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Biomedical subjects

N Yamamoto

Publications and source records attributed to N Yamamoto.

At least 19 recordsLinked to original sources

Modulation of TCR-mediated signaling pathway by thymic shared antigen-1 (TSA-1)/stem cell antigen-2 (Sca-2).

Thymic shared antigen-1 (TSA-1) is a glycosyl-phosphatidylinositol (GPI)-anchored differentiation Ag expressed on murine lymphocytes, and is identical to stem cell Ag-2 (Sca-2). Using newly established mAb against TSA-1/Sca-2, we have previously shown that surface TSA-1 expression is induced upon activation in T cells, and that anti-TSA-1 inhibits IL-2 production induced by anti-CD3 stimulation in T cell hybridomas. In the present study, we have analyzed the functional role of TSA-1 during T cell activation using normal T cells, T cell hybridomas, and transfected Jurkat cell lines that expressed either GPI-anchored or transmembrane form of TSA-1. Anti-TSA-1 inhibited IL-2 production from normal T cells stimulated with soluble anti-CD3 plus accessory cells. Anti-TSA-1 exhibited the inhibitory effect on T cells, but not on accessory cells, because anti-TSA-1 inhibited IL-2 production in Jurkat cells transfected with TSA-1 cDNA, but not in control transfectant. A transmembrane form of TSA-1 was expressed in Jurkat cells by fusing the extracellular portion of TSA-1 to the transmembrane and cytoplasmic regions of the class 1 Db. The analysis using this transfectant revealed that anti-TSA-1-mediated inhibition of IL-2 production did not require the GPI anchor of TSA-1. Finally, in addition to the inhibition of IL-2 production, tyrosine phosphorylation of CD3 zeta-chains observed following TCR stimulation, one of the important early activation events, was markedly reduced by anti-TSA-1. These results imply that TSA-1/Sca-2 plays an important regulatory role in the TCR signaling pathway of activated T cells in addition to its role in T cell differentiation.

Animals

The synthetic [Tyr5,12,Lys7]-polyphemusin II peptide (T22) binds to the CD4 cell surface molecule.

The [Tyr5,12,Lys7]-polyphemusin II peptide (T22) inhibits HIV-1 replication in lymphocytes. The mechanism of T22 inhibition of HIV-1 replication may involve T22 competition with HIV-1 for attachment sites on the plasma membrane of targeted cells. Here we find that the T22 peptide binds to the CD4 molecule in affinity columns. We also find that antiserum to CD4 inhibits cell attachment to T22. Further CD4+ transfected cells attach to T22 while their parental cells which do not express CD4 do not attach to T22. These data demonstrate that T22 binds to the CD4 molecule and supports the hypothesis that T22 inhibits HIV-1 replication by binding to the cell surface CD4 molecule and inhibiting uptake of the virus.

Amino Acid Sequence

Administration of recombinant interleukin 12 prevents outgrowth of tumor cells metastasizing spontaneously to lung and lymph nodes.

The present study investigates the ability of recombinant interleukin 12 (rIL-12) to modulate the growth of a primary tumor as well as the outgrowth of metastatic tumor cells in an ovarian carcinoma (OV-HM) model. This aggressive tumor displayed rapid growth of the primary tumor mass, high incidence of metastases to lung and lymph nodes, and invasion from the primary s.c. site to the peritoneal cavity. Starting 12 days after s.c. tumor cell implantation, several i.p. injections of rIL-12 at 2-3 day intervals resulted in regression of growing tumors. These treated mice did not show signs of metastases or tumor recurrence at the original site. One month after tumor implantation, untreated mice did not have visible lung metastasis, but some did have palpable lymph nodes. At this stage, the primary tumors of animals without palpable lymph nodes were surgically resected. When examined 2 months later, most animals had developed lymph node and lung metastases. In contrast, rIL-12 injections after tumor resection inhibited the development of metastases in both lung and lymph nodes. This contrasted with the failure of IL-2 to prevent metastases. Even for mice already showing signs of lymph node metastases or invasion of the abdominal wall, rIL-12 administration after tumor resection prevented further invasion to the peritoneal cavity and growth of metastatic tumor cells in lung. It was somewhat surprising that the IL-12 treatment of animals after 1 month of tumor growth without resection also resulted in complete tumor regression, as well as eradication of micrometastasis that would have occurred before the treatment. Moreover, they exhibited resistance to a rechallenge with the same tumor but not with a second tumor. Thus, this tumor system provides a relevant model to clinical situations in terms of treatment of advanced tumors and metastases. These results also indicate that IL-12 can induce a curative immune response, even in the face of an aggressive micrometastasizing tumor.

Animals

Specific degradation of the D1 protein of photosystem II by treatment with hydrogen peroxide in darkness: implications for the mechanism of degradation of the D1 protein under illumination.

The D1 protein of the photosystem II (PSII) reaction center has a rapid turnover and is specifically degraded under illumination in vivo. When isolated PSII membranes were treated in darkness with 10 mM hydrogen peroxide (H2O2), an active form of oxygen that is generated at the acceptor side of PSII under illumination, proteins of the PSII reaction center were specifically damaged in almost the same way as observed under illumination with strong light. The D1 protein and, to a lesser extent, the D2 protein were degraded to specific fragments, and cross-linked products (the covalently linked adduct of the D1 protein and the alpha subunit of cytochrome b559 and the heterodimer of the D1 and D2 proteins) were generated concomitantly. The site of cleavage of the D1 protein that gave rise to a major fragment of 22 kDa was located in the loop that connects membrane-spanning helixes IV and V. Treatment with H2O2 caused the same damage to proteins in isolated thylakoids and in core complexes that contained the non-heme iron at the acceptor side, but not in isolated reaction centers depleted of the iron. From these observations and the effects of reagents that are known to interact with the non-heme iron, it is suggested that the damage to proteins is caused by oxygen radicals generated by the non-heme iron in the Fe(II) state in a reaction with H2O2. It is proposed, moreover, that a similar mechanism is operative during the selective and specific degradation of the D1 protein under illumination.

Chloroplasts

Repulsive and attractive mechanisms for the formation of corticofugal projections.

Neocortical neurones project axons to subcortical and cortical structures according to their laminar location. The axon-target interactions which produce lamina-specific efferent connections were studied in an organotypic coculture of rat visual cortex with either superior colliculus (SC) or heat-treated SC. Morphological studies with fluorescent dye demonstrated that axons from upper layer neurones did not invade living SC, which receives axonal projections from layer 5, but did extend into denatured SC. In addition, the treatment considerably reduced the number of layer 5 neurones which project to the SC. These results suggest that SC contains a repulsive factor for axonal extension from the upper cortical layer as well as an attractive factor for axonal growth from layer 5 neurones.

Animals

Phosphorothioate oligonucleotides block reverse transcription by the Rnase H activity associated with the HIV-1 polymerase.

We demonstrate the degradation of RNA bound to an antisense oligonucleotide by a reverse transcriptase enzyme-associated RNase H activity. We found that phosphorothioate oligonucleotides inhibit the RNase H activity by binding to AMV RT, rather than to the template RNA, whereas the RNase H activity of HIV-1 RT is not affected by the antisense phosphorothioate oligonucleotide. Selective inhibition of HIV-1 gene expression involves the degradation of the template RNA bound to the antisense phosphorothioate oligonucleotide by the RNase H activity associated with the HIV-1 polymerase.

Avian Myeloblastosis Virus

Correlation of therapeutic outcome in non-small cell lung cancer and DNA damage assayed by polymerase chain reaction in leukocytes damaged in vitro.

A pilot study was conducted in patients with advanced non-small cell lung cancer to examine whether the gene-specific damage in mononuclear cells (MNCs) incubated with cisplatin in vitro correlates with chemotherapeutic outcome in cisplatin-based chemotherapy. Twenty-one patients received cisplatin-based chemotherapy, consisting of cisplatin (80 mg/m2 i.v. on day 1), vindesine (3 mg/m2 i.v. on days 1 and 8), with or without mitomycin (8 mg/m2 i.v. on day 1). MNCs from peripheral blood were obtained from each patient before chemotherapy. The cells were incubated with cisplatin for 3 h in vitro and the 2.7-kb fragment of the hypoxanthine phosphoribosyltransferase gene was amplified by PCR for quantitation of DNA damage. There was a 4-fold interpatient variation in DNA damage in MNCs. Seven of 21 patients had a partial response to chemotherapy. When the dose of cisplatin required to reduce amplification of the hypoxanthine phosphoribosyltransferase sequence by 63% (D63 value) of MNCs was compared in each patient (defined by a Poisson distribution as the dose that produced an average of one lesion per single strand of the 2.7-kb fragment), the mean D63 value in patients showing a partial response (n = 7; 52 +/- 11 micrograms/ml) was significantly lower than that in patients showing no change (n = 10; 81 +/- 20 micrograms/ml; P = 0.0045) and in patients with disease progression (n = 4; 115 +/- 34 micrograms/ml; P = 0.0012). The mean D63 in patients with no change was also significantly lower than that in the patients with disease progression (P = 0.0386). Seven (70%) of 10 patients with a D63 value < 70 micrograms/ml were responders. No relationship was observed between the D63 values and hematological and nonhematological toxicities. It is suggested that DNA damage in MNCs incubated by cisplatin treatment in vitro in responders was greater than that in nonresponders. Gene-specific damage in MNCs from peripheral blood incubated with cisplatin in vitro assayed by PCR may predict the chemotherapeutic response in cisplatin-based chemotherapy for non-small cell lung cancer.

Adult

Multiple gonadotropin-releasing hormone (GnRH)-immunoreactive systems in the brain of the dwarf gourami, Colisa lalia: immunohistochemistry and radioimmunoassay.

The present study characterizes gonadotropin-releasing hormone (GnRH) neuronal groups that are located in several different brain regions by investigating GnRH molecular species and projection patterns in an anabantid fish, Colisa lalia. First, we examined the molecular species of GnRHs in extracts of the brain and the pituitary by reverse-phase high-performance liquid chromatography followed by radioimmunoassays. We found salmon GnRH (sGnRH), chicken GnRH-II (cGnRH-II), and an unfamiliar GnRH-like substance. Next, to examine the distribution of each GnRH molecule in different GnRH neuronal groups, we performed immunohistochemistry using four kinds of antisera and an antibody. Furthermore, we performed brain lesioning experiments of terminal nerve (TN) cells, the most conspicuous GnRH-immunoreactive cells in Colisa lalia. Comparisons of immunoreactive structures between TN-lesioned fish and untreated fish elucidated the projection area of each neuronal group. Three major neuronal groups were observed. TN-GnRH cells, which are located in the transitional area between the olfactory bulb and the telencephalon, showed strong sGnRH and weaker cGnRH-II immunoreactivity. TN-GnRH cells projected to wide areas of the central nervous system from the olfactory bulb to the spinal cord. The second group, located in the preoptic area, showed only sGnRH immunoreactivity and projected only to the pituitary. The third one, located in the midbrain tegmentum, exhibited strong cGnRH-II and weaker sGnRH immunoreactivity. This cell group projected mainly to brain regions posterior to the hypothalamus and the spinal cord. These different projection patterns suggest functional differentiation of each GnRH neuronal group.

Animals

A study on thapsigargin-induced calcium ion and cation influx pathways in vascular endothelial cells.

To investigate Ca2+/cation entry pathway in vascular endothelial cells, we examined the effects of thapsigargin on [Ca2+]i and Mn2+ entry in cultured porcine aortic endothelial cells. Thapsigargin inhibits the activity of endoplasmic reticulum (ER, intracellular Ca2+ pool) Ca(2+)-ATPase, and stimulates Ca2+ entry from extracellular space by depleting intracellular Ca2+ pool. Cultured endothelial cells were loaded with fura-2/AM, and [Ca2+]i was measured by the ratios of fluorescence at 340/380 nm excitation, and Mn2+ entry was observed by the quenching of fluorescence at 360 nm excitation. Thapsigargin elevated [Ca2+]i in a time- and dose-dependent manner. The increase in [Ca2+]i caused by thapsigargin was lowered in Ca(2+)-free solution containing 3 mM EGTA. Verapamil (10(-5) M) and equimolar replacement of extracellular NaCl by LiCl had no effects on the maximum elevation of [Ca2+]i by thapsigargin. The increase in [Ca2+]i by thapsigargin was significantly inhibited by either NiCl2 (10(-3) M) or membrane depolarization using 50 mM KCl. Thapsigargin stimulated Mn2+ entry concomitantly with the increase in [Ca2+]i. Mn2+ entry was augmented in Ca(2+)-free solution. These results suggested that (1) the increase in [Ca2+]i by thapsigargin consisted of both Ca2+ release from ER and Ca2+ entry from extracellular space, and (2) thapsigargin also stimulated Mn2+ entry, which was interfered with in the presence of extracellular Ca2+.

Animals

Regulatory mechanisms for production of IFN-gamma and TNF by antitumor T cells or macrophages in the tumor-bearing state.

Spleen cells from BALB/c mice bearing a syngeneic tumor (CSA1 M) 2 to 3 wk after inoculation with CSA1 M cells produced IL-2, IFN-gamma, and TNF upon in vitro cultures. This was previously demonstrated to be a result of collaboration between tumor-primed CD4+ T cells and APCs binding CSA1 M tumor Ags in vivo. The IL-2- and IFN-gamma-producing capacities decreased with the progress of tumor-bearing stages. This was parallel to the levels of IL-2 and IFN-gamma mRNAs expressed by cultured spleen cells. In contrast, comparable levels of TNF mRNA were expressed by all groups of cultured cells. However, large amounts of TNF were secreted by the cells from early but not from late tumor-bearing mice. TNF was produced mainly by the non-T cell fraction upon stimulation with CD4+ T cell-derived IFN-gamma. Therefore, the reduced TNF production by whole spleen cells from late tumor-bearing mice was restored by addition of rIFN-gamma to their cultures. Reciprocally to the progressive decrease in the production of IFN-gamma/TNF, the capacities of tumor-bearing mice to produce TGF-beta and IL-6 increased along with tumor growth. TGF-beta suppressed production of IL-2, IFN-gamma, and TNF, but not of IL-6. Moreover, IFN-gamma/TNF production was negatively regulated by IL-6. Taken together with the fact that the growth of CSA1 M cells is completely inhibited by the combination of TNF and IFN-gamma, these results demonstrate that the tumor-bearing state induces an abnormal cytokine network under which the production of antitumor cytokines is negatively regulated.

Animals

Extrinsic sympathetic reinnervation after intestinal transplantation in rats.

Although extrinsic denervation is inevitable after intestinal transplantation and leads to poor intestinal function, little is known about the occurrence of extrinsic reinnervation. In this study, extrinsic sympathetic reinnervation was investigated morphologically following syngeneic intestinal transplantation performed on male Lewis strain rats. At 1, 3, 6, 9, 15, and 27 weeks after transplantation, the graft mesenteric arteries and their branches in the intestinal wall were histochemically examined by a glyoxylic acid method demonstrating perivascular sympathetic nerve fibers. At 3 weeks after transplantation, extrinsic sympathetic reinnervation was recognized in the graft mesenteric arteries, where it traversed the arterial anastomosis and extended along the course of the mesenteric arteries from proximal to distal. The degree of reinnervation in the mesenteric arteries was similar to the results obtained in the simple denervation model. The transplanted intestinal tract itself was sympathetically denervated for at least 9 weeks after transplantation, and reinnervation was not recognized until 15 weeks after transplantation. Reinnervation extended into the intestinal wall in every preparation, and the enteric nerves began to be reinnervated at 27 weeks after transplantation, but the density was still at a low level and complete extrinsic reinnervation of the graft would seem to require a much longer time to reestablish itself.

Animals

Synthesis and structure-activity relationships of phenylenebis(methylene)-linked bis-tetraazamacrocycles that inhibit HIV replication. Effects of macrocyclic ring size and substituents on the aromatic linker.

We have previously described the potent and selective inhibition of several strains of human immunodeficiency virus type 1 (HIV-1) and type 2 (HIV-2) by JM2763, an n-propyl-linked dimer of the 1,4,8,11-tetraazamacrocyclic (cyclam) ring system. Upon further investigation, we have also found that incorporating an aromatic rather than aliphatic linker leads to analogs with higher antiviral potency. The prototype, JM3100 (19a, isolated as the octahydrochloride salt), which contains a p-phenylenebis(methylene) moiety linking the cyclam rings, inhibited the replication of HIV-1 (IIIB) and HIV-2 (ROD) at EC50's of 4.2 and 5.9 nM, respectively, while remaining nontoxic to MT-4 cells at concentrations exceeding 421 microM. In order to identify the structural features of bis-tetraazamacrocycles required for potent activity, we have prepared a novel series of phenylenebis(methylene)-linked analogs, in which the macrocyclic ring size was varied from 12 to 16 ring members. Depending upon the substitution of the phenylenebis(methylene) linker (para or meta), sub-micromolar anti-HIV activity was exhibited by analogs bearing macrocycles of 12-14 ring members but with varying cytotoxicity to MT-4 cells. Furthermore, while we found that identical macrocyclic rings are not required for activity, substituting an acyclic polyamine equivalent for one of the cyclam rings in 19a resulted in a substantial reduction in anti-HIV potency, clearly establishing the importance of the constrained macrocyclic structure. A short series of transition metal complexes of 19a were also prepared and evaluated. Complexes of low kinetic stability such as the bis-zinc complex retained activity comparable to that of the parent compound. Finally, the activity of bicyclam analogs appears to be insensitive to the electron-withdrawing or -donating properties of substituents introduced onto the linker, but sterically hindering groups such as phenyl markedly reduced activity. As a result, several analogs with anti-HIV potency comparable to that of 19a have been identified.

Antiviral Agents

Human parathyroid hormone-(1-38) restores cancellous bone to the immobilized, osteopenic proximal tibial metaphysis in rats.

The purpose of this study was to determine if human parathyroid hormone-(1-38) (hPTH(1-38)) can restore cancellous bone mass to the established osteopenic, immobilized proximal tibial metaphyses of female rats. The right hindlimbs of 6-month-old female Sprague-Dawley rats were immobilized by bandaging the right hindlimbs to the abdomen. After 30 days of right hindlimb immobilization, the rats were subcutaneously injected with 200 micrograms hPTH(1-38)/kg/day for 15 days (short-term treatment) or 75 days (longer-term treatment). Static bone histomorphometry was performed on the primary spongiosa, and both static and dynamic histomorphometry were performed on the secondary spongiosa of the right proximal tibial metaphyses. Immobilization for 30 days without treatment decreased trabecular bone area, number, and thickness in both primary and secondary spongiosa, and induced an increase in eroded perimeter and a decrease in tissue referent-bone formation rate in the secondary spongiosa. These changes reached a new steady state thereafter. Treatment with 200 micrograms hPTH(1-38)/kg/day for 15 days, beginning 30 days after immobilization, significantly increased trabecular bone area, thickness, and number in both primary and secondary spongiosa despite continuous immobilization when compared with controls. The short-term PTH treatment (15 days) significantly increased labeling perimeter, mineral apposition rate, and tissue referent-bone formation rate in the secondary spongiosa and stimulated longitudinal bone growth as compared with the controls. Longer PTH treatment (75 days) further increased trabecular bone area, thickness, and number as compared with controls and groups given short-term PTH treatment (15 days). The bone formation indices in the secondary spongiosa of the longer-term treated rats were lower than those of the short-term treated group, but they were still higher than those of controls. Our findings indicate that PTH treatment stimulates cancellous bone formation, and restores and adds extra cancellous bone to the established, disuse-osteopenic proximal tibial metaphysis of female rats with continuously immobilized right hindlimbs. These results suggest that PTH may be useful in treating disuse-induced osteoporosis in humans.

Animals

Prediction of relapses after interferon-alpha therapy by hepatitis C virus RNA in peripheral blood mononuclear cells.

To investigate the predictive value of hepatitis C virus (HCV)-RNA in peripheral blood mononuclear cells in the response to interferon therapy in patients with chronic hepatitis C, 15 patients with histologically proven chronic active hepatitis and who were positive for serum HCV-RNA were treated with interferon-alpha (6 million units; i.m.) every day for two weeks and then three times a week for 22 weeks. Ten of the 15 patients were responders whose alanine aminotransferase levels decreased to the normal range at the end of interferon therapy. In four of the 10 responders, HCV-RNA was not detected by reverse transcription-polymerase chain reaction in peripheral blood mononuclear cells nor in serum at the end of treatment. These four patients were complete responders, with alanine aminotransferase levels remaining normal for the next 24 weeks. In five of the 10 responders, HCV-RNA was detected in peripheral blood mononuclear cells but not in serum at the end of treatment. All of these relapsed within the next 24 weeks. In the remaining responder, HCV-RNA was detected both in peripheral blood mononuclear cells and in serum at the end of treatment. This responder also had a relapse within the next 24 weeks. Five of the 15 patients were non-responders, in whom HCV-RNA was detected both in peripheral blood mononuclear cells and in serum. Thus, detection of HCV-RNA in peripheral blood mononuclear cells may be a good clinical marker to predict relapse after interferon treatment.

Adult

The influence of ageing on cisplatin pharmacokinetics in lung cancer patients with normal organ function.

This study was performed to identify any relationship between age and cisplatin (CDDP) pharmacokinetics in lung cancer patients. CDDP was given at a dose of 80 mg/m2 by 1-h intravenous infusion to 23 lung cancer patients. All patients had normal renal, hepatic, and bone marrow functions. We measured ultrafilterable platinum (U-Pt) and total plasma platinum (T-Pt) using atomic absorption spectrometry. There was significant correlation between the age of the patients and U-Pt pharmacokinetic parameters such as the area under the plasma concentration versus time curve (AUC), total clearance (Cl), and peak plasma concentration (Cmax) as well as the AUC of T-Pt (P < 0.05). We performed univariate regression analysis to examine the influence of factors aside from age on the AUC of U-Pt and T-Pt. Creatinine and GPT levels were significantly related to the AUC of U-Pt, and creatinine clearance and creatinine concentrations were significantly related to the AUC of T-Pt. Therefore, stepwise multiple-regression models for the AUC of U-Pt and T-Pt were developed to assess an age effect. Age was consistently an independent and significant predictor of the AUC of U-Pt and T-Pt.

Adult

Iron-catalyzed reaction products of alpha-tocopherol with methyl 13(S)-hydroperoxy-9(Z),11(E)-octadecadienoate.

alpha-Tocopherol was reacted with methyl 13(S)-hydroperoxy-9(Z), 11(E)-octadecadienoate in the presence of an iron-chelate, Fe(III)-acetylacetonate, at 37 degrees C in benzene. The reaction was carried out either aerobically or anaerobically. The main products of alpha-tocopherol under air were isolated and identified as two stereoisomers of 4a,5-epoxy-8a-hydroperoxy-alpha-tocopherone, four stereoisomers of methyl 9-(8a-dioxy-alpha-tocopherone)-12, 13-epoxy-10(E)-octadecenoate, four stereoisomers of methyl 11-(8a-dioxy-alpha-tocopherone)-12,13-epoxy-9(Z)-octadecenoa te, two stereoisomers of methyl 13(S)-(8a-dioxy-alpha- tocopherone)-9(Z),11(E)-octadecadienoate, and alpha-tocopherol dimer. Besides the 8a-(lipid-peroxy)-alpha-tocopherones, two stereoisomers of methyl 11-(alpha-tocopheroxy)-12(S),13(S)-epoxy- 9(E)-octadecenoate, two stereoisomers of methyl 9-(alpha-tocopheroxy)-12(S), 13(S)-epoxy-10(E)-octadecenoate, and two isomers of methyl (alpha-tocopheroxy)-octadecadienoate were obtained under nitrogen atmosphere. The results indicate that the peroxyl radicals from lipid hydroperoxides prefer to react with the 8a-carbon radical of alpha-tocopherol and the carbon-centered radicals react with the phenoxyl radical of alpha-tocopherol.

Aerobiosis