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Results: 1 to 20 of 136

Similar articles for PubMed (Select 17498976)

1.

The beneficial effect of delayed compressive loading on tissue-engineered cartilage constructs cultured with TGF-beta3.

Lima EG, Bian L, Ng KW, Mauck RL, Byers BA, Tuan RS, Ateshian GA, Hung CT.

Osteoarthritis Cartilage. 2007 Sep;15(9):1025-33. Epub 2007 May 10.

2.

The effect of applied compressive loading on tissue-engineered cartilage constructs cultured with TGF-beta3.

Lima EG, Bian L, Mauck RL, Byers BA, Tuan RS, Ateshian GA, Hung CT.

Conf Proc IEEE Eng Med Biol Soc. 2006;1:779-82.

PMID:
17946858
3.

The role of cell seeding density and nutrient supply for articular cartilage tissue engineering with deformational loading.

Mauck RL, Wang CC, Oswald ES, Ateshian GA, Hung CT.

Osteoarthritis Cartilage. 2003 Dec;11(12):879-90.

4.

Dynamic mechanical loading enhances functional properties of tissue-engineered cartilage using mature canine chondrocytes.

Bian L, Fong JV, Lima EG, Stoker AM, Ateshian GA, Cook JL, Hung CT.

Tissue Eng Part A. 2010 May;16(5):1781-90. doi: 10.1089/ten.TEA.2009.0482.

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Tensile properties of engineered cartilage formed from chondrocyte- and MSC-laden hydrogels.

Huang AH, Yeger-McKeever M, Stein A, Mauck RL.

Osteoarthritis Cartilage. 2008 Sep;16(9):1074-82. doi: 10.1016/j.joca.2008.02.005. Epub 2008 Mar 18.

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A paradigm for functional tissue engineering of articular cartilage via applied physiologic deformational loading.

Hung CT, Mauck RL, Wang CC, Lima EG, Ateshian GA.

Ann Biomed Eng. 2004 Jan;32(1):35-49. Review. Erratum in: Ann Biomed Eng. 2004 Mar;32(3):510.

PMID:
14964720
9.

Response of engineered cartilage to mechanical insult depends on construct maturity.

Tan AR, Dong EY, Ateshian GA, Hung CT.

Osteoarthritis Cartilage. 2010 Dec;18(12):1577-85. doi: 10.1016/j.joca.2010.09.003. Epub 2010 Sep 17.

10.

Dynamic deformational loading results in selective application of mechanical stimulation in a layered, tissue-engineered cartilage construct.

Ng KW, Mauck RL, Statman LY, Lin EY, Ateshian GA, Hung CT.

Biorheology. 2006;43(3-4):497-507.

PMID:
16912421
11.

Transient supplementation of anabolic growth factors rapidly stimulates matrix synthesis in engineered cartilage.

Ng KW, O'Conor CJ, Kugler LE, Cook JL, Ateshian GA, Hung CT.

Ann Biomed Eng. 2011 Oct;39(10):2491-500. doi: 10.1007/s10439-011-0356-8. Epub 2011 Jul 21.

12.

Synergistic action of growth factors and dynamic loading for articular cartilage tissue engineering.

Mauck RL, Nicoll SB, Seyhan SL, Ateshian GA, Hung CT.

Tissue Eng. 2003 Aug;9(4):597-611.

PMID:
13678439
13.

Low-serum media and dynamic deformational loading in tissue engineering of articular cartilage.

Kelly TA, Fisher MB, Oswald ES, Tai T, Mauck RL, Ateshian GA, Hung CT.

Ann Biomed Eng. 2008 May;36(5):769-79. doi: 10.1007/s10439-008-9476-1. Epub 2008 Feb 26.

PMID:
18299986
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Functional tissue engineering of articular cartilage through dynamic loading of chondrocyte-seeded agarose gels.

Mauck RL, Soltz MA, Wang CC, Wong DD, Chao PH, Valhmu WB, Hung CT, Ateshian GA.

J Biomech Eng. 2000 Jun;122(3):252-60.

PMID:
10923293
16.

Long-term intermittent compressive stimulation improves the composition and mechanical properties of tissue-engineered cartilage.

Waldman SD, Spiteri CG, Grynpas MD, Pilliar RM, Kandel RA.

Tissue Eng. 2004 Sep-Oct;10(9-10):1323-31.

PMID:
15588393
17.

Analysis of radial variations in material properties and matrix composition of chondrocyte-seeded agarose hydrogel constructs.

Kelly TA, Ng KW, Ateshian GA, Hung CT.

Osteoarthritis Cartilage. 2009 Jan;17(1):73-82. doi: 10.1016/j.joca.2008.05.019. Epub 2008 Sep 19.

18.

Supplementation with platelet-rich plasma improves the in vitro formation of tissue-engineered cartilage with enhanced mechanical properties.

Petrera M, De Croos JN, Iu J, Hurtig M, Kandel RA, Theodoropoulos JS.

Arthroscopy. 2013 Oct;29(10):1685-92. doi: 10.1016/j.arthro.2013.07.259.

PMID:
24075614
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