Polysaccharide-Based Hydrogels for Advanced Biomedical Engineering Applications

Гидрогели на основе полисахаридов для передовых применений в биомедицинской инженерии
Md. Mahamudul Hasan Rumon, Anwarul Azim Akib, Stephen Don Sarkar, Md. Abu Rayhan Khan, Md. Mosfeq Uddin, Dina Nasrin, Chanchal Kumar Roy
2024-08-20

biocompatibilitybiotherapeutic deliverydrug delivery systemsmechanical toughnesspolysaccharide-based hydrogels
In recent years, numerous applications of hydrogels using polysaccharides have evolved, benefiting from their widespread availability, excellent biodegradability, biocompatibility, and nonpoisonous nature. These natural polymers are typically sourced from renewable materials or from manufacturing processes, contributing collaboratively to waste management and demonstrating the potential for enhanced and enduring sustainability. In the field of novel bioactive molecule carriers for biotherapeutics, natural polymers are attracting attention due to their inherent properties and adaptable chemical structures. These polymers offer versatile matrices with a range of architectures and mechanical properties, while retaining the bioactivity of incorporated biomolecules. However, conventional polysaccharide-based hydrogels suffer from inadequate mechanical toughness with large swelling properties, which prohibit their efficacy in real-world applications. This review offers insights into the latest advancements in the development of diverse polysaccharide-based hydrogels for biotherapeutic administrations, either standalone or in conjunction with other polymers or drug delivery systems, in the pharmaceutical and biomedical fields.
1
Conventional polysaccharide hydrogels remain limited by inadequate mechanical toughness and excessive swelling, motivating development of reinforced systems and hybrid drug-delivery approaches.
2
Natural polysaccharides provide adaptable chemical structures and versatile hydrogel architectures for bioactive molecule and biotherapeutic delivery.
3
Polysaccharide-based hydrogels offer biodegradability, biocompatibility, low toxicity, and renewable sourcing for biomedical applications.
4
Their renewable origins and potential use of manufacturing waste support improved sustainability and waste-management strategies.
5
These hydrogels can preserve incorporated biomolecule bioactivity while enabling tunable mechanical properties and matrix designs.

polysaccharide-based hydrogels for biomedical and pharmaceutical applications

their development and application as bioactive molecule carriers for biotherapeutic delivery, including strategies to improve mechanical toughness and control swelling

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2024-08-20
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Md. Mahamudul Hasan Rumon
Anwarul Azim Akib
Stephen Don Sarkar
Md. Abu Rayhan Khan
Md. Mosfeq Uddin
Dina Nasrin
Chanchal Kumar Roy
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