Search PubMed⌕ Search

Biomedical subjects

S Kojima

Publications and source records attributed to S Kojima.

At least 325 records · Page 18Linked to original sources

A close association between brain lacuna infarction and renal surface irregularity.

This study was undertaken to examine the association between brain lacunae examined by magnetic resonance imaging (MRI), and the severity of renal ischemia, evaluated by computed tomography (CT). We reviewed 114 cases, out of 1694 brain MRI studies and 2861 kidney CT studies undertaken between May 1994 and March 1996 in which both brain MRI and kidney CT were examined. Brain lacunae were defined as low intensity areas between 5 mm and 10 mm in diameter with the T1-weighted image. The severity of irregularity of the renal surface was classified as one of three grades: absent, mild, or severe. The prevalence of brain lacunae in cases with the renal surface irregularity classified as absent, mild, or severe was six of 45, 14 of 45, and 17 of 24, respectively. There was a highly significant relationship (P < .001) between the prevalence of brain lacunae and the severity of the renal surface irregularity. This relationship persisted, even when the subjects were restricted to include hypertensive patients > 60 years old. The irregularity of the renal surface is mainly caused by ischemia due to arteriosclerosis in the renal arteries. The results reported here suggest that brain lacuna infarcts are closely associated with renal ischemia, implicating a causative role of renal ischemia for brain lacunae.

Adult↗

Multistage regulation of Th1-type immune responses by the transcription factor IRF-1.

Eradication of a given pathogen is dependent on the selective differentiation of T helper (Th) cells into Th1 or Th2 types. We show here that T cells from mice lacking the transcription factor IRF-1 fail to mount Th1 responses and instead exclusively undergo Th2 differentiation in vitro. Compromised Th1 differentiation is found to be associated with defects in multiple cell types, namely impaired production of interleukin-12 by macrophages, hyporesponsiveness of CD4+ T cells to interleukin-12, and defective development of natural killer cells. These results indicate the involvement of IRF-1 in multiple stages of the Th1 limb of the immune response.

Animals↗

Softening temperature of lyophilized bovine serum albumin and gamma-globulin as measured by spin-spin relaxation time of protein protons.

We investigated the usefulness of the spin-spin relaxation time (T2) of protein protons as a probe for evaluating the molecular flexibility of freeze-dried protein formulations. It is proposed that the microscopic softening temperature determined from changes in the T2 of protein protons (Ts(T2)) is an important characteristic of freeze-dried protein formulations, the glass transition temperature (Tg) of which is generally difficult to determine by differential scanning calorimetry. We determined the molecular flexibility of lyophilized bovine serum albumin (BSA) and bovine gamma-globulin (BGG) by measuring the T2 of protein and water protons as well as the spin-lattice relaxation time (T1) of the latter as a function of temperature. The flexibility of freeze-dried BSA and BGG cakes markedly varied at temperatures above and below the Ts(T2), affecting the stability of the proteins. The denaturation and subsequent aggregation of lyophilized BSA and BGG cakes with a relatively high water content was enhanced in the softened state at temperatures above the Ts(T2). Lyophilized cakes with an extremely low water content were significantly denatured, even in the unsoftened state at temperatures below the Ts(T2), probably due to the thermodynamically unstable structures of protein molecules generated by a loss of structural water.

Chromatography, Gel↗

Dependence of the molecular mobility and protein stability of freeze-dried gamma-globulin formulations on the molecular weight of dextran.

PURPOSE: The effect of the molecular weight of dextran on the molecular mobility and protein stability of freeze-dried serum gamma-globulin (BGG) formulations was studied. The stabilizing effect of higher molecular weight dextran is discussed in relation to the molecular mobility of the formulations. METHODS: The molecular mobility of freeze-dried BGG formulations containing dextrans of various molecular weights was determined based on the free induction decay of dextran and water protons measured by proton NMR. The protein stability of the formulations was determined at temperatures ranging from 20 to 70 degrees C by size exclusion chromatography. RESULTS: Changes in the molecular mobility of freeze-dried formulations that occurred at temperatures below the glass transition temperature could be detected as the molecular mobility-changing temperature (Tmc), at which dextran protons started to exhibit a Lorentzian relaxation decay due to higher mobility in addition to a Gaussian relaxation decay. Tmc increased as the molecular weight of dextran increased. The proportion of dextran protons which exhibited the higher mobility relaxation process (Phm) at temperatures above Tmc decreased as the molecular weight of dextran increased. Protein stability was closely related to molecular mobility. The temperature dependence of the denaturation rate changed at around Tmc, and denaturation in the microscopically liquidized state decreased as Phm decreased with increasing molecular weight of dextran. CONCLUSIONS: The effect of the molecular weight of dextran on the protein stability of freeze-dried BGG formulations could be explained in terms of the parameters obtained by 1H-NMR such as Tmc and Phm. These parameters appear to be useful in preformulation and stability prediction of freeze-dried formulations.

Calorimetry, Differential Scanning↗

Tyramine-containing poly(4-nitrophenylacrylate) as iodinatable ligand carrier in biodistribution analysis.

PURPOSE: Targeted label or drug delivery requires access to convenient carrier systems and methods for efficient ligand conjugation. The main purpose of this study is to design an iodinatable synthetic polymer, whose application in vivo in tumor-bearing mice is tested with several related carbohydrate ligands, namely ABH and Lewis blood group epitopes. METHODS: Tyramine and aminopropyl derivatives of the synthetic oligosaccharides were attached to poly(4-nitrophenylacrylate). Following iodination, the biodistribution of the sugar-free and the substituted polymers was determined in tumor-bearing mice. Flow cytofluorimetric analysis assessed tumor cell binding of further ligand types to human tumor cells in vitro. RESULTS: Quantitative ligand incorporation was achieved under mild conditions. Whereas the ligand-free poly[N-(2-hydroxyethyl)acrylamide] (MW 30 kDa) showed preferential accumulation in kidney, neoglycopolymers were found in substantial amounts in liver, kidney or spleen. The nature of the carbohydrate structure quantitatively influenced the distribution pattern. Tumor cell binding of blood group determinants and three further ligand types revealed non-uniform intensity in labeling and percentage of positive cells even in comparison between lines with identical histogenetic origin. CONCLUSIONS: Carbohydrate-exposing poly[N-(2-hydroxyethyl)acrylamide] polymers with tyramine as an iodine acceptor distribute in mice with a profile which is quantitatively influenced by small structural variations of the ligand part. Further refinement of the ligand structure may increase the level of selectivity for organ and tumor accumulation.

Acrylic Resins↗

Conditioning with cyclophosphamide/antithymocyte globulin for allogeneic bone marrow transplantation from HLA-matched siblings in children with severe aplastic anemia.

Graft rejection has been a problem after bone marrow transplantation for patients with severe aplastic anemia (SAA). Ten children with SAA were conditioned for bone marrow transplantation from HLA-identical siblings, using cyclophosphamide (CY, 50 mg/kg) plus antithymocyte globulin (ATG, 15 mg/kg) for 4 successive days. Marrow was infused 36 h after the last dose of CY. Cyclosporin A and methotrexate were administered as graft-versus-host disease (GVHD) prophylaxis. All patients achieved durable engraftment at follow-up of 7-41+ months (mean, 25) without significant GVHD. Since investigators have used different sources, doses, and time schedules of ATG, we compared our results with other published reports. We conclude that CY/ATG conditioning is well tolerated and effective in children with SAA.

Adolescent↗

Plasma levels and production of soluble stem cell factor by marrow stromal cells in patients with aplastic anaemia.

Defective marrow stroma or microenvironment have been proposed as one of several mechanisms to account for bone marrow failure in aplastic anaemia (AA). Stem cell factor (SCF), the ligand for the c-kit receptor, is produced mainly by marrow stromal cells and seems to reflect the haemopoietic function of bone marrow stroma. We measured the plasma levels of soluble SCF in 8 7 patients with AA and investigated the production of soluble SCF by the marrow stromal cells of 46 patients with acquired AA. The mean plasma SCF concentrations in the AA patients and normal controls were not significantly different (1098 +/- 398 pg/ml versus 1160 +/- 316 pg/ml, respectively), and there was no significant correlation between the peripheral blood counts and the SCF concentrations. However, the mean SCF concentration in patients who received prednisolone +/- anabolic steroids at the time of sampling was significantly lower than that in the patients who did not receive both agents. We did not find any correlation between the changes in SCF concentrations and the response to immunosuppressive therapy, although it did increase significantly after bone marrow transplantation. The ability of marrow stromal cells to release soluble SCF did not differ significantly between the patients with AA and normal controls. We conclude that soluble SCF production does not appear to be altered in patients with AA and that defective production of soluble SCF is unlikely to be the cause of AA in most patients.

Adolescent↗

Measurement of endogenous plasma thrombopoietin in patients with acquired aplastic anaemia by a sensitive enzyme-linked immunosorbent assay.

We measured the endogenous plasma concentration of thrombopoietin (TPO) in 76 patients with acquired aplastic anaemia (AA) by a sensitive sandwich enzyme-linked immunosorbent assay (ELISA). The plasma TPO concentrations were significantly higher in AA patients when compared to healthy control subjects (P < 0.0001) and there was a significant negative correlation between plasma TPO concentrations and platelet counts in 54 AA patients who had not received any platelet transfusions prior to sampling. On the other hand, there was no statistically significant correlation between the TPO concentrations and platelet counts in 22 AA patients who had previously received platelet transfusions. We studied serial changes of plasma TPO concentration in 24 patients who showed an increase in their platelet counts following bone marrow transplantation or immunosuppressive (IS) therapy. Although a decrease in plasma TPO concentration was observed, levels remained above the range of normal healthy controls even in the patients who attained normal platelet counts following therapy. A decrease in TPO concentrations was observed in only half of the responders to IS therapy. Whether exogenous TPO will result in increased platelet counts in AA patients with high TPO levels remains to be determined.

Adolescent↗

Retinoids exacerbate rat liver fibrosis by inducing the activation of latent TGF-beta in liver stellate cells.

Liver stellate cells (SCs) play central roles in both the storage of retinol and the development of liver fibrosis. The present study is aimed to understand the mechanism by which retinoic acid (RA, an active metabolite of retinol) enhances hepatic fibrosis in rats. We tested the effect of 9-cis-RA on several aspects in vitro rat SC cultures, including the activity of cellular plasminogen activator (PA), messenger RNA (mRNA), and protein levels of transforming growth factor-beta (TGF-beta) mRNA level of type-I procollagen, and the activity of type-I collagenase. Employing the rat liver fibrosis model produced by porcine serum, we also estimated the effect of oral administration of a stable RA analog on the progression of the fibrosis, as well as on hepatic TGF-beta contents. In vitro SC cultures, 9-cis-RA enhanced cellular PA and plasmin levels thereby induced plasmin-mediated activation of latent TGF-beta. Active TGF-beta generated self-stimulated its synthesis as well as that of collagen and suppressed the production of collagenase in an autocrine manner. In in vivo rat models, an RA analog accelerated the porcine serum-induced fibrosis by enhancing TGF-beta contents and, thus, collagen levels in the liver, although the RA analog alone was not fibrogenic. These results suggest that RA exacerbated liver fibrosis, at least in part, by inducing the activation and production of latent TGF-beta in liver SCs.

Adipocytes↗

Comparative effects of disulfiram and diethyldithiocarbamate against testicular toxicity in rats caused by acute exposure to cadmium.

Disulfiram (DSF) and diethyldithiocarbamate (DED) were compared for their protective effects against the testicular toxicity induced by acute exposure to cadmium (Cd) in rats. Rats were injected subcutaneously with CdCl2 126.7 mumol (3 mg) Cd/kgl, and 30 min later they were injected intraperitoneally with DSF (0.05-0.5 mmol/kg) or DED (0.1-1 mmol/kg). The treatment with DSF at dose levels of 0.1-0.5 mmol/kg prevented the increases in testicular lipid peroxidation and calcium (Ca) concentrations and the decreases in testicular weight that were observed at 7 d after Cd injection. DED at dosage levels of 0.2-1 mmol/kg likewise reduced Cd-induced testicular toxicity. An increase in testicular iron (Fe) concentrations at 7 d and sterility at 59 d after Cd injection were almost completely blocked by treatment with DSF or DED at the highest doses, but lower doses of DSF or DED were ineffective. These results indicated that DSF, which is metabolized to DED, had a protective effect against Cd-induced testicular toxicity nearly equivalent to DED at approximately one-half the dose.

Animals↗

Transcriptional activation domain of human BTEB2, a GC box-binding factor.

BTEB2 is a GC box-binding transcription factor containing proline-rich and zinc finger domains as transactivation and DNA binding domains, respectively. We have identified a small region in the proline-rich domain indispensable for its transcription-enhancing activity by transfection experiments using various expression plasmids with point mutations or small deletions in the domain. This region comprising about 10 amino acids was relatively hydrophobic and rich in proline and alanine residues. BTEB2 purified from a baculovirus expression system could enhance transcription, depending on the presence of GC boxes in the promoter region of templates in an in vitro transcription assay. BTEB2 deleted of the hydrophobic region, however, lost the transcription-enhancing activity, in confirmation of the above results. Basic transcription factors which possibly interact with BTEB2 were examined. Initiation factors, TFIIB, TFIIE beta, and TFIIF beta as well as the TATA box-binding protein (TBP) were found to interact with BTEB2 when analyzed by in vitro binding experiments, although these interactions could not be attributed to the proline-rich domain. We discussed factors which interact with and transmit the transcriptional activity of the BTEB2 activation domain to basic transcriptional machinery.

Amino Acid Sequence↗

Plasma constituents other than low-density lipoprotein adsorbed by dextran-sulfate column.

The dextran-sulfate cellulose (DSC) column used for low-density lipoprotein (LDL) apheresis adsorbs plasma constituents other than LDL that have the following characteristics: proteins containing apolipoprotein B, proteins involved in the initial contact phase of the intrinsic coagulation pathway (coagulation factor XII, high molecular weight kininogen and prekallikrein), factors with lipophilic characteristics (coagulation factor VII, VIII, and vitamin E), and proteins with adhesive or other characters (von Willebrand factor, fibronectin, and serum amyloid P components). Adsorption of these proteins seems to serve in the prevention or regression of atherosclerosis. Moreover, plasma treatment by the DSC column may be useful for treatment of such inexorable diseases as amyloidosis. On the other hand, the column generates bradykinin by activation of the initial contact phase of the intrinsic coagulation pathway. Bradykinin generation may explain hypotension during LDL apheresis observed in patients taking angiotensin converting enzyme (ACE) inhibitors.

Adsorption↗

Changes in plasma levels of nitric oxide derivative during low-density lipoprotein apheresis.

The negative charges of dextran-sulfate (DS) used for low-density lipoprotein (LDL) apheresis activates the intrinsic coagulation pathway, in which plasma kallikrein acts on high-molecular-weight kininogen (HMWK) to produce large amounts of bradykinin. This study was undertaken to see whether bradykinin generated during DS LDL apheresis has some physiologic effects in vivo. The plasma levels of bradykinin and nitric oxide derivatives (NOx) were examined when either of 2 anticoagulants, heparin or nafamostat mesilate (NM), was used during DS LDL apheresis. Although anticoagulative action by NM depends on the inhibition of thrombin activity, this substance also inhibits the activity of plasma kallikrein. During apheresis using heparin, the marked increase in bradykinin levels (before apheresis, 18 +/- 3 (mean +/- SE, n = 5) pg/ml; after apheresis 470 +/- 140, p < 0.01) was associated with the increase in NOx (before apheresis 50 +/- 11 pg/ml; after apheresis 66 +/- 15). Interestingly, these changes in bradykinin and NOx levels were suppressed during apheresis using NM. The changes in plasma NOx levels were negatively correlated with those in blood pressures. These findings suggest that bradykinin generated during apheresis exerts some physiologic effects by means of activation of endothelium-derived relaxant factor (EDRF). Our results support the view that bradykinin produced during DS LDL apheresis has physiologic significance.

Aged↗

Apheresis technology for prevention and regression of atherosclerosis: an overview.

Low density lipoprotein (LDL) apheresis is at present one method of treatment in homozygous cases of familial hypercholesterolemia (FH). It is also effective in the prevention of the development of coronary atherosclerosis in patients with heterozygous FH and other types of mild hypercholesterolemia, leading to the regression of the stenosing lesions. In this paper, an overview is presented on the development of the devices for LDL apheresis and its short- and long-term effects on FH mainly based upon experience with the Liposorber system. LDL apheresis has served to protect the lives of patients from life threatening diseases like myocardial infarction although observations for more than 10 years in some laboratories have shown that the progression of atherosclerosis has taken place in many patients, and more importantly, the involvement of the aortic valve with calcification has developed, especially in patients who had homozygous FH, making this the most obstinate complication of FH. Therefore, more aggressive treatment or the combination of LDL apheresis with other therapies is required in the future. LDL apheresis has also been approved for the treatment of glomerulosclerosis and arteriosclerosis obliterans.

Arteriosclerosis↗

Putative channel components for the fast-rotating sodium-driven flagellar motor of a marine bacterium.

The polar flagellum of Vibrio alginolyticus rotates remarkably fast (up to 1,700 revolutions per second) by using a motor driven by sodium ions. Two genes, motX and motY, for the sodium-driven flagellar motor have been identified in marine bacteria, Vibrio parahaemolyticus and V. alginolyticus. They have no similarity to the genes for proton-driven motors, motA and motB, whose products constitute a proton channel. MotX was proposed to be a component of a sodium channel. Here we identified additional sodium motor genes, pomA and pomB, in V. alginolyticus. Unexpectedly, PomA and PomB have similarities to MotA and MotB, respectively, especially in the predicted transmembrane regions. These results suggest that PomA and PomB may be sodium-conducting channel components of the sodium-driven motor and that the motor part consists of the products of at least four genes, pomA, pomB, motX, and motY. Furthermore, swimming speed was controlled by the expression level of the pomA gene, suggesting that newly synthesized PomA proteins, which are components of a force-generating unit, were successively integrated into the defective motor complexes. These findings imply that Na+-driven flagellar motors may have similar structure and function as proton-driven motors, but with some interesting differences as well, and it is possible to compare and study the coupling mechanisms of the sodium and proton ion flux for the force generation.

Amino Acid Sequence↗

A novel member of the subtilisin-like protease family from Streptomyces albogriseolus.

We previously isolated three extracellular endogenous enzymes from a Streptomyces albogriseolus mutant strain which were targets of Streptomyces subtilisin inhibitor (SSI) (S. Taguchi, A. Odaka, Y. Watanabe, and H. Momose, Appl. Environ. Microbiol. 61:180-186, 1995). In the present study, of the three enzymes the largest one, with a molecular mass of 45 kDa (estimated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis), termed SAM-P45, has been characterized in detail. The entire gene encoding SAM-P45 was cloned as an approximately 10-kb fragment from S. albogriseolus S-3253 genomic DNA into an Escherichia coli host by using a shuttle plasmid vector. The amino acid sequence corresponding to the internal region of SAM-P45, deduced from the nucleotide sequence of the gene, revealed high homology, particularly in three regions around the active-site residues (Asp, His, and Ser), with the amino acid sequences of the mature domain of subtilisin-like serine proteases. In order to investigate the enzymatic properties of this protease, recombinant SAM-P45 was overproduced in Streptomyces coelicolor by using a strong SSI gene promoter. Sequence analysis of the SAM-P45 gene and peptide mapping of the purified SAM-P45 suggested that it is synthesized as a large precursor protein containing a large C-terminal prodomain (494 residues) in addition to an N-terminal preprodomain (23 and 172 residues). A high proportion of basic amino acids in the C-terminal prodomain was considered to serve an element interactive with the phospholipid bilayer existing in the C-terminal prodomain, as found in other membrane-anchoring proteases of gram-positive bacteria. It is noteworthy that SAM-P45 was found to prefer basic amino acids to aromatic or aliphatic amino acids in contrast to subtilisin BPN', which has a broad substrate specificity. The hydrolysis by SAM-P45 of the synthetic substrate (N-succinyl-L-Gly-L-Pro-L-Lys-p-nitroanilide) most preferred by this enzyme was inhibited by SSI, chymostatin, and EDTA. The proteolytic activity of SAM-P45 was stimulated by the divalent cations Ca2+ and Mg2+. From these findings, we conclude that SAM-P45 interacts with SSI and can be categorized as a novel member of the subtilisin-like serine protease family.

Amino Acid Sequence↗

Cytochrome b in human complex II (succinate-ubiquinone oxidoreductase): cDNA cloning of the components in liver mitochondria and chromosome assignment of the genes for the large (SDHC) and small (SDHD) subunits to 1q21 and 11q23.

Complex II (succinate-ubiquinone oxidoreductase) is an important enzyme complex in both the tricarboxylic acid cycle and the aerobic respiratory chains of mitochondria in eukaryotic cells and prokaryotic organisms. In this study, the amino acid sequences of the large (cybL) and small (cybS) subunits of cytochrome b in human liver complex II were deduced from cDNAs isolated by homology probing with mixed primers for the polymerase chain reaction. The mature cybL and cybS contain 140 and 103 amino acids, respectively, and show little similarity to the amino acid sequences of the subunits from other species in contrast to the highly conserved features of the flavoprotein (Fp) subunit and iron-sulfur protein (Ip) subunit. From hydrophobicity analysis, both cybL and cybS appear to have three transmembrane segments, indicating their role as membrane-anchors for the enzyme complex. Histidine residues, which are possible heme axial ligands in cytochrome b of complex II, were found in the second transmembrane segment of each subunit. The genes for cybL (SDHC) and cybS (SDHD) were mapped to chromosome 1q21 and 11q23, respectively by fluorescent in situ hybridization (FISH).

Base Sequence↗