Effect of hyperbaric oxygen on mesenchymal stem cells for lumbar fusion in vivo

BMC Musculoskelet Disord. 2010 Mar 19:11:52. doi: 10.1186/1471-2474-11-52.

Abstract

Background: Hyperbaric oxygen (HBO) therapy has been proved in improving bone healing, but its effects on mesenchymal stem cells (MSCs) in vivo is not clear. The aims of this study are to clarify whether the HBO therapy has the same enhancing effect on MSCs with regard to bone formation and maturation and to ascertain whether the transplanted MSCs survive in the grafted area and contribute to new bone formation.

Methods: Twenty-three adult rabbits underwent posterolateral fusion at L4-L5 level. The animals were divided into three groups according to the material implanted and subsequent treatment: (1) Alginate carrier (n = 6); (2) Alginate-MSCs composite (n = 11); and (3) Alginate-MSCs composite with HBO therapy (n = 6). After 12 weeks, spine fusion was examined using radiographic examination, manual testing, and histological examination. Using a PKH fluorescence labeling system, whether the transplanted MSCs survived and contributed to new bone formation in the grafted area after HBO therapy was also examined.

Results: The bilateral fusion areas in each animal were evaluated independently. By radiographic examination and manual palpation, union for the Alginate, Alginate-MSCs, and Alginate-MSCs-HBO groups was 0 of 12, 10 of 22, and 6 of 12 respectively. The difference between the Alginate-MSCs and Alginate-MSCs-HBO groups was not significant (P = 0.7997). The fluorescence microscopy histological analysis indicated that the transplanted PKH67-labeled MSCs survived and partly contributed to new bone formation in the grafted area.

Conclusions: This study demonstrated that the preconditioned MSCs could survive and yield bone formation in the grafted area. HBO therapy did not enhance the osteogenic ability of MSCs and improve the success of spine fusion in the rabbit model. Although there was no significant effect of HBO therapy on MSCs for spine fusion, the study encourages us to research a more basic approach for determining the optimal oxygen tension and pressure that are required to maintain and enhance the osteogenic ability of preconditioned MSCs. Further controlled in vivo and in vitro studies are required for achieving a better understanding of the effect of HBO treatment on MSCs.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Alginates / therapeutic use
  • Animals
  • Bone Regeneration / physiology
  • Bone Transplantation / methods
  • Cell Differentiation / physiology
  • Cells, Cultured
  • Disease Models, Animal
  • Glucuronic Acid / therapeutic use
  • Graft Survival / physiology*
  • Hexuronic Acids / therapeutic use
  • Hyperbaric Oxygenation / methods*
  • Lumbar Vertebrae / surgery*
  • Male
  • Mesenchymal Stem Cell Transplantation / methods*
  • Mesenchymal Stem Cells / physiology*
  • Osteogenesis / physiology
  • Oxygen / metabolism
  • Oxygen Consumption / physiology
  • Rabbits
  • Spinal Fusion / methods*
  • Treatment Outcome
  • Wound Healing / physiology

Substances

  • Alginates
  • Hexuronic Acids
  • Glucuronic Acid
  • Oxygen