Search PubMed⌕ Search

Biomedical subjects

T C Hamilton

Publications and source records attributed to T C Hamilton.

At least 37 records · Page 2Linked to original sources

Clinical studies of reversal of drug resistance based on glutathione.

The greater affinity of electrophiles for thiol groups than for hydroxyl or amine groups provides a teleological basis for the evolution of this mechanism to assist in the maintenance of cellular homeostasis. As the most abundant cellular non-protein thiol, glutathione (GSH) is pivotal in the protection of cells from electrophiles created during normal respiration and protection after exposure to environmental mutagens. Mutagens and many anti-cancer drugs, e.g. cisplatin and alkylating agents, have the same target, i.e. DNA. This suggested that one mechanism by which cancer cells might circumvent the action of cancer chemotherapeutic agents would be by increasing their cellular GSH and/or enhanced conjugation of these drugs to this abundant tripeptide. This chapter describes the abundant preclinical data that support this mechanism of resistance to platinum drugs and alkylating agents. This data was the rationale for the development of pharmacologic strategies to lower GSH and inactivate the gluathione-S-transferases to make anti-cancer drugs more effective. The positive outcome of preclinical studies to lower GSH and enhance the activity of melaphalan are described as is the status of on going clinical trials built around this data.

Antineoplastic Agents↗

Recent insights into platinum drug resistance in cancer.

Cisplatin and its analogs have become important components of chemotherapeutic regimens for the treatment of solid tumors, however, their overall effectiveness is limited by the emergence of drug-resistant tumor cells. Resistance to the platinum drugs is multifactorial consisting of mechanisms that prevent the formation of lethal platinum-DNA adducts and mechanisms that operate downstream of the drug/target interaction to promote cell survival. Continued progress in the study of the drug resistance phenotype as well as the development of new platinum analogs may eventually lead to improved therapies and increased survival rates.

Journal Article↗

Growth inhibition and cytotoxicity induced by Bowman-Birk inhibitor concentrate in cisplatin-resistant human ovarian cancer cells.

Bowman-Birk inhibitor (BBI) is a soybean-derived anticarcinogenic protease inhibitor that was shown to potentiate the cytotoxicity of cisplatin in our previous studies. To assess the potential of BBI as a sensitizing agent for the chemotherapy of cisplatin-resistant cancers, we evaluated the effects of a soybean concentrate enriched in BBI (known as BBI concentrate or BBIC) on cell growth and clonogenic survival of a human ovarian cancer cell line, A2780, and its cisplatin-resistant sublines, C30, and C200. The presence of BBI and BBIC in the cell culture, medium reduced the clonogenic survival of the A2780, C30, and C200 cells in a dose-dependent manner and enhanced cisplatin-induced growth inhibition and/or cytotoxicity. BBIC alone showed greater inhibitory effects on growth in the cisplatin-resistant cell lines. These results suggest that BBI and BBIC could be useful agents for the treatment of cancers, especially with cisplatin, in tumors resistant to this important anticancer agent.

Cell Death↗

The biology of ovarian cancer.

The biology of ovarian cancer broadly defined covers essentially all aspects of the disease from how it arises to how it responds to chemotherapy, often becomes refractory to treatment, and ultimately kills the patient. In this article, we take the liberty of discussing many of these issues to some degree in context of the "natural/clinical" history/biology of the disease. We focus on concepts of how the disease develops, efforts to identify histologic changes that may precede the development of overt ovarian cancer, efforts to define how the growth and function of the normal ovarian surface epithelium are regulated to gain insights into how aberrant function of these pathways may contribute to the initiation of the disease, molecular biological studies on clinical ovarian cancer specimens, efforts to experimentally induce the malignant transformation of ovarian surface epithelial cells, and efforts to understand why ovarian cancer is often initially responsive to chemotherapy but ultimately becomes refractory.

Cell Transformation, Neoplastic↗

[Natural history of ovarian adenocarcinomas: from epidemiology to experimentation].

The ovarian carcinogenesis is not well known because the diagnosis is usually delayed to an advanced stage with a lot of chromosomic abnormalities. On the other hand, there is a lack of animal models and preneoplastic patterns are discussed. Different ways of studying are in progress. Prophylactic oophorectomy in women with BRCA1 mutation provides ovaries that can be compared to a control group. Epithelial or stromal changes are observed in the familial risk group more frequently than in the controls and could be preneoplastic. An experimental approach has been developed in order to confirm the Fathalla's theory of the incessant ovulation by culturing cells of rat surface ovarian epithelium with a high proliferative pressure. These cells become malignant in 10 out of 30 cases (after 10 cultures). The transformed tumor cells are a syngeneic tumor model that can be transplanted in the animal and analysed by molecular biology technics. This allowed to show the loss of a potentially tumor suppressor gene, lot 1, in the transformed cells and on the other hand the overexpression of a gene coding for a protease enzyme the cathepsin B, which is a marker of an aggressive metastatic power.

Adenocarcinoma↗

Identification of a gene containing zinc-finger motifs based on lost expression in malignantly transformed rat ovarian surface epithelial cells.

We have used a rat model of epithelial ovarian cancer to identify a gene that shows decreased or lost expression in five of eight independently transformed rat ovarian surface epithelial cell lines compared to the normal progenitor cells. Hence, we refer to this gene as Lot1 (lost on transformation 1; GenBank accession no. U72620). The most abundant transcript of the gene is approximately 6 kb. This sequence contains a 1749-nucleotide open reading frame and, within the 3' untranslated region, 22 near-perfect 60-70-bp repeats and adenine- and uracil-rich areas. The deduced amino acid sequence from the open reading frame contains seven zinc-finger motifs of the C2H2 type, as well as proline-, glutamine-, and glutamic acid-rich areas. The gene maps to the short arm of chromosome one in the rat. Lot1 shows a limited distribution of expression in normal rat tissues, including ovary, which shows abundant expression. Furthermore, examination of DNA derived from multiple species indicates that the gene is widely conserved.

Amino Acid Sequence↗

Identification of a zinc-finger gene at 6q25: a chromosomal region implicated in development of many solid tumors.

We have used a rat model of epithelial ovarian cancer to identify a gene that shows decreased or lost expression in independently transformed rat ovarian surface epithelial cell lines compared to the normal progenitor cells. Hence, we refer to this gene as Lot-1 (Lost on transformation 1, GenBank accession no. U72620). Here, we report the cloning of the likely human homologue and its initial characterization. The deduced amino acid sequences of the cDNAs for rat and human LOT-1 (GenBank accession no. U72621) contain seven zinc finger motifs of the C2H2 type as well as proline and glutamine rich areas. The genes share 76.4% identity at the nucleotide level, 67.7% at the amino acid level and 85.5% within the seven zinc finger motifs. LOT-1 is ubiquitously expressed in normal human tissues but was not expressed in four of 11 (36%) human ovarian cancer cell lines or spontaneously transformed human ovarian surface epithelial cells. The human gene maps to chromosome 6 at band q25. We show that there is a 38% incidence of allelic loss at this chromosomal location in human ovarian cancers. This chromosomal region has also been implicated in the genesis of breast, kidney, and pleural mesothelial cancers. We suggest that this newly identified gene is not only of intrinsic interest as a ubiquitously expressed probable transcription factor but is a plausible candidate for the tumor suppressor gene which likely resides in the region of chromosome 6 defined by band q25.

Amino Acid Sequence↗

The chemopreventive agent oltipraz stimulates repair of damaged DNA.

Carcinogens may damage DNA either through the production of radicals that cause base modification in situ or through the formation of bulky adducts at relatively nucleophilic sites. Preclinical studies have demonstrated that administration of the dithiolethione oltipraz protects laboratory animals from the development of tumors following subsequent exposure to a variety of carcinogens. This may occur through a mechanism involving the induction of detoxicating gene expression. In some models, oltipraz treatment following carcinogen exposure may also confer protection. To investigate a possible mechanism for this observation, we studied the effects of oltipraz on base excision repair and platinum-DNA damage formation and removal. No effect of oltipraz was observed on base excision repair as determined by an in vitro assay measuring the repair of apurinic/apyrimidinic sites by untreated and oltipraz-treated HT-29 whole-cell extracts. Treatment of HT-29 cells with cisplatin in the absence or presence of 30 and 100 microM oltipraz decreased the accumulation of platinum in DNA. A dose-dependent reduction in DNA platination was also observed in purified DNA treated concurrently with cisplatin and increasing concentrations of oltipraz. When DNA was first platinated and subsequently incubated with oltipraz, no decrease in platinum content in DNA was found. Preincubation of HT-29 cells with oltipraz enhanced the rate of removal of total platinum-DNA adducts and interstrand cross-links. These data support a novel mechanism through which dithiolethiones may protect carcinogen-exposed animals from tumor formation and may expand their potential role in the clinic.

Anticarcinogenic Agents↗

Increased platinum-DNA damage tolerance is associated with cisplatin resistance and cross-resistance to various chemotherapeutic agents in unrelated human ovarian cancer cell lines.

We have examined a panel of 12 unrelated human ovarian cancer cell lines derived from patients who were either untreated or treated with platinum-based chemotherapy to determine whether a relationship is present between cisplatin sensitivity and: (a) cellular platinum accumulation; (b) glutathione levels; (c) platinum-DNA adduct formation; (d) platinum-DNA adduct removal; and (e) platinum-DNA damage tolerance. Multiple regression and correlation analysis revealed that of these resistance mechanisms, platinum-DNA damage tolerance correlates strongly with cisplatin sensitivity (r = 0.84, P = 0.001), whereas platinum accumulation (r = -0.11), cellular glutathione levels (r = 0.13), and platinum-DNA adduct removal (r = 0.44) correlate insignificantly. The correlation of platinum-DNA damage tolerance to cisplatin sensitivity (IC50s) is derived from the clustering of platinum-DNA adduct formation into three distinct groups spanning a 3-fold range, which is narrow relative to the corresponding 43-fold range in sensitivity. Adduct formation itself is not associated with cisplatin sensitivity (r = -0.38). Strong correlations were also observed between platinum-DNA damage tolerance and sensitivity to Adriamycin (r = 0.80, P = 0.002), paclitaxel (r = 0.87, P = 0.0002), etoposide (r = 0.78, P = 0.003), and mitomycin C (r = 0.73, P = 0.007). These results suggest that the failure of pathways that are involved in recognizing and processing platinum-DNA damage and other types of drug-induced damage that culminate in cell death may result in a broad resistance phenotype.

Antineoplastic Agents↗

Effects of isradipine, an L-type calcium channel blocker on permanent and transient focal cerebral ischemia in spontaneously hypertensive rats.

Permanent or transient focal cerebral ischemia was induced in spontaneously hypertensive rats (SHR) using the intraluminal filament method. Successful occlusion of the middle cerebral artery (MCA) was achieved using 4/O filaments (terminal diameter 0.20-0.25 mm) coated with poly-L-lysine. The L-type calcium channel blocker isradipine (2.5 mg/kg) administered subcutaneously 30 min following permanent MCA occlusion significantly reduced the volume of ischemic brain damage in the cerebral hemisphere (25%; P = 0.0001), cerebral cortex (18%; P = 0.0034), and caudate nucleus (33%; P = 0.0002) when assessed at 24 h post-MCA occlusion. Isradipine did not affect the functional deficit (measured using a subjective neurological scoring system) induced by MCA occlusion. In SHR undergoing transient (2 h) MCA occlusion isradipine administered 30 min post-MCA occlusion produced a significant reduction (47%; P = 0.001) in hemispheric infarct volume, whereas isradipine administered at the onset of reperfusion did not confer any significant neuroprotection. No change in functional deficit was seen with isradipine with either dosing paradigm at 24 h post-MCA occlusion. These results demonstrate that the intraluminal filament method of MCA occlusion can be used in the SHR strain and also substantiates the neuroprotective efficacy of isradipine in SHR models of permanent and transient focal cerebral ischemia.

Animals↗

Differential expression of c-fos, Hsp70 and Hsp27 after photothrombotic injury in the rat brain.

In situ hybridization and immunohistochemistry were used to examine the expression of c-fos, Hsp70 and Hsp27 following photothrombotic injury in the right fronto-parietal cortex of the rat. C-fos mRNA and protein were detected in the entire cerebral cortex on the lesioned side. Hsp70 mRNA accumulation was observed only adjacent and peripheral to the site of the lesion. At 1 h after photothrombotic injury, Hsp70 expression delineates the area of necrosis at 24 h after photothrombotic injury. Hsp27 protein was observed in the ipsilateral cerebral cortex with the exception of the deep layers of the cingulate cortex. In addition, while c-Fos immunoreactivity was localized in cell nuclei, Hsp27 immunoreactivity was detected in the cytoplasm of astrocytes. These results demonstrate that unilateral cortical injury induces changes in gene expression that vary according to cell type and brain region.

Animals↗

The effects of SB 206284A, a novel neuronal calcium-channel antagonist, in models of cerebral ischemia.

The effects of SB 206284A, 1-[7-(4-benzyloxyphenoxy)heptyl] piperidine hydrochloride, have been investigated in vitro on calcium and sodium currents in rat-cultured dorsal root ganglion (DRG) neurones and potassium-mediated calcium influx in rat synaptosomes. Cardiovascular hemodynamic effects in both anesthetized and conscious rats, and neuroprotective activity in in vivo cerebral ischemia models were also investigated. In the rat DRG cells, SB 206284A caused almost complete block of the sustained inward Ca2+ current (IC50 = 2.4 microM), suggesting that the compound is an effective blocker of slowly inactivating, high-voltage calcium current. SB 206284A reduced locomotor hyperactivity in the gerbil bilateral carotid artery occlusion model without affecting ischemia-induced damage in the hippocampal CA1 region. In the rat middle cerebral artery occlusion model, SB 206284A reduced lesion volume in the posterior forebrain, and in the rat photochemical cortical lesion model, lesion volume was reduced even when treatment was delayed until 4 hours after occlusion. At neuroprotective doses, SB 206284A had no cardiovascular effects. These findings show that SB 206284A is a novel calcium channel antagonist that shows neuroprotective properties.

Animals↗

Comparison of the cardiovascular effects of the novel 5-HT(1B/1D) receptor agonist, SB 209509 (VML251), and sumatriptan in dogs.

The systemic cardiovascular effects of a novel 5-hydroxtryptamine (5-HT)(1B/1D)-receptor agonist were investigated in the anaesthetised dog. SB 209509 (VML 251) was more potent than sumatriptan in producing increases in carotid vascular resistance after intravenous administration and was similar in potency to sumatriptan after sequential intraduodenal administration at 30-min intervals. In open-chest dogs, sequential intravenous administration of SB 209509 or sumatriptan produced marked increases in carotid vascular resistance without changing coronary vascular resistance. In contrast to sumatriptan, after administration of high doses of SB 209509 (>790 nmol/kg), a reduction in coronary vascular resistance was observed. After a single bolus intraduodenal dose of SB 209509 (260, 520, or 790 nmol/kg), increases in carotid vascular resistance could be detected over a 5-h period. Sumatriptan (i.d.), 2.4 micromol/kg but not 700 nmol/kg, produced a sustained effect similar to the effects of SB 209509 (790 nmol/kg). In all experiments, SB 209509 and sumatriptan had minimal effects on arterial blood pressure or heart rate but produced marked changes in carotid vascular resistance over the same concentration range. SB 209509 was rapidly absorbed after intraduodenal administration in conscious dogs and had good bioavailability. These data indicate that SB 209509 is a potent 5-HT(1B/1D)-receptor agonist that is rapidly absorbed from the duodenum. The effects of SB 209509 are long lasting and selective for the carotid vascular bed.

Animals↗

Autonomy of the epithelial phenotype in human ovarian surface epithelium: changes with neoplastic progression and with a family history of ovarian cancer.

Epithelial ovarian carcinomas originate in the ovarian surface epithelium (OSE). In culture, OSE undergoes epithelio-mesenchymal conversion, an event mimicking a wound response, while ovarian carcinomas retain complex epithelial characteristics. To define the onset of this increased epithelial autonomy in ovarian neoplastic progression, we examined mesenchymal conversion in OSE from 25 women with no family histories (NFH-OSE) and 13 women with family histories (FH-OSE) of breast/ovarian cancer (including 8 with mutated BRCA1 or 17q linkage) and in 8 ovarian cancer lines. After 3-6 passages in monolayer culture, most NFH-OSE exhibited reduced keratin expression and high collagen type III expression. In contrast, keratin remained high but collagen expression was lower in p. 3-6 FH-OSE. This difference was lost in SV40-transformed lines, which all resembled FH-OSE. Most carcinoma lines remained epithelial and did not undergo mesenchymal conversion. In 3-dimensional (3-D) sponge culture, NFH-OSE cells dispersed and secreted abundant extracellular matrix (ECM). FH-OSE remained epithelial and did not secrete ECM. ECM production was also reduced in SV40-transformed lines. Carcinoma lines in 3-D formed epithelial cysts, aggregates and papillae and lacked ECM. Sponge contraction (a mesenchymal characteristic) was greater in NFH-OSE than in FH-OSE both before and after SV40 transformation and was absent in the cancer lines. Our results suggest that increased autonomy of epithelial characteristics is an early indicator of ovarian neoplastic progression and that phenotypic changes indicative of such autonomy are found already in overtly normal OSE from women with histories of familial breast/ovarian cancer.

Biomarkers, Tumor↗

Microscopic benign and invasive malignant neoplasms and a cancer-prone phenotype in prophylactic oophorectomies.

BACKGROUND: The occurrence of approximately 5% of common epithelial malignant tumors of the ovary can be traced to inheritance of risk. One prophylactic strategy to decrease the probability of development of disease in individuals within families where this mendelian-dominant pattern of occurrence is apparent is to remove the ovaries of individuals at risk for ovarian cancer. The procedure, when done for this purpose, is recommended soon after completion of childbearing. PURPOSE: Our goal was to compare the histologic features of the ovaries of women at increased risk for ovarian cancer to those at no known increased risk for the disease. METHODS: Ovaries removed for prophylaxis from 20 women considered to be at increased risk for developing ovarian cancer were examined histologically. During the course of this work, it seemed apparent that these ovaries contained numerous atypical features compared with the expected appearance of normal ovaries. Hence, we expanded the study to include a control group whose ovaries were removed for reasons unrelated to cancer. The study, therefore, was not blinded. The increased risk in the cancer-prone individuals was determined by family history, specifically the presence of at least one first-degree relative and one second-degree relative with ovarian and/or breast cancer and positive linkage or mutational analysis of BRCA1 in some. The difference in mean ages of patients in the control and high-risk groups was not statistically significant. The difference among both groups with respect to the number of atypical features as well as the intensity of those features was ascertained by computing probabilities using Fisher's exact test (two-sided) for rows x columns contingency tables. RESULTS: Two unanticipated microscopic or near-microscopic malignant neoplasms and other benign and borderline tumors were discovered in the ovaries of the high-risk individuals. Of substantial interest was the finding that among the ovaries of high-risk women, 85% presented two or more and 75% presented three or more of the following histologic features: surface epithelial pseudostratification; surface papillomatosis; deep cortical invaginations of the surface epithelium, frequently with multiple papillary projections within small cystic spaces (microscopic papillary cystadenomas); epithelial inclusion cysts, frequently with epithelial hyperplasia and papillary formations; cortical stromal hyperplasia and hyperthecosis; increased follicular activity; corpus luteum hyperplasia; or hilar cell hyperplasia. Two or more or three or more such changes were observed in a lesser percentage (30% or 10%, respectively) of ovaries obtained from the control individuals, with a statistically significant difference (P = .001 or P = .00007, respectively), particularly considering that a detailed determination of a family history of cancer in the control group was not possible. CONCLUSIONS: The frequency of these changes in the high-risk ovaries compared with control ovaries suggests a characteristic histologic preneoplastic phenotype defined by an increased frequency and intensity of the above-described histologic features in the high-risk ovaries. Limited access to numerous small (stage I) ovarian cancers or cancer-prone ovaries by any one pathologist may explain the failure to identify the phenotype in the past. IMPLICATIONS: We suggest that the ovaries removed from ovarian cancer-prone individuals as a preventative measure should be thoroughly examined histologically to identify or rule out microscopic or near-microscopic invasive neoplasms.

Adult↗

Modulation of gene expression in subjects at risk for colorectal cancer by the chemopreventive dithiolethione oltipraz.

Prolonged exposure to mutagenic substances is strongly associated with an individual's risk of developing colorectal cancer. Clinical investigation of oltipraz as a chemopreventive agent is supported by its induction of the expression of detoxication enzymes in various tissues, and its protective activity against the formation of chemically induced colorectal tumors in animals. The goals of the present study were: to determine if oltipraz could induce detoxicating gene expression in human tissues; to identify effective non-toxic doses for more extensive clinical testing; and to establish a relationship between effects in the colon mucosa and those in a more readily available tissue, the peripheral mononuclear cell. 24 evaluable patients at high risk for colorectal cancer were treated in a dose-finding study with oltipraz 125, 250, 500, or 1,000 mg/m2 as a single oral dose. Biochemical analysis of sequential blood samples and colon mucosal biopsies revealed increases in glutathione transferase activity at the lower dose levels. These effects were not observed at the higher doses. More pronounced changes were observed in detoxicating enzyme gene expression in both tissues at all doses. Peripheral mononuclear cell and colon mRNA content for gamma-glutamylcysteine synthetase (gamma-GCS) and DT-diaphorase increased after dosing to reach a peak on day 2-4 after treatment, and declined to baseline in the subsequent 7-10 d. The extent of induction of gene expression in colon mucosa reached a peak of 5.75-fold for gamma-GCS, and a peak of 4.14-fold for DT-diaphorase at 250 mg/m2 ; higher doses were not more effective. Levels of gamma-GCS and DT-diaphorase correlated closely (P < or = 0.001) between peripheral mononuclear cells and colon mucosa both at baseline and at peak. These findings demonstrate that the administration of minimally toxic agents at low doses may modulate the expression of detoxicating genes in the tissues of individuals at high risk for cancer. Furthermore, peripheral mononuclear cells may be used as a noninvasive surrogate endpoint biomarker for the transcriptional response of normal colon mucosa to drug administration.

Adult↗

Increased DT-diaphorase expression and cross-resistance to mitomycin C in a series of cisplatin-resistant human ovarian cancer cell lines.

In a series of ovarian carcinoma cell lines selected in vitro for resistance to cisplatin by continuous exposure to increasing drug concentrations, the level of resistance is proportional to the expression of gamma-glutamylcysteine synthetase (gamma-GCS). To determine if other detoxicating genes are coordinately expressed, we measured the activity of DT-diaphorase and cytochrome P450 reductase. The specific activity of DT-diaphorase, but not that of cytochrome P450 reductase, increased with increasing resistance to cisplatin. Steady-state mRNA levels for DT-diaphorase correlated with enzyme activity and hence with cisplatin resistance. Since the activity of DT-diaphorase has been associated with sensitivity to quinones, we studied the cytotoxicity of mitomycin C under oxic conditions. Unexpectedly, resistance to mitomycin C increased proportionally with that to cisplatin (r = 0.997). Pretreatment with buthionine sulfoximine, which inhibits glutathione (GSH) synthesis, failed to sensitize either the sensitive or the resistant lines to mitomycin C. Thus, the basis for collateral resistance to mitomycin C in the cisplatin-resistant lines under oxic conditions is unrelated to overproduction of GSH. Under hypoxia, the toxicity of mitomycin C to the most sensitive (A2780) cell line was unchanged. However, the most resistant (C200) line was 2-fold more resistant to mitomycin C under hypoxic conditions. The coordinate overexpression of DT-diaphorase and gamma-GCS in the resistant cell lines is thus associated with hypoxic cell resistance, and supports the involvement of shared mechanisms of gene regulation in the observed resistant phenotype.

Antineoplastic Agents↗