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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,…

Biological Physics · Physics 2013-02-11 Giuseppe Tronci , Amanda Doyle , Stephen J. Russell , David J. Wood

The design of photo-active collagen systems is presented as a basis for establishing biomimetic materials with varied network architecture and programmable macroscopic properties. Following in-house isolation of type I collagen, reaction…

Chemical Physics · Physics 2013-06-24 Giuseppe Tronci , 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…

Soft Condensed Matter · Physics 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…

Chemical Physics · Physics 2014-10-24 Giuseppe Tronci , Colin A. Grant , Neil H. Thomson , Stephen J. Russell , David J. Wood

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…

Biological Physics · Physics 2015-09-21 M. Tarik Arafat , Giuseppe Tronci , Jie Yin , David J. Wood , Stephen J. Russell

The design of antibacterial-releasing coatings or wrapping materials with controlled drug release capability is a promising strategy to minimise risks of infection and medical device failure in vivo. Collagen fibres have been employed as…

Biomolecules · Quantitative Biology 2021-01-06 M. Tarik Arafat , Giuseppe Tronci , David J. Wood , Stephen J. Russell

The creation of hyaluronic acid (HA)-based materials as biomineralisation scaffolds for cost-effective hard tissue regenerative therapies remains a key biomedical challenge. A non-toxic and simple acellular method to generate specific…

Biological Physics · Physics 2021-01-08 Ziyu Gao , Layla Hassouneh , Xuebin Yang , Juan Pang , Paul D. Thornton , Giuseppe Tronci

The predominant structural protein in vertebrates is collagen, which plays a key role in extracellular matrix and connective tissue mechanics. Despite its prevalence and physical importance in biology, the mechanical properties of molecular…

Biological Physics · Physics 2018-11-14 Naghmeh Rezaei , Aaron Lyons , Nancy R. Forde

Advanced bioactive systems with defined macroscopic properties and spatio-temporal sequestration of extracellular biomacromolecules are highly desirable for next generation therapeutics. Here, chitosan hydrogels were prepared with neutral…

Chemical Physics · Physics 2013-10-29 Giuseppe Tronci , Hiroharu Ajiro , Stephen J. Russell , David J. Wood , Mitsuru Akashi

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…

Chemical Physics · Physics 2017-06-13 Roison Holmes , Steve Kirk , Giuseppe Tronci , Xeubin Yang , David Wood

The formation of naturally-derived materials with wet stable fibrous architectures is paramount in order to mimic the features of tissues at the molecular and microscopic scale. Here, we investigated the formation of wet-spun fibres based…

The hierarchical triple-helix structure of collagen type I, Col I, is essential for extracellular matrix support and integrity. However, current reconstruction strategies face challenges such as chain mismatch, preventing proper fibril…

Hydrogels are increasingly recognized as a versatile platform for applications spanning from tissue engineering to soft robotics or flexible electronics. Recent efforts have focused on enhancing and tailoring their mechanical performance to…

Soft Condensed Matter · Physics 2025-12-29 Agniva Dutta , Valeriy V. Ginzburg , Gleb Vasilyev , Eyal Zussman

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.…

Tissues and Organs · Quantitative Biology 2023-04-13 Roisin Holmes , Xuebin B. Yang , David J. Wood , Giuseppe Tronci

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…

Chemical Physics · Physics 2015-12-08 Giuseppe Tronci , Colin A. Grant , Neil H. Thomson , Stephen J. Russell , David J. Wood

Collagen type I is well-known for its outstanding mechanical properties which it inherits from its hierarchical structure. Collagen type I fibrils may be viewed as an heterogeneous material made of protein, macromolecules (such as…

Soft Condensed Matter · Physics 2024-06-27 Maxime Vassaux

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…

Tissues and Organs · Quantitative Biology 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…

Biomolecules · Quantitative Biology 2018-12-14 He Liang , Stephen J. Russell , David J. Wood , Giuseppe Tronci

Hydrogels are soft materials engineered to suit a multitude of applications that exploit their tunable mechanochemical properties. Dynamic hydrogels employing noncovalent, physically crosslinked networks dominated by either enthalpic or…

Soft Condensed Matter · Physics 2023-11-28 Samya Sen , Anthony C. Yu , Changxin Dong , Andrea I. D'Aquino , Eric A. Appel

Chitosan (CT) is an antibacterial polysaccharide that has been investigated for drug carriers, haemostats and wound dressings. For these applications, customised CT devices can often be obtained with specific experimental conditions, which…

Soft Condensed Matter · Physics 2016-12-06 Giuseppe Tronci , Petronela Buiga , Ahmed Alhilou , Thuy Do , Stephen J. Russell , David J. Wood
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