4 which can be explained by longer paracetamol release rate within 28 hours. In comparison, drug release rate of paracetamol was observed to be faster in higher pH value of pH 8.6 which also governed by the deionization activity that encourage matrix swelling of the nanoparticles, while a fair proliferation of paracetamol release rate was observed within 23 hours in simulated blood and saliva fluid at pH 7.4 . In addition, the role of CMS / PVA hydrogel as a potential drug carrier membrane was elucidated in this study. The physical entrapment of penicillin G onto hydrogel matrix was achieved at 16 mg/g and the mechanism of drug release was described. It was revealed that the controlled release of drug penicillin G from the CMS hydrogel undergoes Zero Order and Hixson – Crowell kinetics which prevailed by the erosion of mesoporous hydrogel occurred progressively with time. Besides, this biodegradable hydrogel characteristic can be further utilized as the potential application in green transdermal drug delivery without the usage of any harsh chemicals. This study also demonstrated that the fabrication of CMS materials can be achieved in the facile and environmentally friendly system. Keywords: pH-responsive, carboxymethyl starch nanoparticles, carboxymethyl starch hydrogel, drug delivery
format Thesis
author Nurfarahin, Yusop @ Ghazali
author_facet Nurfarahin, Yusop @ Ghazali
author_sort Nurfarahin, Yusop @ Ghazali
title Synthesis and Characterization of Carboxymethyl Starch for Drug Delivery Applications
title_short Synthesis and Characterization of Carboxymethyl Starch for Drug Delivery Applications
title_full Synthesis and Characterization of Carboxymethyl Starch for Drug Delivery Applications
title_fullStr Synthesis and Characterization of Carboxymethyl Starch for Drug Delivery Applications
title_full_unstemmed Synthesis and Characterization of Carboxymethyl Starch for Drug Delivery Applications
title_sort synthesis and characterization of carboxymethyl starch for drug delivery applications
publisher Universiti Malaysia Sarawak (UNIMAS)
publishDate 2019
url http://ir.unimas.my/id/eprint/27529/2/Nurfarahin.pdf
http://ir.unimas.my/id/eprint/27529/
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score 13.209306