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Biomedical subjects

M Kuwano

Publications and source records attributed to M Kuwano.

At least 163 records · Page 9Linked to original sources

[Multidrug resistance (MDR)].

Multiple drug resistance (MDR) is a major problem of current chemotherapy. Establishment of multiple drug resistant cell lines in culture and isolation of P-glycoprotein-coding MDR genes have promoted understanding of the molecular mechanisms underlying drug resistance in tumors. Another gene, MRP, has been recently isolated from a multiple drug resistant cell line which did not express P-glycoprotein. Both genes have DNA sequence homology for each other and have been identified as members of ATP binding cassette (ABC) transporter superfamily. This review refers to recent progress in MDR and MRP study, and focuses on involvement of these two drug-resistance-related genes in acquiring drug resistance and their physiological functions.

Animals↗

Determination of pilocarpine in aqueous humour by liquid chromatography-atmospheric pressure chemical ionization mass spectrometry.

A new method has been developed for rapid analysis and determination of pilocarpine in aqueous humour using liquid chromatography-atmospheric pressure chemical ionization mass spectrometry. The chromatography was carried out on a reversed-phase phenyl column with 0.1% acetic acid-acetonitrile (95:5, v/v). Pilocarpine and its analogues, isopilocarpine, pilocarpic acid and isopilocarpic acid, were separated. An aqueous humour sample was deproteinized with methanol. After evaporation, the residue was dissolved in the mobile phase. The method was applied to the analysis of the metabolite in aqueous humour after the topical application of 2% pilocarpine (w/v) eye-drops. The main metabolite, pilocarpic acid, was easily identified. The protonated molecular ion of pilocarpine was used for the determination. The calibration curve had a good linearity within the concentration range investigated (2 ng to 10 micrograms/ml). The limit of determination was estimated to be an aqueous humour concentration of ca. 2 ng/ml. The method was applied to the determination of unchanged pilocarpine after the topical application of 2% pilocarpine (w/v) eye-drops.

Animals↗

Anti-angiogenic activity of arachidonic acid metabolism inhibitors in angiogenesis model systems involving human microvascular endothelial cells and neovascularization in mice.

We have established an in vitro angiogenesis model using human omental microvascular endothelial (HOME) cells, in which epidermal growth factor (EGF) or transforming growth factor-alpha (TGF-alpha) stimulated cell migration and tube formation. In this study, we examined whether alpha-guaiaconic acid (GR-12) and its synthetic 20 derivatives showed inhibition of cell migration and tubular formation of HOME cells. We found that GR-12 inhibits arachidonic acid metabolism, while GR-12 and one derivative, GS-01, inhibit tubular formation of endothelial cells in our model system. Confluent monolayers of HOME cells were damaged with a razor blade and incubated with or without TGF-alpha; HOME cell migration was stimulated about 1.5-fold over control values in the presence of TGF-alpha. Treatment of HOME cells with GR-12 or GS-01 inhibited both spontaneous and TGF-alpha-stimulated migration. GR-12 or GS-01 inhibited TGF-alpha-induced HOME-cell tube formation in type-1 collagen gels. We examined whether these compounds could modulate tubular formation of HOME cells induced by human cancer cells. Enhanced tube formation of HOME cells by co-cultured esophageal cancer cells was almost completely inhibited by co-administration of GR-12 or GS-01. Both compounds also inhibited formation of tubular networks of HOME cells on Matrigels. We also examined anti-angiogenic activity of these compounds in an in vivo model system of tumor angiogenesis in mice. In this system, GS-01 inhibited development of capillary networks at a rate comparable to that of a well-known anti-angiogenic compound, fumagillin, but GR-12 did not. The inhibitor of arachidonic acid metabolism is thus expected to modulate tumor angiogenesis.

Animals↗

Involvement of protein kinase in environmental stress-induced activation of human multidrug resistance 1 (MDR1) gene promoter.

The human MDR1 gene can be induced in response to various environmental stimuli. To examine whether such stress-induced activation of the MDR1 gene can be modulated by protein kinase, we employed a stable human cancer KB cell line which contained the bacterial chloramphenicol acetyltransferase (CAT) gene directed by the MDR1 gene promoter. H-7, a protein kinase C inhibitor, at more than 40 microM inhibited activation of the MDR1 promoter that was induced by ethylmethane sulfonate, 5-fluorouracil or UV irradiation. DNA binding activity of nuclear factors recognizing the MDR1 promoter was augmented in KB cells treated with UV, but decreased in cells treated concomitantly with H-7. Okadaic acid alone was able to induce the promoter activation, and this induction was dependent on specific promoter sequences. Okadaic acid also enhanced the DNA binding activity of nuclear factors recognizing the MDR1 promoter. The phosphorylation of transacting factors may modulate the MDR1 gene promoter activity.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Irsogladine is a potent inhibitor of angiogenesis.

We describe a novel inhibitor of angiogenesis, Irsogladine, an anti-ulcer drug. Irsogladine inhibited plasminogen activator synthesis of, and tube formation by, human microvascular endothelial cells in type 1 collagen gel treated with an angiogenic growth factor, EGF. Furthermore, Irsogladine administered orally significantly inhibited in vivo angiogenesis in mice. Irsogladine may be useful in the treatment of diseases associated with angiogenesis.

Animals↗

Enhanced expression of the DNA topoisomerase II gene in response to heat shock stress in human epidermoid cancer KB cells.

Type II DNA topoisomerase breaks both DNA strands, and many anticancer agents including etoposide (VP-16) and teniposide (VM-26) have been developed by targeting topoisomerase II molecules. In this study we examined whether expression of the topoisomerase II gene is regulated in response to heat shock stress in human epidermoid cancer KB cells. Exposure of KB cells to 42 degrees C for 3 to 24 h permitted cell growth at a slightly reduced rate but still at an exponential rate, in comparison with that at 37 degrees C, whereas exposure to 45 degrees C for 15 to 120 min caused the almost complete cessation of exponential growth. There appeared 5-fold or higher increases in mRNA levels of both topoisomerase II and a heat shock protein, hsp-70, after exposure to 42 degrees C for 3 h, but only a slight, if any, increase in topoisomerase I mRNA. Nuclear run-on assays showed increased transcription of topoisomerase II and the hsp-70 gene after exposure to 42 degrees C. By contrast, KB cells induced a rapid and transient increase of topoisomerase II mRNA after exposure to 45 degrees C for 15 to 30 min, whereas the cellular level of hsp-70 mRNA was dramatically enhanced 60 min after exposure to 45 degrees C. The immunoblot assay also demonstrated increased expression of topoisomerase II in KB cells exposed to 42 degrees C. Decatenation activity of the nuclear extracts from KB cells was increased 1.5-fold by exposure to 42 degrees C, but there appeared no increase in topoisomerase I activity. Prior exposure of KB cells to 42 degrees C enhanced the cytotoxicity of VP-16, but not that of a topoisomerase I-targeting agent, a camptothecin analogue, CPT-11. However, exposure of KB cells to 42 degrees C after treatment with VP-16 did not enhance the cytotoxicity induced by the drug. The formation of cleavable DNA-topoisomerase II-VP-16 complexes was also greatly increased by prior exposure to 42 degrees C. Our present study proposes the hypothesis that the topoisomerase II gene might be one of the heat-shock-inducible genes and that hyperthermic anticancer therapy with topoisomerase II-targeting antitumor agents can be improved.

Camptothecin↗

Indispensable role of tissue-type plasminogen activator in growth factor-dependent tube formation of human microvascular endothelial cells in vitro.

Epidermal growth factor (EGF) stimulates the migration and proliferation of, and tissue-type plasminogen activator (tPA) synthesis in, human omental microvascular endothelial (HOME) cells in culture, as well as inducing the formation by these cells. In the present study, we examined the effects of various growth factors, i.e., transforming growth factor-alpha (TGF-alpha), insulin-like growth factor 1 (IGF-1), and hepatocyte growth factor (HGF) on HOME cells, and compared their effects with that of EGF. IGF-1 stimulated the proliferation and migration of these cells at a level comparable to EGF. EGF and TGF-alpha induced expression of tPA in HOME cells, while IGF-1 and HGF did not. EGF and TGF-alpha induced tube formation by HOME cells in type I collagen gel, while IGF-1 and HGF did not. The stimulatory effect of EGF on tube formation in the gel was blocked by anti-tPA antibody and by a serine protease inhibitor, aprotinin. When exogenous tPA and IGF-1 or HGF were added simultaneously to the culture, a marked induction of tube formation in the gel was observed. Exogenously added tPA alone, however, had no such inducible effect on tube formation. These results indicated an indispensable role of tPA in growth factor-dependent tube formation by HOME cells. Two subsets of growth factors appeared to modulate angiogenesis: One with fully active angiogenic activity which could induce PA (this included EGF and TGF-alpha), and the other, which could not induce PA and was not angiogenic, but could promote angiogenesis in the presence of PA. This subset included IGF-1 and HGF.

Cell Division↗

Morphological change and destabilization of beta-actin mRNA by tumor necrosis factor in human microvascular endothelial cells.

Tumor necrosis factor-alpha (TNF-alpha) produced morphological changes from a cobblestone-like shape into a spindle shape in human omental microvascular endothelial (HOME) cells and also a drastic rearrangement of actin filaments. Expression of beta-actin gene was diminished in HOME cells treated with TNF-alpha for 24 h. Northern blot analysis of the beta-actin gene demonstrated that the cellular level of beta-actin mRNA was decreased at 6-12 h after exposure to TNF-alpha. However, there appeared to be no changes in cellular mRNA levels of beta-tubulin, fibronectin, laminin B1, laminin B2, and laminin binding protein genes after treatment with TNF-alpha. Nuclear run-on assays showed increased transcription of the low-density lipoprotein receptor gene, but not of the beta-actin gene. These data suggested that the TNF-alpha-induced inhibition of beta-actin gene expression was not due to altered transcription activity. The degradation rates of beta-actin, plasminogen activator inhibitor-1, and epidermal growth factor receptor mRNAs were examined in the presence of actinomycin D. beta-Actin mRNA was found to be specifically destabilized in TNF-alpha-treated HOME cells, while other mRNA species were not. Coadministration of cycloheximide blocked the TNF-alpha-induced degradation of beta-actin mRNA. The TNF-alpha-induced destabilization of beta-actin mRNA and rearrangement of actin filaments are discussed in relation to the morphological changes in human microvascular endothelial cells.

Actin Cytoskeleton↗

A case of congenital nephrotic syndrome associated with positive C1q immunofluorescence.

We present a 1-month-old girl with a congenital nephrotic syndrome and unusual histological findings. Immunofluorescence microscopy demonstrated granular mesangial deposition of C1q and electron microscopy revealed electron-dense mesangial deposits. Her heavy proteinuria gradually decreased and the steroid therapy did not have a significant effect. Her renal function was normal throughout the entire period of observation. The clinical evidence and histopathological features of this patient were compatible with C1q nephropathy.

Complement C1q↗

Reduction of drug accumulation in cisplatin-resistant variants of human prostatic cancer PC-3 cell line.

We have isolated cis-diamminedichloroplatinum (II) (CDDP)-resistant variants, P/CDP4 and P/CDP5, from human prostatic cancer PC-3 cells after a stepwise exposure to CDDP. P/CDP4 and P/CDP5 showed 11-fold and 23-fold higher resistance to CDDP than did PC-3. P/CDP5 was cross-resistant to carboplatin, mitomycin C, etoposide, m-AMSA, bleomycin and UV irradiation. Alkaline elution of DNA showed an increased amount of DNA interstrand cross-links in PC-3 but not in P/CDP5 when PC-3 and P/CDP5 were cultured with CDDP. Flameless atomic absorption spectrophotometry revealed that intracellular accumulation of CDDP in P/CDP4 and P/CDP5 was decreased to 18 to 34% and 9 to 18% of that of PC-3, respectively, when PC-3 and its CDDP-resistant counterparts were incubated with 5 and 10 micrograms./ml. of CDDP for 24 hours. These data suggest that decreased drug accumulation is involved in the development of CDDP-resistance in the PC-3 cell line.

Cisplatin↗

The mechanism for the activation of latent TGF-beta during co-culture of endothelial cells and smooth muscle cells: cell-type specific targeting of latent TGF-beta to smooth muscle cells.

Transforming growth factor-beta (TGF-beta) is secreted in a latent form and activated during co-culture of endothelial cells and smooth muscle cells. Plasmin located on the surface of endothelial cells is required for the activation of latent TGF-beta (LTGF-beta) during co-culture, and the targeting of LTGF-beta to the cellular surface is requisite for its activation. In the present study, the cellular targeting of LTGF-beta was examined. We detected the specific binding of 125I-large LTGF-beta 1 isolated from human platelets to smooth muscle cells but not to endothelial cells. A mAb against the latency-associated peptide (LAP) of large LTGF-beta 1 complex, which blocked the binding of 125I-large LTGF-beta 1 to smooth muscle cells, inhibited the activation of LTGF-beta during co-culture. The binding of 125I-large LTGF-beta 1 could not be competed either by mannose-6-phosphate (300 microM) or by the synthetic peptide Arg-Gly-Asp-Ser (300 micrograms/ml). These results indicate that the targeting of LTGF-beta to smooth muscle cells is required for the activation of LTGF-beta during co-culture of endothelial cells and smooth muscle cells. The targeting of LTGF-beta to smooth muscle cells is mediated by LAP, and the domain of LAP responsible for the targeting to smooth muscle cells may not be related to mannose-6-phosphate or an Arg-Gly-Asp sequence, both of which have been previously proposed as candidates for the cellular binding domains within LAP.

Amino Acid Sequence↗

Carboxyl-terminal heparin-binding fragments of platelet factor 4 retain the blocking effect on the receptor binding of basic fibroblast growth factor.

Platelet factor 4 (PF-4) blocks the binding of basic fibroblast growth factor (bFGF) to its receptor. In the present study, we constructed carboxyl-terminal fragments, which represent the heparin-binding region of the PF-4 molecule, and examined whether these synthetic peptides retain the blocking effects on the receptor binding of bFGF. Synthetic peptides inhibited the receptor binding of bFGF. Furthermore, they inhibited the migration and tube formation of bovine capillary endothelial cells in culture (these phenomena are dependent on endogenous bFGF).

Amino Acid Sequence↗

Induction of vascular endothelial tubular morphogenesis by human glioma cells. A model system for tumor angiogenesis.

We have developed two different models of tumor angiogenesis by human brain tumors: one being tube formation by bovine aortic endothelial (BAE) cells cocultured with tumor cells in vitro, and other being in vivo angiogenesis in mice when tumor cells are transplanted into the dorsal sac. We investigated whether tube formation could be induced in BAE cells in type I collagen gel when these cells were cocultured with seven human glioma cell lines. Four of the seven glioma cell lines, which had high levels of basic fibroblast growth factor (bFGF) mRNA, induced tube formation by BAE cells. The tube formation was blocked by coadministration of anti-bFGF antibody. In in vivo model system of tumor angiogenesis in mice, these four cell lines were highly angiogenic. In contrast, with the other three glioma cell lines, which had poor expression of bFGF, BAE cells showed no apparent tube formation. These three cell lines did not efficiently develop capillary networks in mice. The results demonstrated a correlative relationship in the tubulogenesis of BAE cells, bFGF mRNA levels and angiogenesis in mice. The present study with two model systems of tumor angiogenesis suggests that the angiogenesis of some human glioma cell lines is mediated by bFGF, possibly via paracrine control.

Animals↗

Brefeldin A protects ricin-induced cytotoxicity in human cancer KB cell line, but not in its resistant counterpart with altered Golgi structures.

Brefeldin A (BFA), an isoprenoid fungal metabolite, dramatically disrupts intracellular protein transport and protein secretion. BFA protects cells from the cytotoxicity of a plant toxin, ricin or pseudomonas toxin, but not that of diphtheria toxin (Yoshida et al., 1991. Expt. Cell Res., 192: 389-395.). In this study, we examined whether BFA could differentially change the cytotoxicity of ricin between BFA-sensitive cells and BFA-resistant cells. As a BFA-resistant cell line, we used a resistant cell line, KB/BF2-2, derived from BFA-sensitive human cancer KB cells. BFA treatment caused the disappearance of typical Golgi cisternae and the concomitant appearance of dilated vesicles in the cytoplasm in KB cells. By contrast, KB/BF2-2 cells had already altered Golgi structures with poor development of cisternae and also many vesicles in the absence of BFA, and BFA treatment did not further induce the morphological changes. Although a plasma membrane-specific marker protein, alpha-adaptin, was localized similarly in KB/BF2-2 as KB, Golgi specific markers such as beta-cop and gamma-adaptin were distributed in the cytoplasmic small vesicles as well as Golgi compartments in KB/BF2-2 cells in the absence of BFA, and the mutant cells showed no apparent changes in the distribution even when exposed to BFA. Ricin inhibited protein synthesis in KB and KB/BF2-2 to similar levels while pretreatment of KB cells with BFA at 0.1 microgram/ml almost completely reversed the inhibitory effect of ricin. By contrast, the pre-exposure of KB/BF2-2 cells to 1.0 microgram/ml BFA only partially rescued the ricin-induced inhibition of protein synthesis. Exposure to BFA at 30 min before ricin addition or at 0 min with ricin rescued the protein synthesis inhibition, but no rescue occurred when BFA was added 30 min after ricin addition. BFA could not rescue the protein synthesis inhibition by another toxin, diphtheria toxin. Our results suggest that BFA-resistant mutation causes a specific change in the endocytic membrane traffic of ricin in human cells, and also that cytotoxicity of diphtheria toxin does not share a common pathway of the intracellular transport with that of ricin.

Adaptor Protein Complex gamma Subunits↗

Differentially potentiating effects by dipyridamole on cytotoxicity of 5-fluorouracil against three human maxillary cancer cell lines derived from a single tumor.

Dipyridamole (DPM), an inhibitor of nucleoside transport, is a unique potentiator of 5-fluorouracil (5-FU). We examined the combined effects of DPM and 5-FU on three cell lines (IMC-2, IMC-3, IMC-4) derived from a single tumor of a patient with maxillary cancer. DPM at 1.0-2.0 microM potentiated the cytocidal action of 5-FU > 20-fold against IMC-2 cells, while DPM at 10-20 microM potentiated the action of 5-FU against IMC-3 cells by 2-fold and against IMC-4 cells by approximately 4-fold. We examined why DPM differentially potentiated 5-FU against the three cell lines. The three maxillary cell lines showed heterogeneous sensitivities to the combination of 5-FU and DPM. We compared intracellular metabolism of 5-FU in IMC-2, IMC-3 and IMC-4 cells by HPLC. Determination of 5-FU metabolites demonstrated that cellular contents of 5-fluorodeoxyuridine monophosphate (FdUMP) were 104.66, 15.35 and 61.5 fmol/10(6) cells in IMC-2, IMC-3 and IMC-4 cells, respectively, in the presence of 10 microM DPM when the three cell lines had similar levels (0.21-0.33 fmol/10(6) cells) of FdUMP in the absence of DPM. By contrast, cellular levels of 5-FU and 5-fluorouridine triphosphate (FUTP) were not appreciably changed by DPM in three cell lines. The cellular level of thymidylate synthase mRNA in IMC-2 cells was found to be about one-fifth of that in IMC-3 and IMC-4 cells. The differential effects of DPM on the potentiation of 5-FU cytotoxicity might be closely related to the cellular levels of FdUMP and its target enzyme, thymidylate synthase in three human maxillary cancer cell lines.

Cell Survival↗

Enhanced expression of the human multidrug resistance 1 gene in response to UV light irradiation.

The multidrug resistance 1 (MDR1) gene encodes a M(r) 170,000 membrane glycoprotein termed P-glycoprotein, which catalyzes the energy-dependent efflux of multiple anticancer agents. We investigated the activation of the MDR1 gene promoter by UV light irradiation in human cancer KB cells after both transient and stable transfection assays of the MDR1 promoter fused to the chloramphenicol acetyltransferase (CAT) gene. Following exposure to UV irradiation, CAT gene expression was about 20-fold increased. A series of promoter dissection analyses showed that two elements extending from -136 to -76 of the 5' flanking sequence and from +1 to +121 of the sequence downstream from the initiation site were required for the stress induction of MDR1 promoter activity. Gel shift assays showed that the specific DNA binding activities of the transacting protein to the MDR1 promoter were augmented in nuclear extracts from the cells treated with UV irradiation. A DNA sequence, an inverted CCAAT box, was identified that specifically bound to this protein, and mutation of this sequence abolished the binding of this protein. Two guanines in the inverted CCAAT box were found to be critical, as methylation of these guanines abrogated the binding. Nuclear run-on assay demonstrated that the transcription level was increased about 5-fold. These results suggest that the activation of the MDR1 promoter may result from transcriptional rather than posttranscriptional events. These studies will provide the basis for understanding the regulatory mechanism for appearance of the drug-resistant phenotype during cancer chemotherapy.

Base Sequence↗

Induction of human microvascular endothelial tubular morphogenesis by human keratinocytes: involvement of transforming growth factor-alpha.

Transforming growth factor-alpha(TGF-alpha), homologous to epidermal growth factor(EGF), is closely involved in hyperproliferation of human keratinocytes. Psoriasis is a common hyperproliferative skin disease characterized by hyperproliferation of keratinocytes and abnormal development of dermal capillary networks. In this study, we have examined whether keratinocytes could enhance angiogenesis. TGF-alpha or EGF efficiently stimulated formation of tubular-like structures of human omental microvascular endothelial(HOME) cells in type I collagen gels. Human keratinocytes produced TGF-alpha. To examine whether co-cultured keratinocytes could induce tubulogenesis of HOME cells in collagen gel, we have developed a co-culture system with human keratinocytes. Surprisingly, there appeared new development of many tubular-like structures of HOME cells in collagen gels when co-cultured with keratinocytes. This keratinocytes-dependent tubulogenesis was almost completely blocked when anti-TGF-alpha-antibody was present. The TGF-alpha molecules derived from keratinocytes appeared to enhance tubulogenesis of human microvascular endothelial cells. We propose the hypothesis that secretory TGF-alpha from human keratinocytes may promote an autocrine loop to proliferate the skin keratinocytes and also a paracrine loop to induce the skin angiogenesis.

Blotting, Northern↗