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Innovative technologies for the fabrication of 3D/4D smart hydrogels and its biomedical applications - A comprehensive review.

Authors :
Shashikumar, Uday
Saraswat, Aditya
Deshmukh, Kalim
Hussain, Chaudhery Mustansar
Chandra, Pranjal
Tsai, Pei-Chien
Huang, Po-Chin
Chen, Yi-Hsun
Ke, Liang-Yin
Lin, Yuan-Chung
Chawla, Shashi
Ponnusamy, Vinoth Kumar
Source :
Advances in Colloid & Interface Science. Jun2024, Vol. 328, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Repairing and regenerating damaged tissues or organs, and restoring their functioning has been the ultimate aim of medical innovations. 'Reviving healthcare' blends tissue engineering with alternative techniques such as hydrogels, which have emerged as vital tools in modern medicine. Additive manufacturing (AM) is a practical manufacturing revolution that uses building strategies like molding as a viable solution for precise hydrogel manufacturing. Recent advances in this technology have led to the successful manufacturing of hydrogels with enhanced reproducibility, accuracy, precision, and ease of fabrication. Hydrogels continue to metamorphose as the vital compatible bio-ink matrix for AM. AM hydrogels have paved the way for complex 3D/4D hydrogels that can be loaded with drugs or cells. Bio-mimicking 3D cell cultures designed via hydrogel-based AM is a groundbreaking in-vivo assessment tool in biomedical trials. This brief review focuses on preparations and applications of additively manufactured hydrogels in the biomedical spectrum, such as targeted drug delivery, 3D-cell culture, numerous regenerative strategies, biosensing, bioprinting, and cancer therapies. Prevalent AM techniques like extrusion, inkjet, digital light processing, and stereo-lithography have been explored with their setup and methodology to yield functional hydrogels. The perspectives, limitations, and the possible prospects of AM hydrogels have been critically examined in this study. [Display omitted] • Precise, functional, and biocompatible 3D/4D hydrogel designing via additive manufacturing. • Exploration of AM-hydrogel impact on bio-medics/printing/medical designing and3D cultures. • Extrusion, inkjet, DLP, and SLA-based futuristic hydrogel designing basics and mechanism. • Tissue regeneration strategy in cartilage, cardiac, and spinal tissues with wound healing. • Targeted drug delivery and cancer therapy-directional cytotoxicity, biosensors application. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00018686
Volume :
328
Database :
Academic Search Index
Journal :
Advances in Colloid & Interface Science
Publication Type :
Academic Journal
Accession number :
177395748
Full Text :
https://doi.org/10.1016/j.cis.2024.103163