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Chemical crosslinking of collagen is a general strategy to reproduce macroscale tissue properties in physiological environment. However, simultaneous control of protein conformation, material properties and biofunctionality is highly…

化学物理 · 物理学 2013-08-27 Giuseppe Tronci , Amanda Doyle , Stephen J. Russell , David J. Wood

Biomimetic hydrogels based on natural polymers are a promising class of biomaterial, mimicking the natural extra-cellular matrix of biological tissues and providing cues for cell attachment, proliferation and differentiation. With a view to…

软凝聚态物质 · 物理学 2016-10-25 David A. Head , Giuseppe Tronci , Stephen J. Russell , David J. Wood

Biological hydrogels have been increasingly sought after as e.g. wound dressings or scaffolds for regenerative medicine, due to their inherent biofunctionality in biological environments. Especially in moist wound healing, the ideal…

化学物理 · 物理学 2014-10-24 Giuseppe Tronci , Colin A. Grant , Neil H. Thomson , Stephen J. Russell , David J. Wood

In order to establish defined biomimetic systems, type I collagen was functionalised with 1,3-Phenylenediacetic acid (Ph) as aromatic, bifunctional segment. Following investigation on molecular organization and macroscopic properties,…

生物物理 · 物理学 2013-02-11 Giuseppe Tronci , Amanda Doyle , Stephen J. Russell , David J. Wood

Covalent functionalisation of collagen has been shown to be a promising strategy to adjust the mechanical properties of highly swollen collagen hydrogels. At the same time, secondary interactions between for example, amino acidic…

化学物理 · 物理学 2015-12-08 Giuseppe Tronci , Colin A. Grant , Neil H. Thomson , Stephen J. Russell , David J. Wood

UV-cured collagen-based hydrogels hold promise in skeletal muscle regeneration due to their soft elastic properties and porous architecture. However, the complex triple helix conformation of collagen and environmental conditions, i.e.…

组织与器官 · 定量生物学 2023-04-13 Roisin Holmes , Xuebin B. Yang , David J. Wood , Giuseppe Tronci

The fast degradation of collagen-based membranes in the biological environment remains a critical challenge, resulting in underperforming Guided Bone Regeneration (GBR) therapy leading to compromised clinical results. Photoactive…

Thiol-ene photo-click hydrogels were prepared via step-growth polymerisation using thiol-functionalised type-I collagen and 8-arm poly(ethylene glycol) norbornene terminated (PEG-NB), as a potential injectable regenerative device. Type-I…

化学物理 · 物理学 2017-06-12 Roisin Holmes , Xuebin B Yang , Aishling Dunne , Larisa Florea , David Wood , Giuseppe Tronci

We engineered a microfluidic platform to study the effects of bioactive glass nanoparticles (BGNs) on cell viability under static culture. We incorporated different concentrations of BGNs (1%, 2%, and 3% w/v) in collagen hydrogel (with a…

组织与器官 · 定量生物学 2024-08-07 Faezeh Ghobadi , Maryam Saadatmand , Sara Simorgh , Peiman Brouki Milan

The covalent functionalisation of type I atelocollagen with either 4-vinylbenzyl or methacrylamide residues is presented as a simple synthetic strategy to achieve customisable, cell-friendly UV-cured hydrogel networks with widespread…

生物大分子 · 定量生物学 2018-12-14 He Liang , Stephen J. Russell , David J. Wood , Giuseppe Tronci

Photoinduced network formation is an attractive strategy for designing water-insoluble gelatin fibres as medical device building blocks and for enabling late-stage property customisation. However, mechanically-competent, long-lasting…

化学物理 · 物理学 2019-05-22 Jessica Rickman , Giuseppe Tronci , He Liang , Stephen J. Russell

Currently two factors hinder the use of collagen as building block of regenerative devices: the potential antigenicity, and limited mechanical strength in aqueous environment. Polymeric collagen is naturally found in the cross-linked state…

化学物理 · 物理学 2017-06-13 Roison Holmes , Steve Kirk , Giuseppe Tronci , Xeubin Yang , David Wood

Medical devices with matrix metalloproteinase (MMP) modulating functionality are highly desirable to restore tissue homeostasis in critical inflammation states, such as chronic wounds, rotator cuff tears and cancer. The introduction of…

化学物理 · 物理学 2018-05-30 H Liang , SJ Russell , DJ Wood , G Tronci

One of the limitations of electrospun collagen as bone-like fibrous structure is the potential collagen triple helix denaturation in the fibre state and the corresponding inadequate wet stability even after crosslinking. Here, we have…

生物物理 · 物理学 2015-09-21 M. Tarik Arafat , Giuseppe Tronci , Jie Yin , David J. Wood , Stephen J. Russell

Polymer gels with photo-responsive cross-links enable tunable mechanics and surface morphologies, making them promising for adaptive materials. While prior work on coumarin cross-linked gels has focused on photo-mediated events in dilute…

Implantable hydrogels should ideally possess mechanical properties matched to the surrounding tissues to enable adequate mechanical function while regeneration occurs. This can be challenging, especially when degradable systems with high…

组织与器官 · 定量生物学 2024-03-19 Michael Phillips , Giuseppe Tronci , Christopher M. Pask , Stephen J. Russell

Molecular dynamics simulations have been employed to study the formation of a physical (thermoreversible) gel by amphiphilic A-B-A triblock copolymers in aqueous solution. In order to mimic the structure of hydrogel-forming polypeptides…

软凝聚态物质 · 物理学 2007-05-23 Lei Guo , Erik Luijten

We study the micromechanics of collagen-I gel with the goal of bridging the gap between theory and experiment in the study of biopolymer networks. Three-dimensional images of fluorescently labeled collagen are obtained by confocal…

软凝聚态物质 · 物理学 2009-09-29 Andrew M. Stein , David A. Vader , David A. Weitz , Leonard M. Sander

A facile route for the fabrication of surface-attached hydrogel thin films with well-controlled chemistry and tailored architecture on wide range of thickness from nanometers to micrometers is reported. The synthesis, which consists in…

Active materials capable of autonomously modulating their mechanical properties are foundational to the development of next-generation soft technologies. Here, we introduce a novel class of extensible biohybrid hydrogels powered by living…

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