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1.
Cell Tissue Res ; 362(3): 577-85, 2015 Dec.
Article in English | MEDLINE | ID: mdl-26224539

ABSTRACT

Dimethyl sulfoxide (DMSO) is an FDA-approved organosulfur solvent that is reported to have therapeutic value in osteoarthritis and osteopenia. DMSO is used as a cryoprotectant for the cryopreservation of bone grafts and mesenchymal stem cells which are later used for bone repair. It is also used as a solvent in the preparation of various scaffolds used for bone tissue engineering purposes. DMSO has been reported to inhibit osteoclast formation in vitro but the mechanism involved has remained elusive. We investigated the effect of DMSO on osteoclast differentiation and function using a conventional model system of RAW 264.7 cells. The differentiation of RAW 264.7 cells was induced by adding 50 ng/ml RANKL and the effect of DMSO (0.01 and 1% v/v) on RANKL-induced osteoclastogenesis was investigated. Addition of 1% DMSO significantly inhibited RANKL-induced formation of TRAP+, multinucleated, mature osteoclasts and osteoclast late-stage precursors (c-Kit(-) c-Fms(+) Mac-1(+) RANK(+)). While DMSO did not inhibit proliferation per se, it did inhibit the effect of RANKL on proliferation of RAW 264.7 cells. Key genes related to osteoclast function (TRAP, Integrin αVß3, Cathepsin K and MMP9) were significantly down-regulated by DMSO. RANKL-induced expression of RANK gene was significantly reduced in the presence of DMSO. Our data, and reports from other investigators, that DMSO enhances osteoblastic differentiation of mesenchymal stem cells and also prevents bone loss in ovarietcomized rats, suggest that DMSO has tremendous potential in the treatment of osteoporosis and bone diseases arising from uncontrolled activities of the osteoclasts.


Subject(s)
Dimethyl Sulfoxide/pharmacology , Osteoclasts/cytology , Osteoclasts/metabolism , Acid Phosphatase/metabolism , Animals , Cathepsin K/genetics , Cathepsin K/metabolism , Cell Differentiation/drug effects , Cell Proliferation/drug effects , Gene Expression Regulation/drug effects , Integrins/genetics , Integrins/metabolism , Isoenzymes/metabolism , Matrix Metalloproteinase 9/genetics , Matrix Metalloproteinase 9/metabolism , Mice , Osteoclasts/drug effects , Osteoclasts/enzymology , RANK Ligand/pharmacology , RAW 264.7 Cells , Signal Transduction/drug effects , Stem Cells/cytology , Stem Cells/drug effects , TNF Receptor-Associated Factor 6/genetics , TNF Receptor-Associated Factor 6/metabolism , Tartrate-Resistant Acid Phosphatase
2.
Biomaterials ; 64: 98-107, 2015 Sep.
Article in English | MEDLINE | ID: mdl-26125501

ABSTRACT

Bone grafting procedures are performed to treat wounds incurred during wartime trauma, accidents, and tumor resections. Endogenous mechanisms of repair are often insufficient to ensure integration between host and donor bone and subsequent restoration of function. We investigated the role that bone marrow-derived cells play in bone regeneration and sought to increase their contributions by functionalizing bone allografts with bioactive lipid coatings. Polymer-coated allografts were used to locally deliver the immunomodulatory small molecule FTY720 in tibial defects created in rat bone marrow chimeras containing genetically-labeled bone marrow for monitoring cell origin and fate. Donor bone marrow contributed significantly to both myeloid and osteogenic cells in remodeling tissue surrounding allografts. FTY720 coatings altered the phenotype of immune cells two weeks post-injury, which was associated with increased vascularization and bone formation surrounding allografts. Consequently, degradable polymer coating strategies that deliver small molecule growth factors such as FTY720 represent a novel therapeutic strategy for harnessing endogenous bone marrow-derived progenitors and enhancing healing in load-bearing bone defects.


Subject(s)
Bone Transplantation , Fingolimod Hydrochloride/administration & dosage , Immunologic Factors/administration & dosage , Allografts , Animals , Bone Marrow Cells/cytology , Bone and Bones/physiology , Cell Lineage , Drug Carriers/administration & dosage , Drug Delivery Systems , Female , Genes, Reporter , Green Fluorescent Proteins/genetics , Lactic Acid/administration & dosage , Male , Myelopoiesis/drug effects , Neovascularization, Physiologic/drug effects , Osteogenesis/drug effects , Polyglycolic Acid/administration & dosage , Polylactic Acid-Polyglycolic Acid Copolymer , Radiation Chimera , Random Allocation , Rats , Rats, Sprague-Dawley , Regeneration , Stress, Mechanical , Tibia/injuries , Tibia/surgery , X-Ray Microtomography
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