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Tissue Engineering. Part A
|
June 24, 2016
Correction Re: Tissue Engineering, Part A, 2013;19(13-14):1610-1620
Tissue Engineering. Part A
|
June 15, 2016
Simulated Body Fluid Nucleation of Three-Dimensional Printed Elastomeric Scaffolds for Enhanced Osteogenesis
Nathan J Castro, Wilhelmina Nanrui Tan, Charlie Shen, et al.
Tissue Engineering. Part A
|
July 30, 2015
Engineering of a Secretory Active Three-Dimensional Lacrimal Gland Construct on the Basis of Decellularized Lacrimal Gland Tissue
Kristina Spaniol, Marco Metzger, Mathias Roth, et al.
Tissue Engineering. Part A
|
August 1, 2015
Bone Regeneration Using Hydroxyapatite Sponge Scaffolds with In Vivo Deposited Extracellular Matrix
Reiza Dolendo Ventura, Andrew Reyes Padalhin, Young-Ki Min, et al.
Tissue Engineering. Part A
|
July 29, 2015
HLA Class I Depleted hESC as a Source of Hypoimmunogenic Cells for Tissue Engineering Applications
Zaruhi Karabekian, Hao Ding, Gulnaz Stybayeva, et al.
Tissue Engineering. Part A
|
April 22, 2016
Is Heparin Effective for the Controlled Delivery of High-Dose Bone Morphogenetic Protein-2?
Ri Youn Kim, Beomseok Lee, Si-Nae Park, et al.
Tissue Engineering. Part A
|
February 13, 2016
Synergistic Action of IL-8 and Bone Marrow Concentrate on Cartilage Regeneration Through Upregulation of Chondrogenic Transcription Factors
Dong Suk Yoon, Kyoung-Mi Lee, Sung-Hwan Kim, et al.
Tissue Engineering. Part A
|
July 3, 2013
Characterizing the effects of heparin gel stiffness on function of primary hepatocytes
Jungmok You, Su-A Park, Dong-Sik Shin, et al.
Tissue Engineering. Part A
|
July 31, 2013
Bone marrow-derived mesenchymal stem cells become antiangiogenic when chondrogenically or osteogenically differentiated: implications for bone and cartilage tissue engineering
Jennifer J Bara, Helen E McCarthy, Emma Humphrey, et al.
Tissue Engineering. Part A
|
July 9, 2014
Tensile forces applied on a cell-embedded three-dimensional scaffold can direct early differentiation of embryonic stem cells toward the mesoderm germ layer
Dekel Dado-Rosenfeld, Itai Tzchori, Amir Fine, et al.
Page
of 347
Search research articles
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Showing results (11-20 of 3,461) with videos related to
Sort By:
Page
of 347
Tissue Engineering. Part A
|
June 24, 2016
Correction Re: Tissue Engineering, Part A, 2013;19(13-14):1610-1620
Tissue Engineering. Part A
|
June 15, 2016
Simulated Body Fluid Nucleation of Three-Dimensional Printed Elastomeric Scaffolds for Enhanced Osteogenesis
Nathan J Castro, Wilhelmina Nanrui Tan, Charlie Shen, et al.
Tissue Engineering. Part A
|
July 30, 2015
Engineering of a Secretory Active Three-Dimensional Lacrimal Gland Construct on the Basis of Decellularized Lacrimal Gland Tissue
Kristina Spaniol, Marco Metzger, Mathias Roth, et al.
Tissue Engineering. Part A
|
August 1, 2015
Bone Regeneration Using Hydroxyapatite Sponge Scaffolds with In Vivo Deposited Extracellular Matrix
Reiza Dolendo Ventura, Andrew Reyes Padalhin, Young-Ki Min, et al.
Tissue Engineering. Part A
|
July 29, 2015
HLA Class I Depleted hESC as a Source of Hypoimmunogenic Cells for Tissue Engineering Applications
Zaruhi Karabekian, Hao Ding, Gulnaz Stybayeva, et al.
Tissue Engineering. Part A
|
April 22, 2016
Is Heparin Effective for the Controlled Delivery of High-Dose Bone Morphogenetic Protein-2?
Ri Youn Kim, Beomseok Lee, Si-Nae Park, et al.
Tissue Engineering. Part A
|
February 13, 2016
Synergistic Action of IL-8 and Bone Marrow Concentrate on Cartilage Regeneration Through Upregulation of Chondrogenic Transcription Factors
Dong Suk Yoon, Kyoung-Mi Lee, Sung-Hwan Kim, et al.
Tissue Engineering. Part A
|
July 3, 2013
Characterizing the effects of heparin gel stiffness on function of primary hepatocytes
Jungmok You, Su-A Park, Dong-Sik Shin, et al.
Tissue Engineering. Part A
|
July 31, 2013
Bone marrow-derived mesenchymal stem cells become antiangiogenic when chondrogenically or osteogenically differentiated: implications for bone and cartilage tissue engineering
Jennifer J Bara, Helen E McCarthy, Emma Humphrey, et al.
Tissue Engineering. Part A
|
July 9, 2014
Tensile forces applied on a cell-embedded three-dimensional scaffold can direct early differentiation of embryonic stem cells toward the mesoderm germ layer
Dekel Dado-Rosenfeld, Itai Tzchori, Amir Fine, et al.
Page
of 347