Literature DB >> 31982592

Enhanced chondrogenic phenotype of primary bovine articular chondrocytes in Fibrin-Hyaluronan hydrogel by multi-axial mechanical loading and FGF18.

Bernardo P Antunes1, M Letizia Vainieri2, Mauro Alini3, Efrat Monsonego-Ornan4, Sibylle Grad3, Avner Yayon5.   

Abstract

Current treatments for cartilage lesions are often associated with fibrocartilage formation and donor site morbidity. Mechanical and biochemical stimuli play an important role in hyaline cartilage formation. Biocompatible scaffolds capable of transducing mechanical loads and delivering bioactive instructive factors may better support cartilage regeneration. In this study we aimed to test the interplay between mechanical and FGF-18 mediated biochemical signals on the proliferation and differentiation of primary bovine articular chondrocytes embedded in a chondro-conductive Fibrin-Hyaluronan (FB/HA) based hydrogel. Chondrocytes seeded in a Fibrin-HA hydrogel, with or without a chondro-inductive, FGFR3 selective FGF18 variant (FGF-18v) were loaded into a joint-mimicking bioreactor applying controlled, multi-axial movements, simulating the natural movements of articular joints. Samples were evaluated for DNA content, sulphated glycosaminoglycan (sGAG) accumulation, key chondrogenic gene expression markers and histology. Under moderate loading, samples produced particularly significant amounts of sGAG/DNA compared to unloaded controls. Interestingly there was no significant effect of FGF-18v on cartilage gene expression at rest. Following moderate multi-axial loading, FGF-18v upregulated the expression of Aggrecan (ACAN), Cartilage Oligomeric Matrix Protein (COMP), type II collagen (COL2) and Lubricin (PRG4). Moreover, the combination of load and FGF-18v, significantly downregulated Matrix Metalloproteinase-9 (MMP-9) and Matrix Metaloproteinase-13 (MMP-13), two of the most important factors contributing to joint destruction in OA. Biomimetic mechanical signals and FGF-18 may work in concert to support hyaline cartilage regeneration and repair. STATEMENT OF SIGNIFICANCE: Articular cartilage has very limited repair potential and focal cartilage lesions constitute a challenge for current standard clinical procedures. The aim of the present research was to explore novel procedures and constructs, based on biomaterials and biomechanical algorithms that can better mimic joints mechanical and biochemical stimulation to promote regeneration of damaged cartilage. Using a hydrogel-based platform for chondrocyte 3D culture revealed a synergy between mechanical forces and growth factors. Exploring the mechanisms underlying this mechano-biochemical interplay may enhance our understanding of cartilage remodeling and the development of new strategies for cartilage repair and regeneration.
Copyright © 2020 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Chondrogenic differentiation; Fibrin-hyaluronan hydrogel; Fibroblast growth factor-18; Multi-axial loading

Mesh:

Substances:

Year:  2020        PMID: 31982592     DOI: 10.1016/j.actbio.2020.01.032

Source DB:  PubMed          Journal:  Acta Biomater        ISSN: 1742-7061            Impact factor:   8.947


  9 in total

1.  A novel approach for knee osteoarthritis using high molecular weight hyaluronic acid conjugated to plasma fibrinogen - interim findings of a double-blind clinical study.

Authors:  Leonid Kandel; Gabriel Agar; Ori Elkayam; Aybek Sharipov; Omer Slevin; Gurion Rivkin; Moshe Dahan; Valerie Aloush; Amos B Pyeser; Yaron Brin; Yiftah Beer; Avner Yayon
Journal:  Heliyon       Date:  2020-07-23

2.  Biodegradable Poly(D-L-lactide-co-glycolide) (PLGA)-Infiltrated Bioactive Glass (CAR12N) Scaffolds Maintain Mesenchymal Stem Cell Chondrogenesis for Cartilage Tissue Engineering.

Authors:  Clemens Gögele; Silvana Müller; Svetlana Belov; Andreas Pradel; Sven Wiltzsch; Armin Lenhart; Markus Hornfeck; Vera Kerling; Achim Rübling; Hannes Kühl; Kerstin Schäfer-Eckart; Bernd Minnich; Thomas Martin Weiger; Gundula Schulze-Tanzil
Journal:  Cells       Date:  2022-05-07       Impact factor: 7.666

3.  Blending with Poly(l-lactic acid) Improves the Printability of Poly(l-lactide-co-caprolactone) and Enhances the Potential Application in Cartilage Tissue Engineering.

Authors:  Ruiping Duan; Yimeng Wang; Yiyun Zhang; Ziqiang Wang; Fuchong Du; Bo Du; Danning Su; Lingrong Liu; Xuemin Li; Qiqing Zhang
Journal:  ACS Omega       Date:  2021-07-08

4.  Engineered Human Meniscus in Modeling Sex Differences of Knee Osteoarthritis in Vitro.

Authors:  Zhiyao Ma; David Xinzheyang Li; Melanie Kunze; Aillette Mulet-Sierra; Lindsey Westover; Adetola B Adesida
Journal:  Front Bioeng Biotechnol       Date:  2022-02-15

5.  Mechanical Stress Inhibits Early Stages of Endogenous Cell Migration: A Pilot Study in an Ex Vivo Osteochondral Model.

Authors:  Maria L Vainieri; Mauro Alini; Avner Yayon; Gerjo J V M van Osch; Sibylle Grad
Journal:  Polymers (Basel)       Date:  2020-08-06       Impact factor: 4.967

6.  Decellularized Disc Hydrogels for hBMSCs tissue-specific differentiation and tissue regeneration.

Authors:  Yizhong Peng; Xiangcheng Qing; Hui Lin; Donghua Huang; Jinye Li; Shuo Tian; Sheng Liu; Xiao Lv; Kaige Ma; Rui Li; Zilong Rao; Ying Bai; Songfeng Chen; Ming Lei; Daping Quan; Zengwu Shao
Journal:  Bioact Mater       Date:  2021-03-22

Review 7.  Advances of Fibroblast Growth Factor/Receptor Signaling Pathway in Hepatocellular Carcinoma and its Pharmacotherapeutic Targets.

Authors:  Haijun Wang; Jie Yang; Ke Zhang; Jia Liu; Yushan Li; Wei Su; Na Song
Journal:  Front Pharmacol       Date:  2021-04-15       Impact factor: 5.810

Review 8.  Sprifermin: Effects on Cartilage Homeostasis and Therapeutic Prospects in Cartilage-Related Diseases.

Authors:  Zongmian Song; Yusheng Li; Chunfeng Shang; Guowei Shang; Hongwei Kou; Jinfeng Li; Songfeng Chen; Hongjian Liu
Journal:  Front Cell Dev Biol       Date:  2021-12-14

Review 9.  The superficial zone of articular cartilage.

Authors:  Taku Saito
Journal:  Inflamm Regen       Date:  2022-05-02
  9 in total

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