The role of polysaccharide-based biodegradable soft polymers in the healthcare sector

Bio-based polymers have garnered significant interest across the manufacturing industry, global economy, and various engineering disciplines such as packaging, tissue engineering, controlled drug delivery, wound dressing, and textiles. In the current era, bio-based polymers, notably polysaccharides,...

Full description

Saved in:
Bibliographic Details
Main Author: Zia Ullah Arif
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2025-01-01
Series:Advanced Industrial and Engineering Polymer Research
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2542504824000241
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1832595785391276032
author Zia Ullah Arif
author_facet Zia Ullah Arif
author_sort Zia Ullah Arif
collection DOAJ
description Bio-based polymers have garnered significant interest across the manufacturing industry, global economy, and various engineering disciplines such as packaging, tissue engineering, controlled drug delivery, wound dressing, and textiles. In the current era, bio-based polymers, notably polysaccharides, offer a promising platform for constructing intricate and versatile structures in the biomedical sector. These structures encompass applications in tissue engineering and regenerative medicine (TERM), drug delivery devices, coatings for biomedical devices, and wearable sensors, thanks to their distinctive features such as inherent biocompatibility, flexibility, stretchability, mechanical strength, renewability, physiological activity, and favorable biological environment. This review offers a concise overview of diverse types of polysaccharide-based polymers and their composites, properties, and interactions with specific cells and tissues. The review also encompasses recent progress in tissue scaffolds designed for cartilage, skin, neural, vascular, cardiac, and bone regeneration, employing both conventional and modern manufacturing techniques. Additionally, it delves into the development of other biodegradable biomedical devices, including drug delivery systems (DDSs), antibacterial coatings on medical devices, wearable sensors, and electronic devices for the healthcare sector. Furthermore, it also elucidates research directions and future perspectives while emphasizing the importance of regulatory approvals and commitment to environmental sustainability. Finally, this well-organized and critical review is expected to assist practitioners and researchers in gaining a deeper understanding of current trends, challenges, and potential solutions, thereby harnessing the immense potential of polysaccharide-based biomaterials in the healthcare system. Additionally, the utilization of polysaccharides in the biomedical sector aligns with principles of nature, contributing to the reduction of carbon dioxide emissions and supporting the Sustainable Development Goals of the United Nations.
format Article
id doaj-art-a85c148ceddf4a04a7fdc9aa328455ef
institution Kabale University
issn 2542-5048
language English
publishDate 2025-01-01
publisher KeAi Communications Co., Ltd.
record_format Article
series Advanced Industrial and Engineering Polymer Research
spelling doaj-art-a85c148ceddf4a04a7fdc9aa328455ef2025-01-18T05:05:02ZengKeAi Communications Co., Ltd.Advanced Industrial and Engineering Polymer Research2542-50482025-01-0181132156The role of polysaccharide-based biodegradable soft polymers in the healthcare sectorZia Ullah Arif0Engineering Materials, School of Engineering, University of Southampton, SO17 1BJ, Southampton, United KingdomBio-based polymers have garnered significant interest across the manufacturing industry, global economy, and various engineering disciplines such as packaging, tissue engineering, controlled drug delivery, wound dressing, and textiles. In the current era, bio-based polymers, notably polysaccharides, offer a promising platform for constructing intricate and versatile structures in the biomedical sector. These structures encompass applications in tissue engineering and regenerative medicine (TERM), drug delivery devices, coatings for biomedical devices, and wearable sensors, thanks to their distinctive features such as inherent biocompatibility, flexibility, stretchability, mechanical strength, renewability, physiological activity, and favorable biological environment. This review offers a concise overview of diverse types of polysaccharide-based polymers and their composites, properties, and interactions with specific cells and tissues. The review also encompasses recent progress in tissue scaffolds designed for cartilage, skin, neural, vascular, cardiac, and bone regeneration, employing both conventional and modern manufacturing techniques. Additionally, it delves into the development of other biodegradable biomedical devices, including drug delivery systems (DDSs), antibacterial coatings on medical devices, wearable sensors, and electronic devices for the healthcare sector. Furthermore, it also elucidates research directions and future perspectives while emphasizing the importance of regulatory approvals and commitment to environmental sustainability. Finally, this well-organized and critical review is expected to assist practitioners and researchers in gaining a deeper understanding of current trends, challenges, and potential solutions, thereby harnessing the immense potential of polysaccharide-based biomaterials in the healthcare system. Additionally, the utilization of polysaccharides in the biomedical sector aligns with principles of nature, contributing to the reduction of carbon dioxide emissions and supporting the Sustainable Development Goals of the United Nations.http://www.sciencedirect.com/science/article/pii/S2542504824000241PolysaccharidesBiomedical devicesTissue engineeringDrug delivery devicesWearable sensors
spellingShingle Zia Ullah Arif
The role of polysaccharide-based biodegradable soft polymers in the healthcare sector
Advanced Industrial and Engineering Polymer Research
Polysaccharides
Biomedical devices
Tissue engineering
Drug delivery devices
Wearable sensors
title The role of polysaccharide-based biodegradable soft polymers in the healthcare sector
title_full The role of polysaccharide-based biodegradable soft polymers in the healthcare sector
title_fullStr The role of polysaccharide-based biodegradable soft polymers in the healthcare sector
title_full_unstemmed The role of polysaccharide-based biodegradable soft polymers in the healthcare sector
title_short The role of polysaccharide-based biodegradable soft polymers in the healthcare sector
title_sort role of polysaccharide based biodegradable soft polymers in the healthcare sector
topic Polysaccharides
Biomedical devices
Tissue engineering
Drug delivery devices
Wearable sensors
url http://www.sciencedirect.com/science/article/pii/S2542504824000241
work_keys_str_mv AT ziaullaharif theroleofpolysaccharidebasedbiodegradablesoftpolymersinthehealthcaresector
AT ziaullaharif roleofpolysaccharidebasedbiodegradablesoftpolymersinthehealthcaresector