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Biomedical subjects

I N Springer

Publications and source records attributed to I N Springer.

6 recordsLinked to original sources

Innate immunity in human bone.

Bone has exceptional regenerative properties. Oral bone appears to be particularly resistant to infection despite exposure to oral flora, even in circumstances such as oral surgery where the thin mucosal layer covering the bone is disrupted. The goal of this study was to determine whether the innate immune system of antimicrobial peptides exists inside bone. Biopsies of non-infected and chronically infected mandibular bone were harvested from patients during maxillofacial surgical procedures. Bone biopsies from the iliac crest and fibula served as controls. Immunohistochemical staining was performed, directed against the human beta-defensin antimicrobial peptides (hBD) -1, -2 and -3. In addition, cultures of osteoblast-like cells were examined for the presence of each of the three beta-defensins and their mRNA transcripts. All three human beta-defensins were detected within the mineralized bone matrix of chronically infected mandibular bone in the vicinity of the endosteum and osteocytes. hBD-1, -2 and -3 were also found in the cytoplasm of osteocytes. Expression of all three beta-defensins was detected in each of the non-infected bone types including the controls, however, to a lesser degree than that found in the chronically infected mandibular bone. This may reflect upregulation of antimicrobial peptide expression in the presence of chronic infection. Cultures of non-infected osteoblast-like cells were found to express mRNA for each of hBD-1, -2 and -3. Immunohistochemical staining of the cultures was positive for hBD-1 and -2, but not for hBD-3. We provide the first evidence of a previously unrecognized innate immunological function of bone through the demonstration of the presence of the human beta-defensins hBD-1, -2 and -3 in bone.

Alkaline Phosphatase↗

Prefabrication of vascularized bone grafts using recombinant human osteogenic protein-1--part 3: dosage of rhOP-1, the use of external and internal scaffolds.

In a previous study vascularized bone grafts were prefabricated with recombinant human osteogenic protein-1 (rhOP-1) using blocks of xenogenic bone mineral (BioOss) as scaffolds. The present study addressed the dosage of rhOP-1 and the combination of an external (mould) and internal scaffold (granular BioOss). In five Göttingen minipigs six prefabrication sites in the latissimus dorsi muscles were randomly assigned to groups a-f. Moulds were prepared by shaping collagen/polylactide membranes in a cylindrical form which was filled with 1g BioOss granules and rhOP-1 (a: 0; b: 50; c, f, e: 250; d: 1000 microg of rhOP-1, a-e: cylinder open to muscle, e cylinder perforated, f: cylinder open to subcutaneous fat). After 6 weeks a dose dependency of bone density (a-d: 0%; 9.4%; 15.8%; 31.1%) and vessel density (a-d: 0.3; 2.4; 7.9; 25.4 counts/view) was observed histomorphometrically. Muscular surrounding was advantageous to subcutaneous tissue. Perforations of the membranes increased vessel density and did not impair bone formation. Bone density decreased in the proximity of the polylactide membranes. The membrane material was too soft and partly collapsed and therefore needs not to be reconsidered. The use of BioOss granules with 1000 microg rhOP-1 per gram proved to be a suitable concept for prefabrication of bone transplants.

Absorbable Implants↗

Amelogenesis imperfecta in a new animal model--a mutation in chromosome 5 (human 4q21).

Candidate genes for amelogenesis imperfecta (AI) and dentinogenesis imperfecta (DI) are located on 4q21 in humans. We tested our hypothesis that mutations in the portion of mouse chromosome 5 corresponding to human chromosome 4q21 would cause enamel and dentin abnormalities. Male C3H mice were injected with ethylnitrosourea (ENU). Within a dominant ENU mutagenesis screen, a mouse mutant was isolated with an abnormal tooth enamel (ATE) phenotype. The structure and ultrastructure of teeth were studied. The mutation was located on mouse chromosome 5 in an interval of 9 cM between markers D5Mit18 and D5Mit10. Homozygotic mutants showed total enamel aplasia with exposed dentinal tubules, while heterozygotic mutants showed a significant reduction in enamel width. Dentin of mutant mice showed a reduced content of mature collagen cross-links. We were able to demonstrate that a mutation on chromosome 5 corresponding to human chromosome 4q21 can cause amelogenesis imperfecta and changes in dentin composition.

Amelogenesis Imperfecta↗

The sebaceous nevus as part of the Schimmelpenning-Feuerstein-Mims Syndrome--an obvious phacomatosis first documented in 1927.

The sebaceous nevus is a common nevus and can be easily diagnosed because of its typical rough fatty surface due to its amount of sebaceous glands. In some rare cases, the sebaceous nevus is part of a genetic disorder, the Schimmelpenning-Feuerstein-Mims (SFM) syndrome. If the SFM syndrome is suspected, further investigation is necessary, because multiple organ involvement is highly likely. We suggest that diagnosis of the SFM syndrome is simple, considering the special linear arrangement of sebaceous nevi in cases of SFM syndrome.

Child↗

Culture of cells gained from temporomandibular joint cartilage on non-absorbable scaffolds.

The objective of this study was to investigate the adhesion, spreading and extracellular matrix synthesis of temporomandibular joint (TMJ) derived cells on non-absorbable scaffold materials to ultimately provide a durable stress-absorbent framework within tissue-engineered disc transplants. Scaffolds were prepared by polyamide monofilaments, expanded polytetrafluoroethylene (ePTFE) monofilaments, polyglycolic acid monofilaments (control) or natural bone mineral blocks (control). These scaffolds were incubated for 2, 4 and 8 weeks under common culture conditions with cells (human and porcine) harvested from the TMJ-disc or the articular eminence. The specimens were examined by scanning electron microscopy and transmission electron microscopy. The type of collagen synthesized was analyzed by SDS-PAGE. The cells were strongly adherent to all of the materials. Independent of their origin the cells became confluent on all scaffolds within four weeks. They filled recesses loosely and covered the constructs by an envelope of dense stratified cell layers. Moreover, the cells expressed collagen type II, which is specific for chondrocytes. Thus, it could be demonstrated, that ePTFE, polyamide, polyglycolic acid and natural bone mineral have an excellent compatibility in a three-dimensional cell culture system. ePTFE and polyamide scaffolds may be well suited for the development of tissue-engineered stress-resistant articular disc transplants.

Animals↗

Lack of mutations in DNA polymerase beta of estradiol-induced hamster kidney tumors: sequence of hamster DNA polymerase beta cDNA.

We examined the effects of estradiol (E2), the natural estrogenic hormone, on the structure and expression of DNA polymerase beta (DNA pol beta), a DNA repair gene, from E2-induced primary kidney tumors of twelve Syrian hamsters, their metastases, and from kidney tissues surrounding the tumors. We sequenced the coding region of the hamster DNA pol beta and found it to differ from that of the human by 11%. No mutations were detected in the entire coding region including the catalytic domain of the DNA pol beta from E2-induced primary kidney tumors, their metastases, or from kidney tissues surrounding the tumors. The expression of the DNA pol beta mRNA was also not significantly altered in E2-induced kidney tumors or in kidney tissues surrounding the tumors compared to that of control kidney tissues. These results suggest that mutations in the DNA pol beta gene may not be involved in the induction or malignant progression of hamster kidney tumors induced by E2. The nucleotide sequence of the hamster DNA pol beta described here will be useful for the study of the structure and expression of this gene.

Amino Acid Sequence↗