Literature DB >> 19685485

The differential in vitro and in vivo responses of bone marrow stromal cells on novel porous gelatin-alginate scaffolds.

Chiming Yang1, Hanspeter Frei, Fabio M Rossi, Helen M Burt.   

Abstract

Tissue engineering and stem cell therapy hold great potential of being able to fully restore, repair and replace damaged, diseased or lost tissues in the body. Biocompatible porous scaffolds are used for the delivery of cells to the regeneration sites. Marrow stromal cells (MSCs), also referred to as mesenchymal stem cells, are an attractive cell source for tissue engineering, due to the relative ease of isolation and the ability of in vitro expanded MSCs to generate multiple cell types, including osteoblasts, chondrocytes and adipocytes. This study utilized a novel technique called microwave vacuum drying to fabricate porous gelatin-alginate scaffolds for the delivery of MSCs and investigated the differential in vitro and in vivo responses of MSCs seeded on these scaffolds. Scaffold total porosity was found to decrease with increased cross-link density but the pore size and pore size distribution were not affected. Although highly porous, the scaffold had relatively small pores and limited interconnectivity. The porous gelatin-alginate scaffold demonstrated excellent biocompatibility with neovascularization on the surfaces and was bioresorbed completely in vivo, depending upon the cross-link density. MSCs were able to attach and proliferate at the same rate on the scaffolds, and the self-renewal potential of MSC cultures was similar during both in vitro culture and in vivo implantation. However, the subcutaneous microenvironment was found to suppress MSC differentiation along the osteogenic, chondrogenic and adipogenic lineages compared to in vitro conditions, highlighting the differential responses of MSCs cultured in vitro compared to implantation in vivo.

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Year:  2009        PMID: 19685485     DOI: 10.1002/term.201

Source DB:  PubMed          Journal:  J Tissue Eng Regen Med        ISSN: 1932-6254            Impact factor:   3.963


  12 in total

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3.  Coupling of gelatin to inner surfaces of pore walls in spongy alginate-based scaffolds facilitates the adhesion, growth and differentiation of human bone marrow mesenchymal stromal cells.

Authors:  Yu A Petrenko; R V Ivanov; A Yu Petrenko; V I Lozinsky
Journal:  J Mater Sci Mater Med       Date:  2011-04-28       Impact factor: 3.896

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Review 5.  Serum-Free Cultures: Could They Be a Future Direction to Improve Neuronal Differentiation of Mesenchymal Stromal Cells?

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6.  Ectopic models for endochondral ossification: comparing pellet and alginate bead culture methods.

Authors:  Holly E Weiss-Bilka; Megan E McGann; Matthew J Meagher; Ryan K Roeder; Diane R Wagner
Journal:  J Tissue Eng Regen Med       Date:  2017-04-09       Impact factor: 3.963

7.  rFN/Cad-11-modified collagen type II biomimetic interface promotes the adhesion and chondrogenic differentiation of mesenchymal stem cells.

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Journal:  Tissue Eng Part A       Date:  2013-08-06       Impact factor: 3.845

8.  New adipose tissue formation by human adipose-derived stem cells with hyaluronic acid gel in immunodeficient mice.

Authors:  Shu-Hung Huang; Yun-Nan Lin; Su-Shin Lee; Chee-Yin Chai; Hsueh-Wei Chang; Tsai-Ming Lin; Chung-Sheng Lai; Sin-Daw Lin
Journal:  Int J Med Sci       Date:  2015-01-08       Impact factor: 3.738

9.  Design of a cytocompatible hydrogel coating to modulate properties of ceramic-based scaffolds for bone repair.

Authors:  Settimio Pacelli; Sayantani Basu; Cory Berkland; Jinxi Wang; Arghya Paul
Journal:  Cell Mol Bioeng       Date:  2018-04-06       Impact factor: 2.321

10.  Stiffness-mediated mesenchymal stem cell fate decision in 3D-bioprinted hydrogels.

Authors:  Yufan Liu; Zhao Li; Jianjun Li; Siming Yang; Yijie Zhang; Bin Yao; Wei Song; Xiaobing Fu; Sha Huang
Journal:  Burns Trauma       Date:  2020-07-27
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