Literature DB >> 21874729

In vivo osteoinductive effect and in vitro isolation and cultivation bone marrow mesenchymal stem cells.

Amira Redzić1, Amer Smajilagić, Mufida Aljicević, Ljubomir Berberović.   

Abstract

Bone marrow contains cell type termed mesenchymal stem cells (MSC), first recognized in bone marrow by a German pathologist, Julius Cohnheim in 1867. That MSCs have potential to differentiate in vitro in to the various cells lines as osteoblast, chondroblast, myoblast and adipoblast cells lines. Aims of our study were to show in vivo capacity of bone marrow MSC to produce bone in surgically created non critical size mandible defects New Zeland Rabbits, and then in second part of study to isolate in vitro MSC from bone marrow, as potential cell transplantation model in bone regeneration. In vivo study showed new bone detected on 3D CT reconstruction day 30, on all 3 animals non critical size defects, treated with bone marrow MSC exposed to the human Bone Morphogenetic Protein 7 (rhBMP-7). Average values of bone mineral density (BMD), was 530 mg/cm3, on MSC treated animals, and 553 mg/cm3 on control group of 3 animals where non critical size defects were treated with iliac crest autologue bone graft. Activity of the Alkaline Phosphatase enzyme were measurement on 0.5, 14, 21, 30 day and increased activity were detected day 14 on animals treated with bone marrow MSCs compared with day 30 on iliac crest treated animals. That results indicates strong osteoinduction activity of the experimental bone marrow MSCs models exposed to the rhBMP-7 factor Comparing ALP activity, that model showed superiorly results than control group. That result initiates us in opinion that MSCs alone should be alternative for the autolologue bone transplantation and in vitro study we isolated singles MSCs from the bone marrow of rat's tibia and femora and cultivated according to the method of Maniatopoulos et all. The small initial colonies of fibroblast like cells were photo-documented after 2 days of primary culture. Such isolated and cultivated MSCs in future studies will be exposed to the growth factors to differentiate in osteoblast and indicate their clinically potential as alternative for conventional medicine and autologue bone transplantation. That new horizons have potential to minimize surgery and patient donor morbidity, with more success treatment in bone regenerative and metabolism diseases.

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Year:  2010        PMID: 21874729

Source DB:  PubMed          Journal:  Coll Antropol        ISSN: 0350-6134


  2 in total

1.  MSCs transplantation with application of G-CSF reduces apoptosis or increases VEGF in rabbit model of myocardial infarction.

Authors:  Jia Yang; Jindong Xia; Yao He; Jiangmin Zhao; Guixiang Zhang
Journal:  Cytotechnology       Date:  2013-11-20       Impact factor: 2.058

2.  Rat bone marrow stem cells isolation and culture as a bone formative experimental system.

Authors:  Amer Smajilagić; Mufida Aljičević; Amira Redžić; Selma Filipović; Alena Lagumdžija
Journal:  Bosn J Basic Med Sci       Date:  2013-02       Impact factor: 3.363

  2 in total

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