نتایج جستجو برای: cartilage regeneration

تعداد نتایج: 93109  

Journal: :Developmental dynamics : an official publication of the American Association of Anatomists 2004
C Faucheux B M Nicholls S Allen J A Danks M A Horton J S Price

Parathyroid hormone (PTH)-related peptide (PTHrP) and the PTH/PTHrP receptor (PPR) play an essential role in controlling growth plate development. The aim of the present study was to use the deer antler as a model to determine whether PTHrP and PPR may also have a function in regulating cartilage and bone regeneration in an adult mammal. Antlers are the only mammalian appendages that are able t...

2002
Ewerbeck

The capacity of an adult organism to repair degenerated cartilage is very limited due to its avascularity and the lack of an intrinsic chondrocyte progenitor reservoir. The transplantation of bioartificial cartilage generated in vitro could provide a means of prevention or treatment of early degenerative osteoarthritis (OA). Tissue engineering approaches for the regeneration of articular cartil...

2015
Lorenzo Alibardi Francesc Cebrià

The epiphysis of femur and tibia in the lizard Podarcis muralis can extensively regenerate after injury. The process involves the articular cartilage and metaphyseal (growth) plate after damage. The secondary ossification center present between the articular cartilage and the growth plate is replaced by cartilaginous epiphyses after about one month of regeneration at high temperature. The prese...

Journal: :Biomaterials 2015
Sriram Ravindran Mrignayani Kotecha Chun-Chieh Huang Allen Ye Padmabharathi Pothirajan Ziying Yin Richard Magin Anne George

Osteoarthritis is the most common joint disorder affecting millions of people. Most scaffolds developed for cartilage regeneration fail due to vascularization and matrix mineralization. In this study we present a chondrogenic extracellular matrix (ECM) incorporated collagen/chitosan scaffold (chondrogenic ECM scaffold) for potential use in cartilage regenerative therapy. Biochemical characteriz...

Journal: :Critical reviews in biotechnology 2014
Jennifer K Lee Donald J Responte Derek D Cissell Jerry C Hu Jan A Nolta Kyriacos A Athanasiou

The limited regenerative capacity of articular cartilage and deficiencies of current treatments have motivated the investigation of new repair technologies. In vitro cartilage generation using primary cell sources is limited by cell availability and expansion potential. Pluripotent stem cells possess the capacity for chondrocytic differentiation and extended expansion, providing a potential fut...

Journal: :Materials Science and Engineering: C 2021

The friction and wear properties of silica/poly(tetrahydrofuran)/poly(?-caprolactone) (SiO2/PTHF/PCL-diCOOH) hybrid materials that are proposed as cartilage tissue engineering were investigated against living articular cartilage. A testing rig was designed to allow fresh bovine force compared for five compositions the biomaterial articulating freshly harvested in diluted calf serum. Under a non...

2017
Kotaro Higa Nobuto Kitamura Keiko Goto Takayuki Kurokawa Jian Ping Gong Fuminori Kanaya Kazunori Yasuda

BACKGROUND There has been increased interest in one-step cell-free procedures to avoid the problems related to cell manipulation and its inherent disadvantages. We have studied the chondrogenic induction ability of a PAMPS/PDMAAm double-network (DN) gel and found it to induce chondrogenesis in animal osteochondral defect models. The purpose of this study was to investigate whether the healing p...

Journal: :Regenerative Engineering and Translational Medicine 2018

Journal: :Arthritis Research & Therapy 2005
Koji Hattori Yoshinori Takakura Hajime Ohgushi Takashi Habata Kota Uematsu Jun Yamauchi Kenji Yamashita Takashi Fukuchi Masao Sato Ken Ikeuchi

Articular cartilage (hyaline cartilage) defects resulting from traumatic injury or degenerative joint disease do not repair themselves spontaneously. Therefore, such defects may require novel regenerative strategies to restore biologically and biomechanically functional tissue. Recently, tissue engineering using a complex of cells and scaffold has emerged as a new approach for repairing cartila...

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