Additive Manufacturing and Physicomechanical Characteristics of PEGDA Hydrogels: Recent Advances and Perspective for Tissue Engineering

被引:16
|
作者
Khalili, Mohammad Hakim [1 ]
Zhang, Rujing [2 ]
Wilson, Sandra [2 ]
Goel, Saurav [3 ,4 ]
Impey, Susan A. [1 ]
Aria, Adrianus Indrat [1 ]
机构
[1] Cranfield Univ, Surface Engn & Precis Ctr, Sch Aerosp Transport & Mfg, Bedford MK430AL, England
[2] Soph Biosci A-S, Baltorpvej 154, DK-2750 Copenhagen, Denmark
[3] London South Bank Univ, Sch Engn, 103 Borough Rd, London SE10AA, England
[4] Univ Petr & Energy Studies, Dept Mech Engn, Dehra Dun 248007, India
关键词
hydrogels; poly(ethylene glycol)diacrylate; tissue engineering; three-dimensional; printing; POLY(ETHYLENE GLYCOL) HYDROGELS; MECHANICAL-PROPERTIES; POLYETHYLENE-GLYCOL; DIACRYLATE HYDROGELS; MICROFLUIDIC DEVICE; POLYMERIC MATERIALS; CELL VIABILITY; YOUNGS MODULUS; SEBACIC ACID; DRUG-RELEASE;
D O I
10.3390/polym15102341
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
In this brief review, we discuss the recent advancements in using poly(ethylene glycol) diacrylate (PEGDA) hydrogels for tissue engineering applications. PEGDA hydrogels are highly attractive in biomedical and biotechnology fields due to their soft and hydrated properties that can replicate living tissues. These hydrogels can be manipulated using light, heat, and cross-linkers to achieve desirable functionalities. Unlike previous reviews that focused solely on material design and fabrication of bioactive hydrogels and their cell viability and interactions with the extracellular matrix (ECM), we compare the traditional bulk photo-crosslinking method with the latest three-dimensional (3D) printing of PEGDA hydrogels. We present detailed evidence combining the physical, chemical, bulk, and localized mechanical characteristics, including their composition, fabrication methods, experimental conditions, and reported mechanical properties of bulk and 3D printed PEGDA hydrogels. Furthermore, we highlight the current state of biomedical applications of 3D PEGDA hydrogels in tissue engineering and organ-on-chip devices over the last 20 years. Finally, we delve into the current obstacles and future possibilities in the field of engineering 3D layer-by-layer (LbL) PEGDA hydrogels for tissue engineering and organ-on-chip devices.
引用
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页数:35
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