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  4. An Off-the-Shelf Tissue Engineered Cartilage Composed of Optimally Sized Pellets of Cartilage Progenitor/Stem Cells
 
research article

An Off-the-Shelf Tissue Engineered Cartilage Composed of Optimally Sized Pellets of Cartilage Progenitor/Stem Cells

Ran, Jisheng
•
Fei, Yang
•
Wang, Canlong
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March 8, 2021
Acs Biomaterials Science & Engineering

Articular cartilage focal lesion remains an intractable challenge in sports medicine, and autologous chondrocytes' implantation (ACI) is one of the most commonly utilized treatment modality for this ailment. However, the current ACI technique requires two surgical steps which increases patients' morbidity and incurs additional medical costs. In the present study, we developed a one-step cryopreserved off-the-shelf ACI tissue-engineered (TE) cartilage by seeding pellets of spheroidal cartilage stem/progenitor cells (CSPCs) on a silk scaffold. The pellets were developed through a hanging-drop method, and the incubation time of 1 day could efficiently produce spheroidal pellets without any adverse influence on the cell activity. The pellet size was also optimized. Under chondrogenic induction, pellets consisting of 40 000 CSPCs were found to exhibit the most abundant cartilage matrix deposition and the highest mRNA expression levels of SOX9, aggrecan, and COL2A1, as compared with pellets consisting of 10 000, 100 000, or 200 000 CSPCs. Scaffolds seeded with CSPCs pellets containing 40 000 cells could be preserved in liquid nitrogen with the viability, migration, and chondrogenic ability remaining unaffected for as long as 3 months. When implanted in a rat trochlear cartilage defect model for 3 months, the ready-to-use, cryopreserved TE cartilage yielded fully cartilage reconstruction, which was comparable with the uncryopreserved control. Hence, our study provided preliminary data that our off-the-shell TE cartilage with optimally sized CSPCs pellets seeded within silk scaffolds exhibited strong cartilage repair capacity, which provided a convenient and promising one-step surgical approach to ACI.

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Type
research article
DOI
10.1021/acsbiomaterials.9b01863
Web of Science ID

WOS:000627588400008

Author(s)
Ran, Jisheng
Fei, Yang
Wang, Canlong
Ruan, Dengfeng
Hu, Yejun
Zheng, Zefeng
Chen, Xiao
Yin, Zi
Tang, Chenqi
Chen, Yangwu
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Date Issued

2021-03-08

Publisher

AMER CHEMICAL SOC

Published in
Acs Biomaterials Science & Engineering
Volume

7

Issue

3

Start page

881

End page

892

Subjects

Materials Science, Biomaterials

•

Materials Science

•

cartilage defect repair

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autologous chondrocyte implantation

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tissue engineering

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cartilage stem/progenitor cells (cspcs)

•

pellets

•

mesenchymal stem-cells

•

articular-cartilage

•

hepatocyte spheroids

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repair

•

regeneration

•

knee

•

defects

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culture

•

differentiation

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LBO  
Available on Infoscience
April 24, 2021
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/177587
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