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Biomedical subjects

S Sekiguchi

Publications and source records attributed to S Sekiguchi.

At least 19 recordsLinked to original sources

Endotoxin antagonism by a synthetic lipid A analogue, DT-5461, with low endotoxicity in human peripheral blood monocytes.

We examined the molecular mechanism of DT-5461-induced LPS antagonism in human peripheral blood monocytes. Dose-response studies revealed that LPS-induced IL-1 and TNF-alpha production was apparently totally suppressed in a competitive manner by a 10-fold excess of DT-5461. A 10-fold excess of DT-5461 significantly blocked the binding of FITC-LPS to the monocytes. DT-5461 suppressed IL-1 and TNF-alpha mRNA expression in LPS-activated monocytes. Western blots showed that DT-5461 suppressed the LPS-induced tyrosine phosphorylation of p42mapk/ERK2. These results suggested that the competitive binding inhibition and repression of early intracellular signaling involved in DT-5461-mediated LPS antagonism.

Adjuvants, Immunologic

Relationship between functional levels and movement in tetraplegic patients. A retrospective study.

The aim of the present study was to set targets for each spinal lesion level after determining the relationship between the spinal lesion level and movement abilities in patients with tetraplegia following injury to the cervical cord. A total of 109 patients, 96 men and 13 women were included in the study. We mainly examined locomotion and transfer capabilities according to Zancolli's classification. The results of this study showed that 50% of the patients classified as C6A, 75% of C6B1 and 96% of the patients classified C6B2 accomplished bed transfer. The number of patients who could manage toilet transfer was 53% in the group classified as C6B1 and 85% in group C6B2. These results suggest that achievement of those classified as C6B2 is a clue to the assumption that the patient will achieve toilet transfer capability and can perform ADL independently.

Activities of Daily Living

Human cytomegalovirus DNA is not detectable with nested double polymerase chain reaction in healthy blood donors.

The PCR method was introduced to detect cytomegalovirus (CMV) DNA from 189 peripheral blood samples of volunteer donors. We adopted the nested double PCR method with primers specific for immediate early gene 1 followed by electrophoresis and ethidium bromide staining. This nested double PCR method was sensitive enough to detect approximately a single copy of CMV DNA. However, we failed to obtain positive amplification of CMV DNA from any of these donor samples. In contrast, CMV DNA could be detected in all 3 tested immunocompromised patients who had undergone bone marrow transplantation. These results support our previous report that the frequency of CMV DNA is of an order lower than 1 copy/10(5) leucocytes in the peripheral blood of healthy seropositive individuals.

Adolescent

Molecular basis of CD36 deficiency. Evidence that a 478C-->T substitution (proline90-->serine) in CD36 cDNA accounts for CD36 deficiency.

CD36 deficiency is divided into two subgroups: neither platelets nor monocytes express CD36 (type I deficiency), and monocytes express CD36 in spite of the lack of platelet CD36 (type II deficiency). We have already demonstrated that a 478C-->T substitution (proline90-->serine) in platelet CD36 cDNA predominates in type II deficiency (Kashiwagi, H., S. Honda, Y. Tomiyama, H. Mizutani, H. Take, Y. Honda, S. Kosugi, Y. Kanayama, Y. Kurata, and Y. Matsuzawa. 1993. Thromb. Haemostasis. 69:481-484). In this study, we revealed that monocyte CD36 cDNA from two type II deficient subjects was heterozygous for C478 and T478 form, while platelet CD36 cDNA of these subjects consisted of only T478 form. In a type I deficient subject, both platelet and monocyte CD36 cDNA showed only T478 form. Expression assay using C478 or T478 form of CD36 cDNA transfected cells revealed that there was an 81-kD precursor form of CD36, and that the maturation of the 81-kD precursor form to the 88-kD mature form of CD36 was markedly impaired by the substitution. The mutated precursor form of CD36 was subsequently degraded in the cytoplasm. These results indicate that the 478C-->T substitution directly leads to CD36 deficiency via defects in posttranslational modification, and that this substitution is the major defects underlying CD36 deficiency.

Amino Acid Sequence

Interferon-alpha-induced apoptosis in human erythroid progenitors.

Recombinant human interferon-alpha (rIFN-alpha) inhibits erythropoiesis, in vivo and in vitro. In an attempt to clarify mechanisms related to this inhibition, effects of rIFN-alpha on highly purified human peripheral blood burst-forming units-erythroid (BFU-E) (20-60% purity) were compared with effects on erythroid progenitors in various stages of development. Day-1 and -7 cultured cells were equivalent to primitive BFU-E and colony-forming units-erythroid (CFU-E), respectively. Day-1 BFU-E supported by recombinant human erythropoietin (rEpo) and interleukin-3 (rIL-3) was inhibited by rIFN-alpha in a dose-dependent manner, and a significant inhibition occurred at 2000 U/mL rIFN-alpha. Limiting dilution analysis demonstrated that rIFN-alpha directly inhibits BFU-E rIFN-alpha inhibited the proliferative capacity or the colony expression of erythroid progenitors, with no relation to the stage of development, but inhibition of differentiation was not apparent. This evidence suggested that apoptosis of erythroid progenitors was induced by IFN-alpha. When day-7 cells were incubated with IFN-alpha in the presence of rEpo, there was an increased breakdown of total cellular DNA into DNA fragments of less than 5 kb; hence, the inhibitory effect of IFN-alpha on erythroid progenitors may mediate apoptosis.

Adult

Production of human granulocyte colony stimulating factor by various kinds of stromal cells in vitro detected by enzyme immunoassay and in situ hybridization.

Production of human granulocyte colony stimulating factor (G-CSF) by stromal cells was studied in vitro. Induction of G-CSF by interleukin 1 (IL-1) and lipopolysaccharide (LPS) was compared using enzyme immunoassay in various kinds of stromal cells. Primary human bone marrow stromal cells, a human bone marrow-derived stromal cell line (KM-102), and peripheral blood monocytes secreted small amounts of G-CSF without stimulation, while vascular endothelial cells and skin fibroblasts secreted G-CSF only when induced by IL-1 or LPS. The production of G-CSF by monocytes was stimulated predominantly by LPS, whereas that by KM-102 cells, endothelial cells, and fibroblasts was induced by IL-1 but much less so by LPS. IL-1 and LPS stimulated similar levels of G-CSF production by primary bone marrow stromal cells which consisted of various types of cells. In situ hybridization for G-CSF mRNA showed that only a small proportion of primary bone marrow stromal cells expressed a large amount of G-CSF mRNA upon stimulation. The positive cells were round or oval in shape, while most of the spindle-shaped stromal cells were negative for specific grains. Although further characterization of positive cells is needed, the results suggest that bone marrow stromal cells are heterogeneous in terms of their capacity for G-CSF production.

3T3 Cells

Generation of active oxygens, cell deformation and membrane potential changes upon UV-B irradiation in human blood cells.

The generation of peroxides (presumably hydrogen peroxide) by UV-B irradiation of human blood cells was detected. Non-fluorescent dihydrorhodamine 123 (DHR) is oxidized to fluorescent rhodamine 123 (R123) by H2O2 or peroxides with a stoichiometry of 1:1 in the presence of exogeneous peroxidase, and the fluorescence of R123 within the cells was measured using flow-cytometry. UV irradiation gave rise to changes in the cellular volume and the membrane potential, whose extent and direction were dependent on the type of blood cells. The production of peroxides (H2O2) in polymorphonuclear leukocytes is the largest among blood cells at the lower dose (< 0.1 J/cm2), and the production decreases with an increase in the dose, while the production in platelets is the smallest at the lower dose, but above 0.4 J/cm2 it increases suddenly so that at the higher dose (1.2 J/cm2) it amounts to 3.3 x 10(-16) mol/cell. For monocytes and lymphocytes, the production increases gradually with the increase in the dose.

Blood Cells

Acellular and cellular hemoglobin solutions as vasoconstrictive factor.

The inhibitory effects of acellular and cellular hemoglobin (Hb) solutions on endothelium-dependent vasorelaxation were investigated in rabbit thoracic aortic strips. As acellular Hb solutions, 2,3-diphosphoglycerate (DPG)-depleted Hb and pyridoxylated Hb were examined. Cellular Hb solutions included washed human fresh red cells and liposome Hb encapsulated with pyridoxal-5'-phosphate (PLP). The tissues were precontracted with phenylephrine (PE), after which acetylcholine (ACh) was added to elicit a steady-state relaxation. Acellular Hb solutions cumulatively reversed ACh-induced relaxation, and these inhibitory effects reached a plateau at 10 micrograms/ml. Increasing oxygen affinity by pyridoxylation had little effect on this. In contrast, both red cells and liposome Hb solution showed moderate inhibitory effects, and they reached a plateau at 1 mg/ml. These findings indicate that acellular Hb solutions are more potent inhibitors than cellular Hb solutions by a factor of about 100, and that the encapsulation of Hb is a preferable method to mimic the red cell.

2,3-Diphosphoglycerate

A time course study for optimal harvest of peripheral blood progenitor cells by granulocyte colony-stimulating factor in healthy volunteers.

In a search for the optimal method to harvest peripheral blood progenitor cells (PBPC) without myeloablative chemotherapy, we administered recombinant human granulocyte colony-stimulating factor (G-CSF) to adult, healthy volunteers and investigated the mobilization rate of the PBPC. The consecutive subcutaneous administration of G-CSF in a dose of 2 micrograms/kg/d for 5 days significantly increased colony-forming units-granulocyte/macrophage (CFU-GM) up to 2340 +/- 980 per mL whole blood with a 30 +/- 21-fold mobilization of PBPC, range 11- to 76-fold. Burst-forming units-erythroid (BFU-E) and mixed erythroid progenitors (CFU-Mix) were also increased, and the mobilization rate was 8.4 +/- 4.5-fold and 7.6 +/- 4.7-fold, respectively. A time course study of PBPC after final G-CSF injection was done for 0 to 30 hours on days 1, 3, and 5. After a single administration of G-CSF (day 1), there was no increment of PBPC during the subsequent 30 hours, but the white blood cell count (WBC) markedly increased. Three days after the injection of G-CSF, no increase of CFU-GM was seen during the first 2 hours, then a significant, time-dependent increase occurred for up to 30 hours. Five days after the injection of G-CSF, there was no increase of CFU-GM during the first 2 hours, and the significant increase at 24 hours was maintained for up to 30 hours. BFU-E and CFU-Mix showed the same pattern of expansion as seen with CFU-GM. Thus, subcutaneous administration of 2 micrograms/kg/d G-CSF for 5 days will lead to a successful PBPC harvest for transplantation, and the most suitable period for this is 24 to 30 hours after the final G-CSF administration.

Adult

Transitional changes in immunophenotypic subpopulations of human peripheral blood CD34+ cells expanded in vitro.

We determined the appropriate incubation period to expand human peripheral blood (PB) CD34+ cells for clinical application and the role of recombinant human (rh) interleukin-3 (rhIL-3) in the expansion and differentiation of these cells. The cells were purified up to 40 +/- 16% and transitional changes in immunophenotypic subpopulations in suspension culture were examined following stimulation with three different combinations of rh colony-stimulating factors (rhCSFs): 1) rhIL-3 alone, 2) rhIL-6, rhSCF, rhG-CSF, plus rhGM-CSF, and 3) the four CSFs plus rhIL-3. With all three CSF combinations, the total cells increased continuously after day 5 until day 14, and a combination of the five CSFs always gave rise to the highest number of total cells. Immunophenotypic analysis of the expanded cells showed that with all three CSF combinations CD34+ cells reached a maximal rate on day 5 and then decreased in an inverse correlation between the logarithm of CD34 positive rate and the duration of suspension culture. The maximum expansion of CD34+ cells and PB progenitor cells (PBPC) with rhIL-3 alone, the four CSFs, or the five CSFs was observed on day 5, 10, or 7, respectively. The combination of the five CSFs was identified as the most potent stimulus for expansion of PBPC and CD34+ cells, as it increased non-erythroid PBPC 89 +/- 69-fold, with a range of 24 to 204-fold on day 7. However, differences in the expansion rate of these cells on days 5, 7, and 10 were not statistically significant. The majority of purified CD34+ cells coexpressed CD38 (91 +/- 3%) but were negative for CD33 (85 +/- 4%), and one-half coexpressed CD13. With all three combinations of CSFs, the mature CD34+ cells that coexpressed CD38, CD33, or CD13 expanded in parallel with the total CD34+ cells, while an increase in relatively immature CD34+ cells, which do not express CD38, CD33, or CD13, was only statistically significant with the five CSFs. Thus, rhIL-3 played a critical role when combined with the four CSFs by increasing both mature and immature CD34+ cells.

Adult

In vitro expansion of human peripheral blood CD34+ cells.

To elucidate the role of recombinant human colony-stimulating factors (CSFs) for expanding peripheral blood (PB) CD34+ cells, these cells were purified up to 94.5% +/- 1.3% and the effects of individual and combined CSFs on the proliferation and differentiation of these cells were studied in a 7-day suspension culture. The majority of CD34+ cells coexpressed CD38 (81.8% +/- 5.1%), but was negative for CD33 (88.5% +/- 3.4%). Among the individual CSFs examined, recombinant interleukin-3 (rIL-3) was identified as the most potent factor for expanding PB progenitor cells and increased nonerythroid progenitor cells 13- +/- 4-fold (P < .01). Recombinant granulocyte-macrophage colony-stimulating factor (rGM-CSF), recombinant granulocyte-CSF (rG-CSF), recombinant macrophage-CSF (rM-CSF), rIL-6, rIL-11, and recombinant stem cell factor (rSCF) did not alone expand nonerythroid progenitor cells. A combination of 5 CSFs, ie, rIL-3, rIL-6, rGM-CSF, rG-CSF, and rSCF, was identified as the most potent combination of those tested and increased nonerythroid progenitor cells 57- +/- 11-fold. After a 7-day suspension culture of CD34+ cells with these 5 CSFs, CD34+ cells expanded 14.5-fold, and CD34+/CD33- cells and CD34+/CD33+ cells were also expanded 2.9-fold and 307-fold, respectively. Most secondary colonies derived from expanded cells were small; however, the absolute number of large-sized colonies expanded 5.9- +/- 3.3-fold. Thus, the combination of CSFs can achieve a degree of amplification of PB CD34+ cells. The capability of in vitro expansion of PB CD34+ cells as an adjunct to PB stem cell transplantation is worthy of consideration.

Adult

The epidemiology and infection route of asymptomatic HCV carriers detected through blood donations.

The Japan Red Cross started screening donated blood for anti-HCV in Nov. 1989. Approximately 0.9% of donors were found to be positive by the 1st generation antibody test. The authors started a carrier clinic for the medical care of apparently healthy HCV carriers. Donors whose antibodies were strongly positive both by 1st EIA and 2nd PHA were informed, and were confirmed by RIBA 2 and RT-PCR. A total of 262 carriers (150 males and 112 females) with mean age of 46.8 +/- 11.2 yrs have visited the clinic. Of these carriers 149 were diagnosed to be asymptomatic clinically, biochemically and echographically. Eighty-seven carriers had received blood transfusions 22.7 +/- 10.9 yrs previously, while 106 had had acupuncture. Sixty had a family history of liver disease. Fifty-four had a history of heavy alcohol intake. Tattoos and/or iv drug abuse were found in 11, and nosocomial needle accidents in 4. HBV antibodies were found in 145 cases (55%). In conclusion, approximately 60% of HCV carriers found at the time of blood donation were apparently asymptomatic, suggesting the need of longer follow-up. Main routes of infection were estimated to be blood transfusion (33%), other parenteral exposure routes (6%), household (10% or less), and acupuncture (20% or less), considering duplication and priority.

Blood Donors

Effect of verapamil on the class I major histocompatibility complex antigen expression in K562 chronic myelogenous leukemia cells treated with recombinant human interferon-gamma.

The effects of various compounds which modulated the intracellular signal transduction on the induction of class I major histocompatibility complex (MHC) antigens by recombinant human interferon-gamma (rIFN-gamma) were investigated using K562, chronic myelogenous leukemia cells. Class I or class II MHC antigens were not expressed in untreated K562 cells and rIFN-gamma (600 units/ml) weakly induced class I antigens on the cells. Among the compounds tested, verapamil but not the calcium ionophore A23187 enhanced the rIFN-gamma-induced class I antigen expression at both the surface molecule and mRNA levels and enhancement by verapamil occurred in a dose-dependent manner at non-toxic concentrations examined (approximately 50 microM). Verapamil alone had no inducible effect on MHC antigen expression. Deprivation of Ca2+ in culture medium by ethylene glycol-bis(beta-aminoethyl ether) N,N,N',N'-tetraacetic acid (EGTA) could not cause an enhancement of class I antigen induction by rIFN-gamma. Simultaneous exposure of K562 cells to rIFN-gamma (600 units/ml) and recombinant human tumor necrosis factor (rTNF; 1000 units/ml) in combination with verapamil (50 microM) resulted in a further increase of class I antigens in the cells. The expressions of c-myc oncogene in K562 cells were not changed when the cells were treated with rIFN-gamma (600 units/ml) or verapamil (50 microM), either alone or in combination. These results indicate that verapamil synergistically interacts with rIFN-gamma on the class I antigen induction in K562 cells irrespective of c-myc gene expression and that class I antigen induction in this cell line may not be relevant to calcium influx triggered by IFN-gamma.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine

Oligo-2',5'-adenylate synthetase activity in cells persistently infected with human T-lymphotropic virus type I (HTLV-I).

Spontaneous production of interferon-gamma (IFN-gamma) was shown in several T-lymphoblastoid cell lines persistently infected with human T-lymphotropic virus (HTLV-1). However, the produced IFN-gamma was not always associated with the induction of the antivirus state. The induction of oligo-2',5'-adenylate synthetase (2-5AS) by IFN was studied in five human T-cell lines persistently infected with HTLV-I (MT-1, MT-2, SMT-1, HUT 102 and OKM-2). Four cell lines are able to produce IFN-gamma spontaneously, while the OKM-2 cell line is not. Poor induction of 2-5AS was recognized in three (MT-1, MT-2 and SMT-1) of the four cell lines producing IFN-gamma, though the poor induction was improved after long-term cultivation of cells with IFN-alpha. On the contrary, in the OKM-2 cell line, significant activity of the enzyme was induced by IFN-alpha. Induction of 2-5AS was not correlated with cell growth inhibition, but with the antivirus state. Furthermore, an inverse relationship between IFN-gamma production and 2-5AS induction was demonstrated in these cell lines with the exception of HUT 102 cells.

2',5'-Oligoadenylate Synthetase

Oxygen-transport and solution properties of polylipid/Hb vesicles (ARC).

Polymerized phospholipid vesicle encapsulating Hb (polylipid/Hb vesicle) was prepared from a mixture of unsaturated phospholipid, cholesterol and unsaturated fatty acid and polymerization by gamma-ray irradiation. The average radius of resulting vesicles was 203 +/- 39 nm and concentrated Hb (30 wt%) was efficiently encapsulated. gamma-Ray polymerization proceeds theoretically at low temperature (4 degrees C). P50 and oxygen transporting efficiency were adjusted to 40 mmHg and 40%, respectively. Oncotic pressure and solution viscosity can be controlled to the same values as blood.

Blood Substitutes

Studies on the quality control of stroma-free hemoglobin.

Analytical methods for phospholipids and blood group antigen were developed using HPLC-UV and EIA, respectively, for the quality control of SFH. These methods had sensitivities superior to those of conventional assays. In addition, the HPLC method could isolate PS, which might play an essential role in blood coagulation. The above analytical methods were applied to evaluate three representatives SFH preparation methods, 36,000xg centrifugation followed by the filtration with a 0.22 um filter, ultrafiltration with a 100 kd membrane, and filtration with the BMM-40 nm membrane. Both the BMM method and the ultrafiltration method were shown to remove more than 99.7% of phospholipids, and more than 99.99% of blood group antigen. On the other hand, the centrifugation preparation still contained much of both components. The BMM filter was originally developed as a virus removal filter. The virus removal efficiency of the BMM-40 nm was examined with a genetic technique, the PCR method. The BMM-40 nm was demonstrated to remove HB viruses with an efficiency of eight log or more. These results indicate that the BMM is a useful filter to prepare a stroma-free, virus-reduced hemoglobin solution.

Antigens