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Orthopaedic Proceedings
Vol. 106-B, Issue SUPP_2 | Pages 46 - 46
2 Jan 2024
Fleischmann N Braun T Reinhardt A Schotte T Wehrmann J Rüdig V Gögele C Kokozidou M Werner C Schulze-Tanzil G
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Osteoarthritis (OA) and diabetis mellitus type 2 (DMT2) are pathogenetically linked. Complement dysregulation contributes to OA and could be involved in DMT2. The inflammatory anaphylatoxin C5a is released during complement activation. This study aims to understand the specific responses of chondrocytes isolated from diabetic and non-diabetic rats exposed to C5a and/or the proinflammatory cytokine TNFα in vitro dependent on the glucose supply. Articular chondrocytes of adult Zucker Diabetic Fatty (ZDF) rats (homozygous: fa/fa, diabetic, heterozygous: fa/+, lean controls) were exposed to 10 ng/mL TNFα and 25 ng/mL C5a alone or in combination, both, under normo- (NG, 1 g/L glucose) and hyperglycemic (HG, 4.5 g/L glucose) conditions (4 or 24 h). Chondrocyte survival, metabolic activity and gene expression of collagen type 2, suppressors of cytokine signaling (SOCS)1, −3 and anti-oxidative hemoxygenase-1 (HMOX1) were assessed. The complement regulatory protein CD46 and cell nuclei sizes were analyzed. Chondrocyte vitality remained unaffected by the treatment. Metabolic activity was impaired in chondrocytes of non-diabetic rats under HG conditions. Collagen type 2 transcription was suppressed by TNFα under HG condition in chondrocytes from nondiabetic donors and under both conditions in those of DMT2 rats (24 h)

Except for DMT2 chondrocytes under HG (4 h), HMOX1 was generally induced by TNFα +/- C5a (NG, HG). C5a elevated HMOX1 only in chondrocytes of controls. The SOCS1/3 genes were increased by TNFα (NG, diabetic, non diabetic, 4 and 24 h). This could also be observed in chondrocytes of diabetic, but not of lean rats (24 h, HG). At 4 h, C5a induced SOCS1 only in non diabetic chondrocytes (NG, HG). Cytoprotective CD46 protein was suppressed by TNFα under NG condition. Nuclear volumes of chondrocyte were lower in chondrocytes from DMT2 rats compared to those from controls. The differential response suggests that chondrocytes are irreversibly compromised by DMT2.

Achnowledgement: The authors are grateful for the support by the “Stiftung Edoprothetik (S 04/21)”


Orthopaedic Proceedings
Vol. 105-B, Issue SUPP_7 | Pages 82 - 82
4 Apr 2023
Kokozidou M Gögele C Pirrung F Hammer N Werner C Kohl B Hahn J Breier A Schöpfer M Meyer M Schulze-Tanzil G
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Although autografts represent the gold standard for anterior cruciate ligament (ACL) reconstruction, tissue-engineered ACLs provide a prospect to minimize donor site morbidity and limited graft availability. This given study characterizes the ligamentogenesis in embroidered poly(L-lactide-co-ε-caprolactone) (P(LA-CL)) / polylactic acid (PLA) constructs using a dynamic nude mice xenograft model. (P(LA-CL))/PLA scaffolds remained either untreated (co) or were functionalized by gas fluorination (F), collagen foam cross-linked with hexamethylene diisocyanate (HMDI) (coll), or gas fluorination combined with the foam (F+coll). Cell free constructs or those seeded for 1 week with lapine ACL ligamentocytes were implanted into nude mice for 12 weeks. Following explantation, biomechanical properties, cell vitality and content, histopathology of scaffolds (including organs: liver, kidney, spleen), sulphated glycosaminoglycan (sGAG) contents and biomechanical properties were assessed.

Implantation of the scaffolds did not negatively affect mice weight development and organs, indicating biocompatibility. All scaffolds maintained their size and shape for the duration of the implantation. A high cell viability was detected in the scaffolds prior to and following implantation. Coll or F+coll scaffolds seeded with cells yielded superior macroscopic properties when compared to the controls. Mild signs of inflammation (foreign-body giant cells, hyperemia) were limited to scaffolds without collagen. Microscopical score values and sGAG content did not differ significantly. Although remaining stable in vivo, elastic modulus, maximum force, tensile strength and strain at Fmax were significantly lower in the in vivo compared to the samples cultured 1 week in vitro, but did not differ between scaffold subtypes, except for a higher maximum force in F+coll compared with F samples (in vivo). Scaffold functionalization with fluorinated collagen foam provides a promising approach for ACL tissue engineering.

(shared first authorship)

Acknowledgement: The study was supported by DFG grants SCHU1979/9-1 and SCHU1979/14-1.


Orthopaedic Proceedings
Vol. 104-B, Issue SUPP_9 | Pages 29 - 29
1 Oct 2022
Hohenschurz-Schmidt D Vase L Scott W Annoni M Barth J Bennell K Renella CB Bialosky J Braithwaite F Finnerup N de C Williams AC Carlino E Cerritelli F Chaibi A Cherkin D Colloca L Côte P Darnall B Evans R Fabre L Faria V French S Gerger H Häuser W Hinman R Ho D Janssens T Jensen K Lunde SJ Keefe F Kerns R Koechlin H Kongsted A Michener L Moerman D Musial F Newell D Nicholas M Palermo T Palermo S Pashko S Peerdeman K Pogatzki-Zahn E Puhl A Roberts L Rossettini G Johnston C Matthiesen ST Underwood M Vaucher P Wartolowska K Weimer K Werner C Rice A Draper-Rodi J
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Background

Specifically designed control interventions can account for expectation effects in clinical trials. For the interpretation of efficacy trials of physical, psychological, and self-management interventions for people living with pain, the design, conduct, and reporting of control interventions is crucial.

Objectives

To establish a quality standard in the field, core recommendations are presented alongside additional considerations and a reporting checklist for control interventions.


Orthopaedic Proceedings
Vol. 99-B, Issue SUPP_1 | Pages 82 - 82
1 Jan 2017
Hesse E Freudenberg U Niemietz T Greth C Weisser M Renz Y Hagmann S Binner M Werner C Richter W
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Cell-based tissue engineering is a promising approach for treating cartilage lesions but the optimal cell-scaffold combination for hyaline cartilage regeneration has yet to be identified. Novel hydrogels allow including tailored tissue type specific modifications with physiologically relevant peptides, by this selectively influencing the cell response. Aim of this study was to modify a poly(ethylene glycol) (PEG)/heparin hydrogel by functionalization with cell instructive peptides introducing matrix-metalloprotease (MMP)-degradability, the cell adhesion motif RGD, or collagen binding motifs (CKLER, CWYRGRL) to improve cartilage matrix deposition in tissue engineering constructs.

The hydrogels were formed by mixing thiol-endfunctionalized (MMP-insensitive) starPEG or starPEG-MMP-conjugates carrying MMP-sensitive peptides at every arm and maleimide-functionalized heparin [1] in the presence or absence of cell instructive peptides. Human mesenchymal stromal cells (MSC) or porcine chondrocytes were grown in the hydrogels for up to 4 weeks in vitro under chondrogenic conditions, and in vivo in subcutaneous pockets of immunodeficient mice.

MMP-sensitive and –insensitive starPEG/heparin hydrogels supported chondrogenic differentiation of MSC according to induction of COL2A1, BGN and ACAN mRNA expression. Enhanced MMP-sensitivity and therefore degradability increased cell viability and proliferation. RGD-modification of the hydrogels induced cell-spreading and an intensively interconnected cell network. Other than hypothesized, CKLER and CWYRGRL were unable to raise collagen deposition in constructs in vitro. Matrix deposition in chondrocyte-containing peptide-functionalized hydrogels was high and the instructive effect of the hydrogels on chondrocytes appeared stronger in vivo where the merely pericellular cartilaginous matrix deposition was overcome in RGD-functionalized starPEG/heparin hydrogels.

Peptide-functionalized starPEG/heparin hydrogel altered cell morphology, proliferation and differentiation with MSC being similar sensitive to cell-matrix interaction peptides like articular chondrocytes. We also demonstrated that in vivoperformance of cell instructive hydrogels can exceed results gained by in vitromodels. Altogether, the manipulation of hydrogel constructs with signaling cues is considered promising for functional cartilage tissue engineering.


Orthopaedic Proceedings
Vol. 91-B, Issue SUPP_I | Pages 123 - 123
1 Mar 2009
Sukthankar A Werner C Brucker P Nyffeler R Gerber C
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INTRODUCTION: Full thickness rotator cuff tears have been associated with changes of the anterior acromion. In a previous study we also documented differences in lateral extension of the acromion in rotator cuff tears compared with shoulders with intact cuffs. It was the purpose of this study to verify in a prospective examination, whether presence or absence of rotator cuff tearing in a precisely defined population is quantitatively related to the degree of lateral extension of the acromion.

MATERIAL AND METHODS: 59 consecutive patients between 60 and 70 years and hospitalized for reasons other than shoulder pathologies were entered into a prospective study. All 110 shoulders without previous operations, major trauma or rheumatoid arthritis were examined radiographically and with ultrasonography by two independent examiners.

RESULTS: 67 cuffs were intact, 28 showed a cuff tendinopathy, 17 a full thickness tearing. The acromion index for shoulder with rotator cuff tear was 0.75, for tendinopathy 0.68 and for normal cuffs 0.65. The differences between rotator cuff tears and the other two groups was significant (p< 0.05). The acromion index was not related to gender or osteoarthritis. An acromion index of < 0.77 had a positive predictive value of > 70%. An acromion index of < 0.7 predicted an absence of rotator cuff tearing with an accuracy of 97%. Interobserver agreement of the assessment was excellent with 88%.

CONCLUSION: The relationship between rotator cuff tears and a large extension of the acromion can be used to predict the presence of rotator cuff tears in shoulders between ages 60 and 70. A cause-effect relation is probable and will be studied further.


The Journal of Bone & Joint Surgery British Volume
Vol. 69-B, Issue 4 | Pages 670 - 671
1 Aug 1987
Werner C