Literature DB >> 20939051

Growth and differentiation of bone marrow stromal cells on biodegradable polymer scaffolds: an in vitro study.

Ying Xue1, Staffan Dånmark, Zhe Xing, Kristina Arvidson, Ann-Christine Albertsson, Sølve Hellem, Anna Finne-Wistrand, Kamal Mustafa.   

Abstract

A fundamental component of bone tissue engineering is an appropriate scaffold as a carrier for osteogenic cells. The aim of the study was to evaluate the response of human bone marrow stromal cells (BMSC) to scaffolds made of three biodegradable polymers: poly(L-lactide-co-ε-caprolactone) (poly(LLA-co-CL)), poly(L-lactide-co-1,5dioxepan-2-one) (poly(LLA-co-DXO)), and poly(L-lactide) (poly(LLA)). Cellular response was evaluated in terms of attachment, proliferation, and differentiation. SEM disclosed earlier cell attachment and better spreading on poly(LLA-co-CL) and poly(LLA-co-DXO) scaffolds than on poly(LLA) after 1 h. At 24 h and 14 days postseeding, BMSCs had spread well, forming multiple cellular layers on the scaffolds. Cell proliferation was higher on poly(LLA-co-CL) and on poly(LLA-co-DXO) than on poly(LLA) after 1 and 7 days. Cell growth cycles of BMSC were longer on the scaffolds than on coverslips. After 7 and 14 days cultivation on scaffolds, the expression of osteogenic markers such as ALP, Col I, OPN, and Runx2 were stimulated by BMSC, which indicating that poly(LLA-co-DXO), poly(LLA-co-CL), and poly(LLA) could support the osteogenic differentiation of BMSC in vitro. Poly(LLA-co-CL) and poly(LLA-co-DXO) promoted better attachment and growth of BMSC than poly(LLA). BMSC also retained their osteogenic differentiation potential, indicating biological activity of BMSC on the scaffolds. The promising results of this in vitro study indicate that these copolymers warrant further evaluation for potential application in bone tissue engineering.
Copyright © 2010 Wiley Periodicals, Inc.

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Year:  2010        PMID: 20939051     DOI: 10.1002/jbm.a.32945

Source DB:  PubMed          Journal:  J Biomed Mater Res A        ISSN: 1549-3296            Impact factor:   4.396


  10 in total

1.  Cell seeding density is a critical determinant for copolymer scaffolds-induced bone regeneration.

Authors:  Mohammed A Yassin; Knut N Leknes; Torbjorn O Pedersen; Zhe Xing; Yang Sun; Stein A Lie; Anna Finne-Wistrand; Kamal Mustafa
Journal:  J Biomed Mater Res A       Date:  2015-09-04       Impact factor: 4.396

2.  Biological effects of functionalizing copolymer scaffolds with nanodiamond particles.

Authors:  Zhe Xing; Torbjorn O Pedersen; Xujun Wu; Ying Xue; Yang Sun; Anna Finne-Wistrand; Frank R Kloss; Thilo Waag; Anke Krueger; Doris Steinmüller-Nethl; Kamal Mustafa
Journal:  Tissue Eng Part A       Date:  2013-05-25       Impact factor: 3.845

3.  The use of scaffolds in musculoskeletal tissue engineering.

Authors:  Frances Henson; Alan Getgood
Journal:  Open Orthop J       Date:  2011-07-28

4.  Simulated microgravity combined with polyglycolic acid scaffold culture conditions improves the function of pancreatic islets.

Authors:  Yimin Song; Zheng Wei; Chun Song; Shanshan Xie; Jinfa Feng; Jiehou Fan; Zengling Zhang; Yubo Shi
Journal:  Biomed Res Int       Date:  2013-08-06       Impact factor: 3.411

5.  Altered Surface Hydrophilicity on Copolymer Scaffolds Stimulate the Osteogenic Differentiation of Human Mesenchymal Stem Cells.

Authors:  Zhe Xing; Jiazheng Cai; Yang Sun; Mengnan Cao; Yi Li; Ying Xue; Anna Finne-Wistrand; Mustafa Kamal
Journal:  Polymers (Basel)       Date:  2020-06-29       Impact factor: 4.329

6.  Adenoviral mediated mono delivery of BMP2 is superior to the combined delivery of BMP2 and VEGFA in bone regeneration in a critical-sized rat calvarial bone defect.

Authors:  Sunita Sharma; Ying Xue; Zhe Xing; Mohammed A Yassin; Yang Sun; James B Lorens; Anna Finne-Wistrand; Dipak Sapkota; Kamal Mustafa
Journal:  Bone Rep       Date:  2019-04-11

7.  Immune-instructive copolymer scaffolds using plant-derived nanoparticles to promote bone regeneration.

Authors:  Kamal Mustafa; Katarzyna Gurzawska-Comis; Salwa Suliman; Anna Mieszkowska; Justyna Folkert; Neha Rana; Samih Mohamed-Ahmed; Tiziana Fuoco; Anna Finne-Wistrand; Kai Dirscherl; Bodil Jørgensen
Journal:  Inflamm Regen       Date:  2022-04-03

8.  Adenoviral Mediated Expression of BMP2 by Bone Marrow Stromal Cells Cultured in 3D Copolymer Scaffolds Enhances Bone Formation.

Authors:  Sunita Sharma; Dipak Sapkota; Ying Xue; Yang Sun; Anna Finne-Wistrand; Ove Bruland; Kamal Mustafa
Journal:  PLoS One       Date:  2016-01-25       Impact factor: 3.240

9.  Delivery of VEGFA in bone marrow stromal cells seeded in copolymer scaffold enhances angiogenesis, but is inadequate for osteogenesis as compared with the dual delivery of VEGFA and BMP2 in a subcutaneous mouse model.

Authors:  Sunita Sharma; Dipak Sapkota; Ying Xue; Saroj Rajthala; Mohammed A Yassin; Anna Finne-Wistrand; Kamal Mustafa
Journal:  Stem Cell Res Ther       Date:  2018-01-31       Impact factor: 6.832

10.  Endochondral Ossification Induced by Cell Transplantation of Endothelial Cells and Bone Marrow Stromal Cells with Copolymer Scaffold Using a Rat Calvarial Defect Model.

Authors:  Zhe Xing; Xiaofeng Jiang; Qingzong Si; Anna Finne-Wistrand; Bin Liu; Ying Xue; Kamal Mustafa
Journal:  Polymers (Basel)       Date:  2021-05-09       Impact factor: 4.329

  10 in total

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