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Here we report that successful bone formation with a vascular flap inside a
cylindrical mold was induced from fat tissue with the use of recombinant human bone
morphogenetic protein-2 in rats. Fat tissue connected to blood vessels was prepared
to fit into the mold and implanted intramuscularly into the hind leg in Wistar rats.
RhBMP-2 (20 μg) was applied in a collagen sheet previously placed on the inside
surface of the mold. Bone formation was confirmed radiologically and morphologically
at 2, 4, and 8 weeks after the surgery. In the control group without rhBMP-2 or the
group with ligation of the blood vessels before the implantation, bone formation was
not observed. Our success in bone formation having a definite size, shape, and blood
supply may lead to a therapeutic approach to effective bone reconstitution. The
present study is the first report on bone induction from fat tissue by rhBMP-2
The universally accepted concept of delay-loaded dental implants has recently been
challenged. This study hypothesizes that early loading (decreased implant healing
time) leads to increased bone formation and decreased crestal bone loss. We used 17
minipigs to study implants under a controlled load, with non-loaded implants for
comparison. Radiographic and histological assessments were made of the
osseointegrated bone changes for 3 healing times (between implant insertion and
loading), following 5 months of loading. The effect of loading on crestal bone loss
depended on the healing time. Early loading preserved the most crestal bone. Delayed
loading had significantly more crestal bone loss compared with the non-loaded
controls (2.4 mm
The application of an adhesive resin near or directly over the pulp was shown to
induce pulp inflammation and lack of dentin regeneration. We hypothesize that the
absence of dentin bridging is due to adhesive-resin-induced apoptosis of cells
responsible for pulp healing and dentin regeneration. Mouse odontoblast-like cells
(MDPC-23), undifferentiated pulp cells (OD-21), or macrophages (RAW 264.7) were
exposed to SingleBond polymerized for 0–40 seconds. Annexin V and propidium iodide
assays demonstrated that SingleBond induced apoptosis of MDPC-23, OD-21, and
macrophages. The proportion of apoptotic cells was dependent on the degree of
adhesive resin polymerization. Adhesive-resin-induced death of pulp cells was
associated with activation of the pro-apoptotic cysteine protease Caspase-3.
Interestingly, most cells exposed to adhesive resin that did not undergo apoptosis
showed cell-cycle arrest. We conclude that an adhesive resin induces apoptosis and
cell-cycle arrest of cells involved in the regeneration of the dentin-pulp complex
Re-expansion of dried demineralized dentin is required to optimize resin adhesion.
This study tested the hypothesis that bond strengths to dentin depend upon the
ability of experimental HEMA(2-hydroxy-ethyl-methacrylate)/solvent primers to
re-expand the matrix. Dentin surfaces were acid-etched with 37% phosphoric acid for
20 sec, air-dried for 30 sec, primed with either 35/65% (v/v) HEMA/water,
HEMA/methanol, HEMA/ethanol, or HEMA/propanol for 60 sec, and bonded with
4-META-TBBO(4-methacryloyloxyethyl trimellitate anhydride-tri-
The potential advantage of magnetic resonance imaging (MRI) has been limited by artifacts due to the presence of metallic materials. For quantitative evaluation of the magnitude of artifacts from dental casting alloys and implant materials in MR imaging, 11 dental casting or implant materials were imaged by means of 1.5 T MRI apparatus with three different sequences. Mean and standard deviation of water signal intensity (SI) around the sample in the region of interest (1200 mm2) were determined, and the coefficient of variation was compared for evaluation of the homogeneity of the SI. A variety of artifacts with different magnitudes was observed. Only one of the samples, composed mainly of Pd, In, and Sb, showed no artifacts in all imaging sequences. We concluded that selection of specific dental casting alloys according to their elemental compositions could minimize the metal artifacts in MRI; however, titanium alloys currently pose a problem with respect to causing MRI artifacts.
A novel inhibitor of apoptosis, survivin, plays a role in oncogenesis. To determine
the potential involvement of survivin in oral carcinogenesis, we investigated the
distribution of survivin protein expression in oral squamous cell carcinomas (OSCCs)
and oral pre-malignant lesions. The mRNA expression level and methylation status of
the gene also were evaluated in OSCCs and OSCC-derived cell lines. In
immunohistochemistry, 58% of tumors and 37% of pre-malignant lesions examined were
positive for survivin, while no immunoreaction was observed in corresponding normal
tissues. The reverse-transcription/polymerase chain-reaction revealed similar changes
in
It has been reported that there is a relationship between a single-nucleotide polymorphism (SNP) in the promoter region of the CD14 gene at position -159 (C→T) and infectious diseases. The aim of the present study was to test the hypthesis that expression of this SNP correlates with periodontal disease in a Japanese population. The CD14 genotype was determined in 163 subjects with periodontitis and in 104 age- and gender-matched control subjects without periodontitis. The genotype distribution and allele frequency within the periodontitis patients were not significantly different from those of control subjects. There was, however, a significant difference in the genotype distribution between young patients (< 35 yrs) and older patients (≥ 35 yrs). These findings suggest that CD14 -159C/T polymorphism is not related to the development of periodontitis in a Japanese population, but that, within the periodontitis subjects, expression of the SNP may be related to early disease activity.
Elevator muscle activity
Oral mucosa heals faster than does skin, yet few studies have compared the repair at
oral mucosal and cutaneous sites. To determine whether the privileged healing of oral
injuries involves a differential inflammatory phase, we compared the inflammatory
cell infiltrate and cytokine production in wounds of equivalent size in oral mucosa
and skin. Significantly lower levels of macrophage, neutrophil, and T-cell
infiltration were observed in oral
PTHrP is a key factor regulating the pace of endochondral ossification during skeletal development. Mandibular advancement solicits a cascade of molecular responses in condylar cartilage. However, the pace of cellular maturation and its effects on condylar growth are still unknown. The purpose of this study was to evaluate the pattern of expression of PTHrP and correlate it to cellular dynamics of chondrocytes in condylar cartilage during natural growth and mandibular advancement. We fitted 35-day-old Sprague-Dawley rats with functional appliances. Experimental animals with matched controls were labeled with bromodeoxyuridine 3 days before their death, so that mesenchymal cell differentiation could be traced. Mandibular advancement increased the number of differentiated chondroblasts and subsequently increased the cartilage volume. Higher levels of PTHrP expression in experimental animals coincided with the slowing of chondrocyte hypertrophy. Thus, mandibular advancement promoted mesenchymal cell differentiation and triggered PTHrP expression, which retarded their further maturation to allow for more growth.
Interleukin-10 regulates pro-inflammatory cytokines, including those implicated in
alveolar bone resorption. We hypothesized that lack of interleukin-10 leads to
increased alveolar bone resorption. Male interleukin-10(−/−) mice, on 129/SvEv and
C57BL/6J background, were compared with age-, sex-, and strain-matched
interleukin-10(+/+) controls for alveolar bone loss. Immunoblotting was used for
analysis of serum reactivity against bacteria associated with colitis and
periodontitis. Interleukin-10(−/−) mice had significantly greater alveolar bone loss
than interleukin-10(+/+) mice (p = 0.006). The 30–40% greater alveolar bone loss in
interleukin-10(−/−) mice was evident in both strains, with C57BL/6J
interleukin-10(−/−) mice exhibiting the most bone loss. Immunoblotting revealed
distinct interleukin-10(−/−) serum reactivity against
Priming with tumor antigens is one of the most important strategies in cancer immunotherapy. To enhance tumor antigenicity, OK-432, a streptococcal preparation, was coupled to squamous cell carcinoma (KLN-205) by means of a 0.2% glutaraldehyde method. The purpose of this study was to investigate whether OK-432-conjugated tumor vaccines could induce tumor-specific immunity. Our originally developed mouse tongue cancer model was used throughout this work for the analysis of antitumor effects. Prepared OK-432-conjugated KLN-205 vaccines were immunized 3 times to DBA/2 mice. The results showed that the KLN-205 vaccines induced cytolytic activity and strongly suppressed both KLN-205 tumor incidence and growth, and survival of the mice was improved. Moreover, the histological results showed that a greater number of lymphocytes had infiltrated around tumor cells by 24 hours after tumor inoculation in the vaccine group. These results suggest that immunizations with KLN-205 vaccines increase the antitumor effects against tongue cancer.
Genes expressed by human periodontal ligament fibroblasts (HPFs) are likely to be
associated with specific functions of the ligament. The aim of this study is to
profile genes expressed highly by HPFs. A library (6 × 103 pfu) was
constructed, followed by subtraction of HPF cDNAs with human gingival fibroblast
(HGF) cDNAs. Reverse-dot hybridization revealed that 33 clones expressed higher
levels of specific mRNAs in HPFs than in HGFs. These were mRNAs for known genes,
including several associated with maturation and differentiation of cells. None had
been reported in PFs. One clone, PDL-29, identified as a COX assembly factor, showed
much stronger mRNA expression in HPFs than in HGFs in culture. In rat periodontium,
however, PDL-29 mRNA expression was similar in PFs and GFs. These results suggest
that HPFs express many previously unreported genes associated with maturation and
differentiation, but expression can differ
Periodontal ligament tissue is remodeled on both the tension and compression sides of
moving teeth during orthodontic tooth movement. The present study was designed to
clarify the hypothesis that the expression of MMP-8 and MMP-13 mRNA is promoted
during the remodeling of periodontal ligament tissue in orthodontic tooth movement.
We used the
TGF-β1 released from dentin degraded by bacterial or iatrogenic agents is suspected to influence dental pulp response, including the modulation of cell migration. To determine the consequences of TGF-β1 action on pulp immune cells, we analyzed, by immunohistochemistry, the effect of transdentinally diffusing TGF-β1 on their localization in a human tooth slice culture model. TGF-β1 induced an accumulation of HLA-DR-positive cells in both odontoblast and subodontoblast layers of the stimulated zone. Together with HLA-DR, these cells co-expressed Factor XIIIa and CD68, two features of immature antigen-presenting dendritic cells (DC), as well as the TGF-β1 specific receptor TβRII. In contrast, no effect could be detected on the localization of either mature DC-LAMP-positive DC or of T- and B-lymphocytes. Analysis of these data suggests that TGF-β1 released from dentin degraded by bacterial or iatrogenic agents could be involved in the immune response of the dental pulp resulting from tooth injury.
Age-related changes in mastication-induced brain neuronal activity have been suggested. However, in humans, little is known about the anatomical regions involved. Using fMRI during cycles of rhythmic gum-chewing and no chewing, we have examined the effect of aging on brain regional activity during chewing in young adult (19–26 yrs), middle-aged (42–55 yrs), and aged (65–73 yrs) healthy humans. In all subjects, chewing resulted in a bilateral increase in the BOLD signals in the sensorimotor cortex, cerebellum, thalamus, supplementary motor area, and insula, and a unilateral increase in the right prefrontal area. In the first three regions, the signal increases were attenuated in an age-dependent manner, whereas, in the right prefrontal area, the converse was seen. The remaining two regions showed no significant differences with ages. These results indicate that chewing causes regional increases in neuronal activity in the brain, some of which are age-dependent.
