Cargando…

Effects of Alkaline Solvent Type and pH on Solid Physical Properties of Carrageenan from Eucheuma cottonii

The effects of alkali type and pH on the physical properties of carrageenan have been extensively studied. However, their effects on certain characteristics of solid-state properties of carrageenan have not been identified. This research aimed to investigate the effect of alkaline solvent type and p...

Descripción completa

Detalles Bibliográficos
Autores principales: Ferdiansyah, Rival, Abdassah, Marline, Zainuddin, Achmad, Rachmaniar, Revika, Chaerunisaa, Anis Yohana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10217466/
https://www.ncbi.nlm.nih.gov/pubmed/37232989
http://dx.doi.org/10.3390/gels9050397
_version_ 1785048544650985472
author Ferdiansyah, Rival
Abdassah, Marline
Zainuddin, Achmad
Rachmaniar, Revika
Chaerunisaa, Anis Yohana
author_facet Ferdiansyah, Rival
Abdassah, Marline
Zainuddin, Achmad
Rachmaniar, Revika
Chaerunisaa, Anis Yohana
author_sort Ferdiansyah, Rival
collection PubMed
description The effects of alkali type and pH on the physical properties of carrageenan have been extensively studied. However, their effects on certain characteristics of solid-state properties of carrageenan have not been identified. This research aimed to investigate the effect of alkaline solvent type and pH on the solid physical properties of carrageenan isolated from Eucheuma cottonii. Carrageenan was extracted from the algae using NaOH, KOH, and Ca(OH)(2) at pHs of 9, 11, and 13. Based on the results of preliminary characterization, including yield, ash content, pH, sulphate content, viscosity, and gel strength, it was found that all samples followed Food and Agriculture Organization (FAO) specifications. The swelling capacity of carrageenan based on the type of alkali was KOH > NaOH > Ca(OH)(2). The FTIR spectra of all samples were in agreement with that of standard carrageenan. The molecular weight (MW) of carrageenan using KOH as the alkali followed the order pH 13 > pH 9 > pH 11, while using NaOH, the order was pH 9 > pH 13 > pH 11, and while using Ca(OH)(2), the order was pH 13 > pH 9 > pH 11. The results of the solid-state physical characterization of carrageenan with the highest MW in each type of alkali showed that the morphology of carrageenan using Ca(OH)(2) has a cubic shape and is more crystal-like. The order of crystallinity of carrageenan using different types of alkali was Ca(OH)(2) (14.44%) > NaOH (9.80%) > KOH (7.91%), while the order of density was Ca(OH)(2) > KOH > NaOH. The order of solid fraction (SF) of the carrageenan was KOH > Ca(OH)(2) > NaOH, while the tensile strength when using KOH was 1.17, when using NaOH it was 0.08, and while using Ca(OH)(2), it was 0.05. The bonding index (BI) of carrageenan using KOH = 0.04, NaOH = 0.02, and Ca(OH)(2) = 0.02. The brittle fracture index (BFI) of the carrageenan was KOH = 0.67, NaOH = 0.26, and Ca(OH)(2) = 0.04. The order of carrageenan solubility in water was NaOH > KOH > Ca(OH)(2). These data can be used as the basis for the development of carrageenan for excipients in solid dosage forms.
format Online
Article
Text
id pubmed-10217466
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-102174662023-05-27 Effects of Alkaline Solvent Type and pH on Solid Physical Properties of Carrageenan from Eucheuma cottonii Ferdiansyah, Rival Abdassah, Marline Zainuddin, Achmad Rachmaniar, Revika Chaerunisaa, Anis Yohana Gels Article The effects of alkali type and pH on the physical properties of carrageenan have been extensively studied. However, their effects on certain characteristics of solid-state properties of carrageenan have not been identified. This research aimed to investigate the effect of alkaline solvent type and pH on the solid physical properties of carrageenan isolated from Eucheuma cottonii. Carrageenan was extracted from the algae using NaOH, KOH, and Ca(OH)(2) at pHs of 9, 11, and 13. Based on the results of preliminary characterization, including yield, ash content, pH, sulphate content, viscosity, and gel strength, it was found that all samples followed Food and Agriculture Organization (FAO) specifications. The swelling capacity of carrageenan based on the type of alkali was KOH > NaOH > Ca(OH)(2). The FTIR spectra of all samples were in agreement with that of standard carrageenan. The molecular weight (MW) of carrageenan using KOH as the alkali followed the order pH 13 > pH 9 > pH 11, while using NaOH, the order was pH 9 > pH 13 > pH 11, and while using Ca(OH)(2), the order was pH 13 > pH 9 > pH 11. The results of the solid-state physical characterization of carrageenan with the highest MW in each type of alkali showed that the morphology of carrageenan using Ca(OH)(2) has a cubic shape and is more crystal-like. The order of crystallinity of carrageenan using different types of alkali was Ca(OH)(2) (14.44%) > NaOH (9.80%) > KOH (7.91%), while the order of density was Ca(OH)(2) > KOH > NaOH. The order of solid fraction (SF) of the carrageenan was KOH > Ca(OH)(2) > NaOH, while the tensile strength when using KOH was 1.17, when using NaOH it was 0.08, and while using Ca(OH)(2), it was 0.05. The bonding index (BI) of carrageenan using KOH = 0.04, NaOH = 0.02, and Ca(OH)(2) = 0.02. The brittle fracture index (BFI) of the carrageenan was KOH = 0.67, NaOH = 0.26, and Ca(OH)(2) = 0.04. The order of carrageenan solubility in water was NaOH > KOH > Ca(OH)(2). These data can be used as the basis for the development of carrageenan for excipients in solid dosage forms. MDPI 2023-05-10 /pmc/articles/PMC10217466/ /pubmed/37232989 http://dx.doi.org/10.3390/gels9050397 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ferdiansyah, Rival
Abdassah, Marline
Zainuddin, Achmad
Rachmaniar, Revika
Chaerunisaa, Anis Yohana
Effects of Alkaline Solvent Type and pH on Solid Physical Properties of Carrageenan from Eucheuma cottonii
title Effects of Alkaline Solvent Type and pH on Solid Physical Properties of Carrageenan from Eucheuma cottonii
title_full Effects of Alkaline Solvent Type and pH on Solid Physical Properties of Carrageenan from Eucheuma cottonii
title_fullStr Effects of Alkaline Solvent Type and pH on Solid Physical Properties of Carrageenan from Eucheuma cottonii
title_full_unstemmed Effects of Alkaline Solvent Type and pH on Solid Physical Properties of Carrageenan from Eucheuma cottonii
title_short Effects of Alkaline Solvent Type and pH on Solid Physical Properties of Carrageenan from Eucheuma cottonii
title_sort effects of alkaline solvent type and ph on solid physical properties of carrageenan from eucheuma cottonii
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10217466/
https://www.ncbi.nlm.nih.gov/pubmed/37232989
http://dx.doi.org/10.3390/gels9050397
work_keys_str_mv AT ferdiansyahrival effectsofalkalinesolventtypeandphonsolidphysicalpropertiesofcarrageenanfromeucheumacottonii
AT abdassahmarline effectsofalkalinesolventtypeandphonsolidphysicalpropertiesofcarrageenanfromeucheumacottonii
AT zainuddinachmad effectsofalkalinesolventtypeandphonsolidphysicalpropertiesofcarrageenanfromeucheumacottonii
AT rachmaniarrevika effectsofalkalinesolventtypeandphonsolidphysicalpropertiesofcarrageenanfromeucheumacottonii
AT chaerunisaaanisyohana effectsofalkalinesolventtypeandphonsolidphysicalpropertiesofcarrageenanfromeucheumacottonii