Changes in dividing cells of the olfactory epithelium from guinea pigs of different ages were examined by immunohistochemical
staining using anti-proliferating cell nuclear antigen antibody. Numerous dividing cells were scattered diffusely in the basal
layer of the olfactory epithelium at 1 and 2 months following birth and then gradually decreased with maturation until 4 months.
Findings then remained constant between 4 and 24 months. Subsequently, cell numbers were found to decrease as animals became
older. The number of olfactory receptor cells did not vary significantly between 1 and 30 months. Although no correlation
could be found between the numbers of dividing cells and olfactory receptor cells, it is still possible that the longevity
of the olfactory receptor cells changes to maintain the overall size of the neuronal population.
Received: 18 February 1998 / Accepted: 9 April 1998 相似文献
Squamous cell carcinomas of the head and neck have been found to show a high expression of the receptor for epidermal growth
factor (EGF). This overexpression of the receptor has been associated with malignant transformation of cells, although there
is still debate as to what extent this receptor takes part in the proliferation of malignant cells and which function it fulfills.
The factors which determine receptor-ligand interaction are also not clearly defined. That the extracellular domain of the
EGF receptor carries carbohydrate or sialoglycan structures might be important for function of the receptor. Since tumor specific
enzymes can possibly alter such structures, it was the aim of our study to investigate the role of these structures on the
EGF receptor during the proliferation of head and neck carcinomas. We used the human laryngeal squamous carcinoma cell line
HLaC 79 and altered, for the first time, specific glycan structures with sialidase α-2,3 and α-2,6, causing desialylation.
Changes were also produced by endo-β-galactosidase and sialyltransferase. Findings were monitored by labeling with bromo-deoxyuridine.
To determine receptor affinity, 125I-labeled EGF was employed. Results showed that both cell proliferation and receptor affinity depended on the level of sialylation
of the receptor carbohydrate side chains. Desialylation led to a statistically significant reduction of tumor cell proliferation
to 65 ± 33% (P < 0.01), while receptor affinity decreased to 70 ± 26% (P < 0.01).The importance of EGF receptor for the proliferation of malignant cells seems to depend on the level of sialylation
of glycan structures on receptor protein. A release of enzymes by tumor cells may then produce auto-control of tumor proliferation
on its own.
Received: 5 November 1997 / Accepted: 21 April 1998 相似文献
The cytotoxic and anti-proliferative effects of high-energy pulsed ultrasound (HEPUS) on human squamous cell carcinoma cells
cloned from the hypopharynx (FaDu) and benign connective tissue cells (fibroblasts) were investigated in vitro. Sonication
was carried out using an experimental piezoelectric, self-focusing burst-signal transducer. To increase the induction of cavitation,
the transducer used was specifically designed to produce multiple oscillations with a high negative pressure amplitude. In
both cell lines tested, the application of 100, 800 and 2000 pulses resulted in a high reduction of vital cells. After 2000
pulses, 4.0 ± 1.1% of the fibroblasts but only 2.0 ± 0.4% of the FaDu cells survived HEPUS exposure. A postexposure inhibiting
effect of HEPUS for 10 days on the proliferation of surviving cells was noted for the FaDu cells exposed to 2000 pulses, but
not as much for the fibroblasts. These findings support the hypothesis that human squamous cell carcinoma cells of the hypopharynx
might be more sensitive to HEPUS than fibroblasts and that total tumor cell ablation might be possible in vitro given a sufficient
number of HEPUS pulses.
Received: 18 November 1997 / Accepted: 21 April 1998 相似文献
Purpose: The aim of our study was to determine if paclitaxel could be used as a radiosensitizer in vivo.
Materials and methods: Paclitaxel was tested as a single agent and combined with an X-ray treatment. Paclitaxel was administered i.p. in doses from 30 to 120 mg/kg b.w. to (C3D2F1) mice bearing spontaneous mammary carcinoma. Tumor growth delay (TGD) or tumor control dose (TCD50, radiation dose needed to induce local tumor control in 50% of irradiated animals) and moist desquamation dose (MDD50, radiation dose needed to induce serious moist desquamation in 50% of the non-tumor-bearing feet) were the endpoints. DNA flow cytometric analysis was performed.
Results: DNA analysis demonstrated a G2/M block of tumor cells and a depletion of cells in S phase, with a maximum at 24 h from paclitaxel administration. Administering paclitaxel, in graded doses, 15 min before a 10-Gy X-ray treatment resulted in a linear regression line, almost parallel to that with paclitaxel alone, with a growth delay of about 6 days. In contrast, varying the X-ray dose with a constant paclitaxel injection (45 mg/kg b.w.) treatment showed some degree of synergism as the linear regression curves diverged. Interval time and sequence between paclitaxel administration and a 10 Gy X-ray treatment did not influence TGD. Protocols with paclitaxel at 30, 45, or 60 mg/kg were combined with radiation treatments at various doses (from 10 to 65 Gy). Values of TCD50 varied from 50.8 Gy for X-ray alone to 31.8 Gy for paclitaxel 60 mg/kg + X-ray. No differences were observed among MDD of different protocols.
Conclusions: These results suggest that, under some conditions, paclitaxel combined with radiation can show superadditive effects and this result combined with the lack of severe normal tissue damage indicate that a favorable therapeutic gain can be obtained. 相似文献
Cells of the human tumor cell line RMG-1, derived from a clear-cell adenocarcinoma of the ovary, were injected intraperitoneally into nude mice, and the cells obtained from the tumor nodules in the mesenterium were found to form a larger number of, and larger-sized, tumor nodules than the original RMG-1 cells. The RMG-1-h cells, transferred into culture from the tumor nodules after a 4th in vivo passage, showed a dissemination potential as high as that of cells disseminating directly from the tissues, and exceedingly higher than that of RMG-1 cells. To assess the molecular bases of the different biological properties of RMG-1 and RMG-1-h cells, we compared the content and expression of various carbohydrate antigens in both cells. The chromosomal profile of RMG-1-h cells revealed their human origin and was identical to that of the original RMG-1 cells. In contrast to the broad histogram for the Lex-bearing cells among RMG-1 cells in flow cytometry, the weakly and moderately positive cells toward anti-Lex antibody were found to be eliminated from the histogram for the RMG-1-h cells, resulting in the enrichment of cells strongly expressing Lex, which may account for the high dissemination potential. In addition, the adhesion of RMG-1 cells to mesothelial cells was found to be significantly inhibited by pretreatment of the cells with anti-Lex antibody, indicating Lex-mediated cell-to-cell interaction between ovarian cancer cells and mesothelial cells. By TLC-immunostaining, two Lex-glycolipids, III3Fucα-nLc4Cer and V3Fucα-nLc6Cer were detected in both RMG-1 and RMG-1-h cells, and their total concentrations were not significantly different from each other. However, the hydrophobic moieties of Lex-glycolipids in RMG-1-h cells were different from those in RMG-1 cells, suggesting that a difference in the structure of the hydrophobic moieties of Lex is partly involved in the enhanced reactivity of RMG-1-h cells toward anti-Lex antibody. Thus, the high dissemination potential of ovarian cancer cells was shown to be mediated by the Lex-determinant and the Lex-bearing cells are enriched by repeated in vivo passage of the cells into nude mice. 相似文献
GAP-43 is expressed in proliferating neuroblasts in vivo and in vitro, but its role during early neurogenesis has not been investigated. Here we show that neuroectodermal differentiation stimulated by retinoic acid (RA) in the embryonal carcinoma (EC) line P19 is accompanied by upregulation of GAP-43 expression in neuroepithelial precursor cells. In contrast, when upregulation of GAP-43 expression was prevented in 3 independent P19 lines because of a targeted insertion into the gene, generation of neuroepithelial precursors was inhibited. Consequently, neuronal number was significantly decreased, neuronal morphology was abnormal and fewer than 20% of all neurons were able to initiate neuritogenesis. Extracellular matrix (ECM) was unable to rescue initiation of neuritogenesis in the mutant cells, however those neurites that were extended responded normally to ECM-stimulated neurite outgrowth-promoting signals. These data suggest that GAP-43 function is required for commitment to a neuronal phenotype as well as initiation of neurite extension. However, stimulation of neurite outgrowth by ECM in P19s occurs independently of GAP-43. 相似文献