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Decorin Regulates the Aggrecan Network Integrity and Biomechanical Functions of Cartilage Extracellular Matrix.
Han, Biao; Li, Qing; Wang, Chao; Patel, Pavan; Adams, Sheila M; Doyran, Basak; Nia, Hadi T; Oftadeh, Ramin; Zhou, Siyuan; Li, Christopher Y; Liu, X Sherry; Lu, X Lucas; Enomoto-Iwamoto, Motomi; Qin, Ling; Mauck, Robert L; Iozzo, Renato V; Birk, David E; Han, Lin.
Afiliação
  • Han B; School of Biomedical Engineering, Science and Health Systems , Drexel University , Philadelphia , Pennsylvania 19104 , United States.
  • Li Q; School of Biomedical Engineering, Science and Health Systems , Drexel University , Philadelphia , Pennsylvania 19104 , United States.
  • Wang C; School of Biomedical Engineering, Science and Health Systems , Drexel University , Philadelphia , Pennsylvania 19104 , United States.
  • Patel P; School of Biomedical Engineering, Science and Health Systems , Drexel University , Philadelphia , Pennsylvania 19104 , United States.
  • Adams SM; Department of Molecular Pharmacology and Physiology, Morsani School of Medicine , University of South Florida , Tampa , Florida 33612 , United States.
  • Doyran B; School of Biomedical Engineering, Science and Health Systems , Drexel University , Philadelphia , Pennsylvania 19104 , United States.
  • Nia HT; Department of Biomedical Engineering , Boston University , Boston , Massachusetts 02215 , United States.
  • Oftadeh R; Department of Mechanical Engineering , Massachusetts Institute of Technology , Cambridge , Massachusetts 02139 , United States.
  • Zhou S; College of Food Science , Southwest University , Chongqing 400715 , China.
  • Li CY; Department of Materials Science and Engineering , Drexel University , Philadelphia , Pennsylvania 19104 , United States.
  • Liu XS; McKay Orthopaedic Research Laboratory, Department of Orthopaedic Surgery , Perelman School of Medicine, University of Pennsylvania , Philadelphia , Pennsylvania 19104 , United States.
  • Lu XL; Department of Mechanical Engineering , University of Delaware , Newark , Delaware 19716 , United States.
  • Enomoto-Iwamoto M; Department of Orthopaedics, School of Medicine , University of Maryland , Baltimore , Maryland 21201 , United States.
  • Qin L; McKay Orthopaedic Research Laboratory, Department of Orthopaedic Surgery , Perelman School of Medicine, University of Pennsylvania , Philadelphia , Pennsylvania 19104 , United States.
  • Mauck RL; McKay Orthopaedic Research Laboratory, Department of Orthopaedic Surgery , Perelman School of Medicine, University of Pennsylvania , Philadelphia , Pennsylvania 19104 , United States.
  • Iozzo RV; Department of Pathology, Anatomy, and Cell Biology , Sidney Kimmel Medical College, Thomas Jefferson University , Philadelphia , Pennsylvania 19107 , United States.
  • Birk DE; Department of Molecular Pharmacology and Physiology, Morsani School of Medicine , University of South Florida , Tampa , Florida 33612 , United States.
  • Han L; School of Biomedical Engineering, Science and Health Systems , Drexel University , Philadelphia , Pennsylvania 19104 , United States.
ACS Nano ; 13(10): 11320-11333, 2019 10 22.
Article em En | MEDLINE | ID: mdl-31550133
ABSTRACT
Joint biomechanical functions rely on the integrity of cartilage extracellular matrix. Understanding the molecular activities that govern cartilage matrix assembly is critical for developing effective cartilage regeneration strategies. This study elucidated the role of decorin, a small leucine-rich proteoglycan, in the structure and biomechanical functions of cartilage. In decorin-null cartilage, we discovered a substantial reduction of aggrecan content, the major proteoglycan of cartilage matrix, and mild changes in collagen fibril nanostructure. This loss of aggrecan resulted in significantly impaired biomechanical properties of cartilage, including decreased modulus, elevated hydraulic permeability, and reduced energy dissipation capabilities. At the cellular level, we found that decorin functions to increase the retention of aggrecan in the neo-matrix of chondrocytes, rather than to directly influence the biosynthesis of aggrecan. At the molecular level, we demonstrated that decorin significantly increases the adhesion between aggrecan and aggrecan molecules and between aggrecan molecules and collagen II fibrils. We hypothesize that decorin plays a crucial structural role in mediating the matrix integrity and biomechanical functions of cartilage by providing physical linkages to increase the adhesion and assembly of aggrecan molecules at the nanoscale.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article