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Carboxymethylated Gums and Derivatization: Strategies and Significance in Drug Delivery and Tissue Engineering

Natural polysaccharides have been widely exploited in drug delivery and tissue engineering research. They exhibit excellent biocompatibility and fewer adverse effects; however, it is challenging to assess their bioactivities to that of manufactured synthetics because of their intrinsic physicochemic...

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Autores principales: Baghel, Madhuri, Sakure, Kalyani, Giri, Tapan Kumar, Maiti, Sabyasachi, Nakhate, Kartik T., Ojha, Shreesh, Sharma, Charu, Agrawal, Yogeeta, Goyal, Sameer, Badwaik, Hemant
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10222150/
https://www.ncbi.nlm.nih.gov/pubmed/37242559
http://dx.doi.org/10.3390/ph16050776
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author Baghel, Madhuri
Sakure, Kalyani
Giri, Tapan Kumar
Maiti, Sabyasachi
Nakhate, Kartik T.
Ojha, Shreesh
Sharma, Charu
Agrawal, Yogeeta
Goyal, Sameer
Badwaik, Hemant
author_facet Baghel, Madhuri
Sakure, Kalyani
Giri, Tapan Kumar
Maiti, Sabyasachi
Nakhate, Kartik T.
Ojha, Shreesh
Sharma, Charu
Agrawal, Yogeeta
Goyal, Sameer
Badwaik, Hemant
author_sort Baghel, Madhuri
collection PubMed
description Natural polysaccharides have been widely exploited in drug delivery and tissue engineering research. They exhibit excellent biocompatibility and fewer adverse effects; however, it is challenging to assess their bioactivities to that of manufactured synthetics because of their intrinsic physicochemical characteristics. Studies showed that the carboxymethylation of polysaccharides considerably increases the aqueous solubility and bioactivities of inherent polysaccharides and offers structural diversity, but it also has some limitations that can be resolved by derivatization or the grafting of carboxymethylated gums. The swelling ratio, flocculation capacity, viscosity, partition coefficient, metal absorption properties, and thermosensitivity of natural polysaccharides have been improved as a result of these changes. In order to create better and functionally enhanced polysaccharides, researchers have modified the structures and properties of carboxymethylated gums. This review summarizes the various ways of modifying carboxymethylated gums, explores the impact that molecular modifications have on their physicochemical characteristics and bioactivities, and sheds light on various applications for the derivatives of carboxymethylated polysaccharides.
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spelling pubmed-102221502023-05-28 Carboxymethylated Gums and Derivatization: Strategies and Significance in Drug Delivery and Tissue Engineering Baghel, Madhuri Sakure, Kalyani Giri, Tapan Kumar Maiti, Sabyasachi Nakhate, Kartik T. Ojha, Shreesh Sharma, Charu Agrawal, Yogeeta Goyal, Sameer Badwaik, Hemant Pharmaceuticals (Basel) Review Natural polysaccharides have been widely exploited in drug delivery and tissue engineering research. They exhibit excellent biocompatibility and fewer adverse effects; however, it is challenging to assess their bioactivities to that of manufactured synthetics because of their intrinsic physicochemical characteristics. Studies showed that the carboxymethylation of polysaccharides considerably increases the aqueous solubility and bioactivities of inherent polysaccharides and offers structural diversity, but it also has some limitations that can be resolved by derivatization or the grafting of carboxymethylated gums. The swelling ratio, flocculation capacity, viscosity, partition coefficient, metal absorption properties, and thermosensitivity of natural polysaccharides have been improved as a result of these changes. In order to create better and functionally enhanced polysaccharides, researchers have modified the structures and properties of carboxymethylated gums. This review summarizes the various ways of modifying carboxymethylated gums, explores the impact that molecular modifications have on their physicochemical characteristics and bioactivities, and sheds light on various applications for the derivatives of carboxymethylated polysaccharides. MDPI 2023-05-22 /pmc/articles/PMC10222150/ /pubmed/37242559 http://dx.doi.org/10.3390/ph16050776 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 Review
Baghel, Madhuri
Sakure, Kalyani
Giri, Tapan Kumar
Maiti, Sabyasachi
Nakhate, Kartik T.
Ojha, Shreesh
Sharma, Charu
Agrawal, Yogeeta
Goyal, Sameer
Badwaik, Hemant
Carboxymethylated Gums and Derivatization: Strategies and Significance in Drug Delivery and Tissue Engineering
title Carboxymethylated Gums and Derivatization: Strategies and Significance in Drug Delivery and Tissue Engineering
title_full Carboxymethylated Gums and Derivatization: Strategies and Significance in Drug Delivery and Tissue Engineering
title_fullStr Carboxymethylated Gums and Derivatization: Strategies and Significance in Drug Delivery and Tissue Engineering
title_full_unstemmed Carboxymethylated Gums and Derivatization: Strategies and Significance in Drug Delivery and Tissue Engineering
title_short Carboxymethylated Gums and Derivatization: Strategies and Significance in Drug Delivery and Tissue Engineering
title_sort carboxymethylated gums and derivatization: strategies and significance in drug delivery and tissue engineering
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10222150/
https://www.ncbi.nlm.nih.gov/pubmed/37242559
http://dx.doi.org/10.3390/ph16050776
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