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Biomedical subjects

F Lin

Publications and source records attributed to F Lin.

At least 91 records · Page 5Linked to original sources

Detection of swine vesicular disease virus RNA by reverse transcription-polymerase chain reaction.

Two polymerase chain reaction (PCR) assays are described for the detection of swine vesicular disease virus (SVDV) RNA, a reverse transcription PCR (RT-PCR) and a reverse transcription nested PCR (RT-nPCR). Both the RT-PCR and RT-nPCR were able to detect representative members of each of seven phylogenetically distinct groups of SVDV and gave negative results with a range of porcine enteroviruses and of viruses responsible for vesicular conditions in pigs. When combined with a commercial kit for rapid RNA extraction, the RT-PCR was useful for the detection of SVDV in samples of epithelium and faeces from animals with clinical SVD. The addition of a second amplification step to create a nested PCR (RT-nPCR) increased the sensitivity of the technique for the detection of viral RNA (vRNA) in SVDV infected tissue culture fluid by a factor of approximately 1,000, for 100 TCID50 for the RT-PCR to 0.1 TCID50 for RT-nPCR. When combined with a more elaborate extraction procedure for RNA, the RT-nPCR was considerably more sensitive than virus isolation in tissue culture for detecting SVDV in nasal swabs, tissues, and faeces collected from pigs between 7 days and 176 days after infection with a recent European isolate of SVDV. However, stringent conditions are necessary for carrying out the RT-nPCR to minimise the possibility of contamination.

Animals↗

Lipid peroxidation in photodynamically stressed mammalian cells: use of cholesterol hydroperoxides as mechanistic reporters.

Photodynamic action of merocyanine 540, an antileukemic sensitizing dye, on murine L1210 cells results in the formation of lipid hydroperoxides and loss of cell viability. High-performance liquid chromatography with mercury cathode electrochemical detection was used for determining lipid oxidation products, including the following cholesterol-derived hydroperoxides: 5 alpha-OOH, 6 alpha-OOH, 6 beta-OOH, and unresolved 7 alpha, 7 beta-OOH. Among these species, 5 alpha-, 6 alpha-, and 6 beta-OOH (singlet oxygen adducts) were predominant in the early stages of photooxidation, whereas 7 alpha- and 7 beta-OOH (products of free radical reactions) became so after prolonged irradiation or during dark incubation after exposure to a light dose. These mechanistic changes were studied in a unique way by monitoring shifts in the peroxide ratio, i.e., 7-OOH/5 alpha-OOH, or 7-OOH/6-OOH. When cells (10(7)/ml) were exposed to a visible light fluence of 0.6 J/cm2 in the presence of 10 microM merocyanine 540, 7-OOH/5 alpha-OOH increased by approximately 100% after 2 h of dark incubation at 37 degrees C. The increase was much larger (approximately 250%) when cells were photooxidized after treatment with 1 microM ferric-8-hydroxyquinoline, a lipophilic iron donor, whereas no increase was observed when cells were pretreated with 100 microM desferrioxamine, an avid iron chelator/redox inhibitor. Correspondingly, postirradiation formation of thiobarbituric acid-reactive material was markedly enhanced by ferric-8-hydroxyquinoline and suppressed by desferrioxamine, as was the extent of cell killing. When added to cells after a light dose, chain-breaking antioxidants such as butylated hydroxytoluene and alpha-tocopherol strongly protected against cell killing and slowed the increase in 7-OOH/5 alpha-OOH ratio. It is apparent from these results that (1) the 7-OOH/5 alpha-OOH or 7-OOH/6-OOH ratio can be used as a highly sensitive index of singlet oxygen vs. free radical dominance in photodynamically stressed cells; and (2) that postirradiation chain peroxidation plays an important role in photodynamically initiated cell killing.

Animals↗

The rate and kinetics of molecular response to donor leucocyte transfusions in chronic myeloid leukaemia patients treated for relapse after allogeneic bone marrow transplantation.

We have assessed the molecular response of 30 consecutive patients with chronic myeloid leukaemia (CML) treated for relapse after allogeneic bone marrow transplantation (BMT) by donor leucocyte transfusions (DLT). Response was evaluated by qualitative nested and quantitative competitive RT-PCR for BCR-ABL mRNA at various time intervals before and after DLT. The probability of attaining molecular remission at 2 years was 61% (95% CI 42-78%). Disease state at the time of DLT was significantly associated with response: molecular remission was achieved for 9/10 (90%) patients treated early (cytogenetic or molecular relapse) compared to only 8/20 (40%) patients treated late (haematological relapse; P = 0.009). The Kaplan-Meier estimates of molecular remission at 2 years post DLT for patients treated in early or late relapse were 86.6% and 47.3% respectively (P = 0.004). The median time interval from DLT to molecular remission was 11.0 months (range 2.5-32). Molecular remissions were durable for most (15/17) patients (median follow-up 21.2 months; range 0-55). Two patterns of molecular response were found: a very rapid decline after an initial lag phase or a more gradual decline over a period of several months. We conclude that molecular monitoring is a sensitive indicator of response to DLT; different kinetics of molecular response may reflect disease heterogeneity or differences in the mode of action of DLT.

Bone Marrow Transplantation↗

[p53 gene mutations in BALB/c 3T3 cells transformed by crocidolite].

This study sought to address the relationship between crocidolite and p53 gene mutation. The mutations of p53 gene in 8 BALB/c 3T3 cell lines transformed by crocidolite were analysed. Altogether 11 exons of the gene from 8 cell lines were detected by PCR-SSCP. 7 alterations were found; 2 of them were located in exon 4-6, and 5 in 9-11. Most of the mutations (5/7) were of one more band than that of wild cell from SSCP, and alterations were randomly scattered among the crocidolite doses groups. The results suggest that the presence of a p53 alteration is not related to the dose of crocidolite used. Besides, p53 mutation may occur in a relatively later period of the growth of the transformed cell lines. The results also showed that the mutations occurred predominantly in exons 9-11. This was different from that seen in human mesothelioma where mutations in the exon 5-8 of p53 gene were more frequently observed.

3T3 Cells↗

[Accumulative trends of ephedrine and pesudoephedrine in Ephedra sinica].

In Yi Kezhao Alliance, the content of ephedrine and pseudoephedrine in Ephedra sinica is in a ratio of four to six. The total content of ephedine and pseudoephedrine form cultivated Ephedra sinica is higher than that of wild one, and in direct ratio with the years of plant. For the content enhance of total alkaloids, decreasing irrigation and applying middlingly fertilizer is more effective measure.

Alkaloids↗

Monitoring the efficiency of interferon-alpha therapy in chronic myelogenous leukemia (CML) patients by competitive polymerase chain reaction.

Interferon alpha (IFN-alpha) induces cytogenetic responses of variable degree in patients with CML. We sought to establish the relationship between BCR-ABL transcript numbers measured by competitive two-step reverse transcription polymerase chain reaction (RT-PCR) and cytogenetic status in CML patients treated with IFN-alpha. All 398 samples from 163 patients investigated by RT-PCR were positive for BCR-ABL transcripts. In order to standardize results for variability in RNA and cDNA quality, we quantified total ABL transcripts in each sample as internal control. The BCR-ABL/ABL ratios correlated with the cytogenetic results. Quantitative nested PCR allowed the detection of residual BCR-ABL transcripts in all complete cytogenetic responders on IFN-alpha. We conclude that competitive PCR with internal controls is a reliable method for monitoring patients on IFN-alpha and reduces the need for repeated marrow investigations.

Bone Marrow↗

Alpha1-adrenergic receptor signaling via Gh is subtype specific and independent of its transglutaminase activity.

Tissue transglutaminase (TGase II) is a Ca2+- and thiol-dependent enzyme that catalyzes the post-translational modification of proteins via the formation of epsilon(gamma-glutamyl) lysine bonds. We have shown previously that the GTP-binding protein, Gh, is a TGase II that mediates intracellular signaling by the alpha1B-adrenergic receptor (AR) (Nakaoka, H., Perez, D. M., Baek, K. J., Das, T., Husain, A., Mison, K., Im, M.-J., and Graham, R. M. (1994) Science 264, 1593-1596). Here, we evaluated the ability of Gh as compared with Gq to mediate receptor-stimulated inositol phosphate turnover by the three alpha1-subtypes (alpha1A, alpha1B, and alpha1D). In addition, we questioned if the transglutaminase function of Gh is involved in its receptor signaling activity. A mutant form of a human TGase II cDNA in which the codon for the active site cysteine (Cys277) was replaced by serine was cloned into the mammalian expression vector pMT2'. Compared with wild-type TGase II, no transglutaminase activity was observed with transient transfection of this Cys-->Ser mutant in COS-1 cells. However, like wild-type TGase, the Cys-->Ser mutant mediated receptor-stimulated inositol phosphate turnover when cotransfected with an alpha1B-AR cDNA. Galphaq supported alpha1-AR-mediated inositol phosphate turnover by all three receptor subtypes. By contrast, although both the wild-type and Cys-->Ser construct mediated receptor signaling by the alpha1B AR and alpha1D AR, the alpha1A-AR was unable to interact with Gh. However, a Gh-dependent signaling phenotype could be rescued by a chimeric alpha1A construct in which the third intracellular loop of the alpha1A-AR was replaced by that of the alpha1B-AR. Thus, the signaling function of Gh is independent of its transglutaminase activity and is alpha1-AR subtype specific. This subtype specificity of the interaction between alpha1 ARs and Gh involves important determinants in their third intracellular loops.

Amino Acid Sequence↗

Hyperresistance of leukemia cells to photodynamic inactivation after long-term exposure to hemin.

Merocyanine 540 (MC540)-mediated photodynamic action is a novel approach for purging tumor cells from autologous remission bone marrow explants. The purpose of this study was to evaluate the effects of hemin (ferriprotoporphyrin IX), a potential source of pro-oxidant iron in bone marrow, on in vitro photodynamic inactivation of leukemia cells. Murine L1210 cells exhibited a progressive loss of clonogenicity when irradiated with broad-band visible light in the presence of MC540. Hemin had strikingly different effects on photokilling, depending on its contact time with cells, eliciting a sizable decrease in resistance after short-term (30-min) contact but a marked increase in resistance after long-term (24-h) contact. Similar trends were observed when cells were challenged with glucose/glucose oxidase, indicating that the responses apply to more than one type of oxidative stress. Immunoblot analyses revealed that the levels of inducible heme oxygenase (HO-1) and ferritin heavy (H) chain were substantially elevated 24 h after hemin addition. HO-1 increased relatively rapidly and maximized within 4 h after adding hemin, whereas H-ferritin increased more slowly in parallel with the development of hyperresistance, maximizing after 24-36 h. Desferrioxamine, an avid iron chelator, had no effect on HO-1 induction but inhibited both ferritin induction and the increase in cell resistance, suggesting that HO-mediated release of iron from hemin was necessary for triggering these responses. Spleen apoferritin was taken up by L1210 cells and strongly inhibited photokilling, further implicating ferritin involvement in hyperresistance. Photokilling was accompanied by free radical-mediated lipid peroxidation (thiobarbituric acid reactivity), which could be suppressed substantially by 24-h hemin preincubation. A plausible explanation for the long-term effects of hemin is that excess H-ferritin generated as a result of iron-regulatory protein deactivation sequesters toxic iron, which might otherwise catalyze damaging lipid peroxidation. Chronic oxidative release of hemin from bone marrow erythroid cells could compromise the efficacy of photopurging by making tumor cells more tolerant to photooxidative insult.

Animals↗

p190 BCR-ABL mRNA is expressed at low levels in p210-positive chronic myeloid and acute lymphoblastic leukemias.

One hundred and forty-three patients with p210 BCR-ABL-positive leukemia were studied for coexpression of p190 BCR-ABL mRNA. p190 mRNA was detected in 14 of 16 (88%) patients with chronic-phase chronic myeloid leukemia (CML) at diagnosis, in 10 of 10 (100%) CML patients in blast crisis, in 75 of 107 (70%) CML patients receiving interferon-alpha (IFN-alpha), and 10 of 10 (100%) patients with p210 BCR-ABL-positive acute lymphoblastic leukemia (ALL). Neither p210 nor p190 BCR-ABL transcripts were detected in normal healthy adults (n = 20). The numbers of p190 transcripts determined by competitive PCR in patients with CML were low compared with the numbers of p210 transcripts. The median numbers of p210 and p190 transcripts per unit volume of cDNA in positive samples were 1.0 x 10(5) (range, 15 to 1.4 x 10(6)) and 10 (range, 10 to 2.9 x 10(3)), respectively. The numbers of p190 and p210 transcripts were significantly correlated in individual samples (r = .65, P < .001). The median number of p210 BCR-ABL transcripts was significantly lower in samples negative for p190 BCR-ABL transcripts than in samples in which p190 BCR-ABL transcripts were identified (3.1 x 10(3)[n = 73] v 1.0 x 10(5)[n = 115]; P < .0001). The median ratio of p190 to p210 BCR-ABL mRNA was not significantly different between chronic phase CML (1.9 x 10(-4)) and CML in blast crisis (1.7 x 10(-4)). The median ratio in p210 ALL was also low (1.9 x 10(-3)) but significantly higher than that of CML. We conclude that pl90 BCR-ABL transcripts are frequently present at a low level in p210 BCR-ABL-positive leukemias. p190 mRNA may arise through alternative or missplicing and its presence is probably of no pathogenetic significance.

Adult↗

Kinetics of increasing BCR-ABL transcript numbers in chronic myeloid leukemia patients who relapse after bone marrow transplantation.

We prospectively studied 98 chronic myeloid leukemia (CML) patients after bone marrow transplantation by competitive polymerase chain reaction to detect and quantify leukemia-specific BCR-ABL mRNA. Of 69 patients who had persistently undetectable, decreasing, or low BCR-ABL levels ( < 50 transcripts/microgram RNA) on sequential analysis, one (1%) subsequently relapsed. Of 29 patients who had increasing or persistently high BCR-ABL (> 50 transcripts/microgram RNA) on sequential analysis, 21 (72%) have relapsed (P < .00001). In 19 patients studied sequentially, a constant logarithmic increase in the number of BCR-ABL transcripts was found before relapse, indicating a constant BCR-ABL transcript doubling time. The doubling time for patients relapsing cytogenetically or into chronic phase (median, 24.7 days) was significantly longer than that of patients relapsing into advanced phases (median, 14.7 days; P = .005). Eight patients were treated for relapse by donor leukocyte transfusions. The doubling time of responders was significantly longer than that of nonresponders (P = .017). We conclude that quantification of BCR-ABL transcripts after bone marrow transplantation (BMT) is valuable in predicting relapse: a more rapid BCR-ABL transcript doubling time before relapse might indicate a more aggressive disease.

Biomarkers, Tumor↗

Chromosomal assignment of human nuclear envelope protein genes LMNA, LMNB1, and LBR by fluorescence in situ hybridization.

We have used fluorescence in situ hybridization to establish precise chromosomal localizations for three human genes encoding four different nuclear envelope proteins. Lamin A/C (LMN1, HGMW-approved symbol LMNA) mapped to 1q21.2-q21.3, with a most probable gene assignment to 1q21.3; lamin B receptor (LBR) was localized to 1q42.1; and lamin B1 (LMNB1) was mapped to the interface of bands 5q23.3-q31.1. Assignments were determined by direct placement of signals relative to high-resolution DAPI or G-bands. Comparison of these results of band positions predicted from fractional length measurements to signal placement indicated that more accurate predictions are made using Francke idiograms and that measurement strategy avoids variance due to polymorphic chromosome segments.

Chromosome Banding↗

Comparison of genomic DNA and cDNA for detection of residual disease after treatment of chronic myeloid leukemia with allogeneic bone marrow transplantation.

To test whether patients in remission after allogeneic bone marrow transplantation (BMT) possess a pool of chronic myeloid leukemia (CML) cells that do not express BCR-ABL mRNA, we have compared the results and sensitivity of amplification of BCR-ABL from genomic DNA with conventional reverse transcription-polymerase chain reaction (RT-PCR). Bubble PCR was used to amplify the genomic BCR-ABL translocation breakpoints from chronic-phase DNA of 10 patients with CML who subsequently underwent BMT. After cloning and sequencing of the amplification products, patient-specific ABL primers were synthesized and tested for both specificity and sensitivity in nested or heminested combinations with a variety of primers derived from the major breakpoint cluster region of the BCR gene. In all cases, combinations of primers were selected that enabled the detection of chronic-phase DNA from a specific patient at up to a 10(5)x dilution into DNA from a normal individual. Patterns of residual disease obtained by serial RT-PCR and DNA-PCR analyses of blood and bone marrow samples obtained after BMT were similar for most patients, including one treated for relapse by infusion of donor leukocytes. Of the 24 samples for direct comparison of RT-PCR and DNA-PCR, results were concordant in 19 (79%) cases. Five results were discordant. In two instances, RT-PCR was positive, while PCR from genomic DNA was negative; this discrepancy might have arisen due to the slightly greater sensitivity of RT-PCR compared with DNA-PCR. In three samples from three patients, two of whom had been transplanted in the accelerated phase, PCR from genomic DNA was positive while RT-PCR was negative; this could mean that some CML cells in these samples had a reduced or absent capacity to express BCR-ABL mRNA post-transplant. Of these three patients, one subsequently relapsed; and two are in remission at 21 and 24 months after the discordant result. Thus, the finding of a single DNA-PCR- positive, RT-PCR-negative results does not necessarily predict relapse. Because the great majority of samples (79%) gave concordant results with the two assays, we believe that patients in remission do not generally harbor a substantial pool of CML cells that do not express BCR-ABL mRNA.

Base Sequence↗

Quantification of residual disease in chronic myelogenous leukemia patients on interferon-alpha therapy by competitive polymerase chain reaction.

Interferon-alpha (IFN-alpha) induces cytogenetic responses of variable degree in patients with chronic myelogenous leukemia (CML). We sought to establish the relationship between BCR-ABL transcript numbers measured by competitive 2-step reverse transcription polymerase chain reaction (RT-PCR) and cytogenetic status in CML patients treated with IFN-alpha. A total of 250 peripheral blood and 55 bone marrow samples with 127 Philadelphia chromosome positive (Ph+) and 6 Ph-/BCR-ABL+ CML patients were investigated. Twenty-one patients were studied at diagnosis with IFN-alpha, 24 had a complete cytogenetic response, 21 a partial response, 12 a minor response, 26 no response, and 23 were unknown. Using nested RT-PCR, all 305 samples were positive for BCR-ABL transcripts. To standardize results for variability in RNA and cDNA quantity and quality, we quantified total ABL transcripts in each sample as internal control. The validity of ABL as internal control was shown by comparison with glucose-6-phosphate dehydrogenase transcript levels in 145 samples. The median BCR-ABL transcript numbers (and BCR-ABL/ABL ratios expressed as percentages) were 400/micrograms RNA (O.04%) in complete responders, 20,500/micrograms RNA (7.1%) in partial responders, 170,000/micrograms RNA (21.0%) in minor responders, and 430,000/micrograms RNA (58.7%) in nonresponders (P < .001). The cytogenetic results correlated with the BCR-ABL transcript numbers (r = .82; P < .001) and BCR-ABL/ABL ratios (r = .84; P < .001). Grouping the ratios BCR-ABL/ABL as less than 2%, 2% to 14% and greater than 14% to compare with cytogenetic complete response, partial response, and minor/nonresponse, the concordance between the two methods was 82% (chi2 P< .0001). We conclude that quantitative PCR with internal controls is as sensitive and reliable method for monitoring patients on IFN-alpha and reduces the need for repeated marrow investigations.

Adolescent↗

Autoantibodies from patients with primary biliary cirrhosis recognize a region within the nucleoplasmic domain of inner nuclear membrane protein LBR.

Autoantibodies from rare patients with primary biliary cirrhosis (PBC) recognize LBR, or lamin B receptor, an integral membrane protein of the inner nuclear membrane. Human LBR has a nucleoplasmic, amino-terminal domain of 208 amino acids followed by a carboxyl-terminal domain with eight putative transmembrane segments. Autoantibodies against LBR from four patients with PBC recognized the nucleoplasmic, amino-terminal domain but not the carboxyl-terminal domain. Immunoblotting of smaller fusion proteins demonstrated that these autoantibodies recognized a conformational epitope(s) contained within the stretch of amino acids from 1 to 60. These results, combined with those of previous studies, show that autoepitopes of nuclear membrane proteins are located within their nucleocytoplasmic domains and that autoantibodies from patients with PBC predominantly react with one domain of a protein antigen. This work also provides further characterization of anti-LBR antibodies that have found utility as reagents in cell biology research.

Autoantibodies↗

Normal ranges for vertebral height ratios and prevalence of vertebral fracture in Hong Kong Chinese: a comparison with American Caucasians.

We have established the normal ranges for vertebral height ratios and studied the prevalence of vertebral fracture in 481 Chinese women aged 70-79. Our results were compared with those of an American study with a similar methodology. Lateral spine radiographs centered at T8 and L3 were taken, and the anterior, middle, and posterior vertebral heights of each vertebra from T5 to L4 were measured. The means and standard deviations (SDs) of the anterior to posterior, middle to posterior, and posterior to posterior vertebral height ratios were derived after trimming the extreme values from the distribution. The Chinese had smaller vertebral size than the American Caucasians at all levels. Moreover, the anterior to posterior vertebral height ratios were consistently smaller in the Chinese than in the Americans from T10 onward. The means of other vertebral height ratios in the Chinese were similar to the American Caucasians, but the SDs were greater in the Chinese. The prevalence of vertebral fracture was 29% in the Chinese and 25% in the American Caucasians if a cut-off of 3 SD below the mean for vertebral height ratios was used. We conclude that population-specific means and SD should be used for defining vertebral fracture and that the prevalence of vertebral fracture is similar in Hong Kong Chinese and American Caucasians.

Aged↗

Dietary calcium intake, physical activity and the risk of vertebral fracture in Chinese.

To study the relationship between dietary calcium intake, load-bearing activity, reproductive factors, anthropometric factors and vertebral fracture in Chinese, a case-control study was carried out on 481 women (aged 70-79 years) who lived in three housing blocks under the Geriatric Priority Housing Scheme in Shatin, Hong Kong. Lateral spine radiographs were taken from the T4 to L4 level. Definite and doubtful vertebral fractures were diagnosed when any of the three vertebral height (anterior to anterior, middle to posterior and posterior to posterior) ratios was 3 SD and 2-2.99 SD below the mean respectively. Women with one or more definite fractures were classified as definite cases, those with one or more doubtful fractures were classified as doubtful cases, and the rest as controls. The mean dietary calcium intake and load-bearing activities were obtained by interview, using a structured questionnaire. Detailed information on cigarette smoking, alcohol consumption and reproductive factors was also obtained. The grip strength, body weight and height were measured. Doubtful cases were found to differ little from the controls in their lifestyle and anthropometric factors. The odds ratio (OR) for being a definite case was 2.1 (95% CI = 1.1-3.9) when the dietary calcium intake was in the lowest quartile. The OR was 1.8 (95% CI = 0.8-4.4) for subjects who walked or exercised outdoors for less than an hour a day. Giving birth to or breast-feeding three children or more was protective against definite fracture. The definite cases were significantly lighter and shorter than controls; they also had a weaker grip strength. It is concluded that a low dietary calcium intake was significantly associated with an elevated risk of vertebral fracture, while the effect of infrequent load-bearing activity was uncertain. Giving birth to or breast-feeding three or more children was protective against vertebral fracture in our population.

Aged↗

Correlated flow cytometric analysis of H-ras p21 and DNA ploidy in acute myelogenous leukemia.

The flow cytometric immunoassay was used to study the correlation between the H-ras oncogene product p21 and the DNA ploidy in 30 de novo cases of acute myelogenous leukemia (AML). The results showed that 17 cases were negative for p21 expression and 13 positive for p21. The patients with positive p21 had higher percentage of bone marrow and peripheral blasts and lower peripheral leukocyte count. The expression of p21 had no influence on the therapeutic effect. Before treatment, DNA diploidy occurred in 18 cases including 13 p21 negative ones, and DNA aneuploidy was revealed in 12 cases including 8 p21 positive ones. Patients with positive p21 or having aneuploidy in complete remission were at risk for early relapse. Our results suggest that p21 may be involved in the process of leukemogenesis and progression in AML.

DNA, Neoplasm↗

Effects of epidermal growth factor (EGF) and colony-stimulating factor-1 (CSF-1) on expression of c-fos in rat mandibular molars: implications for tooth eruption.

The c-fos gene is expressed in the dental follicle of the first mandibular molar of rats. Molecules that accelerate tooth eruption, epidermal growth factor (EGF) and colony-stimulating factor-1 (CSF-1), enhance the expression of the c-fos gene in vitro in both a time- and concentration-dependent manner. In vivo, EGF enhances c-fos expression in the follicle from day 0-7 postnatally, but by day 9 the follicle is refractory to this stimulus. Immunostaining reveals that the c-fos gene is translated in the cultured dental follicle cells, with staining seen in the nucleus and the perinuclear region of the cytoplasm. In vivo, immunostaining for c-fos is prominent in the dental follicle early postnatally, with little or no staining seen in the stellate reticulum and dental pulp. By day 10 postnatally, staining for c-fos is greatly reduced in the dental follicle. Thus, the presence of c-fos early postnatally in the tissue required for eruption, the dental follicle, as well as the enhancement of c-fos gene expression in the follicle by EGF or CSF-1, suggests that c-fos plays a role in tooth eruption. That role may be either to promote differentiation of mononuclear cells into osteoclasts needed for eruption or to recruit the mononuclear cells into the follicle.

Animals↗