Enzymatically crosslinked silk-hyaluronic acid hydrogels.
Nicole R. Raia,Benjamin P. Partlow,Meghan McGill,Erica P. Kimmerling,Chiara E. Ghezzi,David L. Kaplan +5 more
TLDR
These hydrogel composites provide a biologically relevant system with controllable temporal stiffening and elasticity, thus offering enhanced tunable scaffolds for short or long term applications in tissue engineering.About:
This article is published in Biomaterials.The article was published on 2017-07-01 and is currently open access. It has received 203 citations till now. The article focuses on the topics: Self-healing hydrogels & Fibroin.read more
Citations
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Determining Beta Sheet Crystallinity in Fibrous Proteins by Thermal Analysis and Infrared Spectroscopy
TL;DR: In this article, B. mori silk fibroin films were studied thermally using temperature-modulated differential scanning calorimetry (TMDSC) to obtain the reversing heat capacity.
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3D printing of hydrogels: Rational design strategies and emerging biomedical applications
TL;DR: A review of hydrogel-based biomaterial inks and bioinks for 3D printing can be found in this paper, where the authors provide a comprehensive overview and discussion of the tailorability of material, mechanical, physical, chemical and biological properties.
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Silkworm silk-based materials and devices generated using bio-nanotechnology
TL;DR: This Tutorial review summarizes and highlights recent advances in the use of silk-based materials in bio-nanotechnology, with a focus on the fabrication and functionalization methods for in vitro and in vivo applications in the field of tissue engineering, degradable devices and controlled release systems.
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Chitosan based bioactive materials in tissue engineering applications-A review.
Md. Minhajul Islam,Md. Shahruzzaman,Shanta Biswas,Md. Nurus Sakib,Taslim Ur Rashid,Taslim Ur Rashid +5 more
TL;DR: Latest developments in terms of constituents, fabrication technologies, structural, and bioactive properties of these materials that may represent an effective solution for tissue engineering materials, making them a realistic clinical alternative in the near future are covered.
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Hydrogel scaffolds for differentiation of adipose-derived stem cells
Qiutong Huang,Yijie Zou,Maria C. Arno,Shuai Chen,Tao Wang,Jingyi Gao,Andrew P. Dove,Jianzhong Du +7 more
TL;DR: An overview of common methods for hydrogel preparation is given with a focus on those strategies that provide potential advantages for ADSC encapsulation, before summarizing the physical properties of hydrogels scaffolds that can act as biological cues.
References
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Journal ArticleDOI
Hydrogels for biomedical applications.
TL;DR: The composition and synthesis of hydrogels, the character of their absorbed water, and permeation of solutes within their swollen matrices are reviewed to identify the most important properties relevant to their biomedical applications.
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Hydrogels in Biology and Medicine: From Molecular Principles to Bionanotechnology†
TL;DR: This work highlights recent developments in engineering uncrosslinked and crosslinked hydrophilic polymers for biomedical and biological applications and shows how such systems' intelligent behavior can be used in sensors, microarrays, and imaging.
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Materials fabrication from Bombyx mori silk fibroin
Danielle N. Rockwood,Rucsanda C. Preda,Tuna Yucel,Xiaoqin Wang,Michael L. Lovett,David L. Kaplan +5 more
TL;DR: This protocol includes methods to extract silk from B. mori cocoons to fabricate hydrogels, tubes, sponges, composites, fibers, microspheres and thin films, used directly as biomaterials for implants, as scaffolding in tissue engineering and in vitro disease models, as well as for drug delivery.
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Biomedical applications of hydrogels: A review of patents and commercial products
TL;DR: From Wichterle’s pioneering work to the most recent hydrogel-based inventions and products on the market, it provides the reader with a detailed introduction to the topic and perspective on further potential developments.
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Hyaluronic acid hydrogels for biomedical applications.
TL;DR: This progress report covers both basic concepts and recent advances in the development of HA‐based hydrogels for biomedical applications.