Search PubMedSearch

Biomedical subjects

S Asano

Publications and source records attributed to S Asano.

At least 19 recordsLinked to original sources

Acquisition of interleukin-3 independence in FDC-P2 cells after transfection with the activated c-H-ras gene using a bovine papillomavirus-based plasmid vector.

Since the ras family of proto-oncogenes is supposed to be involved in leukemogenesis by point-mutational activation, we studied the effect of the activated ras gene on the growth of a murine interleukin-3 (IL-3)-dependent cell line, FDC-P2. The human activated c-H-ras gene was transfected into FDC-P2 cells by electroporation using a high-level expression vector, BMGhph, which contains a partial DNA sequence from bovine papillomavirus (BPV) and a hygromycin B (hmB)-resistant gene as a selectable marker. The transformed FDC-P2 cells showed a high incidence of IL-3-independent growth and tumorigenicity in nude mice. These clones did not express or secrete IL-3, suggesting the acquisition of IL-3 independence by a nonautocrine mechanism. The high incidence of autonomous growth may be due to the use of the BMG vector, because (1) the activated ras gene in pBR322 vector (pHs-49) was not so efficient in the induction of IL-3 independence, (2) the c-H-ras genome copies per cell increased in number up to about 50 copies by using the BMG vector, and (3) cotransfection with the activated ras gene and the BPV gene in separate plasmids partly enhanced the incidence of autonomous growth without increasing the copy number of the ras gene compared with transfection with the activated ras gene alone. The present study supports the idea that the activation of ras gene is an important step in malignant transformation of hematopoietic cells and suggests that the BPV gene products may cooperate with ras gene activation probably by affecting the cellular genes that may be involved in multistep leukemogenesis. The BMG vector may be useful to test the transforming ability of oncogenes whose oncogenic potential is relatively low.

Animals

Deletion mutagenesis of stem cell factor defines the C-terminal sequences essential for its biological activity.

We constructed a series of murine stem cell factor (mSCF) cDNAs which were sequentially truncated at the 3' termini. The resultant six mutant cDNA encode N-terminal 183, 179, 162, 149, 142 and 133 amino acid residues of the mature mSCF protein fused to the heterogeneous C-terminal peptides derived from the linker sequences. Each mutant cDNA was transiently expressed in COS cells, and the cultured supernatant was assayed for its ability to support the growth of a human factor-dependent cell line, TF-1 and to enhance colony formation by murine hematopoietic progenitor cells. The results showed that as few as N-terminal 142 but not 133 amino acid residues of mSCF remained biologically active in vitro, suggesting that the region of 9 amino acids from Asp134 to Ser142 containing a Cys138-mediated disulfide bond may contribute to the C-terminal end of the active subdomain of mSCF.

Amino Acid Sequence

Tumor necrosis factor and interleukin-1 induce activin A gene expression in a human bone marrow stromal cell line.

Activin A, a homodimer of the beta A chain, regulates hematopoiesis. In a human bone marrow-derived stromal cell line, KM-102, phorbol myristate acetate, tumor necrosis factor-alpha and interleukin-1 beta induced great increases in beta A chain mRNA levels and production of activin A activities. The phorbol ester-induced beta A chain gene expression was inhibited by cycloheximide and down regulation of protein kinase C, whereas the cytokine-induced expression was little affected by these treatments. These results indicate that the inflammatory cytokines directly stimulate beta A chain gene expression via protein kinase C-independent pathways.

Activins

Affinity of a highly repetitive bent DNA for nuclear scaffold proteins from rat liver.

A highly repetitive component in rat nuclear DNA was isolated by HindIII digestion and cloned. A self-ligated tandem dimer of the 370-bp cloned component was digested with each of DraI, HindIII and XmnI. The resulting 370-bp restriction fragments exhibited anomalously slow gel electrophoretic mobilities. Of them, the XmnI fragment had the slowest mobility. This suggested that sequence-directed bending of the helix axis is the strongest in this fragment. Moreover, the 370-bp restriction fragments had selective affinities for the nuclear scaffold proteins, P123 and P130. The affinity levels of XmnI fragment were higher than those of DraI or HindIII fragment. These results implied that the affinity of a highly repetitive component for the nuclear scaffold proteins depends on the degree of sequence-directed bending of the helix axis.

Animals

K(+)-site-directed pyridine derivative, AU-1421, activates hydrolysis of the K(+)-sensitive phosphoenzyme of sarcoplasmic reticulum Ca(2+)-ATPase and inactivates that of K(+)-transporting ATPases.

(Z)-5-Methyl-2-[2-(1-naphthyl)ethenyl]-4-piperidinopyridine, AU-1421, interacted at 0 degree C with the K(+)-sensitive phosphoenzymes of three transport ATPases, Ca(2+)-, H+/K(+)- and Na+/K(+)-ATPase. In the case of Ca(2+)-ATPase, AU-1421 at about 80 microM stimulated 6-fold the rate of splitting of the phosphoenzyme, on which K+ simply functions as an accelerator from one side of the membrane. Probably AU-1421 also simply interacts with the K(+)-binding site of the phosphoenzyme that is easily accessible from the aqueous phase. In the cases of H(+)/K(+)- and Na(+)/K(+)-ATPases, AU-1421 stabilized the phosphoenzymes which accept K+ as the translocating ion. The rate constants of dephosphorylation for H(+)/K(+)-ATPase and Na(+)/K(+)-ATPase were decreased to half by AU-1421 at about 5 and 10 microM, respectively. Presumably after binding of AU-1421 to a K(+)-recognition site of the phosphoenzyme, local motion of the peptide region near the binding site that serves to move the bound ion into the ion-transport pathway (occlusion center) might be inhibited. Thus AU-1421 may be able to distinguish two modes of K+ action on the K(+)-sensitive phosphoenzymes.

Adenosine Triphosphatases

The energy transduction mechanism is different among P-type ion-transporting ATPases. Acetyl phosphate causes uncoupling between hydrolysis and ion transport in H+,K(+)-ATPase.

H+,K(+)-ATPase, Na+,K(+)-ATPase, and Ca(2+)-ATPase belong to the P-type ATPase group. Their molecular mechanisms of energy transduction have been thought to be similar until now. Ca(2+)-ATPase and Na+,K(+)-ATPase are phosphorylated from both ATP and acetyl phosphate (ACP) and dephosphorylated, resulting in active ion transport. However, we found that H+,K(+)-ATPase did not transport proton nor K+ when ACP was used as a substrate, resulting in uncoupling between energy and ion transport. ACP bound competitively to the ATP-binding site of H+,K(+)-ATPase. The hydrolysis of ACP by H+,K(+)-ATPase was stimulated by cytosolic K+, the half-maximal stimulating K+ concentration (K0.5) being 2.5 mM, whereas the hydrolysis of ATP was stimulated by luminal K+, the K0.5 being 0.2 mM. Furthermore, during the phosphorylation from ACP in the absence of K+, the fluorescence intensity of H+,K(+)-ATPase labeled with fluorescein isothiocyanate increased, but those of Na+,K(+)-ATPase and Ca(2+)-ATPase decreased. These results indicate that phosphorylated intermediates of H+,K(+)-ATPase formed from ACP are not rich in energy and that there is a striking difference(s) in the mechanism of energy transduction between H+,K(+)-ATPase and other cation-transporting ATPases.

Adenosine Triphosphatases

Adult T-cell leukemia developing during immunosuppressive treatment in a renal transplant recipient.

We report a case of a 32-year-old male, an asymptomatic carrier of human T-cell leukemia virus type 1 (HTLV-1), who underwent a renal transplantation and developed adult T-cell leukemia (ATL) during the course of posttransplant immunosuppressive treatment. He was treated with combination chemotherapies consisting of cyclophosphamide, vincristine, doxorubicin, prednisolone, cisplatin, cytosine arabinoside, etoposide, and methyl-prednisolone, without any improvement. Bestrabucil (KM2210), a conjugate of chlorambucil and estradiol, was administered as an alternative therapy; this therapy successfully suppressed his leukemic cell growth, and partial remission was achieved. Posttransplant immunosuppressive therapy with prednisolone, mizoribine, and cyclosporin A might have been the predominant cause of the transition from an asymptomatic HTLV-1 infection to overt ATL. A careful approach is required with HTLV-1 asymptomatic carriers who need organ transplantation followed by immunosuppressive treatment.

Adult

Electrophysiologic study of dysrhythmias after atrial operations in dogs.

Experiments were conducted with 159 dogs to investigate the mechanism of persistent dysrhythmias clinically encountered after atrial-level operations. Those found after incisions to the internodal pathways (INPs) of the right atrium were analyzed using cardiac mapping in an anesthetized or extracorporeally perfused state. Longitudinal incisions of the posterior INP often allowed inducible sustained atrial flutter, with circus movement of excitation around the right atrium near the tricuspid orfice. Sustained atrial flutter thus produced was modified in cycle length by coexisting division of the middle INP but inhibited by that of the anterior INP. Its incidence increased at chronic stage, with marked cicatricial changes. The disrupted anterior INP markedly prolonged conduction time to the atrioventricular node and A-H interval compared with the other disruptions. Persistent atrioventricular junctional rhythm developed in about 50% of the animals after disruption of all three INPs or anterior and posterior INPs; division of the anterior INP was the common potent factor, although no single blocked INP produced persistent junctional rhythm. Our results support the "summation theory." The incidence of junctional rhythm and hypoxia of the sinoatrial node (flow rate of less than 10 mL.100 g-1.min-1) were markedly enhanced by coexisting blockade of atrial feeding arteries in addition to division of the anterior INP. In conclusion, massive posterior INP disruption is a potent anatomic substrate in producing sustained atrial flutter, middle INP division a modifier, and anterior INP division an inhibitor. Division of the anterior INP is a potent anatomic substrate in producing junctional rhythm, and hypoxia involving the sinoatrial node reacts as its synergic factor.

Animals

Processing of delta-endotoxin from Bacillus thuringiensis subsp. kurstaki HD-1 and HD-73 by gut juices of various insect larvae.

Midgut juices were prepared from Adoxophyes sp., smaller tea tortrix (STT); Bombyx mori, silkworm (SW); Spodoptera litura, common cutworm (CCW); Plutella xylostella, diamondback moth (DBM); and Musca domestica, housefly (HF) and immobilized onto Sepharose 4B. delta-Endotoxins (ICPs) from Bacillus thuringiensis subsp. kurstaki HD-1 and HD-73 were digested by these immobilized gut juice proteases. All gut juices tested derived relatively proteolytic resistant cores from ICP. The molecular sizes of these cores, about 55 kDa in SDS-PAGE, were resulted. In the case of CCW, however, digestion was very strong and only 1/20 concentration of core protein remained relative to other digests. The N-terminal amino acid sequencing of the core proteins showed that they were truncated at the very end of the N-terminus of protoxin, CryIA, at different sites. Although housefly larvae were completely insensitive to active toxin, the gut juice produced the core, suggesting that the housefly may lack the binding sites for the core-active toxin.

Amino Acid Sequence

The preclinical safety evaluation of human monoclonal antibody against cytomegalovirus.

The human monoclonal antibody against cytomegalovirus (Mab C23) was examined pharmacokinetically and toxicologically as part of the preclinical studies prior to approval for human use. Rats given repeated intravenous administrations of Mab C23 produced no antibodies against Mab C23 and maintained a blood Mab C23 level in a dose-dependent manner. However, pregnant rabbits produced antibodies against Mab C23. The half-life of Mab C23 in plasma was 15.9 days in rats, which was similar to that of normal human serum gamma-globulin (NHSG). Neither behavioral effects nor circulatory disturbance was found in mice, rats, and dogs even after a single intravenous injection of 100 or 200 mg/kg, which corresponds to 50 or 100 times the intended clinical dosage. The repeated doses of 2, 10, or 20 mg/kg of Mab C23 on six occasions with 1- or 2-week intervals elicited a transient decrease in leukocyte counts in rats given 10 or 20 mg/kg, but no adverse effects in cynomolgus monkeys. Mab C23 did not cause any reproductive or developmental toxicity when administered to rats and rabbits at dose levels of 20 mg/kg or less. However, pregnant animals showed lower plasma levels of Mab C23 than non-pregnant animals. The chromosomal aberration test disclosed no clastogenicity in human lymphocytes. An immunostaining for Mab C23 revealed no localizations in several tissues of cynomolgus monkeys given intravenous doses of Mab C23.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Case report: alternation therapy with antileukemic agents and recombinant human granulocyte colony-stimulating factor for RAEB in transformation.

Under the assumption that in some patients with refractory anemia with excess of blasts (RAEB), the abnormal clones might be less responsive to granulocyte colony-stimulating factor than normal clones, the authors tried alternation therapy with a recombinant form of this factor (rhG-CSF) and antileukemic agents in the treatment of two patients with RAEB in transformation. After repetition of the short-cycled alternation therapy, the hematologic findings of both patients were completely normalized and have remained so without any adverse side effects under the continuation of this therapy for more than 5 months. Judging from our clinical experience, the alternation therapy may be a new efficient therapeutic strategy for RAEB and some types of slowly progressive leukemia.

Adult

The treatment of osteoporotic-posttraumatic vertebral collapse using the Kaneda device and a bioactive ceramic vertebral prosthesis.

Twenty-two patients with neurologic deficit due to delayed posttraumatic vertebral collapse after osteoporotic compression fractures of the thoracolumbar spine underwent anterior decompression and reconstruction with bioactive Apatite-Wollastonite containing glass ceramic vertebral prosthesis and Kaneda instrumentation. Eighteen patients previously had minor trauma that resulted in a mild vertebral compression fracture without any neurologic involvement and were either conservatively treated or not treated at all. Four had no history of back injury. The preoperative neurologic status was incomplete paralysis in all patients. The average age at surgery was 66 (53-79) years. The average follow-up was 34 (20-58) months after surgery. All patients had returned to their daily living with neurologic recovery and stable spine. This type of anterior procedure is effective in the osteoporotic patients and there was a very low incidence of instrumentation failure and very low morbidity.

Aged

The mechanical properties of the human L4-5 functional spinal unit during cyclic loading. The structural effects of the posterior elements.

Cyclic axial compression-tension tests and cyclic torsional tests were performed on ten fresh human L4-5 functional spinal units to investigate the structural effects of the posterior elements on the mechanical properties of L4-5 functional spinal units. The stiffness of the functional spinal unit increased with the increase of displacement under every loading. This was same in the intact functional spinal units and the functional spinal units after removal of each posterior element, respectively. All the posterior elements contributed to the compressive, tensile, and torsional stiffness of L4-5 functional spinal units. The apophyseal joints had a significant effect on the compressive and torsional stiffness. The effect of the apophyseal joints on the torsional stiffness became greater according to the extent of displacement, whereas their effect on the compressive stiffness was constant. The posterior ligaments (supraspinous and interspinous ligaments) had a significant effect on the tensile stiffness.

Adult

The alloantigen-specific immunosuppressive activity of estradiol-chlorambucil conjugate (KM2210) and its beneficial effect on allogeneic bone marrow transplantation in mice.

KM2210, a conjugate of estradiol and chlorambucil (CBL), which was originally developed as an anti-breast cancer agent, inhibits proliferative response of human mononuclear cells to alloantigens in mixed lymphocyte culture in a dose-dependent manner, but has no effect on their response to phytohemagglutinin. Neither estradiol benzoate nor CBL alone showed these unique actions. The suppressive effect of KM2210 on MLC was abrogated by adding of anti-transforming growth factor-beta (TGF-beta) antibody to the culture, but was not affected by the addition of interleukin-2, suggesting that KM2210, unlike CBL, displays its actions via TGF-beta. In experimental allogeneic bone marrow transplantation using mice, daily oral administration of KM2210 (2 mg/kg/day) for 30 days posttransplant significantly inhibited the alloantigen-specific immune reactions. Furthermore, the survival rate of the KM2210-treated mice was significantly higher than that of the cyclosporine-treated (2 mg/kg/day, p.o.) mice, and no adverse effect of KM2210 on hematopoietic recovery was found. These results strongly suggest possible clinical benefits of KM2210 as a new immunosuppressive agent for the prevention and treatment of graft-versus-host disease and other allospecific immune reactions.

Animals

Permeability of insulin entrapped in liposome through the nasal mucosa of rabbits.

The permeability of liposome entrapping insulin through the nasal mucosa of rabbit has been studied and compared with the permeability of insulin solution with or without pretreatment by sodium glycocholate (GC). Insulin entrapped in liposome was not detected in the receiver cell using the diffusion cells with the nasal mucosa. On the other hand, permeability of insulin entrapped in liposome increased after the pretreatment of GC. The phospholipids which result from liposomes, were not observed in the receiver. Also, the GC remaining in the nasal mucosa was measured. Considering the mechanism of permeation of insulin entrapped in liposome through the nasal mucosa, the GC remaining in the nasal mucosa may cause the lysis of liposomes.

Administration, Intranasal

A case report of familial cyclic neutropenia.

A 34-year-old female with cyclic neutropenia is reported. Family studies showed that her three sons and her mother were also involved. Oscillations in the blood neutrophil counts were almost regular, with a periodicity of 21 days. Numbers of colony-forming unit--granulocyte macrophage (CFU-GM) formed from the bone marrow cells of normal volunteers co-cultured with the patient's serum or mononuclear cell-conditioned medium (MNC-CM) were examined. Her serum prepared during the neutropenic phase inhibited the growth of CFU-GM, while her MNC-CM stimulated it. Human granulocyte colony-stimulating factor (hG-CSF) level in her serum was persistently high, with the peak occurring during the neutropenic phase. These results suggest that some inhibitory factors in the serum may be pathophysiologically important for cyclic neutropenia. To control infections, a pharmacological dose of hG-CSF was administered for 7 days around the early neutropenic phase. Her peripheral neutrophil counts oscillated from 1,200/mm3 to 17,000/mm3 with G-CSF, and from 150/mm3 to 1,800/mm3 without G-CSF.

Adult