Literature DB >> 8672629

In vitro degradation of dermal sheep collagen cross-linked using a water-soluble carbodiimide.

L H Olde Damink1, P J Dijkstra, M J van Luyn, P B van Wachem, P Nieuwenhuis, J Feijen.   

Abstract

Bacterial collagenase was used to study the susceptibility of dermal sheep collagen (DSC) cross-linked with a mixture of the water-soluble carbodiimide 1-ethyl-3-(3-dimethyl aminopropyl)-carbodiimide hydrochloride and N-hydroxysuccinimide (E/N-DSC) towards enzymatic degradation. Contrary to non-cross-linked DSC (N-DSC), which had a rate of weight-loss of 18.1% per hour upon degradation, no weight loss was observed for E/N-DSC during a 24 h degradation period. The tensile strength of the E/N-DSC samples decreased during this time period, resulting in partially degraded samples having 80% of the initial tensile strength remaining. The susceptibility of E/N-DSC samples towards enzymatic degradation could be controlled by varying the degree of cross-linking of the samples. Ethylene oxide sterilization of E/N-DSC samples made the material more resistant against degradation compared with non-sterilized E/N-DSC samples. This may be explained by a decrease of the adsorption of bacterial collagenase onto the collagen owing to reaction of ethylene oxide with remaining free amine groups in the collagen matrix.

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Year:  1996        PMID: 8672629     DOI: 10.1016/0142-9612(96)86737-8

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  28 in total

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Authors:  Corey R Deeken; Sharon L Bachman; Bruce J Ramshaw; Sheila A Grant
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2.  Tenocyte proliferation on collagen scaffolds protects against degradation and improves scaffold properties.

Authors:  J M R Tilley; S Chaudhury; O Hakimi; A J Carr; J T Czernuszka
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3.  The inhibitory effect of polyvinylphosphonic acid on functional matrix metalloproteinase activities in human demineralized dentin.

Authors:  Arzu Tezvergil-Mutluay; Kelli A Agee; Tomohiro Hoshika; Franklin R Tay; David H Pashley
Journal:  Acta Biomater       Date:  2010-05-23       Impact factor: 8.947

4.  Albumin-based nanoparticles as magnetic resonance contrast agents: II. Physicochemical characterisation of purified and standardised nanoparticles.

Authors:  A A Abdelmoez; G C Thurner; E A Wallnöfer; N Klammsteiner; C Kremser; H Talasz; M Mrakovcic; E Fröhlich; W Jaschke; P Debbage
Journal:  Histochem Cell Biol       Date:  2010-07-14       Impact factor: 4.304

5.  Effect of enzymatic degradation on the mechanical properties of biological scaffold materials.

Authors:  Afua H Annor; Michael E Tang; Chi Lun Pui; Gregory C Ebersole; Margaret M Frisella; Brent D Matthews; Corey R Deeken
Journal:  Surg Endosc       Date:  2012-04-27       Impact factor: 4.584

6.  Characterization of methacrylated type-I collagen as a dynamic, photoactive hydrogel.

Authors:  Ian D Gaudet; David I Shreiber
Journal:  Biointerphases       Date:  2012-03-10       Impact factor: 2.456

7.  Effect of pore size and cross-linking of a novel collagen-elastin dermal substitute on wound healing.

Authors:  Bouke K H L Boekema; Marcel Vlig; Leon Olde Damink; Esther Middelkoop; Lizette Eummelen; Anne V Bühren; Magda M W Ulrich
Journal:  J Mater Sci Mater Med       Date:  2013-11-01       Impact factor: 3.896

8.  Carbodiimide conjugation of fibronectin on collagen basal lamina analogs enhances cellular binding domains and epithelialization.

Authors:  Katie A Bush; George D Pins
Journal:  Tissue Eng Part A       Date:  2010-03       Impact factor: 3.845

9.  A 3D biodegradable protein based matrix for cartilage tissue engineering and stem cell differentiation to cartilage.

Authors:  Neethu Mohan; Prabha D Nair; Yasuhiko Tabata
Journal:  J Mater Sci Mater Med       Date:  2008-06-17       Impact factor: 3.896

10.  The behavior of neuronal cells on tendon-derived collagen sheets as potential substrates for nerve regeneration.

Authors:  Kyle A Alberti; Amy M Hopkins; Min D Tang-Schomer; David L Kaplan; Qiaobing Xu
Journal:  Biomaterials       Date:  2014-01-22       Impact factor: 12.479

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