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Virulence factors of Actinobacillus actinomycetemcomitans.

A. actinomycetemcomitans has clearly adapted well to its environs; its armamentarium of virulence factors (Table 2) ensures its survival in the oral cavity and enables it to promote disease. Factors that promote A. actinomycetemcomitans colonization and persistence in the oral cavity include adhesins, bacteriocins, invasins and antibiotic resistance. It can interact with and adhere to all components of the oral cavity (the tooth surface, other oral bacteria, epithelial cells or the extracellular matrix). The adherence is mediated by a number of distinct adhesins that are elements of the cell surface (outer membrane proteins, vesicles, fimbriae or amorphous material). A. actinomycetemcomitans enhances its chance of colonization by producing actinobacillin, an antibiotic that is active against both streptococci and Actinomyces, primary colonizers of the tooth surface. The fact that A. actinomycetemcomitans resistance to tetracyclines, a drug often used in the treatment of periodontal disease, is on the rise is an added weapon. Periodontal pathogens or their pathogenic products must be able to pass through the epithelial cell barrier in order to reach and cause destruction to underlying tissues (the gingiva, cementum, periodontal ligament and alveolar bone). A. actinomycetemcomitans is able to elicit its own uptake into epithelial cells and its spread to adjacent cells by usurping normal epithelial cell function. A. actinomycetemcomitans may utilize these remarkable mechanisms for host cell infection and migration to deeper tissues. A. actinomycetemcomitans also orchestrates its own survival by elaborating factors that interfere with the host's defense system (such as factors that kill phagocytes and impair lymphocyte activity, inhibit phagocytosis and phagocyte chemotaxis or interfere with antibody production). Once the organisms are firmly established in the gingiva, the host responds to the bacterial onslaught, especially to the bacterial lipopolysaccharide, by a marked and continual inflammatory response, which results in the destruction of the periodontal tissues. A. actinomycetemcomitans has at least three individual factors that cause bone resorption (lipopolysaccharide, proteolysis-sensitive factor and GroEL), as well as a number of activities (collagenase, fibroblast cytotoxin, etc.) that elicit detrimental effects on connective tissue and the extracellular matrix. It is of considerable interest to know that A. actinomycetemcomitans possesses so many virulence factors but unfortunate that only a few have been extensively studied. If we hope to understand and eradicate this pathogen, it is critical that in-depth investigations into the biochemistry, genetic expression, regulation and mechanisms of action of these factors be initiated.

Abscess↗

Guided tissue regeneration-based root coverage utilizing collagen membranes: technique and case reports.

Gingival recession defects have traditionally been treated with various grafting procedures. Recently, guided tissue regeneration with collagen membranes has shown promising results. This article reviews the rationale, indications, contraindications, and clinical methods for the use of bioabsorbable collagen membrane barriers. Several properties make collagen membranes attractive candidates for use as barriers in guided tissue regeneration-based root coverage procedures. These include the inhibition of epithelial migration and promotion of new connective tissue attachment; the ability to aggregate platelets, thereby facilitating wound stabilization and maturation; the promotion of cellular migration and wound closure; the elimination of the need for reentry surgery; and the ability to augment tissue thickness. Cases are presented to illustrate the surgical principles and techniques.

Absorbable Implants↗

The attachment of V79 and human periodontal ligament fibroblasts on periodontally involved root surfaces following treatment with EDTA, citric acid, or tetracycline HCL: an SEM in vitro study.

OBJECTIVE: The present in vitro study has been designed to establish and compare the effects of citric acid, EDTA, and tetracycline HCl on human periodontally diseased roots on the structure, attachment, and orientation of V79 (primary Chinese hamster lung fibroblasts) cells and human periodontal ligament fibroblasts (HPDL). MATERIALS AND METHODS: Commercially available V79 cells and HPDL derived from healthy human third molars were used in this study. These fibroblasts were left in solution for seven days in order to attain confluence. Forty single-rooted teeth were obtained from patients diagnosed with periodontitis. The crown part was removed under constant irrigation and the root was split vertically into two equal halves, thus, yielding 80 specimens. Following scaling and root planing, the specimens were washed with phosphate buffered saline (PBS) and kept in 50 microg/ml gentamycin sulphate solution for 24 hours. The root pieces were then treated as follows: citric acid at pH 1, 24% EDTA, or with a 10% solution of tetracycline HCl and were then placed in V79 fibroblast cultures and HPDL cultures. The specimens were harvested after four weeks and were fixed in 2.5% glutaraldehyde in PBS before preparation for scanning electron microscopy (SEM). RESULTS: The behavior of V79 cells was similar to that of human periodontal ligament cells on root conditioned surfaces. V79 and HPDL showed a healthy morphology on root surfaces treated with citric acid and EDTA and a relatively unhealthy appearance on root surfaces treated with tetracycline HCl and distilled water (control group). CONCLUSION: The results suggest the use of citric acid and EDTA as root conditioning agents favorably affects the migration, attachment, and morphology of fibroblasts on human root surfaces, which may play a significant role in periodontal healing and regeneration.

Animals↗

Current concepts of the dentogingival junction: the epithelial and connective tissue attachments to the tooth.

This review leads to a concept in which the tissues of the dentogingival junction are dynamic rather that static. Even when they are pathologic, they can be reconstituted by repair. Both their cellular and extracellular components exhibit a high rate of turnover. Some of the cells are specialized for specific functions, such as attachment formation, and do not generate additional cells, but generative pools are always nearby. The cells are capable of movement and of positional change. The junctional epithelium can advance and retract. The cuticle width is alterable. The entire tissue is capable of regeneration after wounding. This dynamic group of tissues is well adapted for the healing of direct injuries produced during mastication. The tissues do remarkably well, over long periods, in their response to periodontal disease, whether due to direct bacterial or toxic damage, or to indirect damage via the migration of inflammatory cells into the lesion. The tissues show a capacity for repair and regeneration following the elimination of plaque formation and the resultant resolution of the inflammatory infiltrate. The complete story is not yet developed. The past 60 years are replete with fine contributions by distinguished workers. Additional contributions continue to be made. The inheritance from our predecessors has been used well and our expanded knowledge in this area now serves as the conceptual framework for further study.

Animals↗

Origins and functions of cells essential for periodontal repair: the role of fibroblasts in tissue homeostasis.

OBJECTIVE: A review is undertaken of rodent model systems and cell culture studies that address the role of periodontal fibroblasts in tissue homeostasis in both normal function and after wound healing. RATIONALE: Fibroblasts are the predominant cells of the periodontal ligament (PL) and of healthy gingiva and have important roles in the development, function and regeneration of the tooth support apparatus. REVIEW: In normally functioning periodontal tissues cell turnover involves generation of new cells by proliferation which in turn is balanced by apoptopic cell death. Consequently PL fibroblasts comprise a renewal cell system in steady-state. PL cell progenitors can generate multiple types of more differentiated, specialized cells including large numbers of fibroblastic cells and more limited numbers of osteogenic or cementogenic cells. However PL fibroblasts constitutively block osteogenesis and thereby maintain the PL width. Proliferating progenitor cell populations of the PL are enriched in locations adjacent to blood vessels and in contiguous endosteal spaces from where they migrate to the body of the PL. Large increases of cell formation and cell differentiation occur after wounding but surprisingly, the cells that repopulate the PL adjacent to the root surface are largely post-mitotic. As PL cell populations comprise multiple lineages, it is likely that after wounding, the separate phenotypes repopulating the wound site will be selected by environmental factors. Further, the specific repopulating lineages will strongly influence the form and function of the nascent tissue. To illustrate the specificity of fibroblast functions, examples of migratory and contractile fibroblast phenotypes are provided which exhibit constitutively different levels of gelsolin and alpha-smooth muscle actin respectively, cytoskeletal proteins which are markers for these cell types. CONCLUSION: Fibroblasts contribute to PL homeostasis by their abilities to remodel tissues, to repopulate wounds, to influence the metabolism of other cell types and to create a new fibrous attachment.

Animals↗

[Root surface biocompatibility].

The optimal result of periodontal therapy is the regeneration of tissues previously destroyed by periodontal disease. In order for regeneration to occur, it is believed necessary to eliminate all root surface alterations. Preparation of the root surface include scaling and root planning, use of acids and other chemical and biological agents. Citric acid has been studied by several authors, but still remains in controversy the biological nature of its effects. In spite of this, the findings of some studies indicate that citric acid used on root surfaces results in: elimination of endotoxins; chemical, exposure of dentin collagen fibers; induction of cementogenesis by the exposed dentin; demineralization of root cementum; enhancement of fibroblast attachment when a plasma factor is used in addition to citric acid demineralization and influence on direction in which the epithelium initially starts to migrate. By the other hand root surface preparation by mean of scaling and root planning is an unpredictable procedure due to variables such as failure to remove the cementum on calculus debris in a clinical situation. New research is needed in order to obtain a predictable root conditioning procedure for a biological surface.

Citrates↗

Synthesis and secretion of the enamel matrix precursor by the kitten secretory ameloblast.

Secretory ameloblasts in kitten molar tooth germs were examined with an electron microscope to analyze the synthesis and secretion processes of the enamel matrix precursor. The contents of the secretion granule were identified as fine granular material, which observed in both the rough endoplasmic reticulum and the Golgi cisterns, accumulated in the dilated margins of the innermost Golgi cistern and formed condensing vacuoles. The same kind of condensing vacuoles was also produced from the GERL cisterns. During the secretion granule maturation processes in the Golgi region, the contents accumulated densely and the granules grew smaller. In addition, granule-limiting membranes acquired fine, bristle coats. The mature secretion granules then migrated, along microtubules, into the surfaces of the Tomes processes and finally released their contents by a process of exocytosis at the type 1 face which faces the enamel growth region.

Ameloblasts↗

Healing after application of tissue-adhesive material to denuded and citric acid-treated root surfaces.

This study was undertaken to evaluate the effects of a commercially available tissue adhesive upon healing of the coronal periodontium. In four squirrel monkeys, 24 teeth were extracted, and the coronal third of the roots planed free of fibers and cementum. Eight teeth were replanted without further alteration and eight were coated with tissue adhesive prior to replantation. In the remaining eight teeth, the planed surface was decalcified, coated with tissue adhesive and replanted. Histological observations were made at 1 and 7 days after replantation. In the teeth replanted after root planing alone and root planing plus tissue adhesive, epithelium migrated apically and was within the ligament space lining the denuded root at 7 days. In contrast, those teeth which were decalcified prior to application of tissue adhesive demonstrated fiber attachment to the planed root surface and little or no epithelial downgrowth.

Animals↗

Management of root fracture of mandibular permanent lateral incisor in mixed dentition--a case report.

Management of root fracture of mandibular lateral incisors during mixed dentition with developing crowding in a ten year old boy by bilateral surgical extraction. Migration of permanent canine into the extracted region of lateral incisors was favourable with minimal spacing in between the rest of the teeth. The near normal parallel position of the roots of the permanent canines was achieved by early treatment planning of extraction of the lateral incisors instead of treating by other modalities which have a poor prognosis.

Child↗

Supernumerary premolars associated with dens evaginatus: report of 2 cases.

Dens evaginatus is a dental anomaly found predominantly in people of Mongoloid origin. Dentists practising in Western countries should also be aware of this condition because of the increasing migration of people from Asia. Supernumerary premolars are uncommon but may be found incidentally during radiographic examination of teeth with dens evaginatus. This article reports 2 cases of concomitant occurrence of supernumerary premolars and dens evaginatus. The presence of a supernumerary premolar in 1 quadrant is an indication for radiographic examination of all other premolar regions.

Bicuspid↗

[Remodelling of the crown for occlusal equilibration in partially edentulous patients].

Two clinical cases of partial edentulous patients with irregular occlusal plane and their treatment are presented. The authors emphasize the role of occlusal rehabilitation before any prosthetic treatment. Gingivectomy, osteoplastic surgery and crown reshaping are used. Occlusal relationships before fixed or removable prosthodontics is applied, are essential to insure correct mandibular movements and the dento-maxillary system homeostasis. Two clinical cases of patients with irregular occlusal plane because of teeth migrations (horizontal or vertical) after long-term edentation are presented. Both cases were by crown reshaping after pulpectomy and gingivectomy to obtain a regular occlusal plane. Prosthetic treatment was applied only after these preparations. We achieved good results concerning the dento-maxillary functions.

Adult↗

Gli1 is not required for Pdgfralpha expression during mouse embryonic development.

Pdgfra is expressed in the mesenchyme of multiple organs during embryonic development and Pdgfralpha is involved in cell proliferation, differentiation, migration, and apoptosis in many tissues. A fine-tuned regulation of gene transcription is required to achieve these effects. To investigate if the Shh signaling pathway is involved in the tightly regulated Pdgfra expression during embryogenesis, we systematically compared Gli1 and Pdgfralpha mRNA expression patterns in vivo from mouse embryonic day 9.5 to 14.5. We found that an initial partly overlapping expression of Gli1 and Pdgfralpha in the mesenchyme of foregut and somites was changed to different expression patterns when the mesenchyme differentiated into specialized structures such as intestinal villi and chondrocytes. Gli1 and Pdgfra were also expressed differently in the developing lung, heart, central nervous system, skin, tooth, and eye. Importantly, neither Pdgfralpha mRNA patterns nor levels were altered in Ihh mutant embryos although Gli1 and Ptc mRNA levels were dramatically reduced. Our results demonstrate that Gli1 is not required to induce Pdgfra expression during embryonic bone development, and are consistent with previous findings that Pdgfralpha and Hh pathways serve different functions in, e.g., bone, gut, and lung development. However, we cannot exclude the possibility that Glis can have more complex regulatory effects on Pdgfra gene activity, nor can we exclude such effects in pathological conditions.

Animals↗

EphB/ephrin-B interaction mediates adult stem cell attachment, spreading, and migration: implications for dental tissue repair.

Human adult dental pulp stem cells (DPSCs) reside predominantly within the perivascular niche of dental pulp and are thought to originate from migrating neural crest cells during development. The Eph family of receptor tyrosine kinases and their ligands, the ephrin molecules, play an essential role in the migration of neural crest cells during development and stem cell niche maintenance. The present study examined the expression and function of the B-subclass Eph/ephrin molecules on DPSCs. Multiple receptors were primarily identified on DPSCs within the perivascular niche, whereas ephrin-B1 and ephrin-B3 were expressed by the surrounding pulp tissue. EphB/ephrin-B bidirectional signaling inhibited cell attachment and spreading, predominately via the mitogen-activated protein kinase (MAPK) pathway for forward signaling and phosphorylation of Src family tyrosine kinases via reverse ephrin-B signaling. DPSC migration was restricted through unidirectional ephrin-B1-activated EphB forward signaling, primarily signaling through the MAPK pathway. Furthermore, we observed that ephrin-B1 was downregulated in diseased adult teeth compared with paired uninjured controls. Collectively, these studies suggest that EphB/ephrin-B molecules play a role in restricting DPSC attachment and migration to maintain DPSCs within their stem cell niche under steady-state conditions. These results may have implications for dental pulp development and regeneration.

Adult↗

Age estimation of unaccompanied minors. Part II. Dental aspects.

Recent years have brought a worldwide increase in cross-border migration due to a globalized economy and ongoing belligerent conflicts. As a result, the percentage of foreigners among the general population has steadily increased not only in Germany, but also in other countries. This trend has triggered a growing demand for forensic medicine to assess the age of adolescents and young adults. The individuals examined here are unaccompanied minors without valid identification documents who do not know their age or else are suspected of not giving their correct age. The mineralization of third molars is the main criterion for dental age estimation of living subjects in the relevant age group. To date insufficient knowledge has been obtained about how ethnic origin can influence tooth mineralization. This, however, constitutes a restraint on the reliability of age estimates and hence on the forensic value of information essential to legal security. A comparative study was conducted to present comparative data on third molar mineralization in a Caucasoid, Mongoloid and African sample. In conclusion, forensic age estimates of living subjects would be more powerful tools if population-specific standards were applied to evaluations of wisdom tooth mineralization. Since the mineralization of third molars is usually completed by the age of 19 or 20 years, this feature cannot be used to ascertain whether a person has attained the forensically relevant age of 21 years. The question was whether determination based on an orthopantomogram of a combination of features relevant to dental age estimation of adults supplies forensically useful information for ascertaining whether a person has attained 21 years of age. The features considered include the DMFT index of all permanent teeth, the DMFT index of all permanent teeth excluding third molars and the DFT index of third molars projecting beyond the occlusal plane. It can be concluded that an evaluation of the variations of the DMFT index does not by itself yield sufficient data to determine with the accuracy required in criminal proceedings whether a person has attained 21 years of age. An additional X-ray examination of the medial clavicular epiphyseal cartilage is, therefore, strongly recommended when assessing whether a person is over 21.

Adolescent↗

Restoration of periodontal attachment employing enriched collagen solution in the dog.

Three wall intrabony defects were produced in 11 dogs using a round bur followed by curettes and hoes. A copper band was fixed to the tooth with stainless steel ligature wire. Six weeks later, the copper band was removed and the defect was treated with an enriched collagen solution (ECS) prepared from acid-extracted dog skin collagen. Thirty-three defects were treated with ECS and 33 defects were controls. Healing was assessed histologically 4 and 6 weeks after treatment for the presence of new cementum, periodontal ligament and alveolar bone, as well as arrested epithelial downgrowth along the dental root. Unlike the controls, treatment with ECS resulted in restoration of periodontal attachment after 4 weeks. This included formation of new cementum, new alveolar bone and dense connective tissue fiber running between bone and cementum. Control sections showed epithelial migration along the root, separating it from the adjacent connective tissue and thus preventing new attachment.

Alveolar Process↗

Talon cusp associated with other dental anomalies: a case report.

Talon cusp is an uncommon dental anomaly referring to an accessory cusp projecting from the cingulum area, or cemento-enamel junction of maxillary or mandibular anterior teeth, in both the primary and permanent dentition. This paper reports a rare case of talon cusp affecting the mandibular right central incisor and maxillary right lateral incisor, together with other dental abnormalities, viz. an inverted impacted migrating mandibular right second premolar; complete agenesis of the maxillary and mandibular third molars, the maxillary right second permanent molar, and the mandibular left permanent central incisor; severe crowding; deep bite; hypoplastic teeth; bilateral reverse cross-bite in the premolar region; and a retrognathic mandible. The presence of this number of dental anomalies in a single patient is rare.

Adolescent↗

Accelerated reattachment with cementogenesis to dentin, demineralized in situ. I. Optimum range.

This study confirms an original report describing accelerated reattachment with cementogenesis to root dentin, surgically exposed and demineralized in situ. It additionally describes results of 250 experiments on over 1000 teeth in mongrel dogs and cats designed to identify an optimum range of demineralization related to type of agent, pH, and time of application. This optimum range consistently induces flap reattachment with cementogenesis, while demineralization rates above and below this range enhance reattachment relative to undermineralized controls, but do not consistently induce new cementum. Although most controls demonstrated some reattachment with partial cementogenesis, none produced complete repair as did properly demineralized root surfaces and approximately one-third showed spithelial migration to the apical borders of the wound. No demineralized teeth demonstrated this control result. Small species differences in the response to root demineralization and the degree of hypermineralization of roots adjacent to chronic periodontal pockets, may make optimum ranges determined in this animal study slightly low for human pocket reaattachment techniques.

Animals↗

[The expression of the mutant gene mi in mouse aggregation chimeras].

Using aggregation of 8-cell embryos belonging to two mouse strains, we produced 17 chimeras, mi/mi<==>+/+ (3 organisms), mi/+<==>+/+ (9 organisms), and +/+<==>+/+ (5 organisms), that achieved the age of 30 days. Chimerism was identified by mosaic pigmentation of coat and retinal pigment epithelium (RPE). All mi/mi<==>+/+ chimeras suffered from microphthalmia. Disturbances of eye development in these mice were similar to those in mi/mi animals. In all three chimeras, pigmentation of RPE and choroid was represented with alternating pigmented and depigmented patches. Mosaic RPE pattern probably resulted from the effects of para-orbital mesenchyme cells of different genotypes, +/+ or mi/mi. These findings confirm our earlier data that mutant alleles of the mi locus affect ectomesenchyme (neural crest) cells playing an important role in normal RPE development. Coat pigmentation in mi/mi<==>+/+ chimeras had the same spotted pattern as in mi/+ heterozygous mice. Hence, the gene mi functions in melanoblasts, but dermal and epidermal mi/mi cells do not suppress migration, proliferation, and differentiation of +/+ melanoblasts. The mi/mi dermal cells do not interfere with the expression of the gene A. Despite the high proportion of mi/mi cells (58 to 80%), bone resorption and eruption of teeth in mi/mi<==>+/+ chimeras proceeded as in normal animals.

Alleles↗