scholarly journals Integrins, cadherins and channels in cartilage mechanotransduction: perspectives for future regeneration strategies

2021 ◽  
Vol 23 ◽  
Author(s):  
Martin Philipp Dieterle ◽  
Ayman Husari ◽  
Bernd Rolauffs ◽  
Thorsten Steinberg ◽  
Pascal Tomakidi

Abstract Articular cartilage consists of hyaline cartilage, is a major constituent of the human musculoskeletal system and has critical functions in frictionless joint movement and articular homoeostasis. Osteoarthritis (OA) is an inflammatory disease of articular cartilage, which promotes joint degeneration. Although it affects millions of people, there are no satisfying therapies that address this disease at the molecular level. Therefore, tissue regeneration approaches aim at modifying chondrocyte biology to mitigate the consequences of OA. This requires appropriate biochemical and biophysical stimulation of cells. Regarding the latter, mechanotransduction of chondrocytes and their precursor cells has become increasingly important over the last few decades. Mechanotransduction is the transformation of external biophysical stimuli into intracellular biochemical signals, involving sensor molecules at the cell surface and intracellular signalling molecules, so-called mechano-sensors and -transducers. These signalling events determine cell behaviour. Mechanotransducing ion channels and gap junctions additionally govern chondrocyte physiology. It is of great scientific and medical interest to induce a specific cell behaviour by controlling these mechanotransduction pathways and to translate this knowledge into regenerative clinical therapies. This review therefore focuses on the mechanotransduction properties of integrins, cadherins and ion channels in cartilaginous tissues to provide perspectives for cartilage regeneration.

2012 ◽  
Vol 5 (3) ◽  
pp. 187-199 ◽  
Author(s):  
Aysegul Tombuloglu ◽  
Ayse B. Tekinay ◽  
Mustafa O. Guler

2021 ◽  
Vol 6 (1) ◽  
Author(s):  
Kangkang Zha ◽  
Xu Li ◽  
Zhen Yang ◽  
Guangzhao Tian ◽  
Zhiqiang Sun ◽  
...  

AbstractArticular cartilage is susceptible to damage but hard to self-repair due to its avascular nature. Traditional treatment methods are not able to produce satisfactory effects. Mesenchymal stem cells (MSCs) have shown great promise in cartilage repair. However, the therapeutic effect of MSCs is often unstable partly due to their heterogeneity. Understanding the heterogeneity of MSCs and the potential of different types of MSCs for cartilage regeneration will facilitate the selection of superior MSCs for treating cartilage damage. This review provides an overview of the heterogeneity of MSCs at the donor, tissue source and cell immunophenotype levels, including their cytological properties, such as their ability for proliferation, chondrogenic differentiation and immunoregulation, as well as their current applications in cartilage regeneration. This information will improve the precision of MSC-based therapeutic strategies, thus maximizing the efficiency of articular cartilage repair.


2013 ◽  
Vol 815 ◽  
pp. 345-349 ◽  
Author(s):  
Ching Wen Hsu ◽  
Ping Liu ◽  
Song Song Zhu ◽  
Feng Deng ◽  
Bi Zhang

Here we reported a combined technique for articular cartilage repair, consisting of bone arrow mesenchymal stem cells (BMMSCs) and poly (dl-lactide-co-glycolide-b-ethylene glycol-b-dl-lactide-co-glycolide) (PLGA-PEG-PLGA) triblock copolymers carried with tissue growth factor (TGF-belat1). In the present study, BMMSCs seeded on PLGA-PEG-PLGA with were incubated in vitro, carried or not TGF-belta1, Then the effects of the composite on repair of cartilage defect were evaluated in rabbit knee joints in vivo. Full-thickness cartilage defects (diameter: 5 mm; depth: 3 mm) in the patellar groove were either left empty (n=18), implanted with BMMSCs/PLGA (n=18), TGF-belta1 modified BMMSCs/PLGA-PEG-PLGA. The defect area was examined grossly, histologically at 6, 24 weeks postoperatively. After implantation, the BMMSCs /PLGA-PEG-PLGA with TGF-belta1 group showed successful hyaline-like cartilage regeneration similar to normal cartilage, which was superior to the other groups using gross examination, qualitative and quantitative histology. These findings suggested that a combination of BMMSCs/PLGA-PEG-PLGA carried with tissue growth factor (TGF-belat1) may be an alternative treatment for large osteochondral defects in high loading sites.


2002 ◽  
Vol 4 (1) ◽  
pp. 1-24 ◽  
Author(s):  
Josephine Clare Adams

The adhesion of cells to their surrounding extracellular matrix has vital roles in embryonic development, inflammatory responses, wound healing and adult tissue homeostasis. Cells attach to extracellular matrix by specific cell-surface receptors, of which the integrins and transmembrane proteoglycans are major representatives. The engagement of adhesion receptors triggers assembly of functional matrix contacts, in which bound matrix components, adhesion receptors and associated intracellular cytoskeletal and signalling molecules form large, localised multiprotein complexes. This review discusses the functional categories of matrix contacts, examples of the biological roles of matrix contacts in normal physiology, and examples of the ways in which abnormalities of matrix contacts are associated with major human diseases.


2020 ◽  
Vol 5 (4) ◽  
pp. 2473011420S0005
Author(s):  
Jung-Won Lim ◽  
Hong-Geun Jung

Category: Ankle Arthritis; Ankle; Arthroscopy Introduction/Purpose: The effect of supramalleolar osteotomy (SMO) without an additional bone marrow-stimulating procedure (BMSP) on articular cartilage regeneration in ankle joint still remains unknown. This study aimed to investigate whether SMO yielded favorable clinical and radiologic outcomes, and to evaluate whether the regeneration of articular cartilage could be observed after SMO without BMSP by second-look arthroscopy. Methods: 43 ankles after SMO (mean follow-up: 35.5 months) were retrospectively reviewed. Visual analog scale (VAS) pain score, American Orthopaedic Foot & Ankle Society (AOFAS) ankle-hindfoot score, patient satisfaction were used for functional evaluations. The tibial anterior surface angle (TAS) and tibial lateral surface angle (TLS) were measured on radiographs, and ankle osteoarthritis was classified by Takakura stage. Among the 43 patients, 31 underwent ankle arthroscopy prior to SMO, and second-look arthroscopy was performed at 1-year postoperatively. Tibiotalar cartilage regeneration was evaluated according to the modified Outerbridge classification for the 29 patients who had undergone SMO without BMSP. Results: The mean VAS score and AOFAS score significantly improved from 6.4 preoperatively to 1.4 postoperatively and from 61.1 preoperatively to 88.4 postoperatively, respectively (P < 0.05). Regarding overall postoperative patient satisfaction, 18 (41.8%) patients reported their satisfaction as excellent, 23 (53.5%) as satisfied. The mean TAS and TLS significantly improved from 83.8° and 94.8° preoperatively to 78.4° and 82.2° postoperatively, respectively (P < 0.05). 23 out of 28 preoperative Takakura stage IIIa cases and 3 out of 7 IIIb cases improved to postoperative stage II. On second-look arthroscopy, cartilage regeneration of the medial compartment of the tibiotalar joint was observed in 26 of 29 patients (89.7%), whereas cartilage deterioration was not observed in any patient. Conclusion: Medial tibio-talar articular cartilage regeneration was observed in most cases (89.7%) of medial compartment ankle osteoarthritis after SMO without BMSP, which was confirmed with second-look arthroscopic evaluation. It also showed satisfactory clinical and radiologic outcomes with high patient satisfaction.


Author(s):  
Abhishek Vaish ◽  
Saseendar Shanmugasundaram ◽  
Seon Ae Kim ◽  
Dong-Hwan Lee ◽  
Asode Ananthram Shetty ◽  
...  

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