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European cells & materials.

Periodical
Cell Biology
Artificial Organs
Biocompatible Materials
Cell Transplantation
Musculoskeletal Diseases
Tissue Engineering
Wounds and Injuries
Publisher:
European Cells & Materials,. Davos, Switzerland : AO Research Institute (2009)
Frequency: Semiannual
Country: Switzerland
Language: English
Author(s):
Swiss Society for Biomaterials., Tissue and Cell Engineering Society., AOTrauma., European Orthopaedic Research Society., Swiss Society for Biomaterials and Regenerative Medicine., AOCMF., Scandinavian Society for Biomaterials.
Start Year:2001 -
ISSN:
1473-2262 (Electronic)
1473-2262 (Linking)
Impact Factor
3.1
2022
NLM ID:100973416
(OCoLC):49857525
LCCN:2003243195
Insulin-like growth factor binding protein (IGFBP6) is a cross-species tendon marker.
European cells & materials    September 24, 2019   Volume 38 123-136 doi: 10.22203/eCM.v038a10
Turlo AJ, Mueller-Breckenridge AJ, Zamboulis DE, Tew SR, Canty-Laird EG, Clegg PD.The main challenge in tendon injury management is suboptimal tissue healing that fails to re-establish original tendon function. Tissue bioengineering is a promising approach for tendon therapy, with potential to improve its functional outcomes. However, evaluation criteria for tissue-engineered tendon are unclear due to the lack of specific markers of differentiated tendon. The study aim was to identify a panel of genes that characterised tendons in comparison to cartilage or muscles and validate those genes, both in human and key species used as models for tendon diseases. Gene expression pr...
Lentiviral-based reporter constructs for profiling chondrogenic activity in primary equine cell populations.
European cells & materials    October 12, 2018   Volume 36 156-170 doi: 10.22203/eCM.v036a12
Martin-Pena A, Porter RM, Plumton G, McCarrel TM, Morton AJ, Guijarro MV, Ghivizzani SC, Sharma B, Palmer GD.Successful clinical translation of mesenchymal stem cell (MSC)-based therapies for cartilage repair will likely require the implementation of standardised protocols and broadly applicable tools to facilitate the comparisons among cell types and chondroinduction methods. The present study investigated the utility of recombinant lentiviral reporter vectors as reliable tools for comparing chondrogenic potential among primary cell populations and distinguishing cellular-level variations of chondrogenic activity in widely used three-dimensional (3D) culture systems. Primary equine MSCs and chondroc...
Progenitor cells in auricular cartilage demonstrate cartilage-forming capacity in 3D hydrogel culture.
European cells & materials    February 27, 2018   Volume 35 132-150 doi: 10.22203/eCM.v035a10
Otto IA, Levato R, Webb WR, Khan IM, Breugem CC, Malda J.Paramount for the generation of auricular structures of clinically-relevant size is the acquisition of a large number of cells maintaining an elastic cartilage phenotype, which is the key in producing a tissue capable of withstanding forces subjected to the auricle. Current regenerative medicine strategies utilize chondrocytes from various locations or mesenchymal stromal cells (MSCs). However, the quality of neo-tissues resulting from these cell types is inadequate due to inefficient chondrogenic differentiation and endochondral ossification, respectively. Recently, a subpopulation of stem/pr...
Variations during ageing in the three-dimensional anatomical arrangement of fascicles within the equine superficial digital flexor tendon.
European cells & materials    February 13, 2018   Volume 35 87-102 doi: 10.22203/eCM.v035a07
Ali OJ, Comerford EJ, Clegg PD, Canty-Laird EG.BiTendons are constructed from collagenous fascicles separated by endotenon/interfascicular matrix (IFM). Tendons may be specialised for precision movement or to store energy during locomotion and for the latter the elasticity of the endotenon/IFM is particularly important. The equine superficial digital flexor tendon (SDFT) is a dedicated energy-storing tendon with a similar function to the human Achilles tendon. Classical anatomical descriptions portray fascicles as longitudinally arranged distinct anatomical structures. In the present study, using three-dimensional reconstruction from whole...
A new strategy for the decellularisation of large equine tendons as biocompatible tendon substitutes.
European cells & materials    July 8, 2016   Volume 32 58-73 doi: 10.22203/ecm.v032a04
Bottagisio M, Pellegata AF, Boschetti F, Ferroni M, Moretti M, Lovati AB.Tendon ruptures and/or large losses remain to be a great clinical challenge and often require full replacement of the damaged tissue. The use of auto- and allografts or engineered scaffolds is an established approach to restore severe tendon injuries. However, these grafts are commonly related to scarce biocompatibility, site morbidity, chronic inflammation and poor biomechanical properties. Recently, the decellularisation techniques of allo- or xenografts using specific detergents have been studied and have been found to generate biocompatible substitutes that resemble the native tissue. This...
Osteochondral lesions in distal tarsal joints of Icelandic horses reveal strong associations between hyaline and calcified cartilage abnormalities.
European cells & materials    March 25, 2014   Volume 27 213-236 doi: 10.22203/ecm.v027a16
Ley CJ, Ekman S, Hansson K, Björnsdóttir S, Boyde A.Osteochondral lesions in the joints of the distal tarsal region of young Icelandic horses provide a natural model for the early stages of osteoarthritis (OA) in low-motion joints. We describe and characterise mineralised and non-mineralised osteochondral lesions in left distal tarsal region joint specimens from twenty-two 30 ±1 month-old Icelandic horses. Combinations of confocal scanning light microscopy, backscattered electron scanning electron microscopy (including, importantly, iodine staining) and three-dimensional microcomputed tomography were used on specimens obtained with guidance f...
Foetal and postnatal equine articular cartilage development: magnetic resonance imaging and polarised light microscopy.
European cells & materials    August 9, 2013   Volume 26 33-48 doi: 10.22203/ecm.v026a03
Cluzel C, Blond L, Fontaine P, Olive J, Laverty S.Adult articular cartilage (AC) has a well described multizonal collagen structure. Knowledge of foetal AC organisation and development may provide a prototype for cartilage repair strategies, and improve understanding of structural changes in developmental diseases such as osteochondrosis (OC). The objective of this study was to describe normal development of the spatial architecture of the collagen network of equine AC using 1.5 T magnetic resonance imaging (MRI) and polarised light microscopy (PLM), at sites employed for cartilage repair studies or susceptible to OC. T2-weighted fast-spin e...
Capacity for sliding between tendon fascicles decreases with ageing in injury prone equine tendons: a possible mechanism for age-related tendinopathy?
European cells & materials    January 8, 2013   Volume 25 48-60 doi: 10.22203/ecm.v025a04
Thorpe CT, Udeze CP, Birch HL, Clegg PD, Screen HR.Age-related tendinopathy is common in both humans and horses; the initiation and progression of which is similar between species. The majority of tendon injuries occur to high-strain energy storing tendons, such as the human Achilles tendon and equine superficial digital flexor (SDFT). By contrast, the low-strain positional human anterior tibialis tendon and equine common digital extensor (CDET) are rarely injured. It has previously been established that greater extension occurs at the fascicular interface in the SDFT than in the CDET; this may facilitate the large strains experienced during l...
Mathematical modelling of tissue formation in chondrocyte filter cultures.
European cells & materials    December 17, 2011   Volume 22 377-392 doi: 10.22203/ecm.v022a28
Catt CJ, Schuurman W, Sengers BG, van Weeren PR, Dhert WJ, Please CP, Malda J.In the field of cartilage tissue engineering, filter cultures are a frequently used three-dimensional differentiation model. However, understanding of the governing processes of in vitro growth and development of tissue in these models is limited. Therefore, this study aimed to further characterise these processes by means of an approach combining both experimental and applied mathematical methods. A mathematical model was constructed, consisting of partial differential equations predicting the distribution of cells and glycosaminoglycans (GAGs), as well as the overall thickness of the tissue....
Cartilage damage involving extrusion of mineralisable matrix from the articular calcified cartilage and subchondral bone.
European cells & materials    May 28, 2011   Volume 21 470-478 doi: 10.22203/ecm.v021a35
Boyde A, Riggs CM, Bushby AJ, McDermott B, Pinchbeck GL, Clegg PD.Arthropathy of the distal articular surfaces of the third metacarpal (Mc3) and metatarsal (Mt3) bones in the Thoroughbred racehorse (Tb) is a natural model of repetitive overload arthrosis. We describe a novel pathology that affects the articular calcified cartilage (ACC) and subchondral bone (SCB) and which is associated with hyaline articular cartilage degeneration. Parasagittal slices cut from the palmar quadrant of the distal condyles of the left Mc3/Mt3 of 39 trained Tbs euthanized for welfare reasons were imaged by point projection microradiography, and backscattered electron (BSE) scann...
Combined nanoindentation testing and scanning electron microscopy of bone and articular calcified cartilage in an equine fracture predilection site.
European cells & materials    June 3, 2010   Volume 19 242-251 doi: 10.22203/ecm.v019a23
Doube M, Firth EC, Boyde A, Bushby AJ.Condylar fracture of the third metacarpal bone (Mc3) is the commonest cause of racetrack fatality in Thoroughbred horses. Linear defects involving hyaline articular cartilage, articular calcified cartilage (ACC) and subchondral bone (SCB) have been associated with the fracture initiation site, which lies in the sagittal grooves of the Mc3 condyle. We discovered areas of thickened and abnormally-mineralised ACC in the sagittal grooves of several normal 18-month-old horses, at the same site that linear defects and condylar fracture occur in older Thoroughbreds and questioned whether this tissue ...
Exercise does not affect stiffness and mineralisation of third metacarpal condylar subarticular calcified tissues in 2 year old thoroughbred racehorses.
European cells & materials    September 17, 2008   Volume 16 40-46 doi: 10.22203/ecm.v016a05
Ferguson VL, Bushby AJ, Firth EC, Howell PG, Boyde A.Impact exercise has a profound effect in increasing volumetric density of epiphyseal bone, as clearly shown in 2 year old thoroughbred racehorses from which we derived the tissue studied in the present investigation. Here, we asked the question whether the fabric-level properties of the mineralised tissues immediately below hyaline articular cartilage which transmit the extra loads are themselves altered in consequence. We therefore studied the nanoindentation elastic modulus and its relationship to the concentration of mineral determined by quantitative backscattered electron imaging in the h...