Isolation, characterization and the multi-lineage differentiation potential of rabbit bone marrow-derived mesenchymal

Sik-Loo Tan1, Tunku Sara Ahmad, Lakshmi Selvaratnam

  • 1Tissue Engineering Group, National Orthopaedics Centre of Excellence in Research & Learning, Department of Orthopaedic Surgery, Faculty of Medicine, University of Malaya, Kuala Lumpur, Malaysia.

Journal of Anatomy
|March 21, 2013
PubMed

Insights

Rabbit bone marrow-derived mesenchymal stem cells (rbMSCs) share morphology and markers with human MSCs (hMSCs). rbMSCs show enhanced osteogenic and chondrogenic differentiation potential despite a slower proliferation rate, offering new characterization criteria.

Area of Science:

  • Cell Biology
  • Stem Cell Research
  • Regenerative Medicine

Background:

  • Mesenchymal stem cells (MSCs) are characterized by adherence, morphology, specific markers, and multi-lineage differentiation.
  • Rabbit bone marrow-derived MSCs (rbMSCs) are utilized in research but lack detailed morphological, ultrastructural, and comparative differentiation data against human MSCs (hMSCs).

Purpose of the Study:

  • To define the morphology, ultrastructure, surface protein markers, and multi-lineage differentiation capacity of rabbit bone marrow-derived MSCs (rbMSCs).
  • To compare the characteristics of rbMSCs with human MSCs (hMSCs).

Main Methods:

  • Isolation of rbMSCs from adult New Zealand white rabbits using gradient centrifugation.
  • Characterization via phase contrast microscopy, transmission electron microscopy, RT-PCR, immunocytochemistry, flow cytometry, alamarBlue assay, histological staining, and qPCR.
  • Comparative analysis with established human MSC (hMSC) protocols for differentiation and characterization.

Main Results:

  • rbMSCs exhibited fibroblastic spindle-shape morphology, expressing MSC markers (CD29, CD44, CD73, CD81, CD90, CD166) and lacking hematopoietic markers (CD34, CD45, CD117, HLA-DR).
  • rbMSCs showed similar morphology and phenotype to hMSCs but had larger cell size and lower proliferation rates.
  • rbMSCs successfully underwent osteogenic, adipogenic, and chondrogenic differentiation, with significantly higher osteogenic (Runx2) and chondrogenic (Sox9) gene expression compared to hMSCs.

Conclusions:

  • rbMSCs possess comparable morphological and phenotypic characteristics to hMSCs.
  • rbMSCs demonstrate a superior potential for osteogenic and chondrogenic differentiation compared to hMSCs, despite a reduced proliferation rate.
  • The findings provide a comprehensive set of criteria for defining and characterizing rbMSCs, valuable for translational research.