PubMed Health⌕ Search

Biomedical subjects

J S Coon

Publications and source records attributed to J S Coon.

At least 19 recordsLinked to original sources

Temperature alters lipopolysaccharide-induced cytokine secretion by RAW 264.7 cells.

Local and systemic temperature change is associated with the immune response to infection, but the role of temperature remains poorly understood. To study the effect of temperature on macrophage activation by lipopolysaccharide (LPS), RAW 264.7 cells were incubated with LPS at different temperatures and secretion of three cytokines was measured. Incubation at 31 degrees C increased tumour necrosis factor (TNF) secretion when compared with 37 degrees C, while cells exposed at 39 degrees C secreted less TNF. Interleukin-6 (IL-6) secretion was less at 31 degrees C than at 37 degrees C and remained unchanged at 39 degrees C. Interleukin-10 secretion was depressed on either side of 37 degrees C. Only IL-6 secretion was sensitive to preincubation temperature effects. The kinetics of cytokine secretion and steady-state mRNA analysis indicated potentially different mechanisms of temperature regulation for TNF and IL-6.

Animals↗

Abnormalities of molecular regulators of proliferation and apoptosis in carcinoma of the oral cavity and oropharynx.

OBJECTIVE: Abnormalities in genes regulating cell proliferation and death may affect disease outcome in squamous cell carcinoma (SCC) of the head and neck. METHODS: Proliferative activity (Histone H3 in-situ-hybridization (HISH) labeling index (LI)) and the genes and/or gene products of Cyclin D-1, c-erbB-2, Bcl-2, p21, and p53, were investigated in 35 patients with SCC of the oral cavity and oropharynx, previously studied for p27 expression. RESULTS: Overexpression or very low expression of Cyclin D-1 was associated with unfavorable disease outcome and shorter time-to-recurrence. High c-erbB-2 expression was significantly associated with shorter overall survival and was synergistic with low p27 expression. Bcl-2, HISH LI, p21 expression, and p53 mutation and protein analysis were not significantly predictive, but there were trends suggesting shorter disease-free/overall survival for patients with undetectable Bcl-2, high HISH, and mutant p53. CONCLUSIONS: Several cell proliferation and death regulators appeared to predict disease outcome. Limited evidence of cooperativeness among regulators was also seen.

Adult↗

Prognostic significance of Bcl-2 and p53 expression in advanced laryngeal squamous cell carcinoma.

BACKGROUND: Proteins regulating the cell cycle and cell death are frequently abnormally expressed in cancer. Several of these, particularly p53 and Bcl-2, have been widely suggested as possible prognostic markers in diverse human malignancies. Their role in predicting outcome in squamous cell carcinomas of the head and neck is unclear and may depend on the location, stage, and treatment of the tumor. METHODS: To assess this question specifically for advanced squamous cell carcinoma of the larynx, we studied 69 patients with stage III or IV tumors, all but 6 of whom were treated with surgery plus postoperative irradiation by a single physician. We studied the patients retrospectively to test the association between expression of Bcl-2 and p53, as assessed by immunohistochemistry, with treatment outcome and survival. RESULTS: Twenty of the 69 patients died from their tumor (poor outcome); the rest were alive and tumor free at the last follow-up or died of unrelated causes without clinical tumor recurrence (good outcome). Fourteen tumors had detectable Bcl-2 expression, including 8 scored as overexpressors. Thirty-nine tumors overexpressed p53. Expression of neither Bcl-2 nor p53 was associated with outcome, overall survival, or disease-free survival. Only tumor stage was significantly associated with outcome and disease-free survival. CONCLUSION: These data indicate that assessing expression of p53 or Bcl-2 is unlikely to be prognostically useful for surgically treated advanced laryngeal carcinoma.

Adult↗

A chemical inhibitor of p53 that protects mice from the side effects of cancer therapy.

Chemotherapy and radiation therapy for cancer often have severe side effects that limit their efficacy. Because these effects are in part determined by p53-mediated apoptosis, temporary suppression of p53 has been suggested as a therapeutic strategy to prevent damage of normal tissues during treatment of p53-deficient tumors. To test this possibility, a small molecule was isolated for its ability to reversibly block p53-dependent transcriptional activation and apoptosis. This compound, pifithrin-alpha, protected mice from the lethal genotoxic stress associated with anticancer treatment without promoting the formation of tumors. Thus, inhibitors of p53 may be useful drugs for reducing the side effects of cancer therapy and other types of stress associated with p53 induction.

Animals↗

Prognostic significance of p27 expression in carcinoma of the oral cavity and oropharynx.

OBJECTIVE: To study the role of p27, a cyclin-dependent kinase inhibitor, as a prognostic indicator in squamous cell carcinoma of the oral cavity and oropharynx. STUDY DESIGN: Retrospective review of 35 patients with squamous cell carcinoma of the oral cavity and oropharynx who presented to Rush-Presbyterian-St. Luke's Medical Center, Chicago, Illinois, between 1986 and 1995. METHODS: Inclusion criteria were the availability of clinical information, archival pretreatment biopsy material, and a minimum follow-up of 24 months. p27 staining was scored for frequency and intensity of tumor cell expression following immunoperoxidase staining using standard techniques. Samples of squamous epithelium from the uvula of 15 nonsmoking patients without past or present squamous cell carcinoma were used as normal controls. RESULTS: The association of p27 staining and other factors with response to treatment was evaluated by Fisher's Exact Test and with overall and disease-free survival by the Kaplan-Meier method with multivariate Cox regression. Low levels of p27 expression correlated significantly with unfavorable treatment response (P<.0001), shorter overall survival (P = .0001), and shorter disease-free survival (P = .003). Tumor site (alveolus) was also associated with shorter disease-free (though not overall) survival, but the association with p27 was independent of stage and site in multivariate analysis.

Adult↗

Tumor angiogenesis and p53 mutations: prognosis in head and neck cancer.

OBJECTIVES: To assess how p53 gene mutations and microvessel density (MVD) may be used as prognostic markers for the study and management of head and neck squamous cell carcinomas and to investigate putative associations between p53 gene mutations and MVD and the relationship of these factors to tumor response to radiotherapy and/or chemotherapy at 6 weeks. PATIENTS AND DESIGN: Thirty-nine patients with squamous cell carcinoma of the head and neck, stages I to IV, who were examined at Rush-Presbyterian-St Luke's Medical Center, Chicago, Ill, and its affiliated hospitals between 1993 and 1995 were monitored. Mutations in the p53 gene were identified by microdissection of tumor cells on frozen sections, followed by single-strand conformation polymorphism analysis of the products of polymerase chain reaction amplification of exons 5 to 9. The microvessels were immunostained with monoclonal antibodies to factor VIII and/or CD31. Microvessel counts were done by 2 investigators blinded to each other's counts and to the p53 gene status. Intratumoral or peritumoral microvascular "hot spots" were assessed and counts were done with an ocular grid in 3 x 200 fields of hot spots by each investigator. The mean of the highest values was considered. Statistical analysis was done with the Wilcoxon rank sum test, the log-rank test, and proportional hazard models. RESULTS: Of the 39 patients, 13 had mutations in exons 5 to 9. Mutations in the p53 gene were associated with unfavorable overall (P=.003) and disease-free (P=.02) survival. A strong inverse relationship was seen between MVD and p53 mutations (P=.01). No statistically significant relationship was seen between mean MVD and overall and disease-free survival. The response to therapy differed significantly (P=.03) by p53 mutations, whereas there was no statistical significance with MVD counts. CONCLUSION: In this study a strong inverse relationship was seen between MVD and p53 mutations. p53 Mutations in exons 5 through 9 were associated with unfavorable survival, whereas MVD showed no association with survival.

Adult↗

Regulators of proliferation and apoptosis in carcinoma of the larynx.

Expression of interrelated gene products regulating cell proliferation and apoptosis may be disordered in squamous cell carcinoma (SCC) of the larynx compared with normal squamous mucosa. Certain of these abnormalities, alone or in combination, may be of prognostic significance in low-stage carcinomas of the larynx. A retrospective study of archival material was made. Expression of the Bcl-2 family of apoptosis-related genes (bcl-2, bcl-X, mcl-1, and bax) and the proliferation- and apoptosis-related genes p53 and cyclin D-1 were determined in 40 low-T-stage laryngeal carcinomas and in uvular epithelium from patients without SCC. Among the antiapoptotic members of the Bcl-2 family, Bcl-X and Mcl-1 showed more intense and widespread staining than Bcl-2 itself in both normal squamous mucosa and SCC. The well-ordered expression patterns of Bcl-2-related proteins found in normal epithelium were lost in SCC, and patterns of expression varied widely among individual tumors. Also, mean expression levels for Bax and cyclin D-1 were significantly lower than in normal epithelium (P = .036 and P = .009, respectively), whereas expression of p53 was higher in tumors (P = .034). Expression of Bcl-X and Mcl-1 was greater in poorly differentiated than in well-differentiated tumors (P = .014 and P = .031, respectively). No associations were seen between marker expression patterns and clinical outcome in this group of patients. Bcl-x and Mcl-1 appear to be the most abundantly expressed antiapoptotic proteins of the Bcl-2 family in both normal squamous mucosa and SCC of the larynx. Multiple genes regulating proliferation and apoptosis are expressed abnormally in laryngeal SCC compared with normal epithelium. In particular, loss or measurable decrease in expression of the proapoptotic protein Bax in tumors may contribute to the deranged growth control of SCC. Further study is needed to evaluate the prognostic significance of particular patterns of disordered expression of proteins regulating proliferation and apoptosis in SCC of different head and neck sites.

Adult↗

Activation of the LRP (lung resistance-related protein) gene by short-term exposure of human leukemia cells to phorbol ester and cytarabine.

Treatment-induced secondary drug resistance of tumor cells is a major cause of relapsed disease and therapeutic failure in cancer patients. It has been shown that the expression of the multidrug resistance MDR1/P-glycoprotein gene could be induced by short-term in vitro exposure of cells to protein kinase C (PKC) agonists or different chemotherapeutic drugs. We studied whether other genes involved in drug resistance are regulated by similar signaling pathways. Transient (up to 24 h) treatment of HL-60 or K562 leukemia cells with phorbol 12-myristate 13-acetate (TPA) resulted in increased steady-state level of LRP (lung resistance-related protein) mRNA and protein. Among conventional chemotherapeutic drugs tested, only cytarabine (Ara C) induced the LRP mRNA expression though no increase in LRP protein was detected. LRP gene activation was not detectable in either H9 T-cell leukemia or in solid carcinoma cell lines (BT-20, ZR-75-1, and SW 1573). None of the agents influenced the levels of MRP (multidrug resistance-associated protein) mRNA in any cell line tested. In HL-60 cells, the LRP activation by TPA or Ara C was sustained for at least 23 days after withdrawal of inducing agents. bis-Indolylmaleimide I, a potent PKC inhibitor, attenuated TPA-induced LRP activation. In contrast, the inhibitor had no effect on the LRP induction by Ara C. These data indicate that the LRP gene can be activated by different mechanisms, some of which involve PKC.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Mutation of p53 in squamous cell cancer of the head and neck: relationship to tumor cell proliferation.

Rapid proliferation of squamous cell carcinomas of the head and neck (SCCHN) during therapy may contribute to treatment failure. We have investigated the presence of p53 abnormalities in patients with SCCHN as a correlate of proliferation rate and other pathologic and clinical variables. p53 Mutation, as determined by polymerase chain reaction and single-strand conformation polymorphism analysis of microdissected frozen sections of tumor biopsies, was significantly associated with a high labeling index, as determined by in vivo infusion of IUdR and BrdU (P = 0.017). p53 Protein expression was detected by immunohistochemistry with two different antibodies, followed by quantitative image analysis. Many cases exhibited strong p53 protein expression in the absence of mutations within the conserved region of the gene, and expression was not related to proliferation. The presence of p53 mutations was related to tumor differentiation in this group of patients.

Adult↗

Prognostic significance of Bcl-2 expression in localized squamous cell carcinoma of the head and neck.

This study was conducted to determine whether Bcl-2 overexpression in localized squamous cell carcinoma of the head and neck (SCCHN) might serve as a marker for tumors unlikely to respond to standard treatment. Tissue samples from 33 patients undergoing surgery or irradiation for early-stage SCCHN during the year 1977 to 1992 were stained for Bcl-2. All patients had either T1N0 lesions of the oral cavity, pharynx, or larynx or T1N0 or T2N0 lesions of the true vocal cords. Of the 33 patients, 26 remained disease-free after at least 3 years of follow-up; the remaining 7 patients developed either tumor recurrence or a second primary tumor, 4 of which were fatal. Twelve patients had tissue specimens staining positive for Bcl-2; 6 of these patients had a poor outcome, and 6 had a good outcome. The relationship between poor outcome and overexpression of Bcl-2 in tumor cells was statistically significant (p = .0047 by Fisher's exact test). For tumors overexpressing Bcl-2, there was no significant difference in recurrence rate between those undergoing surgery and those undergoing radiotherapy as the primary mode of treatment. The overexpression of Bcl-2 in early lesions in this study predicted a cure rate of 50%, as opposed to the generally expected 90%, suggesting that Bcl-2 is a significant prognostic indicator in early SCCHN. Future studies will determine if altering the treatment will improve outcome in these patients.

Adult↗

Cyclin D1 expression in squamous cell carcinomas of the head and neck and in oral mucosa in relation to proliferation and apoptosis.

Deregulation of expression of the cell cycle regulator cyclin D1 (cD1) may be responsible for rapid proliferation of squamous cell carcinoma of the head and neck (SCCHN). We have studied the expression of cD1 in 46 SCCHNs using immunohistochemistry. Before biopsy, the patients received an in vivo infusion of iododeoxyuridine (IdUrd) for cell proliferation assessment. Additionally, the level of apoptosis was estimated using in situ end labeling (ISEL). Among 33 tumors, the proportion of cD1(+) cells varied from 0.5 to 51.3% (19.9 +/- 2.2%). Thirteen tumors did not express cD1. The fraction of S-phase (IdUrd-positive) cells was 26.3 +/- 1.8% in cD1(+) versus 20.0 +/- 2.4% in cD1(-) tumors (P = 0.06). The percentages of cD1(+) cells and of S-phase cells were not correlated (P = 0.37). Apoptosis was detected by ISEL in 15 of 33 tumors studied. ISEL-positive tumors contained a significantly higher proportion of cD1(+) cells (14.9 +/- 2.6%) than cD1(-) ones (7.9 +/- 2.8%; P = 0.03). There was a positive correlation between the percentage of cD1(+) cells and the degree of ISEL (r = 0.54; P < 0.001). In noninvolved oral mucosa, cD1(+) cells were located primarily in the suprabasal layers (29.3 +/- 3.8% versus 1.2 +/- 0. 2% in the basal layer). Only 23 of 44 mucosal specimens contained cD1(+) cells. All cD1(-) samples were proliferatively active and contained IdUrd-labeled cells. The percentage of cD1(+) cells in the oral epithelium from nontumor controls (uvula samples) was significantly higher than in the SCCHN group in both basal (2.4 +/- 0.4%; P = 0.008) and suprabasal (42.7 +/- 3.3%; P = 0.005) layers. Additionally, whereas in uvuli, cD1(+) cells were distributed evenly along the epithelial lining, in SCCHN samples the regions showing cD1 expression alternated with areas in which cD1 expression was undetectable. These data indicate that cD1 expression in SCCHN varies among tumors and is not correlated with cell proliferation. In noninvolved oral mucosa, cD1 expression differs from that in truly normal epithelium obtained from nontumor patients. A correlation between cD1 expression and the extent of ISEL positivity suggests a possible involvement of cD1 expression in the apoptotic pathways.

Adult↗

Accuracy of histone H3 messenger RNA in situ hybridization for the assessment of cell proliferation in human tissues.

Histone H3 mRNA in situ hybridization was compared to a reference method, iododeoxyuridine (IdUrd) immunohistochemistry of tissues labeled in vivo, as a means for assessing the proportion of S-phase cells (labeling index, LI) in oral tumor and normal mucosa. Paraffin sections from 16 patients with oral squamous cell carcinoma were studied. Patients received an IdUrd infusion before the biopsy was taken. Tissue sections were coded before counting the percentages of S-phase cells. A high correlation was found between the results obtained by the two techniques. The average histone H3 and IdUrd LIs of the tumors were 28.5 +/- 2.4% and 29.2 +/- 2.7%, respectively (P = 0.85), with a Spearman correlation coefficient r = 0.95 (P < 0. 0001). The histone H3 LI of the basal layer of normal mucosa was 3.1 +/- 0.8%, whereas the IdUrd LI was 2.7 +/- 0.9% (P = 0.74), with r = 0.78 (P = 0.004). In the suprabasal layers, these parameters were 21. 3 +/- 2.3% and 23.9 +/- 3.2%, respectively (P = 0.56), with r = 0.93 (P < 0.0001). In sections stained for both histone H3 and IdUrd, most cells were double labeled, with very few cells containing only one of the labels. In some specimens, large areas of H3-stained cells did not contain IdUrd-labeled cells, suggesting that during the IdUrd infusion, the precursor did not reach these areas. Two specimens were histone H3 negative. They were also negative when hybridized with beta-actin probe, indicating degradation of mRNAs in these samples. The results of this study demonstrate that the histone H3 mRNA in situ hybridization performed in human formalin-fixed, paraffin-embedded tissues provides the same data as does labeling the tumors in vivo with halogenated pyrimidine.

Biopsy↗

Inhibition of cytarabine-induced MDR1 (P-glycoprotein) gene activation in human tumor cells by fatty acid-polyethylene glycol-fatty acid diesters, novel inhibitors of P-glycoprotein function.

Fatty acid ester surfactants Cremophor EL and Solutol HS 15 were described earlier as modulators of multidrug resistance mediated by MDR1 P-glycoprotein (Pgp). We have shown that the most active components of these polydisperse surfactants are fatty acid-polyethylene glycol-fatty acid diesters (FA-PEG-FA). A new generation of Pgp-surfactant inhibitors of defined structure was therefore synthesized. In the present study we show that these compounds are also able to inhibit up-regulation of MDR1 gene expression caused by cytarabine (ARA-C) and doxorubicin in human tumor cell lines H9 and KB 3-1, which express minimal levels of MDR1 mRNA. The surfactant inhibitors, however, had no effect on the induction of MDR1 gene expression by protein kinase C agonists. Using a set of FA-PEG-FA diesters with various fatty acids and different lengths of the PEG domain, we demonstrated that the activity of diester preparations as inhibitors of drug-induced MDR1 activation was in proportion to their activity as inhibitors of Pgp function. Oleic and stearic acid diesters with PEG 900 (20 ethylene oxide units) were the most potent. The poloxamer analogs of these diesters demonstrated similar effects. In contrast, the well-known, structurally unrelated inhibitors of Pgp activity, verapamil, cyclosporin A and PSC 833, had no inhibitory effect on drug-induced MDR1 activation. The ability of FA-PEG-FA diesters to inhibit both Pgp function and drug-induced MDR1 activation suggests that these chemomodulators may be uniquely useful for the prophylaxis of Pgp-mediated multidrug resistance in drug-treated tumors.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Reversal of multi-drug resistance in vitro by fatty acid-PEG-fatty acid diesters.

Fatty acid ester surfactants, e.g., Cremophor EL and Solutol HS 15, that modulate multi-drug resistance (MDR) have been described; however, the drug potential of these preparations is unclear because of the molecular heterogeneity of these and other commercial surfactants. In previous experiments, an active but still polydisperse preparation, designated CRL 1337, was synthesized by reacting purified oleic acid with a 20-fold molar excess of ethylene oxide. We have subjected this preparation to chromatographic separation, and infrared analysis of the active fractions revealed a significant component of diester structures (fatty acid-PEG-fatty acid). A new generation of diester compounds has now been synthesized. Preparations comprised of 99% diesters were significantly more potent than monoester preparations for MDR modification activity in vitro. As previously determined for ethylene oxide-derived preparations similar to CRL 1337, the nature of the fatty acid domains proved to be important for activity, as was the relative length of the polyethylene glycol domain (which determines the hydrophile-lipophile balance). The ester linkage appeared unimportant since homologous diethers and diamides had activity similar to that of diesters. Stearic acid diester was 1.5- to 7-fold more potent than CRL 1337 when tested in cell proliferation inhibition assays. In light of these structural restrictions on drug potentiation, and since these surfactants are active at relatively low concentrations (below 1 microgram/ml), investigations of their mechanism of action were initiated by exploring specific interactions with P-glycoprotein. Both active and inactive diesters inhibited azidopine labeling of P-glycoprotein, suggesting that fatty acid-PEG diesters can interfere with P-glycoprotein substrate binding. Other attributes of these preparations must contribute to their ability to reverse MDR.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Continued malignant cell proliferation in head and neck tumors during cytotoxic therapy.

The effect of cytotoxic therapy on the proliferation of squamous cell carcinoma of the head and neck in vivo in patients was evaluated before and 15-35 days after the start of therapy. To accomplish this, iododeoxyuridine was administered at t = 0, and bromodeoxyuridine was administered 15-35 days later during treatment with a tumor biopsy obtained for study immediately after each pyrimidine infusion. Monoclonal antibodies specific for the halogenated pyrimidines were used to identify cells that were in the S-phase at the time of the infusions. Eleven patients were studied prior to treatment. Of those, the intratreatment biopsy of eight patients contained tumor tissue. In the other three patients, tumor tissue was not present in the second biopsy. Continued precursor incorporation into DNA-synthesizing cells during treatment was detected in six of eight tumor specimens. In two tumor specimens, an increase in the percentage of S-phase cells was noted, in two specimens tumor cells synthesizing DNA were not detected, and in four specimens the percentage of S-phase tumor cells was lower than that in the pretherapy specimen. Patients in whom there were no S-phase cells detected during treatment or in whom no tumor was detected in the second biopsy had a favorable treatment outcome in comparison to those patients in whom continued tumor proliferation during treatment was detected. The number of cells in S-phase prior to the initiation of treatment was not predictive of whether or not proliferation would continue during cytotoxic therapy. Evidence for reentry of kinetically quiescent cells into the cycle during treatment was noted. Additionally, cytotoxic therapy altered the proliferation pattern of normal-appearing mucosa as well. The results of this study demonstrate that tumor cell proliferation does continue in some squamous cell carcinoma of the head and neck during intensive cytotoxic therapy.

Adult↗

Comparison of solutol HS 15, Cremophor EL and novel ethoxylated fatty acid surfactants as multidrug resistance modification agents.

Some well-known fatty acid ester surfactants, e.g., Cremophor EL and Solutol HS 15, are modulators of multidrug resistance in vitro and in vivo. Because they are polydisperse, and their active component(s) have not been identified, the therapeutic potential of such surfactants is unclear. To better define the active components of Solutol HS 15 and to make more potent surfactant multidrug resistance modulators, highly purified C-18 fatty acids were esterified with ethylene oxide at 5-200 molar ratios. Unexpectedly, ethylene oxide esters of pure 12-hydroxy stearic acid, the major components of Solutol HS 15, displayed negligible resistance modification activity compared with Solutol HS 15 itself or to stearic and oleic acid esters synthesized under identical conditions. Since oleic acid esters appeared to have good activity, a series of these compounds was prepared to determine the optimal ethylene oxide/fatty acid ratio. The optimal ratio was found to be 20 mole ethylene oxide: I mole fatty acid, with a steep decline in activity for products made with ratios above and below the optimum. The most active oleic acid ester, designated CRL 1337, was 8.4-fold as potent as Solutol HS 15 and over 19-fold as potent as Cremophor EL in promoting rhodamine 123 accumulation in multidrug-resistant KB 8-5-11 cells in vitro. Our results show that the structure of the hydrophobic domain (fatty acid) of surfactants as well as its hydrophile-lipophile balance are critical in determining the potency of surfactants as reversing agents.

Antineoplastic Agents↗

Reversal of multidrug resistance phenotype by surfactants: relationship to membrane lipid fluidity.

Previous studies have suggested that multidrug resistance (MDR) reversal by polyoxyethylene surfactants involves alterations in plasma membrane lipid physical state of resistant cells as one of the possible mechanism(s). To date, however, a detailed and critical examination of the relationship between membrane lipid fluidity and MDR reversal by these surfactants has not been performed. In the present studies, therefore, a series of experiments were conducted to critically examine the role of membrane lipid physical state in MDR reversal by employing a unique class of clinically important nontoxic lipophilic surfactants and the KB-8-5-11 drug-resistant cell line. MDR reversal was assessed by rhodamine-123 uptake. The effect of surfactants on plasma membrane lipid fluidity of these cells was assessed utilizing a fluorescence polarization technique with fluorophores DPH, TMA. DPH, 2-AS, and 12-AS. Our studies demonstrated that: (i) in vitro addition of active MDR-reversing surfactants (Solutol HS-15, Tween 40, and Cremophor EL, 10 micrograms/ml each) decreased lipid fluidity of isolated crude plasma membranes of resistant cells; (ii) the inactive surfactants (octylglucoside, hecameg) failed to influence membrane lipid fluidity; (iii) cells grown in the presence of active surfactants also exhibited a decreased plasma membrane lipid fluidity as measured with intact cells utilizing the probe TMA.DPH; and (iv) active surfactants did not influence lifetimes of the excited state of the fluorophores. These findings demonstrate that decrease of the plasma membrane lipid fluidity of KB 8-5-11 resistant cells may be one of the important mechanism(s) of MDR reversal by polyoxyethylene surfactants.

Cell Line↗

In vivo labelling with halogenated pyrimidines of squamous cell carcinomas and adjacent non-involved mucosa of head and neck region.

The frequency and distribution of labelled cells were studied immunohistochemically in 37 squamous cell carcinomas (SCC) of head and neck after in vivo infusion of IdUrd and BrdUrd. Tumours were classified according to their labelling patterns. Low and moderate grade SCC consisted of tumour islands separated by interstitial tissue. In some tumours labelled cells only appeared near the basal layer while in others proliferative cells were evenly distributed within the neoplastic island. In anaplastic carcinomas labelled cells were distributed either randomly or around blood vessels (cord structures). While the basal layer in adjacent normal epithelium contained very few labelled cells (LI = 1.6 +/- 0.2%), the LI of basal cells in tumour islands were much higher than the average LI of the tumour (47.2 +/- 2.8% and 23.8 +/- 1.6%, respectively). In patients who had received cytotoxic therapy up to two months before the biopsy, the LI in the basal layer of normal epithelium was 19.0 +/- 3.5%. In sequential biopsies obtained 1-2 weeks after the infusion of IdUrd and BrdUrd some labelled tumour cells were found in necrotic foci and in pearl structures. Additionally, in six tumours, we found areas of cells labelled with IdUrd alone, even though the IdUrd infusion had been followed by a BrdUrd infusion 1 h later. This is in agreement with the phenomenon of intermittent tumour blood flow described earlier in experimental tumours.

Biomarkers, Tumor↗