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Biomedical subjects

T Aida

Publications and source records attributed to T Aida.

At least 37 records · Page 2Linked to original sources

Responses of human glioblastoma cells to human natural tumor necrosis factor-alpha: susceptibility, mechanism of resistance and cytokine production studies.

Responses and susceptibility of 14 human glioblastoma cell lines to human natural tumor necrosis factor-alpha (TNF) were studied in vitro. Susceptibility of glioblastoma cells to TNF varied in experimental conditions applied. Most of glioblastoma cell lines were resistant to cytotoxic activity of TNF in a MTT assay at concentrations below 16 U/ml for 72 h exposure. However, TNF at higher dose, in prolonged exposure and against low density of target cells was antiproliferative for certain glioblastoma cultures. TNF exposure at 10 U/ml for 48 h suppressed DNA synthesis in 9 of 14 glioblastoma cultures, but increased in 3 cultures. In addition, colony forming assay showed anti-clonogenic activity of TNF in 5 of 6 glioblastoma cell lines tested. In spite of their low susceptibility to TNF, glioblastoma cells well responded to TNF stimulation at low dose (10 U/ml) for a short period in the absence of cell damage. Productions of Interleukin-6 (IL-6), IL-8-like activity, granulocyte-macrophage colony stimulating factor (GM-CSF), prostaglandin E2 (PGE2) and manganous superoxide dismutase (Mn-SOD) were enhanced or induced by the low-dose TNF stimulation. Mn-SOD, a protein protective against oxidative cell damage, was well induced in time- and dose-dependent manner, however did not correlate with TNF resistance. Whereas the levels of PGE2 in TNF-susceptible cell lines, H-4 and SF-188, were higher than those of other lines. In conclusion, most of glioblastoma cells are resistant to TNF cytotoxic effects, but highly responsive to TNF stimulation. Its effect on glioblastoma cells appears to modulate cell differentiation rather than to kill the cells.

Cell Division

Cellular and cytokine responses of the human central nervous system to intracranial administration of tumor necrosis factor alpha for the treatment of malignant gliomas.

To elucidate the role of tumor necrosis factor alpha (TNF alpha) as a biological response modifier, we studied cellular and cytokine responses of the central nervous system to TNF alpha administered intracranially in a phase I clinical trial for patients with malignant gliomas. Six patients received injections of TNF alpha (1.25 x 10(3)-10 x 10(3) U/injection) into the tumor cavities, and regional fluids (RF) and lumbar cerebrospinal fluids (CF) were serially sampled before and after the injections. Recruitment of neutrophils occurred, mostly peaking 8 h after TNF alpha injection, and fewer numbers of CD4+ T cells and monocytes/macrophages migrated, subsequently peaking at 24 h. The CF leukocytosis persisted for 48 h and was associated with an increased level of neutrophil chemotactic activity in the CF. This neutrophil chemotactic activity was attributed to interleukin-8 (IL-8) by HPLC. The level of IL-6 activity in the CF and RF consistently increased; beginning 2 h after TNF alpha injection and reaching the maximum between 8 h and 12 h. It returned to the basal level within 48 h. IL-1 beta was detected in the CF of three patients, its level peaking at 8 h. Prostaglandin E2 also increased after injection of TNF alpha, peaking between 4 h and 12 h and then gradually decreasing. Transforming growth factor beta was found in all cases tested and one patient showed a significant change after TNF alpha injection. IL-2 activity, interferon alpha (INF alpha) activity, IFN beta, and granulocyte/macrophage-colony-stimulating factor were not detected in the CF or RF. In conclusion, TNF alpha is biologically effective in inducing migration of immune cells and generating multiple cytokine responses in the human central nervous system.

Adult

Characteristics of DNA and multiple rpoD homologs of Microcystis (Synechocystis) strains.

The base compositions of DNAs from nine Microcystis strains, as determined by high-performance liquid chromatography, were 41 to 42 mol% G+C. Chromosomal DNAs derived from these strains were found to be extremely resistant to many restriction endonucleases, and a restriction analysis revealed the presence of a dam-like methylase or both dam- and dcm-like methylases in all of the strains examined. Genomic Southern hybridization in which a synthetic oligonucleotide probe (rpoD probe) was used showed that members of the genus Microcystis might have multiple rpoD homologs, and the hybridization signal patterns observed with the DNAs of Microcystis aeruginosa strains were different from each other.

Bacterial Proteins

Endocrine functions in children with suprasellar germinoma.

Clinical manifestations and endocrine functions were evaluated in 17 children with suprasellar germinoma. Polyuria and growth retardation were the most common initial symptoms. Physical and neurological examinations revealed diabetes insipidus in 17, growth retardation in five, and visual disturbance in three of the patients. Assessment of hypothalamic-pituitary function before treatment revealed pituitary deficits in all patients involving growth hormone, thyroid-stimulating hormone, luteinizing hormone, follicle-stimulating hormone, and adrenocorticotropic hormone. These pituitary dysfunctions persisted after tumor remission due to radiation therapy. These results indicate that children with suprasellar germinoma need long-term hormone replacement therapy to prevent growth retardation, thyroid dysfunction, and delayed secondary sexual development.

Adolescent

Desmoplastic infantile ganglioglioma--case report.

A desmoplastic infantile ganglioglioma occurred in a 5-month-old boy, manifesting as delayed psychomotor development. Computed tomography showed a large cystic mass involving the left occipitoparietal lobes. The tumor was totally removed. He has survived for 13 years without tumor recurrence. Histological examination disclosed marked desmoplasia intermixed with mature-looking ganglion cells, neoplastic glial cells, and small, immature round cells. These clinical and histological features enabled the diagnosis of desmoplastic infantile ganglioglioma.

Brain

Dystrophic axonal formation (spheroid body) in central neurocytoma--case report.

A 30-year-old female presented with a central neurocytoma manifesting as positional headache. Magnetic resonance imaging showed a large calcified mass in the right lateral ventricle. The tumor was completely removed surgically. Light microscopy showed a linear arrangement of well-defined cells (beaded-string pattern) containing small round nuclei with abundant perikarya. A perinuclear halo reminiscent of oligodendroglioma was prominent in some cell groups. The tumor was entirely amitotic and free of atypia. Large, plump spheroid bodies lacking nuclei but containing coarse brown pigments were present among the tumor cells. The tumor cells were immunoreactive to neuron-specific enolase and synaptophysin but not glial fibrillary acidic protein or neurofilament. The ultrastructure of the tumor cells included abundant spheroid bodies containing secretory granules around neurons, indicating a dystrophic or aborted process of neuronal differentiation rather than a completely-differentiated central neurocytoma.

Adult

Human glioblastoma cells produce granulocyte-macrophage colony-stimulating factor in vitro, but not in vivo, without expressing its receptor.

Granulocyte-macrophage colony-stimulating factor (GM-CSF) production and receptor expression by human glioblastomas was studied. Enzyme-linked immunosorbent assay showed four of 10 glioblastoma cell lines spontaneously released GM-CSF (2.9-9.2 pg GM-CSF protein/ml culture medium), which was enhanced by stimulation with tumor necrosis factor-alpha (TNF) (10 U/ml) up to 410 pg/ml. TNF also induced secretion of GM-CSF by another cell line. Northern blot analysis identified increasing GM-CSF gene expression by cells following TNF stimulation. However, no GM-CSF protein was detectable in the cerebrospinal fluid of three malignant glioma patients. Intratumoral administration of TNF in the patients also failed to stimulate GM-CSF levels in the cerebrospinal fluid. A binding assay using flow cytometry with biotinylated GM-CSF and Scatchard analysis using 125I-labeled GM-CSF failed to demonstrate GM-CSF receptor expression on the 13 cell lines. Exogenous GM-CSF stimulation had no effect on production of prostaglandin E2, interleukin-6, or interleukin-8 by glioma cells. Human glioblastoma cells secrete GM-CSF without expressing the receptor in vitro, but there was no evidence of GM-CSF production in vivo.

Glioblastoma

Vacuolated meningioma with secretory features: a case report.

We report a case of meningioma with secretory features in a 47-year-old woman. The left frontal tumor mass had already eroded the overlying bone at the time of presentation. When respected, the mass showed a gelatinous appearance. Histologically, marked vacuolar change was seen in the stroma. Whorls, psammoma bodies, and pavement arrangement of nuclei were also noted. Periodic acid-Schiff stain revealed cytoplasmic granules, which were digested with diastase. Alcian blue diffusely stained the cytoplasm of the tumor cells. Electron microscopy showed numerous small vacuoles and cored vesicles in the cytoplasm. Glycogen granules were poorly observed. These features indicate the mild secretory nature of this vacuolated meningioma.

Female

[Expression of type III and IV procollagen, prolyl 4-hydroxylase mRNAs in fibrotic human liver].

In situ localization of type III, IV procollagen and prolyl 4-hydroxylase mRNAs were examined to clarify the collagen production in fibrotic human liver. These mRNAs were localized in hepatocytes and mesenchymal cells in the areas of liver fibrosis. In alcoholic liver disease, the expression was promoted, and positive cells were diffusely observed in nodules. These results suggest that hepatocytes along with mesenchymal cells produce collagens, and correlate with pericellular fibrosis and sinusoidal capillarization in alcoholic liver disease.

Gene Expression

Production of macrophage colony-stimulating factor by adult murine parenchymal liver cells (hepatocytes).

The activity of macrophage colony-stimulating factor (M-CSF) was found in the culture supernatant of mouse parenchymal liver cell fractions in a bone marrow colony-forming assay. The activity of an M-CSF-like substance purified by a four-step procedure was neutralized by goat anti-mouse M-CSF antiserum. M-CSF mRNA was detected in cellular RNA prepared from cultured parenchymal liver cell fractions by Northern blot analysis and also in cultured parenchymal liver cells by in situ hybridization. These results indicate that parenchymal liver cells have the capacity to produce M-CSF. We discuss the role of M-CSF in hematopoiesis, the immune response, and other biological phenomena.

Acrylic Resins

Papillary craniopharyngioma of the third ventricle--case report.

A papillary craniopharyngioma localized in the third ventricle occurred in a 45-year-old male. The clinical presentation was unusual and the neuroradiological appearance resembled a choroid plexus papilloma of the third ventricle. The tumor originated from the right anterolateral wall of the third ventricle, forming a discrete mass with prominent papillae formation. The tumor was totally removed by a transcallosal approach without neurological or endocrinological sequelae.

Cerebral Ventricle Neoplasms

Localization of collagen (I) and collagenase mRNA by in situ hybridization during corneal wound healing after epikeratophakia or alkali-burn.

The expression and localization of type I collagen and collagenase gene were studied by in situ hybridization using rabbit cornea during wound healing following epikeratophakia or alkali-burn. In corneas 24 days after epikeratophakia, alpha 1(I) collagen mRNA was detected in keratocytes which had migrated from the host cornea into the keratolens. In contrast, collagenase mRNA was detected in cells which seemed to be inflammatory cells around the suture between the host stroma and the keratolens. The increase of alpha 1(I) collagen mRNA in keratocytes was observed in corneas 94 days after epikeratophakia and in alkali-burned corneas 1-2 months after the burn. These results provide evidence that keratocytes synthesize collagen and that this synthesizing activity lasts for a long period during corneal wound healing.

Alkalies

[A case of hypothalamic astrocytoma with precocious puberty].

A case of hypothalamic astrocytoma with precocious puberty is presented. In July 1989, a 2-year-old girl was admitted to our hospital because of vaginal bleeding and enlargement of breasts. Breast development was Tanner's stage 3 and no pubic hair was present. Endocrinological evaluation revealed a slightly high level of LH, but the responses of LH and FSH to LH-RH test resulted in exceedingly high values similar to those in adults. Plain CT scan showed an isodense mass in the suprasellar cistern which was not enhanced following administration of contrast medium. MR imaging revealed the precise location of the mass attached to the posterior hypothalamus between the pituitary stalk and the mamillary bodies in sagittal view. The signal intensity of the mass was homogenous and isointense relative to the gray matter on T1 weighted image. But on T2 weighted image, it showed high signal intensity compared with the normal brain parenchyma. A right fronto-temporal craniotomy was performed and the tumor was partially removed. Histological examination disclosed moderate hypercellularity of glial cells but no neurons were visible. This appeared to be astrocytoma grade II. In the literature, CT and MRI behaviour of hypothalamic hamartomas are almost similar to our case. Therefore we think it is not possible at the present time to differentiate a low grade astrocytoma from hamartoma when using CT and MRI alone. In this case, the mechanism of development of precocious puberty seemed to be due to hypothalamic compression by the tumor.

Astrocytoma

Localization of acidic and basic fibroblast growth factor mRNA in human brain tumors.

Acidic and basic fibroblast growth factors (aFGF and bFGF) are closely related peptide mitogens acting on both mesoderm- and neuroectoderm-derived cells, including fibroblasts, endothelial cells and glial cells. In order to identify the expression of mRNAs for these growth factors, in situ hybridization using human aFGF and bFGF RNA probes was performed in 24 human brain tumors. The mRNAs for aFGF and bFGF were expressed in the cells of various tumors (1/1 and 1/1 astrocytoma, 2/2 and 2/2 anaplastic astrocytomas, 6/6 and 6/6 glioblastomas, 4/4 and 4/4 meningiomas, 3/3 and 3/3 schwannomas, 1/2 and 1/2 pituitary adenomas, 4/4 and 4/4 metastatic carcinomas, 0/1 an 0/1 hemangioblastoma, 0/1 and 0/1 craniopharyngioma) and were also detected in endothelial cells and surrounding neuronal cells of brain tumors. These results suggest the possibilities that aFGF and bFGF contribute to the uncontrolled growth of tumor cells and the proliferation of endothelial cells in autocrine and paracrine manners, and that the expression of mRNAs for these growth factors in the surrounding neuronal cells results in enhancement of tumor growth.

Adolescent

Toxicity and toxins of natural blooms and isolated strains of Microcystis spp. (Cyanobacteria) and improved procedure for purification of cultures.

All samples of cyanobacterial blooms collected from 1986 to 1989 from Lake Kasumigaura, Ibaraki Prefecture, Japan, were hepatotoxic. The 50% lethal doses (LD50s) of the blooms to mice ranged from 76 to 556 mg/kg of body weight. Sixty-eight Microcystis cell clones (67 Microcystis aeruginosa and 1 M. viridis) were isolated from the blooms. Twenty-three strains (including the M. viridis strain) were toxic. However, the ratio of toxic to nontoxic strains among the blooms varied (6 to 86%). Microcystins were examined in six toxic strains. Five toxic strains produced microcystin-RR, -YR, and -LR, with RR being the dominant toxin in these strains. Another strain produced 7-desmethylmicrocystin-LR and an unknown microcystin. This strain showed the highest toxicity. Establishment of axenic strains from the Microcystis cells exhibiting extracellularly mucilaginous materials was successful by using a combination of the agar plate technique and two-step centrifugation.

Animals

Site-specific integration of the actinophage R4 genome into the chromosome of Streptomyces parvulus upon lysogenization.

The lysogenization of Streptomyces parvulus by actinophage R4 occurs by site-specific integration of the phage genome into the chromosome. The DNA fragments containing the attachment sites on the host chromosome, the phage genome, and the two junctions created by insertion of the phage genome were cloned and sequenced. The attachment sites were found to share a common core of 12 bp. This common core sequence was not detected in chromosomal DNAs of S. coelicolor and S. lividans.

Bacteriophages