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Biomedical subjects

Y Aoki

Publications and source records attributed to Y Aoki.

At least 361 records · Page 20Linked to original sources

[Intracavitary bacillus Calmette-Guerin therapy for upper tract transitional cell carcinoma].

Four patients with upper urinary tract transitional cell carcinoma were treated with bacillus Calmette-Guerin (BCG) via a percutaneous nephrostomy tube or a retrograde ureteral catheter. A 68-year-old female and an 80-year-old male had carcinoma in situ (CIS) in the left upper urinary tract (cases 1 and 2). A man aged 47 had CIS in the left upper urinary tract, bladder, and prostatic urethra (case 3). CIS in the left upper urinary tract was identified in a woman aged 63 with chronic renal insufficiency (case 4). Two patients (cases 1 and 2) responded to this therapy. In the other two patients nephrectomy was performed due to residual tumor. There were extensive tuberculous granulomas in the kidneys. In one resected kidney (case 4) carcinoma had invaded the renal parenchyma. The reviewed literature showed that BCG perfusion therapy was effective in 71% (27 of 38 renal units) for the upper urinary tract tumors and that there were 5 cases of severe complication, including sepsis in 2, high fever in 2, and ureteral stricture in 1. Based on the fact that the kidney receives a profuse blood supply and that the renal pelvis and ureter have a thin wall, careful management is mandatory to prevent severe adverse effects and insidious tumor progression.

Aged↗

A single residue, Lys108, of the delta-opioid receptor prevents the mu-opioid-selective ligand [D-Ala2,N-MePhe4,Gly-ol5]enkephalin from binding to the delta-opioid receptor.

Previously, we found that replacement of the region around the first extracellular loop of the delta-opioid receptor (OPR) with the corresponding region of the mu-OPR gives the high affinity for [D-Ala2,N-MePhe4,Gly-ol5]enkephalin (DAMGO), a mu-opioid-selective ligand, to the resultant chimeric receptor, DMDD, suggesting that the difference in the amino acid sequence within this region between the mu- and delta-OPRs is critical for the discrimination between these receptors by DAMGO. In the current study, we carried out systematic replacements of seven non-conserved residues in this region of the delta-OPR with the corresponding amino acid found in the mu-OPR. Among the seven mutant receptors, only one mutant receptor, delta K108N, showed high affinity (Ki = 18.68 +/- 5.27 nM) for DAMGO, which was comparable to that of the DMDD receptor (Ki = 23.77 +/- 4.27 nM) and 75-fold higher than that of the wild-type delta-OPR (Ki = 1405 +/- 161 nM). Lys108 in the delta-OPR was systematically replaced with 19 kinds of amino acids other than lysine. Among the resultant mutant receptors, 14 mutants bound DAMGO with Ki values comparable to those of the DMDD receptor, ranging from 4.20 to 43.38 nM. These findings suggest that Lys108 of the delta-OPR prevents DAMGO from binding to the delta-OPR rather than that the asparagine residue at the corresponding position in the mu-OPR is necessary for DAMGO binding. In addition, the replacement of Lys108 of the delta-OPR with asparagine dramatically increased the affinity for other peptidic mu receptor-selective ligands, such as dermorphin and D-Pen-Cys-Tyr-D-Trp-Orn-Thr-Pen-Thr-NH2.

Adenylyl Cyclases↗

Volume measurement of horizontal extraocular muscles with magnetic resonance imaging.

The horizontal extraocular muscle volume of 11 normal adults and 3 ophthalmoplegic patients was measured with magnetic resonance imaging (MRI), using a 1.5 Tesla superconductive system which can provide T1 weighted images of 3 mm gapless slices of the orbit with the spin echo technique. The MRI film was projected and magnified on Kent paper with an overhead projector; muscle shapes were traced and cut from the paper. Muscle volume was defined as the total weight of the Kent paper shapes representing the muscles from all MRI slices. The average volumes of the medial and lateral rectus muscles (MRM, LRM) of the 11 subjects were 690 +/- 87 mm3 and 734 +/- 77 mm3. In two patients with peripheral nerve palsy, the small muscle volume was classified as atrophic; in the one patient with orbital myositis, the large muscle volume was classified as hypertrophic. This measurement technique is useful for evaluation of the extraocular muscles, especially in ophthalmoplegia.

Adult↗

Detection of an ascorbate radical in an irradiated mice using electron spin resonance (ESR).

Ascorbate radical (Asc.-) produced by the reaction of AscH- (ascorbic acid) with HO or O2.- after irradiation in mice has been measured. It is possible to measure Asc.- easily using ESR and a dialysis method in which Asc.- is collected at room temperature in the interstitial fluid through the dialysis membrane. After irradiation, Asc.- increases in both normal muscle and tumor tissues (SCC-VII) in proportion to the radiation dose. These results suggest that the amount of HO and O2.- produced is reflected in the Asc.- production. This method has been found more useful for the following reasons, (i) no special treatment, such as freezing of the sample, and no administration of noxious agents are necessary to measure Asc.-, (ii) irradiation using a dose of only a few Gy shows an increase in production of Asc.-, and (iii) this method dose not require removal of organs. Using this method, Asc.- can serve as an indicator of the amount of HO and O2.- produced by irradiation in vivo.

Animals↗

Identification of two isoforms of mouse neuropeptide Y-Y1 receptor generated by alternative splicing. Isolation, genomic structure, and functional expression of the receptors.

Two cDNA clones homologous with human neuropeptide (NP) Y-Y1 receptor have been isolated from a mouse bone marrow cDNA library. One was thought to be the cognate of the human NPY-Y1 receptor, termed Y1 alpha receptor, and the other form, termed Y1 beta receptor, differed from the Y1 alpha receptor in the seventh transmembrane domain and C-terminal tail. Analysis of the mouse genomic DNA showed that both receptors originated from a single gene. The different peptide sequences of the Y1 beta receptor were encoded by separate exons, hence, these receptors were generated by differential RNA splicing. High affinity binding of [125I]NPY to each receptor expressed in Chinese hamster ovary (CHO) cells and sequestration of [125I]NPY after binding to each receptor were observed. In the CHO cells expressing the Y1 alpha receptor, intracellular Ca2+ increase, inhibition of forskolin-induced cAMP accumulation, and mitogen-activated protein kinase (MAPK) activation were observed by stimulation of NPY, and these responses were abolished by pretreatment with pertussis toxin. Since wortmannin completely inhibited NPY-elicited MAPK activation, we speculate that wortmannin-sensitive signaling molecule(s) such as phosphoinositide 3-kinase may lie between pertussis toxin-sensitive G-protein and MAPK. In contrast, these intracellular signals were not detected in CHO cells expressing the Y1 beta receptor. Northern blots and reverse transcriptase-polymerase chain reaction analyses indicated that the Y1 alpha receptor was highly expressed in the brain, heart, kidney, spleen, skeletal muscle, and lung, whereas the Y1 beta receptor mRNA was not detected in these tissues. However, the Y1 beta receptor was expressed in mouse embryonic developmental stage (7 and 11 days), bone marrow cells and several hematopoietic cell lines. These results suggest that the Y1 beta receptor is an embryonic and a bone marrow form of the NPY-Y1 receptor, which decreases in the expression during development and differentiation.

Alternative Splicing↗

Molecular analysis of holocarboxylase synthetase deficiency: a missense mutation and a single base deletion are predominant in Japanese patients.

Holocarboxylase synthetase (HCS) deficiency is an inherited disease of biotin metabolism characterized by a unique pattern of organic aciduria, metabolic acidosis, and skin lesions. By analysis of five patients in four unrelated families, two mutations were identified: a transition from T to C which causes an amino-acid substitution of proline for leucine at position 237 (L237P) and a single deletion of guanine (delG1067) followed by premature termination. One patient was homozygous for the L237P mutation, three patients in two families were compound heterozygotes of the missense and deletion alleles, and the other patient was heterozygous for the L237P mutation. Inheritance was successfully demonstrated in all of the patients' families by a modified PCR followed by restriction enzyme digestion. The two mutations accounted for seven of eight mutant alleles, while neither mutation was detected in 108 normal healthy Japanese children (216 alleles). Transient expression in cultured fibroblasts from a patient showed that the L237P mutation was responsible for decreased HCS activity. These results suggest that the L237P and delG1067 mutations are frequent disease-causing mutations in Japanese patients with HCS deficiency. This PCR-based technique may therefore be useful for detecting mutations among Japanese patients.

Amino Acid Sequence↗

A radioreceptor binding assay for platelet-activating factor (PAF) using membranes from CHO cells expressing human PAF receptor.

A simple and reproducible radioreceptor assay (RRA) has been developed using membranes from CHO cells which can stably express human platelet-activating factor (PAF) receptor. The CHO cells expressing the PAF receptor, termed CHO.1F8, showed a significant intracellular Ca2+ response to PAF, and the same binding properties to [3H]WEB 2086, a PAF antagonist, as reported (Kd, 13.6 +/- 1.9 nM; Bmax, 2.5 +/- 0.4 pmol/mg protein (n = 6)). A competitive binding assay was done using the CHO.1F8 cell membranes and [3H]WEB 2086. The minimum detectable dose of PAF was 0.3 nM (approximately 30 pg per well) and the assay was highly specific for PAF. This method makes it possible to handle large numbers of samples rapidly and simultaneously, since the receptor membrane is prepared in advance and the binding assay can be completed within 3 h. Using this method, we have determined the production and cell association of PAF in human neutrophils.

Animals↗

Lethal shock is inducible by lipopolysaccharide but not by superantigen in mice with retrovirus-induced immunodeficiency syndrome.

The retrovirus-induced murine AIDS (MAIDS) shares many features with human AIDS. Here, we examined the susceptibility of mice with MAIDS to staphylococcal enterotoxin-triggered shock. Following sensitization with D-galactosamine (D-Gal), mice with MAIDS were resistant to the otherwise lethal effect of superantigen staphylococcal enterotoxin A (SEA). Peak IL-2 levels in these mice after D-Gal/SEA challenge were 10-fold higher than those in uninfected controls, and concurrently, IL-10 levels rose markedly with reduction of circulating IL-1 and IFN-gamma. Treatment with neutralizing anti-IL-10 mAb before D-Gal/SEA challenge led to increased IFN-gamma levels in mice with MAIDS, and resulted in a dose-dependent mortality. In contrast, mice with MAIDS were more susceptible to the toxicity of bacterial endotoxin LPS than were uninfected controls. Administration of 100 micrograms LPS alone induced 50% lethality in mice infected with MAIDS virus 8 wk previously but not in uninfected controls. Administration of 10 micrograms LPS caused acute shock in D-Gal-sensitized mice with MAIDS. Peak TNF-alpha levels in these mice after LPS challenge were increased more than 10-fold, whereas IL-10 levels were one-third of those after SEA challenge. Moreover, serum IFN-gamma was undetectable in uninfected controls and rose to 1063 +/- 483 pg/ml in mice with MAIDS 4 h after LPS challenge. These results suggest that aberrant profiles of cytokine production are crucial in determining fatal outcome in these two types of septic shock in MAIDS.

Animals↗

Protective effect of granulocyte colony-stimulating factor against T-cell-meditated lethal shock triggered by superantigens.

The bacterial superantigens (SAg), toxic shock syndrome toxin-1 (TSST-1) and staphylococcal enterotoxin B (SEB), are powerful T-cell stimulators, triggering systemic release of lymphokines causing lethal shock in D-galactosamine (D-Gal)-sensitized mice. We show that pretreatment with recombinant human granulocyte colony-stimulating factor (rhG-CSF) protects mice against T-cell-mediated SAg-shock. In mice challenged with D-Gal/TSST-1, lethal shock was caused within 30 hours. In contrast, animals pretreated with two consecutive subcutaneous injections of 2 micrograms rhG-CSF with a 12-hour time interval showed only marginal signs of illness and no lethality after challenge with D-Gal/TSST-1. Mice treated with 5 micrograms rhG-CSF either 12 or 6 hours in advance also survived otherwise lethal doses of D-Gal/TSST-1. The protective effects of rhG-CSF pretreatment was also evident against lethal doses of D-Gal/SEB challenge and this protection was accompanied by suppression of systemic interleukin-2. However, rhG-CSF affected neither the proliferative responses of SAg-reactive T cells in vivo or in vitro nor their interleukin-2 production in vitro, implying that rhG-CSF may indirectly interfere with cytokine synthesis in T cells but not with T-cell-SAg binding itself. These results represent another beneficial effect of rhG-CSF as an anti-inflammatory agent against T-cell-mediated toxicity triggered by SAg.

Animals↗

The SH2 domains of Src family kinases associate with Syk.

Src family kinases (Lyn, Fyn, Lck, and Blk) and Syk, a tandem SH2 domain containing tyrosine kinase, have been demonstrated to be associated with the antigen receptor in B cells. Both of these categories of tyrosine kinases are presumed to be critical players in the process of antigen-mediated signal transduction. Cross-linking of membrane immunoglobulin on the surface of B cells leads to the activation of Lyn, Fyn, and Blk, which presumably associate with the cytoplasmic tails of the membrane immunoglobulin-associated Ig alpha/beta heterodimer. Receptor ligation also leads to the tyrosine phosphorylation and catalytic activation of Syk, but the mechanism of association of this kinase with the antigen receptor remains to be established. A number of phosphoproteins that can associate with the SH2 domains of Blk, Lyn, and Fyn have been described in activated B cells. We demonstrate here that Syk is one of the proteins in the lysates of activated B cells which bind to the SH2 domains of Src family kinases. Syk binds directly to the SH2 domain of Blk and complexes in vivo with Lyn and Blk in activated B cells.

Animals↗

DAMGO, a mu-opioid receptor selective ligand, distinguishes between mu-and kappa-opioid receptors at a different region from that for the distinction between mu- and delta-opioid receptors.

The structural basis of opioid receptors (OPRs) for the subtype-selective binding of DAMGO, a mu-opioid receptor selective ligand, was investigated using chimeric mu/kappa-OPRs. Replacement of the region from the middle of the fifth transmembrane domain to the C-terminal of mu-OPR with the corresponding region of mu-OPR remarkably decreased the binding affinity to DAMGO, while the reciprocal chimera revealed the high affinity to DAMGO. These results indicate that DAMGO distinguishes between mu- and mu-OPRs at the region around the third extracellular loop, different from the case of the distinction between mu-and delta-OPRs in which the region around the first extracellular loop is important. Furthermore, displacement studies revealed that the region around the third extracellular loop is involved in the discrimination between mu- and kappa-OPRs not only by peptidic mu- selective ligands but also by non-peptidic ligands, such as morphine and naloxone.

Amino Acid Sequence↗

Copper metabolism leading to and following acute hepatitis in LEC rats.

The accumulation process of copper (Cu) in the liver and the following metabolic disorder of Cu were examined in LEC rats, a mutant strain which accumulates Cu with age and shows spontaneous acute hepatitis and/or hepatoma. Cu concentration in the liver of female rats was approximately 220 micrograms/g liver at 2 weeks of age, decreased to 100 micrograms/g liver at 4-6 weeks, and then started to increase with age linearly to the highest concentration of 250 micrograms/g liver at 16 weeks. Although the Cu level expressed by concentration (microgram/g liver) decreased during weaning, it increased linearly with age when it was expressed by content (mg/liver), indicating a constant and preferential accumulation of Cu in the liver. Cu concentration stopped increasing at 16 weeks in the liver, followed by a sudden decrease to 1/2 the highest level. Biological markers (serum lactate dehydrogenase and glutamic-oxaloacetic transaminase activities) for liver damage started to increase, together with the appearance of signs of jaundice, when Cu attained the highest concentration. Distributions of Cu and zinc (Zn) in the supernatant fraction of the liver indicated that both metals were mostly distributed to metallothionein (MT) and, to a small extent, to superoxide dismutase on a gel filtration column throughout the course of the experiments. Serum Cu concentration started to increase in a form of ceruloplasmin, together with serum marker enzyme activities for liver damage. Cu concentration in the kidneys also started to increase after the increase of serum Cu. The results indicate that Cu accumulates in the form of MT in the liver of LEC rats to a maximum level of approximately 250 micrograms/g liver, and then decreases suddenly with the onset of acute hepatitis. The maximum level seems to be related to the capacity of MT synthesis, and acute hepatitis is assumed to occur when Cu accumulates beyond the capacity. Serum Cu started to increase, from the abnormally low level, when the metal accumulated beyond the capacity of MT synthesis in the liver, and it was partly reabsorbed by the kidneys and the rest was excreted into urine. Changes in iron and zinc levels were determined and discussed in relation to those of Cu.

Acute Disease↗

DAMGO, a mu-opioid receptor selective agonist, distinguishes between mu- and delta-opioid receptors around their first extracellular loops.

The structural basis of mu-opioid receptor (OPR) for the specificity in its ligand binding was investigated using chimeric mu/delta-OPRs. Replacement of the region around the first extracellular loop of delta-OPR with the corresponding region of mu-OPR gave the resultant chimeric receptor the similar affinity to DAMGO compared with the native mu-OPR. The reciprocal replacement deprived the high affinity to DAMGO from mu-OPR. These results indicate that the difference(s) in the structure around the first extracellular loop is critical for DAMGO to distinguish between mu- and delta-OPRs. Furthermore, displacement studies revealed that this region is partly involved in the discrimination between mu- and delta-OPRs by other peptidic mu-selective ligands, such as dermorphin, morphiceptin and CTOP, but not by non-peptidic ligands, such as morphine and naloxone.

Amino Acid Sequence↗

Stimulation of human lymphocytes by cathepsin G.

We investigated the effect of cathepsin G, a serine protease in polymorphonuclear granulocytes, on the function of human lymphocytes. Cathepsin G increased the [3H]thymidine incorporation into human lymphocytes. This mitogenic activity was due to the proteolytic activity of cathepsin G. Both B and T cells showed increased [3H]thymidine incorporation, and this effect was more remarkable for T cells than for B cells. Among the T cell subsets, CD4+ T cells showed the increase in DNA synthesis, but CD8+ T cells did not. When human lymphocytes were stimulated with cathepsin G, intracellular free Ca2+ concentration ([Ca2+]i) increased in B and T cells, including CD4+ T cells and CD8+ T cells. The change in intracellular Ca2+ was due to Ca2+ influx and release of intracellular stores. Cathepsin G also induced the production of inositol 1,4,5-trisphosphate (IP3) in B cells, CD4+ T cells, and CD8+ T cells, leading to the release of Ca2+ from intracellular stores. Moreover, the stimulation with cathepsin G resulted in alkalization of the cytosol of B cells, CD4+ T cells, and CD8+ T cells as the result of Na+/H+ antiport activation. The change in intracellular Ca2+, production of IP3, and cytoplasmic alkalization in lymphocytes were due to its proteolytic activity. Cathepsin G released from granulocytes is considered to act on human lymphocytes in vivo and lead to the increase in DNA synthesis of B cells and CD4+ T cells through IP3 production, an increase in [Ca2+]i, and alkalization. However, these second messengers do not lead to the increase in DNA synthesis of CD8+ T cells.

Amino Acid Sequence↗

Cytotoxicity of anti-c-erbB-2 immunoliposomes containing doxorubicin on human cancer cells.

We have examined the selective cytotoxicity of immunoliposomes containing doxorubicin (chemoimmunoliposomes, CILs) targeting the c-erbB-2 gene product (gp185) or gp125. Anti-gp185 and anti-gp125 CILs were prepared by conjugation of doxorubicin-containing liposomes with monoclonal antibodies SER4 (IgG) and HBJ127 (IgG) respectively. Both CILs bound to human SKBr-3 breast cancer cells and MKN-7 human gastric cancer cells, which express both antigens in high density. The IC50 of anti-gp185 CILs on protein synthesis by SKBr-3 cells was respectively 2- and 25-fold lower than that of anti-gp125 CILs and unmodified liposomes. Furthermore, anti-gp185 CILs significantly inhibited neither the phytohaemagglutin response of normal lymphocytes nor protein synthesis of gp185-negative T24 bladder cancer. Quantitative analysis of cell-associated doxorubicin revealed that, compared with anti-gp125 CILs, anti-gp185 CILs required, respectively 4.5 and 4.3 times less doxorubicin association in SKBR-3 and MKN-7 cells, for 50% cytotoxicity. In addition, flow cytometric analysis showed that both SKBr-3 and MKN-7 internalised more anti-gp185 CILs and processed them more efficiently than anti-gp125 CILs. These results suggest that anti-gp185 CILs act selectively against gp185-expressing cancer cells and that gp185 is a more sensitive antigen for CIL cytotoxicity associated with endocytosis activity.

Animals↗