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Biomedical subjects

C Pisano

Publications and source records attributed to C Pisano.

At least 19 recordsLinked to original sources

Medical treatment of resistant or recurrent epithelial ovarian cancer.

Epidemiologic analysis reveals that mortality rates from ovarian cancer are continuously decreasing due to the improvement of surgery and chemotherapy. However, overall, the prognosis of ovarian cancer patients is still unsatisfactory considering that only 30% of the patients are alive after 5 years. In fact, although surgery and first-line systemic chemotherapy induce complete and partial response in up to 80% of patients, with about a 25% pathological complete remission rate, recurrences occur in the majority of patients. Most of these patients are subject to repetitive treatment cycles that, although palliative in nature, are also able to prolong survival. Important results have been obtained, in particular in platinum sensitive recurrent disease where a platinum base chemotherapy is able to prolong progression-free survival and overall survival. Overall, our armamentarium for the treatment of progressive or recurrent ovarian cancer is significantly richer than in the past, and in many patients it is possible to achieve the objective to reach a chronic history of the disease.

Antineoplastic Combined Chemotherapy Protocols↗

Induction of apoptosis and stress response in ovarian carcinoma cell lines treated with ST1926, an atypical retinoid.

To understand the molecular mechanisms mediating apoptosis induction by a novel atypical retinoid, ST1926, the cellular response to drug treatment was investigated in IGROV-1 ovarian carcinoma cells carrying wild-type p53 and a cisplatin-resistant p53 mutant subline (IGROV-1/Pt1). Despite a similar extent of drug-induced DNA strand breaks, the level of apoptosis was substantially higher in p53 wild-type cells. p53 activation and early upregulation of p53-target genes were consistent with p53-dependent apoptosis in IGROV-1 cells. Stress-activated protein kinases were activated in both cell lines in response to ST1926. This event and activation of AP-1 were more pronounced in IGROV-1/Pt1 cells, in which the modulation of DNA repair-associated genes suggests an increased ability to repair DNA damage. Inhibition of JNK or p38 stimulated ST1926-induced apoptosis only in IGROV-1 cells, whereas inhibition of ERKs enhanced apoptosis in both the cell lines. Such a pattern of cellular response and modulation of genes implicated in DNA damage response supports that the genotoxic stress is a critical event mediating drug-induced apoptosis. The results are consistent with apoptosis induction through p53-dependent and -independent pathways, regulated by MAP kinases, which likely play a protective role.

Adamantane↗

Cellular and pharmacological bases of the antitumor activity of a novel adamantyl retinoid, ST1926.

ST1926 is a novel related adamantyl retinoid endowed with potent antiproliferative and apoptogenic activity. The drug induced an early G1/S cell cycle arrest which was associated with a typical DNA damage response including modulation of genes involved in cell cycle regulation and DNA repair. The evidence of the drug ability to induce a significant extent of DNA strand breaks after short-term exposure is consistent with the cellular response. ST1926 is active by oral administration both on hematological and on solid tumors. The more marked antitumor effect showed by ST1926 in immuno-competent mice rather than in tumor xenografts suggests a contribution of indirect host-mediated antitumor effects in addition to a direct antiproliferative activity against tumor cells.

Adamantane↗

Chrysanthones, a new source of fungal metabolites with potential antitumor and antiangiogenesis properties.

Chrysanthones are secondary metabolites, isolated from Ascochyta chrysanthemi, with a methyl-benzoisoquinoline or methyl-benzoisochromene system. Three compounds were tested for their cytotoxicity properties on endothelial cells (EC) and two different tumor cell lines and for their ability to inhibit EC migration. Structure-function relationship considerations suggested that the methylisoquinolinic moiety is important for the cytotoxic activity, whereas the methylisochromene moiety confers an endothelial selectivity to the structures. In general, compared to the activity of known antiproliferative and antiangiogenic compounds, chrysanthones showed weaker activities. However, they present a basis for the synthesis of new derivatives.

Angiogenesis Inhibitors↗

An escalating dose finding study of liposomal doxorubicin and vinorelbine for the treatment of refractory or resistant epithelial ovarian cancer.

BACKGROUND: The aim of this study was to determine the maximum tolerated dose (MTD) of liposomal doxorubicin (LD)-vinorelbine (V) in patients with refractory or resistant ovarian cancer. PATIENTS AND METHODS: Thirty patients were eligible. Seven levels were studied [LD 25-V20 (three patients enrolled); LD 30-V20 (three); LD 35-V20 (three); LD 20-V25 (three); LD 25-V25 (three); LD 30-V25 (10); LD 35-V25 (five)]. LD was given on day 1, while V was given on days 1 and 8 every 21 days. Cohorts of three patients were enrolled at each level, and another three patients were planned, if one dose-limiting toxicity (DLT) was registered. RESULTS: DLT was observed in four patients: two febrile neutropenia, one grade 4 thrombocytopenia and one grade 3 palmar-plantar erythrodysesthesia (PPE) at level 7 (LD 35-V25). Thus, liposomal doxorubicin 30 mg/m(2) plus vinorelbine 25 mg/m(2) was the MTD. The most frequent toxicity was neutropenia. Fifteen patients (50%) experienced grade 3 neutropenia and 10 (33.3%) grade 4 neutropenia. Non-hematological toxicity was mild. Mucositis and PPE were the most frequent toxicities, but in most cases were grade 1. Out of 29 assessable patients, six (20.7%; 95% confidence interval 10%-39%) experienced an objective response, with one complete response. CONCLUSIONS: In patients with refractory or resistant ovarian cancer, the recommended doses for the combination studied are liposomal doxorubicin 30 mg/m(2) (day 1) plus vinorelbine 25 mg/m(2) (day 1 and 8). Neutropenia is the most frequent toxicity, while non-hematological toxicity is mild. Substantial activity was recorded and a phase II study is justified.

Adult↗

Cisplatin-induced peripheral neurotoxicity in rats reduces the circulating levels of nerve growth factor.

The pathogenesis of the neurotoxicity of most antineoplastic drugs is unknown. Recent reports suggest that changes in the circulating levels of nerve growth factor (NGF) might be related to the dorsal root ganglia sensory neuron damage induced by cisplatin (CDDP), the first member of a family of widely used and very effective platinum-derived anticancer agents. Using a well-characterized model of CDDP neurotoxicity, we demonstrated that the NGF circulating level decreased during chronic CDDP administration in close accordance with the clinical course and returned to normal levels after recovery from the neurotoxic damage. Moreover, these changes were restricted to NGF and did not involve other trophic factors of the same neurotrophin family. Our findings are in agreement with previous in vitro and in vivo results and further suggest that NGF plays a specific role in the course of CDDP-induced primary sensory neuron damage.

Animals↗

Gastroprotective effects of amtolmetin guacyl: a new non-steroidal anti-inflammatory drug that activates inducible gastric nitric oxide synthase.

BACKGROUND: The novel non-steroidal anti-inflammatory drug amtolmetin guacyl has been shown to possess markedly reduced ulcerogenic effects and nitric oxide-mediated gastroprotective activity against the damage induced by ethanol in the rat. AIMS: To investigate, in the rat, the role of nitric oxide and of inducible nitric oxide synthase isoform in the protective effect of amtolmetin guacyl against the gastric damage induced by ethanol. METHODS: The effects of amtolmetin guacyl on gastric transmucosal potential difference and on gastric mucosal blood flow were investigated in the anaesthetised rat; myeloperoxidase activity, inducible and endothelial nitric oxide synthase protein content were determined in rat gastric mucosal homogenates. The anti-inflammatory drug tolmetin and the bacterial lipopolysaccharide from Escherichia coli were studied for comparison. RESULTS: In the anaesthetised rat, amtolmetin guacyl, but not tolmetin, reduced by approximately 50% the fall in gastric potential difference and, to a lesser extent, the macroscopic damage induced by ethanol. The effect of amtolmetin guacyl on transmucosal potential difference was prevented by the selective inducible nitric oxide synthase inhibitor 1400W. In amtolmetin guacyl-treated rats, 1400W decreased gastric mucosal blood flow, whereas it was inactive in vehicle- and tolmetin-treated animals. In gastric mucosal homogenates, both amtolmetin guacyl and lipopolysaccharide, but not tolmetin, increased inducible, but not endothelial, nitric oxide synthase protein content, as revealed by Western immunoblotting. CONCLUSIONS: These data confirm that amtolmetin guacyl is a non-steroidal anti-inflammatory agent devoid of gastrolesive properties, that can actually reduce the damaging effects of ethanol through the increase in nitric oxide production, via the inducible isoform of nitric oxide synthase.

Animals↗

Potent antitumor activity and improved pharmacological profile of ST1481, a novel 7-substituted camptothecin.

Relevant drawbacks of the molecular structure and mechanism of the action of camptothecins are the instability of the E ring lactone and the reversibility of drug-target interaction. Such features are expected to limit the clinical efficacy of conventional camptothecins. In an attempt to overcome these limitations and to improve the pharmacological profile of camptothecins, a novel series of seven modified lipophilic analogues was synthesized based on the hypothesis that lipophilicity could promote a rapid cellular accumulation and stabilization of drug-target interaction. A novel analogue (ST1481) of the series, characterized by a potent antitopoisomerase and cytotoxic activity, was selected for preclinical development. A detailed preclinical study of ST1481 was performed in the H460 non-small cell lung tumor model using oral administration and various treatment schedules. Under all of the conditions, ST1481 exhibited an impressive efficacy in terms of tumor growth inhibition (tumor volume inhibition percentage > 99%), log(10) cell kill, rate of complete responses (including "cures"), and an improvement of the therapeutic index compared with topotecan (used as the reference drug). The cytotoxic potency was also reflected by the in vivo potency, because the drug activity was observed at doses as low as 0.25 mg/kg with the daily schedule. In contrast to topotecan, no cross-resistance to ST1481 was found in ovarian carcinoma cells overexpressing P-glycoprotein (A2780/DX). A similar trend in the improvement of activity was also observed in the same tumor model growing in vivo with a 100% rate of complete tumor regressions. A rapid intestinal absorption and good oral bioavailability were supported by in vivo distribution studies, because the peak values of drug accumulation were found from 1 to 2 h after administration. The relevant liver accumulation may account for a marked effect of ST1481 against liver metastases induced by the ovarian carcinoma IGROV-1. In conclusion, the results support the hypothesis that a potent lipophilic camptothecin with a proper substituent at the position 7 may have therapeutic advantages likely related to a rapid intracellular uptake and tissue distribution, stabilization of the drug-target complex, and good oral bioavailability. Overall, the results support the preclinical interest of ST1481 in terms of efficacy, potency, toxicity profile, and ability to overcome multidrug resistance.

Administration, Oral↗

Novel 7-oxyiminomethyl derivatives of camptothecin with potent in vitro and in vivo antitumor activity.

In an attempt to synthesize potential anticancer agents acting by inhibition of topoisomerase I (Topo I) a new series of oxyiminomethyl derivatives in position 7 of camptothecin (CPT) was prepared. The synthesis relied on the condensation of 20S-CPT-7-aldehyde or 20S-CPT-7-ketones with alkyl, aryl, heteroaryl, arylalkyl, and heteroarylalkyl O-substituted hydroxylamines. The compounds were tested for their cytotoxic activity in vitro against H460 non-small lung carcinoma cell line, the activity being for 24 out of 37 compounds in the 0.01-0.3 microM range. A QSAR analysis indicated that lipophilicity is the main parameter correlated with cytotoxicity. Investigation of the DNA-Topo I-drug cleavable complex showed a rough parallelism between cytotoxicity and inhibition of Topo I. Persistence of the DNA cleavage after NaCl-mediated disruption of the ternary complex suggests that for the most potent compounds, e.g., 15, the cytotoxicity was at least in part related to stabilization of the complex, as also supported by the persistence of the DNA-enzyme complex in drug-treated cells. The in vivo antitumor efficacy of the most potent analogue (15) was evaluated in direct comparison with topotecan using human lung tumor xenograft models. In the range of optimal doses (2-3 mg/kg), the improved efficacy of 15 was documented in terms of inhibition of tumor growth and rate of complete response.

Animals↗

A novel 7-modified camptothecin analog overcomes breast cancer resistance protein-associated resistance in a mitoxantrone-selected colon carcinoma cell line.

We selected a mitoxantrone-resistant HT29 colon carcinoma cell line (HT29/MIT) that exhibited a very high degree of resistance to the selecting agent and marked resistance to topotecan and SN38, but limited resistance to doxorubicin. The development of drug resistance was independent of expression of P-glycoprotein or multidrug resistance-associated protein but was associated with high up-regulation of the breast carcinoma resistance protein (BCRP) as shown by Western blot analysis. BCRP overexpression was associated with a reduced intracellular accumulation of topotecan, a known substrate for BCRP. Conversely, a lipophilic 7-modified camptothecin analogue (ST1481) displayed a complete lack of cross-resistance in HT29/MIT cells, suggesting that the drug was not a substrate for BCRP because no defects in intracellular accumulation were found. This conclusion is consistent with the antitumor efficacy of ST1481 against a BCRP-expressing tumor. These results may have therapeutic implications because the antitumor efficacy of ST1481 is in part related to a good bioavailability after oral administration, and the drug is currently under Phase I clinical evaluation.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Potent integrin antagonists from a small library of RGD-including cyclic pseudopeptides.

[structure: see text]. A small library of cyclic RGD pseudopentapeptides incorporating stereoisomeric 6,5- and 7,5-fused bicyclic lactams was synthesized with the aim of developing active and selective integrin antagonists. The solid-phase synthesis and activity of these RGD derivatives is described. The approach led to two of the most active known inhibitors of alpha(V)beta3 receptor.

Antineoplastic Agents↗

Efficacy and toxicity profile of oral topotecan in a panel of human tumour xenografts.

On the basis of their mechanism of action (cell killing during DNA replication) and the potential reversibility of the drug effects, protracted therapy with camptothecins is reported to provide optimal antitumour effects. Furthermore, oral administration may be a useful modality for optimisation of treatment. The aim of this study was to compare the therapeutic profile of topotecan given orally or intravenously in human tumours xenografted into athymic nude mice. The drug topotecan was given according to an intermittent (every fourth day, four times) or daily (qdx5/weeklyx5-10 weeks; only orally) schedule. Tumour growth inhibition and persistence of drug effects were assessed and compared with untreated mice. In a panel of seven tumour xenografts, oral topotecan was at least as effective on three and significantly more effective on four tumours. Using the intermittent schedule, the maximum tolerated dose (MTD) was comparable for the two routes (15 mg/kg), but the toxicity profile suggested a better tolerability in terms of lethal effects after oral administration. The daily oral treatment of low drug doses allowed a higher cumulative dose to be delivered with improved antitumour efficacy (2/10 cured in a large cell lung cancer) and no evidence of toxicity. In spite of the low bioavailability of oral topotecan (23.5%), the persistent plasma levels of the drug suggest that the time of exposure to the drug is more critical than the plasma concentrations for antitumour efficacy. This interpretation is consistent with the increased efficacy of prolonged daily treatment with low-dose levels. The results may have implications for the future design of clinical studies.

Administration, Oral↗

Changes in microtubule organization after exposure to a benzimidazole derivative in Chinese hamster cells.

Many aneugenic compounds are known to affect one or several components of the mitotic apparatus. The mechanisms and targets of the aneuploidy-inducing activity of the benzimidazole derivative thiabendazole remain uninvestigated. In our experiments we found that thiabendazole-treated Chinese hamster cells (Cl-1) exhibited low levels of newly synthesized tubulin, indicating microtubule poisoning. In addition, microtubule growth and organization were substantially affected at mitosis. This was revealed by the reduced length of both interpolar and astral microtubules. Furthermore, thiabendazole strongly induced multipolar and asymmetric alpha-tubulin-positive metaphase spindles, characterized, however, by the absence of fragmentation of centrosome material as evaluated by anti-gamma-tubulin antibody staining. Interestingly, we found that microtubule poisoning induced by thiabendazole was qualitatively different from that of colchicine, the best known microtubule depolymerizing agent. In fact, in interphase cells colchicine was comparatively more effective than thiabendazole in promoting depolymerization of cytoplasmic microtubules. However, colchicine could not depolymerize a sub-population of stable, acetylated microtubules, which were however significantly reduced after thiabendazole exposure. In conclusion, the capability of thiabendazole to promote chromosomal malsegregation could be related to an effect on microtubule polymerization that specifically promotes formation of aberrant spindles.

Animals↗

Replacement of an NH(3) by an iminoether in transplatin makes an antitumor drug from an inactive compound.

To investigate the modifications of antitumor activity and DNA binding mode of transplatin after replacement of one nonleaving group NH(3) by an iminoether group, trans-[PtCl(2)(Z-HN=C(OMe)Me)(NH(3)] and trans-[PtCl(2)(E-HN=C(OMe)Me)(NH(3)] complexes (differing in the Z or E configuration of iminoether, and abbreviated mixed Z and mixed E, respectively), have been synthesized. In a panel of human tumor cell lines, both mixed Z and mixed E show a cytotoxic potency higher than that of transplatin, the mean IC(50) values being 103, 37, and 215 microM, respectively. In vivo mixed Z is more active and less toxic than mixed E in murine P388 leukemia and retains its efficacy against SK-OV-3 human cancer cell xenograft in nude mice. In the reaction with naked DNA, mixed Z forms monofunctional adducts that do not evolve into intrastrand cross-links but close slowly into interstrand cross-links between complementary guanine and cytosine residues. The monofunctional mixed Z adducts are removed by thiourea and glutathione. The interstrand cross-links behave as hinge joints, increasing the flexibility of DNA double helix. The mixed Z, transplatin, and cisplatin interstrand cross-links, as well as mixed Z monofunctional adducts are not specifically recognized by HMG1 protein, which was confirmed to be able to specifically recognize cisplatin d(GpG) intrastrand cross-links. These data demonstrate that the DNA interaction properties of the antitumor-active mixed Z are very similar to those of transplatin, thus suggesting that clinical inactivity of transplatin could not depend upon its peculiar DNA binding mode.

Animals↗

Gastrosparing effect of new antiinflammatory drug amtolmetin guacyl in the rat: involvement of nitric oxide.

The effect of the nonsteroidal antiinflammatory drug (NSAID) amtolmetin guacyl (AMG) on the gastric mucosa was studied in the rat by means of histological and functional techniques. AMG administered at 50-300 mg/kg intragastrically was virtually devoid of gastrolesive properties after either acute or repeated treatment. By contrast, its metabolite, tolmetin (TOL, 15-60 mg/kg, intragastrically) caused dose-dependent gastric damage after both treatments. Light and electron microscopy revealed that AMG induced minimal changes in the surface epithelium layer, without signs of vasocongestion or leukocytes adherence. AMG (50 mg/kg intragastrically) did not change basal gastric potential difference (PD), whereas acetylsalicylic acid and ibuprofen induced falls in PD of 22 and 27 mV, respectively. AMG (50 mg/kg intragastrically) reduced by 60% the fall in PD induced by 50% ethanol; this inhibition was dependent on the incubation time, and was maximal when AMG was given 4 hr before ethanol. AMG (100 mg/kg intragastrically) induced an increase in NO synthase type 2 (NOS2) activity, which was significantly different from control values, when AMG was administered 4 hr before the test. The metabolites of AMG, tolmetin, MED 5, and guaiacol were ineffective. Pharmacokinetic analysis of the residence time of AMG in the different areas of the gastrointestinal tract, revealed that AMG remains in the gastrointestinal tract at least for 4 hr, the time necessary for a maximal induction of NOS2 and for maximal protection against ethanol-induced damage. In conclusion, these data indicate that the nonsteroidal antiinflammatory drug amtolmetin guacyl is devoid of gastrolesive properties; this gastro-sparing effect seems to involve the production of nitric oxide, which can counteract the damaging effects due to prostaglandin inhibition. The presence in the stomach of the native molecule of amtolmetin guacyl seems to be necessary for the protective effect observed.

Animals↗

[Functional therapy of Class II Division 1. Comparison of three activators: Andresen, Fränkel and Teuscher].

BACKGROUND: A comparative study is reported about the efficiency of three activators (Andresen, Fränkel and Teuscher) in the treatment of Class II Division 1 malocclusions in a group of patients with different facial types. METHODS: A group of 20 patients in mixed dentition has been selected. The subjects were between 8 and 14 years old, provided with a complete radiographic documentation, treated in the Odontological Clinic of the University of Verona for a period no longer than 24 months. The study has been made using a cephalometric informatic program with a graphic computer. After a revision of orthopaedic functional literature, cephalometric values which, according to personal opinion, reflect the modifications occurred during treatment and growth have been chosen. Then these values have been reported in a triplic analytic configuration. RESULTS: The achieved results in each group of patients with the three activators have been examined analyzing structural modifications produced in the skeletric and in the dento-alveolar region. The comparison between the results obtained with the three activators and the findings reported in the majority of literature hasn't shown great disagreements. CONCLUSIONS: In the correction of Class II Division 1 malocclusions Andresen appliance is valid in subjects with normal/hypodivergent skeletric structure, while in patients with a facial type tending to "dolicocephal" the Fränkel function regulator and, in particular, Teuscher activator combined with extraoral traction have produced positive results with a contemporary correction of the sagittal skeletric discrepance.

Activator Appliances↗

Deregulated expression of the RanBP1 gene alters cell cycle progression in murine fibroblasts.

RanBP1 is a molecular partner of the Ran GTPase, which is implicated in the control of several processes, including DNA replication, mitotic entry and exit, cell cycle progression, nuclear structure, protein import and RNA export. While most genes encoding Ran-interacting partners are constitutively active, transcription of the RanBP1 mRNA is repressed in non proliferating cells, is activated at the G1/S transition in cycling cells and peaks during S phase. We report here that forced expression of the RanBP1 gene disrupts the orderly execution of the cell division cycle at several stages, causing inhibition of DNA replication, defective mitotic exit and failure of chromatin decondensation during the telophase-to-interphase transition in cells that achieve nuclear duplication and chromosome segregation. These results suggest that deregulated RanBP1 activity interferes with the Ran GTPase cycle and prevents the functioning of the Ran signalling system during the cell cycle.

3T3 Cells↗