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Biomedical subjects

Y Yamashita

Publications and source records attributed to Y Yamashita.

At least 19 recordsLinked to original sources

Induction of mammalian DNA topoisomerase I mediated DNA cleavage by antitumor indolocarbazole derivatives.

DNA topoisomerases have been shown to be important therapeutic targets in cancer chemotherapy. We found that KT6006 and KT6528, synthetic antitumor derivatives of indolocarbazole antibiotic K252a, were potent inducers of a cleavable complex with topoisomerase I. In DNA cleavage assay using purified calf thymus DNA topoisomerase I and supercoiled pBR322 DNA, KT6006 induced topoisomerase I mediated DNA cleavage in a dose-dependent manner at drug concentrations up to 50 microM, while DNA cleavage induced by KT6528 was saturated at 5 microM. The maximal amount of nicked DNA produced by KT6006 was more than 50% of substrate DNA, which was comparable to that of camptothecin. Heat treatment (65 degrees C) of the reaction mixture containing these compounds and topoisomerase I resulted in a substantial reduction in DNA cleavage, suggesting that topoisomerase I mediated DNA cleavage induced by KT6006 and KT6528 is through the mechanism of stabilizing the reversible enzyme-DNA "cleavable complex". Both KT6006 and KT6528 did not induce topoisomerase II mediated DNA cleavage in vitro. KT6006 and KT6528 were found to induce nearly identical topoisomerase I mediated DNA cleavage patterns, which was distinctly different from that with camptothecin. In contrast to the similarity between KT6006 and KT6528 in their structures and the nature of their cleavable complex with topoisomerase I, these drugs have different properties with respect to their interaction with DNA: KT6006 is a very weak intercalator whereas KT6528 is a strong intercalator with potentials comparable to that of adriamycin. These results indicate that KT6006 and KT6528 represent a new distinct class of mammalian DNA topoisomerase I active antitumor drugs.

Animals

Use of proton nuclear magnetic resonance spectroscopy of plasma in screening for malignant disease.

In 1986, narrow plasma proton nuclear magnetic resonance (NMR) methyl and methylene line widths were reported to be associated with malignant disease, but more recent studies have not confirmed this relationship. The authors analyzed 106 plasma samples from healthy control subjects and patients with cirrhosis, hepatocellular carcinoma, metastatic liver tumors, other untreated cancers, and hyperlipidemia. NMR spectroscopy was performed using a proton NMR spectrometer operating at 399.65 MHz. A significant difference was found between the mean line widths of the plasma methyl resonances in control subjects and those in patients with cancer or hyperlipidemia. However, no significant difference was found between the mean plasma methylene line widths in control subjects and patients with cancer. Plasma samples from patients with liver disease or hyperlipidemia showed a characteristic methylene spectral pattern. The methylene pattern could be separated into three types: type A had a small peak on the right shoulder of the main peak; type B was a sharp single peak; and type C was a broad single peak. All control subjects had type A pattern; patients with liver disease had type C pattern; and patients who had hyperlipidemia had type B pattern, and hyperlipidemia may affect methyl and methylene line widths in NMR spectra. Because the methyl and methylene levels and their average line widths correlated inversely with triglyceride levels, considering the spectral patterns that indicate hyperlipidemia should decrease false-positive results and make the methyl line width useful for cancer screening.

Adult

Antitumor quinolones with mammalian topoisomerase II mediated DNA cleavage activity.

Ninety quinolones were evaluated to determine whether their ability to induce mammalian topoisomerase II mediated DNA cleavage in vitro correlated with their antitumor activity in vivo. Ten quinolones generated linear DNA at a yield of more than 10% of substrate supercoiled DNA in the mammalian topoisomerase II mediated DNA cleavage assay. All of these compounds showed a significant increase in life span (greater than 20%) in the murine leukemia P388 model. These antitumor quinolones have closely related structures: two halogens at C-6 and C-8; and cyclopropyl at N-1 of quinolone skeleton. In contrast, many analogues of the above quinolones, as well as new quinolones used clinically as an antibacterial drug, did not induce the cleavable complex in vitro or show antitumor activity in vivo. These findings indicate that quinolone derivatives can be a promising new class of antitumor agent targeting mammalian topoisomerase II.

Animals

Calcitonin inhibits the growth of human gastric carcinoma cell line KATO III.

Calcitonin has a wide variety of actions on gastrointestinal function. In this study, we investigated the effects of calcitonin on the growth of human gastric carcinoma cell line KATO III in comparison with those of calcitonin gene-related peptide (CGRP). Calcitonin, but not CGRP, significantly and dose-dependently inhibited the growth of KATO III cells. This inhibition of cell growth was accompanied by an increase in cyclic AMP production. The proliferation of KATO III cells was also inhibited by forskolin and dibutyryl cyclic AMP, although agents which do not stimulate cyclic AMP production had no effect. Furthermore, in the presence of GTP, calcitonin stimulated adenylate cyclase activity in KATO III cell membranes, and this increase was reduced in the absence of GTP. On the other had, neither calcitonin nor CGRP enhanced the turnover of inositolphospholipid or the intracellular Ca2+ level. In addition, 125I-labeled human calcitonin was specifically bound to KATO III cell membranes, and this binding was dose-dependently displaced by unlabeled calcitonin but not CGRP. Furthermore, the specific binding of 125I-labeled human calcitonin to KATO III cell membranes was significantly reduced by addition of GTP but not ATP. These results suggest that calcitonin inhibits the growth of human gastric carcinoma cell line KATO III by stimulating cyclic AMP production via a GTP-dependent process coupled to specific calcitonin receptors.

Adenylyl Cyclases

Analysis of the genetic diversity of genes 5 and 6 among group C rotaviruses using cDNA probes.

Two partial cDNA clones of genes 5 (encoding the major inner capsid protein VP 6) and 6 (encoding a nonstructural protein) of the porcine group (Gp) C rotavirus (Cowden strain) were radiolabeled with 32P and used individually as probes in Northern and dot blot hybridization assays. The specificity of each probe was tested against genomic dsRNA from: (1) porcine Gp A, B, and C rotaviruses; (2) Gp C rotaviruses from different species; and (3) porcine Gp C rotavirus field strains with varying electropherotype patterns. Neither probe hybridized with ds RNA from the porcine Gp A and B strains under the stringency conditions employed in the study. However, the gene 5 probe hybridized with the corresponding gene from the homologous porcine and the heterologous human and bovine Gp C rotaviruses tested. The gene 6 probe hybridized with the corresponding gene from the homologous Cowden strain, but hybridized weakly with gene 6 from the human and bovine Gp C rotaviruses. Both probes recognized all six different porcine Gp C field strains, although with varying intensities. Our results demonstrate that the gene 5 and 6 probes used in this study are specific for Gp C rotaviruses. However, evidence for greater genetic variation in the gene 6 among porcine, bovine and human Gp C strains suggested that the gene 5 probe may prove more broadly reactive among Gp C strains from different species. cDNA probes used in our study should prove useful for the detection of Gp C rotaviruses in feces and facilitate epidemiologic studies.

Antigens, Viral

Parenchymal changes of the liver in cholangiocarcinoma: CT evaluation.

We evaluated parenchymal changes of the liver in 92 patients (41 peripheral types and 51 hilar types) with cholangiocarcinomas studied by bolus-enhanced computed tomography (CT). In 39% of patients with the peripheral type, a wedge-shaped increased enhancement of the liver was observed peripheral to the tumor on bolus-enhanced CT. Tumor was observed in all cases. In 58.8% of patients with the hilar type, a segmental or lobar increased degree of enhancement of the liver was observed, but the tumor was demonstrated in only 58.8%. Atrophy was accompanied by areas of increased enhancement in 80% of hilar type and 25% of peripheral type. Areas of increased degree of enhancement corresponded to a wedged-shaped perfusion defect on CT during arterial portography. On magnetic resonance imaging (MRI), those lesions showed hyperintensity on T2-weighted images. Most of these changes were considered to be due to reversible hepatic parenchymal ischemia secondary to portal vein invasion by the tumor.

Adenoma, Bile Duct

On the association of human beta 2 microglobulin with cell culture-grown human cytomegalovirus (HCMV).

We studied the production of human beta 2 microglobulin (beta 2m) in mock-infected or human cytomegalovirus (HCMV) infected human embryonic lung fibroblasts (HEL) and the association of human beta 2m with HCMV virions. Titration of beta 2m by two-step sandwich enzyme immunoassay revealed that HEL released considerable amounts of human beta 2m into the culture medium and that the production of beta 2m was significantly enhanced by HCMV infection. The concentration of human beta 2m in the culture medium of HCMV-infected HEL reached 500 to 600 ng/ml, which corresponded to 7- to 12-fold of levels found in healthy adult urine. Immunoprecipitation assays showed that HEL-grown HCMV bound a significant amount of endogenous beta 2m, but the viruses were efficiently neutralized by either human hyperimmune anti-HCMV globulin or anti-HCMV monoclonal antibody even when treated with a large amount of human beta 2m or with dialysed urine. Thus it seems unlikely that the binding of beta 2m by HCMV is involved in masking the viral antigenic site necessary for neutralization.

Cells, Cultured

Evaluation of oil-soluble FUdR ester for transcatheter arterial treatment of hepatomas.

From January 1987 to December 1989, we performed a prospective study of transcatheter arterial chemoembolization therapy with iodized oil (Lipiodol) mixed with an anticancer agent. A new oil-soluble modification of FUdR, FUdR-C8 ester, was developed and dissolved in Lipiodol as an embolic material, which was administered to 36 patients with hepatomas. Water-soluble adriamycin emulsified in Lipiodol was used as control in 67 patients with hepatomas. Initial effects on tumors were observed as decrease of tumor size in 25.0% for the FUdR group and 17.9% for the control group. Alpha-fetoprotein decreased more than half in 41.9% of the FUdR group, and 16.1% of the ADM group. Six-month and one-year survivals were 74.2% and 46.8% for the FUdR group (median survival 317 days), whereas the control group yielded 61.0% and 28.3% survivals, respectively (median survival 191 days).

Carcinoma, Hepatocellular

Enteric adenovirus type 41 isolates: cloning, physical maps and diversity in restriction enzyme cleavage pattern.

Adenovirus (Ad) type 40 and 41 DNAs were directly extracted from stool specimens of children with gastroenteritis. Two new strains of Ad41, Sanekata and Ehime strain, were cloned and their restriction maps were constructed. The left terminal end of the cloned Ad41 genome, EcoRI-E fragment of the Sanekata strain and EcoRI-F fragment of the Ehime strain, had transforming ability in rat 3Y1 cells. Only one of the 35 isolates of Ad40 tested showed a different restriction profile, while three different restriction profiles were found in DNAs from Ad41 isolates.

Adenovirus Infections, Human

Voltage-dependent currents in isolated single Merkel cells of rats.

1. Merkel cells were dissociated enzymatically from the footpad epidermis of 10- to 20-day-old rats pretreated with fluorescent dye, quinacrine, for purposes of staining. The fluorescent Merkel cells had an elongated or elliptic shape in situ, yet the dissociated ones were round (7-12 microns in diameter). 2. Electrical recordings were performed in the whole-cell configuration using a conventional patch-clamp technique. The mean resting membrane potential of fluorescent Merkel cells was -54.0 mV, the value being greater than the -26.1 mV of non-fluorescent epidermal cells. No voltage-dependent channel was observed in non-fluorescent cells. 3. The Merkel cells had no Na+ spike in an external standard solution, but tetrodotoxin-resistant long-lasting action potentials were evoked by depolarization with injection of constant currents in an external solution containing Ba2+. 4. In Merkel cells under voltage clamp, depolarizing step pulses (800 ms) from a holding potential (VH) of -80 mV elicited predominantly outward K+ currents composed of transient and sustained components: the former was selectively inhibited by 4-aminopyridine (4-AP), while the latter was inhibited by both tetraethylammonium (TEA) and quinacrine. Quinacrine was more effective and selective than TEA in blocking the sustained K+ current but had no effect on the current at the low concentration (10(-7) or 3 x 10(-6) M) used for staining the Merkel cells. 5. The sustained outward K+ current (IKD) was activated at potentials more positive than -20 or -10 mV at a VH of -50 mV, at which potential the transient outward K+ channel was completely inactivated. The potential for half-inactivation in the steady-state inactivation curve for IKD was -33 mV. 6. The transient outward K+ current (IA) was activated at potentials more positive than -50 mV at a VH of -80 mV. The potential for half-inactivation in the steady-state inactivation curve for IA was -64 mV. 7. When the outward K+ currents were blocked by adding both TEA and 4-AP, only a sustained inward Ca2+ current was observed. In an external solution containing 10 mM-Ca2+, ICa was evoked by potentials more positive than -20 mV at a VH of -80 mV, and the maximum inward current appeared around +10 mV. Increases in external Ca2+ concentration ([Ca2+]o) induced a hyperbolic increase in ICa and shifted the current-voltage (I-V) relationship along the voltage axis in a more positive direction. Saturation of ICa occurred at about 25 mM [Ca2+]o.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Induction of topoisomerase II-mediated DNA cleavage by the plant naphthoquinones plumbagin and shikonin.

Plumbagin and shikonin, plant metabolites which have naphthoquinone structures, induced mammalian topoisomerase II-mediated DNA cleavage in vitro. Treatment of a reaction mixture containing these naphthoquinones and topoisomerase II at an elevated temperature (65 degrees C) resulted in a great reduction in DNA cleavage, suggesting that the mechanism of the topoisomerase II-mediated DNA cleavage induced by these naphthoquinones is through formation of a cleavable complex, as seen with antitumor agents such as 4'-(9-acridinylamino)methanesulfon-m-anisidide and demethylepipodophyllotoxin ethylidene-beta-glucoside. Lawson and lapacol, which are structurally related plant metabolites with naphthoquinone moieties, could not induce topoisomerase II-mediated DNA cleavage. Plumbagin and shikonin induced a similar DNA cleavage pattern with topoisomerase II which was different from the cleavage patterns induced with other known topoisomerase II-active drugs. A DNA-unwinding assay with T4 DNA ligase showed that shikonin, lawson, and lapacol did not intercalate into DNA, while plumbagin and 2-methyl-1,4-naphthoquinone intercalate into DNA, but to a lower degree than 4'-(9-acridinylamino)methanesulfon-m-anisidide does.

Animals

Evidence of serologic diversity within group C rotaviruses.

The Cowden strain of porcine group C rotavirus and the Shintoku strain of bovine group C rotavirus were classified as different serotypes by two-way cross-neutralization tests. Two neutralization patterns against the Cowden and Shintoku strains were observed when hyperimmune or convalescent-phase antisera to three noncultivatable porcine group C rotaviruses and a human group C rotavirus were used in one-way cross-neutralization tests. Antisera to two porcine group C rotaviruses and the human group C rotavirus neutralized the Cowden strain at high titers but did not neutralize the Shintoku strain, suggesting that these three strains are serotypically related to the Cowden strain. The remaining antisera to a porcine group C rotavirus (HF strain) reacted with the Cowden and Shintoku group C rotaviruses in cell culture immunofluorescence tests but did not neutralize either virus in one-way cross-neutralization, suggesting that the HF strain belongs to a third serotype. However, confirmation of these findings requires additional analysis by two-way cross-neutralization. Our findings support the existence of at least two distinct serotypes of group C rotaviruses, and possibly a third, among animals and humans. The serotypic similarity observed between the Cowden strain and a human group C rotavirus suggests that the cultivatable Cowden strain and antiserum to this virus may provide important reagents for the diagnosis of group C rotaviruses in humans.

Animals

Histamine decreases the permeability of an endothelial cell monolayer by stimulating cyclic AMP production through the H2-receptor.

To determine if histamine acts directly on the vascular endothelium, the effect of histamine on the permeability of cultured human endothelial cell monolayers and the role of second messengers were examined. The addition of 10(-6) to 10(-4) M histamine to the culture medium decreased the endothelial cell monolayer permeability and increased both cyclic AMP and free-calcium levels. The decrease in permeability and the increase in cyclic AMP mediated by histamine were prevented by an H2-blocker (famotidine) while the increase in free-calcium was inhibited by an H1-blocker (diphenhydramine). These results suggest that histamine decreases the permeability of endothelial cell monolayers through the H2-receptor, and cyclic AMP plays a more important role than calcium ion as a second messenger.

Animals

[Effects of ifenprodil on the adenosine triphosphatase of guinea pig liver mitochondria].

The effects of ifenprodil on adenosine triphosphatase (ATPase) activity were examined using guinea pig liver mitochondria. 1) Intact mitochondrial ATPase activity was stimulated by ifenprodil in a concentration-dependent manner, this effect being further potentiated with dinitrophenol. The stimulation by ifenprodil appeared with only ATP among four nucleotides as substrate. Mg2+ and Ca2+ attenuated the effect of ifenprodil. Ifenprodil abolished the KCN-induced inhibition. 2) Heat-treated mitochondrial ATPase activity, kept for 60 min at 50 degrees C, was decreased in a concentration-dependent manner by ifenprodil. The inhibitory effect of ifenprodil was abolished by Mg2+ and Ca2+. These results indicate that ifenprodil has two behaviors, acceleration of a latent ATPase and inhibition of an activated ATPase. These findings, together with our previous data, suggest that ifenprodil seems to affect the actions of Mg2+ and Ca2+ on mitochondrial ATPase by directly affecting the membrane, and these mechanisms may be involved in its anti-cyanide effect.

Adenosine Triphosphatases

Alpha-fetoprotein-producing cancer of the ampulla of Vater.

A case of cancer of the ampulla of Vater producing alpha-fetoprotein is reported and the literature is reviewed. As far as we know, the literature contains no reports of such a case. The preoperative serum alpha-fetoprotein was remarkably high (7,480 ng/ml), but it fell to normal values (under 5.0 ng/ml) after pancreatoduodenectomy, by means of which the lesion could be radically resected. In this case, the immunohistochemical findings at optical and electron microscopy clearly indicated the production of alpha-fetoprotein by the cancer cells of the ampulla of Vater.

Adenocarcinoma

Investigation of suitability of devascularized upper half of the whole stomach as replacement for the esophagus.

One hundred and fifteen patients with esophageal cancer underwent esophageal replacement with the stomach. The patients were divided into group A (52 patients, stomach tube, ante- or retro-sternal route) and group B (54 patients, devascularized upper half of the whole stomach, posterior mediastinal route). The post-operative complications, post operative symptoms and nutritional status were investigated in both groups. Lung complications tended to occur more frequently in group A (28.8% versus 22.2%), showing no significant difference. The incidence of other complications did not show a remarkable difference between either group except for leakage at the site of anastomosis. Major leakage occurred in 11.5% and 5.6%, and minor leakage in 30.8% and 18.5%, respectively. Postprandial fullness, nausea, heart burn and diarrhea were found to be somewhat higher in Group B. Change of oral intake, body weight and other indices of nutritional status were investigated and compared with pre- operative data. The amount of oral intake and levels of serum albumin was higher in group B than in group A between one and 12 months. These results demonstrate the superiority of the devascularized upper half of the whole stomach as an esophageal substitute.

Aged