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Biomedical subjects

L Nygaard

Publications and source records attributed to L Nygaard.

5 recordsLinked to original sources

Periodontal repair in dogs: evaluation of rhBMP-2 carriers.

This study evaluated candidate carriers for recombinant human bone morphogenetic protein-2 (rhBMP-2)-driven periodontal regeneration. Previous experiments indicated the ability of rhBMP-2 in a particulate delivery system to result in substantial regeneration of bone and periodontal regeneration. In the present study, canine demineralized bone matrix (DBM), bovine deorganified crystalline bone matrix (Bio-Oss), an absorbable collagen sponge (ACS) of type I bovine collagen, poly(D,L-lactide-co-glycolide) microparticles (PLGA), and polylactic acid granules (Drilac) were tested for their ability to support rhBMP-2 (0.2 mg/mL implant volume)-driven periodontal regeneration. The implants were tested in routine critical size canine supra-alveolar periodontal defects with transgingival tooth positioning. Contralateral defects in six beagle dogs were semirandomly assigned to receive: DBM/rhBMP-2, DBM (no rhBMP-2), Bio-Oss/rhBMP-2, ACS/rhBMP-2, PLGA/rhBMP-2, or Drilac/rhBMP-2. Animals were sacrificed 8 weeks postsurgery, and block sections of the defects were processed for light microscopy. Substantial bone regeneration was observed in all defects implanted with rhBMP-2. Other measures of periodontal healing, including cementum regeneration and presence of ankylosis, were more variable between the implants. DBM and Bio-Oss performed well as carriers for rhBMP-2-driven periodontal regeneration, although other impediments to their clinical use exist. This study indicates that qualities of the carrier system, including its space-maintaining capacity can affect the ability of rhBMP-2 to regenerate both alveolar bone and periodontal attachment.

Alveolar Bone Loss↗

Hemophilia in dogs, with special reference to hemophilia A among German shepherd dogs in Denmark. I: Pathophysiology, laboratory tests and genetics.

A review is given of the history and distribution of hemophilia in dogs. The current knowledge of Factor VIII relative to hemophilia A and von Willebrand's Disease is presented. The tests required for distinguishing between hemophilia A, hemophilia B, von Willebrand's Disease, and various disorders caused by other factor defects in the coagulation cascade are described. X-linked, recessive inheritance of hemophilia A is illustrated in genealogical diagrams. The precautions required in connection with blood sampling for diagnostic tests are emphasized.

Animals↗

Hemophilia in dogs, with special reference to hemophilia A among German shepherd dogs in Denmark. II: Clinical study, therapy and prophylaxis.

Clinical data, pedigrees, screening tests (APTT, PT and TT) and specific tests (VIII:C, VIIIC:Ag, VIIIR:Ag and IX:C) were used to diagnose hemophilia A (classical hemophilia) in two colonies of German Shepherd dogs in Denmark. The affected individuals in both colonies were males, and they descended from a common, hemophilic ancestor. All observations were in accordance with X-linked, recessive inheritance. Therapeutic and prophylactic measures are discussed.

Animals↗