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T Arita

Publications and source records attributed to T Arita.

At least 73 records · Page 4Linked to original sources

Enhancement of differentiation of human lens epithelium in tissue culture by changes in cell-substrate adhesion.

Differentiation of human lens epithelial (HLE) cells cultured in vitro was drastically accelerated when the cells were cultured on cell-substrate adhesion-free surfaces. Spontaneous differentiation of the lens epithelial cells in monolayer cultures could be recognized with the appearance of lentoid bodies after 40-50 days if maintained without further passage. Although dissociated HLE cells reconstituted into monolayers consistently on the haptotactic substrates (either gold-coated biopore membrane or regular plastic dishes), the cells from the same batches exclusively formed cell aggregates when cultured on either biopore membrane or agarose-coated plastic dishes (nonhaptotactic). The cells on nonadhesion substrate first aggregate, then synchronously develop into lentoids by the 10th day of culture. The differentiation of HLE cells into lentoid structures with lens-fiber characteristics was documented by both ultrastructural and biochemical markers, such as loss of cytoplasmic organelles, formation of gap junctions, and the expression of gamma-crystallin and MP26. The system, in which differentiation of epithelial cells can be induced predictably in a short period of time, provides an excellent model for the study of differentiation and gene expression in human lens cells cultured in vitro.

Adult↗

Transport characteristics of [3H]-chlorpromazine across rat small intestinal brush border membrane.

The transport mechanism of chlorpromazine, a tertiary amine, has been investigated using brush border membrane vesicles isolated from rat small intestine. Chlorpromazine was taken up rapidly by the vesicles the uptake being mainly due to binding to the membrane. The transport of chlorpromazine into the intravesicular space was facilitated by the transmembrane electrical potential difference (inside negative) induced by valinomycin or sodium thiocyanate. This facilitating effect was observed only when the transmembrane electrical potential difference was induced after chlorpromazine uptake had reached a steady state. In the initial phase of chlorpromazine uptake, there was no effect. Therefore, it is suggested that both rapid binding to brush border membrane and transmembrane electrical potential difference (inside negative) across the membrane plays a significant role in the transport processes of chlorpromazine through the intestinal epithelium.

Animals↗

Involvement of sialic acid in high-affinity binding of quaternary ammonium compounds by brush border membrane from rat intestine.

As one approach to clarify the absorption mechanisms of quaternary ammonium compounds (QACs), their binding characteristics have been studied using brush border membrane vesicles isolated from rat small intestine and liposomes composed of phospholipid and GM3 ganglioside. The binding of propantheline was significantly decreased when the vesicles were pretreated with neuraminidase. Propantheline and methochlorpromazine bound to the liposomes, the binding for the latter drug being significantly greater than that for propantheline. When GM3, isolated from rat small intestine, was incorporated into the liposomes their binding capacity for both drugs increased significantly. It is suggested that the binding of QACs to the lipid layer and sialic acid play a role in the high binding of drugs to the intestinal brush border membrane. Furthermore, a sensitive and reproducible high-performance liquid chromatographic method for sialic acid has been developed.

Animals↗

Comparison of transport characteristics of amino beta-lactam antibiotics and dipeptides across rat intestinal brush border membrane.

The transport characteristics of amino beta-lactam antibiotics, ampicillin and cephradine, have been examined and compared with that of glycylglycine using brush border membrane vesicles isolated from rat small intestine. The initial rate of glycylglycine uptake was markedly stimulated in the presence of an inward H+ gradient compared with the uptake rates in the absence of an H+ gradient. With the same H+ gradient the stimulation of cephradine uptake was lower and ampicillin uptake was not altered. Cephradine uptake, however, was greater than that of glycylglycine in both vesicular conditions ((pH)i greater than (pH)o and (pH)i = (pH)o). Inhibitory effects of dipeptides, ampicillin and cephradine on the initial uptake of glycylglycine were also examined. Glycylglycine uptake was significantly decreased in the presence of L-phenylalanylglycine or carnosine. Ampicillin and cephradine did not alter the uptake of glycylglycine. These results suggest that the contribution of the inward H+ gradient to the permeation of ampicillin, cephradine and glycylglycine across the rat small intestinal brush border membranes is different for each of the substances examined.

Alanine↗

[A case report of successful surgical treatment of fungal endocarditis].

A successfully treated case of fungal endocarditis for native aortic and mitral valves was reported. A 56-year-old male was admitted with high fever, dyspnea on exertion and oliguria. Infective endocarditis, urinary tract infection and acute renal failure were most suspected by findings of physical examination and urinalysis, but repeated blood cultures were sterile. In the course of treatment for urinary tract infection, high fever and leucocytosis recurred and then blood cultures were positive for Candida parapsilosis. Despite intensive antifungal therapy, blood cultures were consistently positive for Candida parapsilosis. Echocardiogram showed vegetation on the aortic and mitral valve. Aortic and mitral valve replacements with prosthetic heart valves were carried out on April, 1986. Cultures of the vegetation on the mitral valve revealed Candida parapsilosis. Intensive administration of antifungal drug was done postoperatively. Postoperative course was uneventful and he was discharged in excellent condition on the 84th postoperative day. During follow-up period of 1 year, the patient has been doing very well and there were no sign of recurrence of fungal infections.

Aortic Valve↗

Crystallins and their synthesis in human lens epithelial cells in tissue culture.

Explants of epithelial cells from young human lenses of 5-12 months of age, obtained from patients who underwent surgery for retinopathy of prematurity, were cultured in Dulbecco's modified Eagle's medium supplemented with 20% fetal calf serum. Without exception, every piece of the anterior capsule explant showed cell outgrowth within 48-72 h and resulted in confluent monolayer culture within 2 weeks. From these monolayer cultures, two to three passages of subcultures were obtained by routinely seeding cells in a ratio of 1:4. The doubling times for these human lens epithelium (HLE) cultures during the first 4 weeks of two passages were found to be 24-36 h. In a majority of cultures through the first three passages, more than 12 population doublings were attained. However, no lentoid bodies were formed during this period. These cells were studied for the presence of crystallins and their synthesis. Using SDS-polyacrylamide gel electrophoresis, the presence of alpha- and beta-crystallins was demonstrated in HLE cells through three passages. The amount of alpha-crystallin in the first two passages amounted to nearly 13% of the total protein, but decreased significantly in the third passage. The presence of crystallins was corroborated by antibody reaction to the specific crystallins. Indirect immunofluorescence revealed the presence of actin and vimentin in these cell cultures. The synthesis of crystallins in HLE cultures was shown by the incorporation of [35S]methionine which was time dependent. The crystallin synthesis was found to decrease in third passage when the cell growth slowed down without consistent formation of confluent monolayer. These studies have demonstrated that primary cultures of HLE cells can be successfully grown from young lenses through several passages which continue to express the characteristic crystallins of the epithelial cells.

Cells, Cultured↗

Binding of organic cations to brush border membrane from rat small intestine.

The binding of six organic cations (chlorpromazine, promethazine, imipramine, diphenhydramine, methochlorpromazine and propantheline) to the brush border membrane isolated from rat small intestine has been investigated. The cations were bound to the membrane to varying extents, the order of binding being chlorpromazine greater than promethazine greater than methochlorpromazine greater than imipramine greater than propantheline greater than diphenhydramine. There was no relation between binding and the chloroform-water partition coefficient. Chlorpromazine binding was significantly decreased in the presence of imipramine, methochlorpromazine and propantheline. Anionic compounds (indomethacin and xanthene-9-carboxylic acid) did not affect chlorpromazine binding. High and low affinity binding of the cations to the intestinal brush border membrane was demonstrated with Scatchard plots and Hill plots. Imipramine and methochlorpromazine inhibited chlorpromazine binding at both binding sites. From the results, it was suggested that the organic cations tested were specifically bound to common binding sites on the brush border membrane.

Animals↗

Transport characteristics of propantheline across rat intestinal brush border membrane.

The transport mechanism of propantheline, an anti-acetylcholine quaternary ammonium compound, has been studied using brush border membrane vesicles isolated from rat small intestine. The uptake of propantheline was facilitated by the transmembrane electrical potential difference (cell interior negative) induced by NaSCN, NaI or valinomycin. But this effect was a secondary action; in the initial phase of propantheline uptake (less than 5 min), there was no facilitating effect. When the transmembrane potential difference was induced after propantheline uptake had reached a steady state, there was an overshoot of the drug. Therefore, it is suggested that the transport of propantheline across the brush border membrane consists of at least two processes. In the first, propantheline rapidly binds to the brush border membrane, in the second it enters into epithelium driven by the negative transmembrane electrical potential difference. Cationic tertiary amines such as chlorpromazine, imipramine and promethazine markedly inhibited propantheline uptake. These results suggest that there is a common absorption process for tertiary amines and quaternary ammonium compounds.

Animals↗

Effect of chlorpromazine on the permeability of beta-lactam antibiotics across rat intestinal brush border membrane vesicles.

The effect of chlorpromazine on the membrane permeability of beta-lactam antibiotics (benzylpenicillin, ampicillin, cephradine and cephalexin) and actively transported substances (glycylglycine and D-glucose) has been studied using rat intestinal brush border membrane vesicles. Except for cephalexin, the initial uptakes at 25 degrees C of these antibiotics were significantly enhanced in the presence of chlorpromazine. In contrast, the transport of glycylglycine and D-glucose was significantly inhibited. These results suggest that the two groups, drugs and actively transported substances, have a different permeation process. The effect of chlorpromazine concentration on membrane lipid fluidity, as assessed by the fluorescence polarization of 1,6-diphenyl-1,3,5-hexatriene (DPH) and 1-anilino-8-naphthalene sulphonate (ANS), was also examined. The fluorescence polarization of ANS decreased with increasing concentration of chlorpromazine, while that of DPH increased suggesting an increase of membrane surface fluidity might affect the permeation of beta-lactam antibiotics and actively transported substances in a different manner.

Animals↗

Binding of amino beta-lactam antibiotics to soluble protein from rat intestinal mucosa--I. Purification of drug-binding protein.

Several amino beta-lactam antibiotics, including ampicillin, amoxicillin, cyclacillin, cephalexin, cephradine and cefadroxil, were found to bind in vitro to specific components in 105,000 g supernatant of homogenate obtained from rat intestinal mucosa. The major binding component (fraction b) was purified by chromatography on DEAE-cellulofine and by gel filtration on Sephadex G-50. The molecular weight of fraction b was determined by SDS polyacrylamide gel electrophoresis (15,000 Da). The binding behaviour of these amino beta-lactam antibiotics to fraction b were estimated by equilibrium dialysis. There were significant high affinities of all tested amino beta-lactam antibiotics which were well absorbed from intestine, but there was not a good correlation between binding and absorption of these drugs. It was also found that poorly absorbed cephalosporins which lack aminobenzyl group in their structure, cefazolin and cephaloridine, did not bind to fraction b.

Animals↗

Binding of amino beta-lactam antibiotics to soluble protein from rat intestinal mucosa--II. Mutual inhibition of binding among amino beta-lactam antibiotics and binding characteristics.

The characteristics of binding of amino beta-lactam antibiotics including ampicillin, amoxicillin, cephalexin and cephradine to fraction b obtained from the 105,000 g supernatant of rat small intestinal mucosa was investigated. The mutual inhibition of binding among these antibiotics was observed, and these were dependent on the concentration of inhibitors. It was found that dipeptides such as L-carnosine and glycylglycine significantly reduced the binding of cephalexin to fraction b, but the binding of cephradine was only slightly decreased by these dipeptides. Furthermore, the binding of cephalexin and cephradine was not influenced by amino acids (L-phenylalanine, glycine). Although ANS(1-anilino-8-naphthalenesulfonic acid magnesium salt), which is a hydrophobic probe, bound to the fraction b, there was no competitive inhibition in binding between ANS and amino beta-lactam antibiotics. The Scatchard plot of binding data of cephalexin gave two dissociation constant (Kd) values (1.37 and 15.7 microM). On the other hand, one Kd value (11.2 microM) was obtained for ampicillin.

Ampicillin↗

Density dependent growth of corneal endothelial cells cultured in vitro.

Using the cornea of macaque monkey, we demonstrated the relationship between cell density and growth of endothelial cells in vitro. Corneal endothelial cells in a cell sheet grow most actively in regions with cell density of 1000 to 1800 cells/mm2, in explant cultures and cell sheets and in concentrated inocula dissociated cells. Cell morphology was well sustained in these cultures. Cells cultured at a higher cell density retained their potential to proliferate actively, showing clear contrast to cells cultured at a density lower than 200 cells/mm2. When dissociated cells were cultured at a low density and maintained for more than 4 weeks, they gradually lost their growth potential, altered into polymorphonuclear giant cells and eventually dedifferentiated. In addition, cells with no contact with each other did not express growth potential. Density dependent growth was confirmed by measuring the mitotic index against the cell density per square mm from the center to the peripheral regions in cultured explants. It is concluded that the growth pattern of corneal endothelial cells is closely related to cell density, and that growth of these cells might be regulated through intercellular communications.

Animals↗

A highly sensitive HPLC method for the assay of propantheline used to measure its uptake by rat intestinal brush border membrane vesicles.

A simple, sensitive, high-performance liquid chromatographic method for propantheline has been developed. Propantheline was quantitatively hydrolysed into xanthene-9-carboxylic acid in neutral or alkaline medium and the hydrolysate assayed by reversed phase high-performance liquid chromatography. This method measured to 2 pmol per injection and was used to investigate the uptake of the drug by rat intestinal brush border membrane vesicles. Propantheline was highly bound to the membrane and this binding was inhibited to varying extents by several quaternary ammonium compounds. Mepenzolate and methylbenactyzium inhibited it significantly, and neostigmine, butylscopolamine and N-methylnicotinamide inhibited it moderately. Choline, acetylcholine and thiamine had no effect.

Animals↗