PubMed Health⌕ Search

Biomedical subjects

H Sunada

Publications and source records attributed to H Sunada.

At least 37 records · Page 2Linked to original sources

Dissolution of solid dosage form. II. Equations for the dissolution of nondisintegrating tablet under the sink condition.

An equation for dissolution from the whole surface of a nondisintegrating single component tablet under the sink condition was derived. Also, equations for several dissolution manners of the tablet under the sink condition were derived in the postulation of the dominant dissolution rate constant which determines the dissolution manner. The applicability or validity of these equations were examined by the dissolution measurements with nondisintegrating single component tablets. About one-tenth the amount of the amount needed to saturate the solution was used to prepare a tablet, and dissolution measurements were carried out with the tablet whose flat or side surface was masked with an adhesive tape in accordance with the conditions for derivation of equations. Among the derived equations, dissolution from the whole surface of a tablet was expressed by a form similar to the cube root law equation for particles. Hence, a single component tablet compressed by the use of a suitable amount was thought to behave like a single crystal. Also, equations derived for several dissolution manners were thought to be applicable for the dissolution of a nonspherical particle and crystal concerning the crystal's habit and its dissolution property, and the extended applicability was examined by converting the crystal into a simplified or idealized form, i.e., rectangle or plate.

Mathematics↗

Ligand induced internalization of epidermal growth factor receptors by A431 cells decreases at high cell densities in culture.

Internalization of epidermal growth factor (EGF) receptors by human A431 epidermoid carcinoma cells was studied at various culture densities. The extent of EGF receptor internalization was measured by quantitation of internalized 125I-EGF during incubation at 37 degrees C for 30 min. When cell culture density was below 1 x 10(5) cells/cm2 receptor internalization was active; 30-40% excess moles of ligand over the moles of surface EGF receptors were internalized during this period. However, when culture density increased to above 1.5 x 10(5) cells/cm2 receptor internalization became less extensive, as only 30-50% of ligand bound to the cell surface underwent internalization during 30 min incubation. In parallel with this reduction in receptor internalization, the degradation rate of 35S-methionine labeled EGF receptors was reduced at a high culture density. In contrast with this regulation of receptor internalization, the affinity of EGF receptors for the ligand increased as culture density increased. The extent of EGF-dependent receptor phosphorylation was found to be constant at all culture densities tested. Thus, the observed low level of receptor internalization at high culture densities was not attributable to lower responsiveness of receptors to EGF. These data suggest the presence of an as yet unidentified cell density-dependent mechanism for regulating receptor internalization in cultured A431 cells.

Adenosine Triphosphate↗

Modulation of tyrosine, serine, and threonine phosphorylation and intracellular processing of the epidermal growth factor receptor by antireceptor monoclonal antibody.

To investigate the functional significance of epidermal growth factor (EGF) receptor phosphorylation, experimental systems were explored in which receptor phosphorylation on tyrosine and serine/threonine could be differentially stimulated. Exposure of A431 cells to 20 nM EGF at 37 degrees C results in phosphorylation of serine, threonine, and tyrosine sites on the receptor. Monoclonal antibody (mAb) 225 binds to the EGF receptor with affinity comparable to EGF and competes with the binding of EGF. Exposure of A431 cells to 20 nM EGF in the presence of 300 nM anti-EGF receptor mAb 225 (15-fold excess) selectively activated serine and threonine phosphorylation of the receptor, but not tyrosine phosphorylation. This observation indicates that EGF-mediated receptor phosphorylation on tyrosine and on serine/threonine residues is dissociable. The intracellular fate of the EGF receptor was examined under conditions that produce different phosphorylation states of receptor amino acids. Exposure of A431 cells to EGF decreased the half-life (T1/2) of the receptor from 17.8 h to 5.6 h, with activation of tyrosine, serine, and threonine phosphorylation. Incubation with mAb 225 augmented the degradation rate (T1/2 = 8.5 h) without activation of receptor phosphorylation. Concurrent exposure to EGF (20 nM) and mAb 225 (300 nM) resulted in comparable enhanced degradation (T1/2 = 9.5 h), with increased phosphorylation only on serine and threonine residues. These results suggest that serine/threonine phosphorylation is irrelevant to the augmentation of receptor degradation. Methylamine, an inhibitor of lysosomal function that did not affect phosphorylation of the EGF receptor, completely protected EGF receptors from rapid degradation induced by EGF, but it only slightly altered the rate of EGF receptor degradation elicited by mAb 225 or by EGF plus 15-fold excess mAb 225. In contrast, mAb 455, which binds to the receptor but does not inhibit EGF binding and EGF-induced activation of phosphorylation on tyrosine, serine, and threonine residues, did not influence EGF-induced rapid, methylamine sensitive degradation of EGF receptor. The results suggest that when EGF receptors are internalized under conditions that do not activate the receptor tyrosine kinase, they are sorted into a nonlysosomal pathway that differs from the methylamine-sensitive lysosomal pathway traversed following activation by EGF. The data indicate the possibility of a function for tyrosine kinase activation and tyrosine autophosphorylation in determining the lysosomal intracellular pathway of EGF receptor processing and degradation.

Antibodies, Monoclonal↗

Regulation of collagen metabolism and cell growth by epidermal growth factor and ascorbate in cultured human skin fibroblasts.

Epidermal growth factor (2-50 ng/ml), prepared from mouse submaxillary glands, stimulated growth and the synthesis of non-collagenous proteins and hyaluronic acid, but inhibited collagen synthesis in cultured human skin fibroblasts, both stimulation and inhibition being dose-dependent. All these effects may be intrinsic functions of the epidermal growth factor molecule, because these effects were cancelled by the co-presence of antiserum specific for epidermal growth factor and because they were also observed following the addition of human epidermal growth factor produced urogastrone cDNA. On the other hand, L-ascorbate (vitamin C) stimulated growth and collagen synthesis, as well as synthesis of non-collagenous proteins, with no significant effect on hyaluronic acid synthesis. Co-presence of epidermal growth factor and ascorbate gave additive effects on growth and protein synthesis of the cells. These results suggest that the two growth-promoting factors, epidermal growth factor and L-ascorbate, modulate metabolism of extracellular matrix components as well as cell growth in a quite different manner in human skin fibroblasts.

Adult↗

Effects of epidermal growth factor on transferrin receptor phosphorylation and surface expression in malignant epithelial cells.

The transferrin (Tf) receptor is a major transmembrane protein which provides iron for normal and malignant cell growth. Epidermal growth factor (EGF) has been reported to rapidly and transiently alter the number of surface Tf receptors in normal and transformed epithelial cells. To investigate mechanisms of EGF-induced changes in surface Tf display, EGF effects on surface Tf receptors were compared in two cell lines which differ in their number of EGF receptors and growth responses to EGF. In cloned A431 cells with high receptor numbers which are growth-inhibited by EGF, EGF caused a 50% decrease in Tf receptor expression after 30 min. In contrast, EGF induced a rapid, transitory increase (within 5 min) in the number of surface Tf receptors on KB carcinoma cells which returned to basal levels by 15 min. The observed changes in Tf receptor display were due to altered receptor distribution and not changes in ligand affinity or total cellular transferrin receptor pools. Anti-EGF receptor monoclonal antibody blocked effects of EGF on transferrin receptor expression. Since the antibody is internalized and causes EGF receptor down-regulation, effects on transferrin receptor expression were independent of these events. EGF-induced alterations in Tf receptor display occurred even when cells were pretreated with colchicine, suggesting that changes in surface Tf binding were not mediated by cytoskeletal components. Na orthovanadate, which mimics some early cellular effects of EGF, duplicated EGF's effects on A431 Tf receptors, but had no effect on KB cells, suggesting these responses occur by differing mechanisms. To determine whether EGF caused changes in Tf receptor phosphorylation, 32P-labelled Tf receptors were immunoprecipitated after EGF treatment. After exposure to EGF, A431 cells showed no change in Tf phosphorylation, but KB cells showed a transient, 6-fold increase in transferrin receptor phosphorylation on serine residues. In both A431 and KB cells, phorbol ester (PMA) also increased phosphorylation on transferrin receptors, but had little effect on surface Tf receptor expression. In malignant cell lines, EGE induces rapid, variable changes in transferrin receptor expression and phosphorylation which differ from the effects of PMA. These early responses to EGF appear to differ with the cell type and correlate poorly with alterations in Tf receptor phosphorylation. These results suggest Tf receptor phosphorylation does not regulate Tf receptor display in all cells.

Animals↗

Studies on systemic absorption of tobramycin in polyethylene glycol ointment applied to wounds of burn patients.

The penetration of tobramycin ointment (0.2 per cent) through human burn wounds was studied in two patients with superficial dermal burn (SDB) and deep dermal burn (DDB), two patients with DDB, one patient with full thickness burn (FB) and one patient with burn ulcer (BU). After application of the ointment, the absorption of tobramycin occurred promptly with a peak level at 2-6 h in the sera of patients with SDB + DDB and DDB only. In the BU patient it was found at 2 h; while in the FB, at 10-12 h. The excretion of tobramycin into the urine was also studied. The absorption rate constants (ka) of the two SDB + DDB patients were 0.31 and 0.74, of the two DDB patients, 0.079 and 0.18, and those of the DB and the BU patients, 0.053 and 0.95, respectively. The absorption ratios of tobramycin (amount excreted into the urine during 24 h/applied dose) were different, depending on the condition of the burn wound, and ranged from a low of 10.3 per cent (FB) to a high of 44.0 per cent (BU). These results show that the treatment of burn patients with tobramycin ointment to control burn wound infection should be carefully supervised, especially in the case of BU.

Administration, Topical↗

Monoclonal antibody against epidermal growth factor receptor is internalized without stimulating receptor phosphorylation.

The down-regulation and internalization of the epidermal growth factor (EGF) receptors induced by two separate anti-EGF monoclonal antibodies (mAbs), IgG1 mAb-225 and -455, and by EGF was examined. mAb-225 competitively inhibits EGF binding and it is internalized to an extent comparable to EGF. The antibody down-regulates surface EGF receptors in a dose-dependent manner. In contrast, mAb-455 does not competitively inhibit the binding of EGF or mAb-225, but it specifically immunoprecipitates the EGF receptor. mAb-455 also down-regulates the EGF receptor. Unlike EGF, which elicits phosphorylation of the receptor at tyrosine, threonine, and serine residues, neither of these antibodies elicits phosphorylation of the EGF receptor in intact A431 cells or in KB cells. Our studies suggest that EGF-stimulated phosphorylation of the receptor is not required for the internalization of the ligand-receptor complex.

Antibodies, Monoclonal↗

Activation of collagen synthesis in primary culture of rat liver parenchymal cells (hepatocytes).

An increase in collagen synthesis by hepatic parenchymal cells (hepatocytes) was observed during 8 days in primary culture by the quantification of total [3H]hydroxyproline as a marker of total collagen synthesis and the ratio of [3H]hydroxyproline in the high-molecular-weight fraction to total [3H]hydroxyproline as a marker of collagen degradation after incubation of the cells with [3H]proline for 24 h. Type analysis of the collagen produced by the cells after 8 days in culture showed the presence of type I and type III collagens in addition to the components corresponding to type IV and type V (alpha A and alpha B) collagens. Only the latter two types were found in the collagens produced by the cells after 2 days in primary culture. The purity of the hepatocytes inoculated was 97%, and the majority of the contaminating small cells were erythrocytes. The rate of serum albumin synthesis, which is a typical function of the hepatocytes, was constant or increased during the culture period. Immuno-electron microscopic observation indicated the production of type I collagen by the hepatocytes after 8 days in primary culture. These results are explained only by the activation of collagen synthesis in the day-8 hepatocytes in primary culture.

Animals↗

A direct radioimmunoassay for human epidermal growth factor receptor using 32P-autophosphorylated receptor.

A simple and reproducible radioimmunoassay of the epidermal growth factor (EGF) receptor which uses 32P-labeled EGF receptor and anti-receptor monoclonal antibodies is reported. In vitro phosphorylation of A431 cell membranes with [gamma-32P]ATP in the presence of 20% dimethyl sulfoxide (which stimulates autophosphorylation of the EGF receptor) and 10 microM Na3VO4 (a potent inhibitor of phosphotyrosyl protein phosphatase) provides radiolabeled EGF receptor for radioimmunoassay without further purification. The most selective phosphorylation of the EGF receptor is achieved at ATP concentrations of 0.1-0.2 microM, which corresponds to the reported Km value for the autophosphorylation reaction of the EGF receptor (W. Weber, P.J. Bertics, and G.N. Gill, 1984, J. Biol. Chem. 259, 14631-14939). The incorporation of 32P into EGF receptors increases in proportion to the increase of ATP concentration up to 6 mol of labeled phosphate at 2.0 microM ATP. The label is entirely on tyrosine residues. The cell membranes can be stored at -70 degrees C for 3 months without loss of immunoreactivity and autophosphorylating activity. Standard curves for the radioimmunoassay were constructed employing either A431 cell membranes or whole cell homogenates containing a known amount of EGF receptor. The assay can detect 7 X 10(10) EGF receptor molecules or 20 ng of the receptor protein, and can quantitatively distinguish the difference in EGF receptor numbers between A431 cells and 29E2 and KB cells with 10-fold and 15-fold fewer receptors than A431 cells, respectively. 29E2 cells and KB cells express twofold more immunoreactive EGF receptors than EGF-binding sites. In contrast, A431 cells possess the same number of immunoreactive sites and receptor sites for EGF binding. To assess total EGF receptor expression, it is necessary to use a method which detects EGF receptors regardless of their intrinsic kinase activity, or capacity to bind EGF. This radioimmunoassay detects immunoreactive receptor molecules, even those which do not bind EGF.

Adenosine Triphosphate↗

Biochemical and immunohistochemical studies on the scirrhous carcinoma of human stomach.

Tumor mass of the stomach from patients with scirrhous carcinoma was analyzed biochemically and immunohistochemically to elucidate whether or not infiltrating carcinoma cells are directly responsible for overproductions of collagen in the lesion. Collagen content per unit transverse section of the tumor was two to four times higher than the normal. Of particular interest was that the contents of hyaluronic acid and chondroitin sulfate were five to ten times higher than the normal, suggesting that cells in the lesion of the tumor are in an actively proliferating stage. Immunohistochemical observations using type-specific anti-collagen antibodies and anti-carcinoembryonic antigen antibody revealed that type IV collagen was diffusely distributed through the tumor stroma of submucosa and fragmented regions of muscle layer, along with dense fibrous components composed of type I and type III collagens. Stroma cells in the lesion were often stained with antibody to type IV collagen. In contrast, carcinoma cells were with antibody to type I collagen, but not with antibodies to type III and type IV collagen. Quantitative analysis of the collagen production by isolated stroma cells and undifferentiated (KATO-III) and highly differentiated (MKN-28) carcinoma cells in culture in the presence and absence of a combination of the conditioned medium of these cells has shown that the scirrhous carcinoma of stomach results from the "stroma reaction" of stroma cells induced by infiltrating malignant epithelium.

Adenocarcinoma, Scirrhous↗

Reciprocal effects of excess potassium salts in the culture medium on type I and type III collagen synthesis by human skin fibroblasts.

By the addition of excess KCl or CH3COOK in the culture medium of human skin fibroblasts, production of non-collagenous proteins and membrane transport of [3H]proline of the cells were activated, but collagen synthesis was not increased. Production of type I collagen was inhibited under these culture conditions but type III collagen synthesis was activated; thus the ratio of type I to type III collagen decreased from 10 to near 1, indicating that the regulation of these two types of collagen is independent in human skin fibroblasts.

Acetates↗

Sodium ion modulates collagen types in human fibroblastic cells in culture.

Collagen synthesis in human fibroblasts was increased by the presence of 0.1M excess NaCl in the culture medium. Type analysis of the collagen produced by the cells showed the increase in the ratio of type III collagen to the total collagen. Similar NaCl effects were observed in several cell lines derived from different tissues. Sodium ion but not chlorine ion seems to be essential to the modulation of collagen production by the cells, because addition of CH3COONa induced similar effects but addition of KCl instead of NaCl resulted in specific inhibition of the collagen production.

Adult↗