Installation of click-type functional groups enable the creation of an additive manufactured construct for the osteochondral interface

التفاصيل البيبلوغرافية
العنوان: Installation of click-type functional groups enable the creation of an additive manufactured construct for the osteochondral interface
المؤلفون: Ivo A O Beeren, Pieter J Dijkstra, Ana Filipa H Lourenço, Ravi Sinha, David B Gomes, Hong Liu, Nicole Bouvy, Matthew B Baker, Sandra Camarero-Espinosa, Lorenzo Moroni
المساهمون: European Commission, CTR, RS: MERLN - Complex Tissue Regeneration (CTR), Surgery, RS: NUTRIM - R2 - Liver and digestive health, MUMC+: MA Heelkunde (9), RS: GROW - R3 - Innovative Cancer Diagnostics & Therapy
المصدر: Biofabrication, 15(1):014106. IOP Publishing Ltd.
بيانات النشر: IOP Publishing Ltd., 2023.
سنة النشر: 2023
مصطلحات موضوعية: gradients, Tissue Scaffolds, Tissue Engineering, orthogonal chemistry, osteochondral regeneration, Biomedical Engineering, Mesenchymal Stem Cells, Cell Differentiation, Bioengineering, General Medicine, Biochemistry, Rats, Biomaterials, Cartilage, Osteogenesis, scaffolds, peptides, Humans, Animals, Chondrogenesis, additive manufacturing, Biotechnology
الوصف: Melt extrusion-based additive manufacturing (AM) is often used to fabricate scaffolds for osteochondral (OC) regeneration. However, there are two shortcomings associated with this scaffold manufacturing technique for engineering of tissue interfaces: (a) most polymers used in the processing are bioinert, and (b) AM scaffolds often contain discrete (material) gradients accompanied with mechanically weak interfaces. The inability to mimic the gradual transition from cartilage to bone in OC tissue leads to poor scaffold performance and even failure. We hypothesized that introducing peptide gradients on the surface could gradually guide human mesenchymal stromal cell (hMSC) differentiation, from a chondrogenic towards on osteogenic phenotype. To work towards this goal, we initially manufactured poly(epsilon-caprolactone)-azide (PCLA) and PCL-maleimide (PCLM) scaffolds. The surface exposed click-type functional groups, with a surface concentration in the 10(2)pmol cm(-2) regime, were used to introduce bone morphogenic protein-2 or transforming growth factor-beta binding peptide sequences to drive hMSC differentiation towards osteogenic or chondrogenic phenotypes, respectively. After 3 weeks of culture in chondrogenic medium, we observed differentiation towards hypertrophic chondrogenic phenotypes with expression of characteristic markers such as collagen X. In osteogenic medium, we observed the upregulation of mineralization markers. In basic media, the chondro-peptide displayed a minor effect on chondrogenesis, whereas the osteo-peptide did not affect osteogenesis. In a subcutaneous rat model, we observed a minimal foreign body response to the constructs, indicating biocompatibility. As proof-of-concept, we finally used a novel AM technology to showcase its potential to create continuous polymer gradients (PCLA and PCLM) across scaffolds. These scaffolds did not display delamination and were mechanically stronger compared to discrete gradient scaffolds. Due to the versatility of the orthogonal chemistry applied, this approach provides a general strategy for the field; we could anchor other tissue specific cues on the clickable groups, making these gradient scaffolds interesting for multiple interfacial tissue applications. This work was supported by the European Research Council starting grant 'Cell Hybridge' for financial support under the Horizon2020 framework program (Grant #637308). The authors would like to acknowledge the Chemelot Innovation and Learning Labs (CHILL) located at Brightlands Chemelot Campus in Geleen (The Netherlands) for allowing us to use their GPC equipment.
وصف الملف: application/pdf
اللغة: English
تدمد: 1758-5082
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::2f2b22ac9f5281acd78ff82175ac9d5fTest
https://cris.maastrichtuniversity.nl/en/publications/ebdfe9a4-e993-43f1-9c3a-444c37b0a2a9Test
حقوق: OPEN
رقم الانضمام: edsair.doi.dedup.....2f2b22ac9f5281acd78ff82175ac9d5f
قاعدة البيانات: OpenAIRE