Extracellular Matrix Determines Biomechanical Properties of Chondrospheres during Their Maturation


Journal

Cartilage
ISSN: 1947-6043
Titre abrégé: Cartilage
Pays: United States
ID NLM: 101518378

Informations de publication

Date de publication:
10 2020
Historique:
pubmed: 18 9 2018
medline: 6 8 2021
entrez: 18 9 2018
Statut: ppublish

Résumé

Chondrospheres represent a variant of tissue spheroids biofabricated from chondrocytes. They are already being used in clinical trials for cartilage repair; however, their biomechanical properties have not been systematically investigated yet. The aim of our study was to characterize chondrospheres in long-term It has been demonstrated that the increase in chondrospheres secant modulus of elasticity is strongly associated with the synthesis and accumulation of extracellular matrix. Additionally, significant interplay has been found between biomechanical properties of tissue spheroids and their fusion kinetics in contrast to their spreading kinetics. Extracellular matrix is one of the main structural determinants of chondrospheres biomechanical properties during chondrogenic maturation

Identifiants

pubmed: 30221989
doi: 10.1177/1947603518798890
pmc: PMC7488948
doi:

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

521-531

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Auteurs

Nikolai P Omelyanenko (NP)

N.N. Priorov National Medical Research Center of Traumatology and Orthopedics, Moscow, Russian Federation.

Pavel A Karalkin (PA)

Private Institution Laboratory for Biotechnological Research, 3D Bioprinting Solutions, Moscow, Russian Federation.

Elena A Bulanova (EA)

Private Institution Laboratory for Biotechnological Research, 3D Bioprinting Solutions, Moscow, Russian Federation.

Elizaveta V Koudan (EV)

Private Institution Laboratory for Biotechnological Research, 3D Bioprinting Solutions, Moscow, Russian Federation.

Vladislav A Parfenov (VA)

Private Institution Laboratory for Biotechnological Research, 3D Bioprinting Solutions, Moscow, Russian Federation.

Sergei A Rodionov (SA)

N.N. Priorov National Medical Research Center of Traumatology and Orthopedics, Moscow, Russian Federation.

Alisa D Knyazeva (AD)

Private Institution Laboratory for Biotechnological Research, 3D Bioprinting Solutions, Moscow, Russian Federation.

Vladimir A Kasyanov (VA)

Riga Stradins University, Riga, Latvia.
Riga Technical University, Riga, Latvia.

Igor I Babichenko (II)

RUDN University, Moscow, Russian Federation.

Tamara Z Chkadua (TZ)

Central Research Institute of Dentistry and Maxillofacial Surgery, Moscow, Russian Federation.

Yusef D Khesuani (YD)

Private Institution Laboratory for Biotechnological Research, 3D Bioprinting Solutions, Moscow, Russian Federation.

Anna A Gryadunova (AA)

Private Institution Laboratory for Biotechnological Research, 3D Bioprinting Solutions, Moscow, Russian Federation.
Institute for Regenerative Medicine, I.M. Sechenov First Moscow State Medical University, Moscow, Russian Federation.

Vladimir A Mironov (VA)

Private Institution Laboratory for Biotechnological Research, 3D Bioprinting Solutions, Moscow, Russian Federation.
Institute for Regenerative Medicine, I.M. Sechenov First Moscow State Medical University, Moscow, Russian Federation.

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Classifications MeSH