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Biomedical subjects

N Saijo

Publications and source records attributed to N Saijo.

At least 19 recordsLinked to original sources

Interleukin-2 gene transduction into freshly isolated lung adenocarcinoma cells with adenoviral vectors.

We evaluated the efficiency of gene transduction and of gene expression by adenoviral vectors in human lung adenocarcinoma cells. Freshly isolated cancer cells were collected from pleural effusions in adenocarcinoma patients by centrifugation with a Percoll gradient. Adenoviral vectors resulted in effective gene transduction into human lung cancer cell lines and into freshly isolated lung adenocarcinoma cells. In an experiment using the beta-galactosidase (LacZ) gene, the Adex1CA vector with a regulatory sequence of chicken beta-actin as promoter and an enhancer derived from cytomegalovirus produced a higher transduction ratio and greater expression levels than adenoviral vectors with other promoter systems. Transduction with Adex1CA vectors containing the human interleukin-2 (IL-2) gene (Adex1CAhIL-2) resulted in enhanced secretion of IL-2 from gene-modified lung cancer cells. Treatment with normal human serum inhibited gene transduction by Adex1CAhIL-2 but did not inhibit gene expression after transduction by Adex1CAhIL-2. The secretion of IL-2 from the gene-modified cells, which were irradiated at 100 Gy before transduction, continued for 8 days. In a mouse model, the intrapleural injection of IL-2 gene-modified 3LL cells transduced by Adex1CAhIL-2 could cure the pre-existing lung tumours with malignant pleural effusions to induce tumor-specific immunity. But these therapies did not show any therapeutic benefit on the pre-existing tumor in subcutaneous region. These data suggest a potentially useful but limited clinical role of Adex1CAhIL-2 in gene therapy for lung cancer patients.

Adenoviridae

Phase II study of irinotecan and etoposide in patients with metastatic non-small-cell lung cancer.

PURPOSE: To determine the effects of irinotecan (CPT-11) given in combination with etoposide (VP-16) in metastatic non-small-cell lung cancer (NSCLC), to evaluate response and survival rates, and to determine the qualitative and quantitative toxicities of the combination chemotherapy. PATIENTS AND METHODS: Sixty-one metastatic NSCLC patients received concurrent administration of CPT-11 and VP-16 for 3 days with recombinant human granulocyte colony-stimulating factor (rhG-CSF) support. RESULTS: Fifty-nine patients were assessable for response and all 61 patients were assessable for toxicity and survival. Fifty-six patients were treated with two or more courses of chemotherapy. Thirteen patients achieved a partial response (PR), 36 showed no change (NC), and 10 showed progressive disease (PD). The overall response rate was 21.3% (95% confidence interval, 12.9% to 33.1%). The median duration of PRs was 141 days (range, 62 to 299). Of the hematologic toxicities, 14 (23%) and 24 (39%) patients experienced grade 3 or 4 leukopenia and neutropenia, respectively. The toxicities were feasible. Treatment-related death occurred in one patient who suffered hypovolemic shock induced by hematemesis. The median survival time was 10.0 months and the 1-year survival rate was 36.1%. CONCLUSION: Combination chemotherapy with concurrent administration of CPT-11 and VP-16 with rhG-CSF support was only modestly effective against metastatic NSCLC, with feasible toxicities of moderate diarrhea and pulmonary toxicity. The results were equivalent to those expected with either cisplatin-based chemotherapy or with CPT-11 alone.

Adenocarcinoma

[Apoptosis and chemosensitivity].

Many antineoplastic drugs and cytotoxic irradiation induce apoptosis in cancer cells. ICE and ICE-like proteases play important roles in drug-induced apoptosis of cancer cells. We evaluated the cellular factors affecting susceptibility to apoptosis using gene-transfected cells. Introduction of bcl 2 gene into human small cell lung cancer cells conferred resistance to mitomycin C and irinotecan. DNA fragmentation was reduced in these cells. These results indicate apoptosis is one of the mechanisms of cell death caused by some antineoplastic drugs. Investigations are ongoing to elucidate the contribution of the Bcl 2 family proteins to antineoplastic drug induced apoptosis. Wild type p53-transfected cancer cells were sensitive to anticancer drugs. On the other hand, p53-depleted cells were reported to be more sensitive to taxanes than p53-proficient cells. Introduction of Rb gene and p16-gene enhanced cytotoxicity of taxanes and topoisomerase I inhibitors, respectively. In clinical studies, patients of non small cell lung cancer with high expression of Bcl-2 were reported to show longer survival than patients with lower expression. However, this result may be confusing because Bcl-2 reduced the efficacy of antineoplastic drugs. Further evaluation is required to determine the cellular proteins serving as markers for treatment efficacy or prognosis.

Antineoplastic Agents

[gamma-Glutamylcysteine synthetase and chemosensitivity].

The gene transfectant with gamma-glutamylcysteine synthetase (gamma-GCS) gene, a rate limiting enzyme in GSH biosynthesis, exerted increased GSH content and ATP-dependent glutathione S-conjugate export pump (GS-X pump) decreased intracellular platinum and sensitivity against cisplatin. It is suggested that GS-X pump expression is related to cellular GSH metabolism and involved in cisplatin resistance. gamma-GCS transfectant also showed the resistance to MMC with the decreased DNA-MMC adduct. On the other hand, a MMC derivative, KW-2149, which is activated by thiol molecule, exhibited high cytotoxicity against the transfectant with an equal amount of DNA-MMC adduct compared with parental cells. It is suggested that KW-2149 could circumvent the GSH-mediated drug resistance.

3T3 Cells

Clinical trials of irinotecan hydrochloride (CPT, campto injection, topotecin injection) in Japan.

CPT-11 was synthesized in 1984 at the laboratory of Yakult Honsha. Phase I study of CPT-11 was begun in 1986. The appropriate doses for phase II studies were decided to be 100 mg/m2 weekly or 150 mg/m2 every 2 weeks. Phase II study was conducted and this drug was approved for NSCLC, SCLC, uterine cancer and ovarian cancer by MHW in 1994. It obtained approval for stomach cancer, colorectal cancer, breast cancer, skin cancer and non-Hodgkin's lymphoma in 1995. The combination chemotherapies including CPT-11 have been conducted by using various regimens such as CPT-11 + CDDP, CPT-11 + VP-16, CPT-11 + 5-FU and CBDCA + CPT-11. In stage IV SCLC two prospective randomized controlled trials are on going comparing CPT-11 vs. CPT-11 + CDDP vs. VDS + CDDP and CPT-11 + CDDP vs. VDS + CDDP. In advanced SCLC Japanese Clinical Oncology Group (JCOG) started a randomized controlled trial comparing CPT-11 + CDDP vs. VP-16 + CDDP. In stage III NSCLC the dose escalation studies of CPT-11 (CPT-11) in the combination with TRT are ongoing by JCOG. The problem of CPT-11 in the combination chemotherapy and combined modality is that it is quite difficult to increase the dose of CPT-11 to full dose to obtain the maximum effect.

Antineoplastic Agents, Phytogenic

Reversal of adriamycin resistance with chimeric anti-ganglioside GM2 antibody.

Ganglioside GM2 is one of the major cell-surface gangliosides expressed in human tumors. We earlier established a mouse/human IgG1 chimeric anti-GM2 antibody, KM966, which displayed anti-tumor activity in human tumor cells both in vitro and in vivo. In this study, we have screened for changes in ganglioside expressions in several drug-resistant human cancer cell lines to examine the modulation of drug resistance by immunotherapy with anti-ganglioside antibodies. Increased GM2 expression, detected by flow cytometry and thin-layer chromatography, was observed in the SBC-3/ADM and AdrR MCF7 adriamycin-resistant cell lines, in contrast with their parental lines. In other related gangliosides, ganglioside GD2 levels in AdrR MCF7 were higher than those in MCF7 cells. We confirmed increased N-acetylgalactosaminyltransferase mRNA in adriamycin-resistant cell lines, as compared with the parental cells, by Northern-blot analysis. Moreover, to investigate the possibility of exploiting the anti-tumor activity of KM966 in order to overcome resistance to adriamycin, we investigated the antibody-dependent cell-mediated cytotoxity of human peripheral mononuclear blood cells and the complement-dependent cytotoxity of human serum with KM966 against SBC-3, SBC-3/ADM, MCF7 and AdrR MCF7. Significantly higher killing via KM966 was observed in SBC-3/ADM and AdrR MCF7 cells as compared with the parental cells. This suggests that passive immunotherapy using KM966 against human adriamycin-resistant cancer may be useful for overcoming resistance to adriamycin.

Antibiotics, Antineoplastic

Hypersensitivity of NIH3T3 cells transformed by H-ras gene to DNA-topoisomerase-I inhibitors.

We examined the effects of the introduction of H-ras oncogene into murine cell line NIH3T3 on growth inhibition by topoisomerase-I (topo-I) inhibitors. The H-ras-transformed cells (pT22-3) showed approximately 12-fold increased sensitivity to a novel topo-I inhibitor, NB-506 [6-N-formylamino-12,13-dihydro-1,11-dihydroxy-13-(beta-D-glucopyranosyl) -5H-indolo(2,3-a)pyrrolo(3,4-c) carbazole-5,7(6H)-dione], compared with the parental NIH3T3 cells. pT22-3 also showed increased sensitivity to other topo-I inhibitors such as camptothecin (approx. 3.0-fold) and CPT-11 (irinotecan, approx. 3.0-fold). Transformation of NIH3T3 by another oncogene (erbB2) did not affect their sensitivity to these topo-I inhibitors. pT22-3 had approximately 32-fold higher topo-I activity than NIH3T3, but the same topo-I content. In a cell-free system, topo-I activity was increased 2-fold by addition of the H-ras protein precipitated from pT22-3 cells. Topo I in the nuclear extract of pT22-3 was eluted easily by low concentrations of NaCl compared with that of NIH3T3, suggesting a qualitative change in pT22-3 topo 1. Increased phosphorylation of topo I was observed in pT22-3. Furthermore, NB-506 decreased the amount of the GTP-bound form of the H-ras product in pT22-3 cells. These results suggest that the high growth-inhibitory effect of a topo-I inhibitor, NB-506, on H-ras-transformed NIH3T3 cells is due to the H-ras-mediated signal-transduction pathway.

3T3 Cells

Antitumor activity of daphnane-type diterpene gnidimacrin isolated from Stellera chamaejasme L.

The daphnane-type diterpene gnidimacrin, isolated from the root of the Chinese plant, Stellera chamaejasme L., was found to strongly inhibit cell growth of human leukemias, stomach cancers and non-small cell lung cancers in vitro at concentrations of 10(-9) to 10(-10) M. On the other hand, even at 10(-6) to 10(-5) M, the small cell lung cancer cell line H69 and the hepatoma cell line HLE were refractory to gnidimacrin. The agent showed significant antitumor activity against murine leukemias and solid tumors in an in vivo system. In K562, a sensitive human leukemia cell line, gnidimacrin induced blebbing of the cell surface, which was completely inhibited by staurosporine at concentrations above 10(-8) M, and arrested the cell cycle transiently to G2 and finally the G1 phase at growth-inhibitory concentrations. It inhibited phorbol-12,13-dibutyrate(PDBu) binding to K562 cells and directly stimulated protein kinase C (PKC) activity in the cells in a dose-dependent manner (3-100 nM). Although activation of PKC isolated from refractory H69 cells was observed only with 100 nM gnidimacrin, the degree of activation was lower than that produced by 3 nM in K562 cells. Our results suggest that gnidimacrin acts as a PKC activator for tumor cells and that this mechanism may be responsible for its antitumor activity.

Animals

Synergism between cisplatin and topoisomerase I inhibitors, NB-506 and SN-38, in human small cell lung cancer cells.

Topoisomerase I-targeting anticancer agents such as 7-ethyl-10-[4-(1-piperidyl)-1-piperidyl]carbonyloxy-camptothecin (CPT-11) and 6-N-formylamino-12,13-dihydro-1,11-dihydroxy-13-(beta-D- glucopyranosyl)-5H-indolo[2,3-a]pyrrolo[3,4-c]carbazole-5,7(6H)-di one (NB-506) have been developed and show strong antitumor activity against various cancers. We examined the interaction of these drugs and cisplatin (CDDP), and biochemical mechanisms of synergism between them. Interaction of drugs in human small cell lung cancer cells, SBC-3, was analyzed using the isobologram method. Combinations of CDDP with NB-506, CPT-11, and an active metabolite of CPT-11, 7-ethyl-10-hydroxy-CPT (SN-38), showed synergistic effects. Formation of DNA interstrand cross-links (ICLs) on the cells was analyzed using an alkaline elution assay and increased ICLs were observed by simultaneous exposure to CDDP (1.5 microM) and NB-506 (10 nM) compared with that in response to CDDP alone. DNA repair after ICL formation induced by 3-h exposure to CDDP (1.5 microM) was reduced by NB-506 (10 nM) exposure. On the other hand, a higher concentration of CDDP (150 microM) enhanced the topoisomerase I inhibitory activity of NB-506 and SN-38 determined by relaxation of supercoiled Escherichia coli DNA. These biological interactions might result in synergistic interactions between CDDP and NB-506 or SN-38. Topoisomerase I inhibitors and CDDP may be a key regimen for cancer chemotherapy and merit further examination.

Antineoplastic Agents

Effects of beta- and gamma-carboline derivatives of DNA topoisomerase activities.

beta-Carbolines, harman (1-methyl-9H-pyrido[3,4-b]indole) and norharman (9H-pyrido[3,4-b]indole) and gamma-carbolines, 3-amino-1,4-dimethyl-5H-pyrido[4,3-b]indole (Trp-P-1) and 3-amino-4-methyl-5H-pyrido[4,3-b]indole (Trp-P-2), are present in cooked foods and cigarette smoke. We studied the effects of these heterocyclic amines on the activity of DNA topoisomerases. Trp-P-1 and Trp-P-2 inhibited topoisomerase I (topo I) activity with ED50 values of 1.48 and 1.55 micrograms/ml, respectively, in a relaxation assay. Harman and norharman inhibited topo I activity but with much higher ED50 values, 23.8 and 34.4 micrograms/ml, respectively. Trp-P-1 and Trp-P-2 also inhibited topoisomerase II (topo II) activity at about 50 micrograms/ml, in a decatenation assay. Harman and norharman showed a much lower inhibitory effect on topo II activity. None of these compounds stabilized the cleavable complex mediated by topo II. Trp-P-1 and Trp-P-2 intercalated into DNA at concentrations inhibitory to topoisomerases. We considered that the intercalation with DNA and the inhibition of DNA topoisomerases by heterocyclic amines might be partly related to their inhibition of DNA excision repair and their enhancing effect on UV- or chemically induced mutagenic activity.

Breast Neoplasms

Improvement by eicosanoids in cancer cachexia induced by LLC-IL6 transplantation.

Cachexia frequently occurs in the late stages of cancer, and is difficult to manage. We previously reported that interleukin-6 (IL-6) cDNA transfection into Lewis lung carcinoma (LLC-IL6) induced cachexia-like symptoms in C57BL/6 mice. This was thought to be a useful experimental model of cancer cachexia. We have examined the effects of two eicosanoids, docosahexaenoic acid (DHA) and eicosapentaenoic acid (EPA), in order to evaluate whether they could relieve cachexia. LLC-IL6-bearing animals were divided into three treatment groups receiving DHA, EPA or water as the control; 80-microliter samples of these compounds (purity > 95%) were administered orally by catheter daily starting 7 days after tumor transplantation. Tumor growth curves were similar in the three groups. There were no differences in water or food intake in the three groups. However, body weight, a marker of cachexia, was significantly higher in treated mice than in the control group. Sixteen days after tumor transplantation, the mean body weight was 17.45 g (P < 0.05), 17.2 g and 16.41 g in the groups receiving DHA, EPA and water respectively. The eicosanoids did not affect serum levels of IL-6. Ubiquitination of muscle protein, a marker of proteolysis coupled to cachexia, was compared in LLC-IL6- and LLC-transplanted mice. The eicosanoids prevented the ubiquitination of approximately 180 kDa protein. These results suggest that eicosanoids may prevent the cachexia mediated by IL-6.

Animals

Retrospective analysis of the treatment of patients with small cell lung cancer showing poor performance status.

To assess the feasibility of treatments for patients with small cell lung cancer (SCLC) showing a poor performance status (PS, Eastern Cooperative Oncology Group; ECOG 3 or 4), we retrospectively reviewed the outcome for 13 SCLC patients showing poor PS treated at the National Cancer Center Hospital between January 1984 and May 1994. The main factors which contributed to poor prognosis were superior vena cava (SVC) syndrome, massive pleural effusion, tracheal stenosis due to lymph node swelling, pericardial effusion and pulmonary fibrosis (causing dyspnea in combination), brain metastasis resulting in neurological disturbance, cachexia, Eaton-Lambert syndrome causing muscle weakness, retroperitoneal lymph node metastasis causing abdominal pain, peritoneal effusion due to abdominal lymph node swelling, vertebral metastasis causing paraplegia, and dermatomyositis/polymyositis (DM/PM) causing muscle weakness. All of the patients received chemotherapy with or without radiotherapy. The PS of 8 patients improved with treatment, but no improvement was seen in 5. We analyzed these 13 patients and considered the treatments for those with poor PS. Chemo-radiotherapy was tolerable in SCLC patients showing PS 3, and improved their PS if severe conditions or combined disease did not arise concurrently. It was further suggested that PS 4 patients with severe conditions or combined disease should not be given the treatments.

Adult

A topoisomerase II inhibitor, NK109, induces DNA single- and double-strand breaks and apoptosis.

2,3-(Methylenedioxy)-5-methyl-7-hydroxy-8-methoxybenzo[c]phenanthr idinium hydrogensulfate dihydrate, called NK109, is a benzo[c]phenanthridine derivative, which inhibits DNA topoisomerase II activity by stabilizing the DNA-enzyme-drug complex, and shows strong growth-inhibitory effects on several human cancer cells. In the present study, NK109 treatment induced DNA fragmentation and a rise in the level of cytoplasmic nucleosomes, which are markers of apoptosis, in human small-cell lung carcinoma SBC-3 cells. These effects were inhibited by zinc ions and enhanced by cycloheximide or actinomycin D. Dose-dependent single- and double-strand DNA breaks were observed, using alkaline and neutral elution assays, in SBC-3 cells treated with more than 0.2 microM NK109 for 4 h. Treatment with NK109 caused more DNA single- and double-strand breaks than treatment with an equimolar amount of VP-16. These results suggest that NK109 induces DNA strand breaks and apoptosis. In addition, it appears that this process does not require protein or RNA synthesis, but involves a specific endonuclease which is inhibited by zinc ions.

DNA

Roentgenographically occult small-cell lung cancer: case report and review of the literature.

This report describes a rare case of roentgenographically occult small-cell lung cancer in a 73-year-old man with hemoptysis. Fiberoptic bronchoscopy disclosed a 5-mm dome-shaped lesion; a biopsy established the diagnosis of small-cell lung cancer. The patient received a combination of chemotherapy and radiotherapy. More than 10 years later, he is still alive without recurrent disease. A review of the literature of roentgenographically occult small-cell lung cancer revealed the following: (1) a history of heavy smoking was common; (2) double primary bronchogenic carcinoma was noted; (3) hemoptysis or bloody sputum was an initial common symptom; (4) the sensitivity of sputum cytologic analysis was relatively low; (5) the tumor, which was shiny, smooth, and covered with bronchial epithelium, was often located at the bifurcation; and (6) lymph node metastatic involvement occurred.

Aged

[Anticancer agents and apoptosis].

We reviewed recent investigations on apoptosis related to anticancer chemotherapy. The study of programmed cell death, apoptosis, has become one of the main stream in cellular biology, particularly in immunology, developmental biology and oncology. To determine whether the apoptotic cell death induced by anticancer agents could be inhibited by bcl-2 oncogene, we established a bcl-2 transfected human small cell lung cancer cell line, SBC-3/Bcl-2. SBC-3/Bcl-2 showed higher resistance to ADM, CPT-11 and MMC compared to the parental line SBC-3. Agarose gel electrophoresis showed typical DNA fragmentation of SBC-3 following treatment with CPT-11 or MMC. In contrast, the same concentration of the drugs did not induce DNA fragmentation in SBC-3/Bcl-2. However, there was no difference in sensitivity to CDDP, VP-16, ACNU, MTX and Taxol between SBC-3 and SBC-3/Bcl-2 (Ohmori T, et al: Biochem Biophys Res Commun 1993). These results suggest that bcl-2 can modulate the cytotoxicity of some anticancer agents by inhibiting the process of apoptosis. We speculate that some apoptotic pathways are bcl-2-dependent and others bcl-2-independent.

Animals

[Early phase II study of BMS-181339 (paclitaxel) in patients with non-small cell lung cancer. BMS-181339 Non-Small Cell Lung Cancer Study Group].

We conducted a multi-institutional (11 facilities), early phase II study of BMS-181339 (paclitaxel), a novel anti-cancer drug, for non-small cell lung cancer (NSCLC). The 150 mg/m2 dose of paclitaxel was given by intravenous infusion over 24 hours every three weeks. When fifteen patients were accumulated, the interim review revealed that three of 15 eligible patients had a partial response for a response rate of 20%. The most common toxic effects were grade 3 or 4 leukopenia seen in 73.3% (11/15), and grade 4 neutropenia in 93.3% (14/15). One patient with neutropenia had suspected septic shock, which could be managed by G-CSF and antibiotics. No serious hypersensitivity reaction was seen with premedication of anti-allergic drugs, although mild allergic reactions such as skin rash and flush, were observed in 20.0% (3/15). Other adverse reactions, including alopecia, fever, arthralgia, myalgia and peripheral neuropathy, were mild in most cases. We conclude that it is relevant to proceed to a late phase II study for NSCLC.

Adult