High-throughput bone and cartilage micropellet manufacture, followed by assembly of micropellets into biphasic osteochondral tissue

被引:27
作者
Babur, Betul Kul [1 ]
Futrega, Kathryn [1 ]
Lott, William B. [1 ]
Klein, Travis Jacob [2 ]
Cooper-White, Justin [3 ]
Doran, Michael Robert [1 ,4 ]
机构
[1] Queensland Univ Technol, Translat Res Inst, Inst Hlth & Biomed Innovat, Stem Cell Therapies Lab, Brisbane, Qld 4001, Australia
[2] Queensland Univ Technol, Inst Hlth & Biomed Innovat, Cartilage Regenerat Lab, Brisbane, Qld 4001, Australia
[3] Univ Queensland, Australian Inst Bioengn & Nanotechnol, Tissue Engn & Microfluidies Lab, Brisbane, Qld, Australia
[4] Univ Queensland, Mater Med Res, Brisbane, Qld, Australia
基金
英国医学研究理事会;
关键词
Articular cartilage; Tissue engineering; Osteochondral defect repair; Mesenchymal stem/stromal cells; Micropellets; Induction media; Human; MESENCHYMAL STEM-CELLS; IN-VITRO; ADULT HUMAN; SCAFFOLD; DEFECT; REPAIR; GLYCOSAMINOGLYCANS; KNEE; DIFFERENTIATION; FIBRONECTIN;
D O I
10.1007/s00441-015-2159-y
中图分类号
Q2 [细胞生物学];
学科分类号
071013 [干细胞生物学];
摘要
Engineered biphasic osteochondral tissues may have utility in cartilage defect repair. As bone-marrow-derived mesenchymal stem/stromal cells (MSC) have the capacity to make both bone-like and cartilage-like tissues, they are an ideal cell population for use in the manufacture of osteochondral tissues. Effective differentiation of MSC to bone-like and cartilage-like tissues requires two unique medium formulations and this presents a challenge both in achieving initial MSC differentiation and in maintaining tissue stability when the unified osteochondral tissue is subsequently cultured in a single medium formulation. In this proof-of-principle study, we used an in-house fabricated microwell platform to manufacture thousands of micropellets formed from 166 MSC each. We then characterized the development of bone-like and cartilage-like tissue formation in the micropellets maintained for 8-14 days in sequential combinations of osteogenic or chondrogenic induction medium. When bone-like or cartilage-like micropellets were induced for only 8 days, they displayed significant phenotypic changes when the osteogenic or chondrogenic induction medium, respectively, was swapped. Based on these data, we developed an extended 14-day protocol for the pre-culture of bone-like and cartilage-like micropellets in their respective induction medium. Unified osteochondral tissues were formed by layering 12,000 osteogenic micropellets and 12,000 chondrogenic micropellets into a biphasic structure and then further culture in chondrogenic induction medium. The assembled tissue was cultured for a further 8 days and characterized via histology. The micropellets had amalgamated into a continuous structure with distinctive bone-like and cartilage-like regions. This proof-of-concept study demonstrates the feasibility of micropellet assembly for the formation of osteochondral-like tissues for possible use in osteochondral defect repair.
引用
收藏
页码:755 / 768
页数:14
相关论文
共 48 条
[1]
The Role of Hypoxia in Stem Cell Differentiation and Therapeutics [J].
Abdollahi, Hamid ;
Harris, Lisa J. ;
Zhang, Ping ;
McIlhenny, Stephen ;
Srinivas, Vikram ;
Tulenko, Thomas ;
DiMuzio, Paul J. .
JOURNAL OF SURGICAL RESEARCH, 2011, 165 (01) :112-117
[2]
SOX9 expression does not correlate with type II collagen expression in adult articular chondrocytes [J].
Aigner, T ;
Gebhard, PM ;
Schmid, E ;
Bau, B ;
Harley, V ;
Pöschl, E .
MATRIX BIOLOGY, 2003, 22 (04) :363-372
[3]
Enhancing tissue integration in cartilage repair procedures [J].
Archer, Charles W. ;
Redman, Samantha ;
Khan, Ilyas ;
Bishop, Joanna ;
Richardson, Kirsty .
JOURNAL OF ANATOMY, 2006, 209 (04) :481-493
[5]
The Interplay between Chondrocyte Redifferentiation Pellet Size and Oxygen Concentration [J].
Babur, Betul Kul ;
Ghanavi, Parisa ;
Levett, Peter ;
Lott, William B. ;
Klein, Travis ;
Cooper-White, Justin J. ;
Crawford, Ross ;
Doran, Michael R. .
PLOS ONE, 2013, 8 (03)
[6]
Barbour KE, 2013, MMWR-MORBID MORTAL W, V62, P869
[7]
Long term culture of mesenchymal stem cells in hypoxia promotes a genetic program maintaining their undifferentiated and multipotent status [J].
Basciano, Leticia ;
Nemos, Christophe ;
Foliguet, Bernard ;
de Isla, Natalia ;
de Carvalho, Marcelo ;
Nguyen Tran ;
Dalloul, Ali .
BMC CELL BIOLOGY, 2011, 12
[8]
Matrix-associated autologous chondrocyte transplantation/implantation (MACT/MACI) - 5-year follow-up [J].
Behrens, Peter ;
Bitter, Thomas ;
Kurz, Bodo ;
Russlies, Martin .
KNEE, 2006, 13 (03) :194-202
[9]
Large, stratified, and mechanically functional human cartilage grown in vitro by mesenchymal condensation [J].
Bhumiratana, Sarindr ;
Eton, Ryan E. ;
Oungoulian, Sevan R. ;
Wan, Leo Q. ;
Ateshian, Gerard A. ;
Vunjak-Novakovic, Gordana .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2014, 111 (19) :6940-6945
[10]
Management of Osteoarthritis in General Practice in Australia [J].
Brand, Caroline A. ;
Harrison, Christopher ;
Tropea, Joanne ;
Hinman, Rana S. ;
Britt, Helena ;
Bennell, Kim .
ARTHRITIS CARE & RESEARCH, 2014, 66 (04) :551-558