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K Chida

Publications and source records attributed to K Chida.

At least 253 records · Page 14Linked to original sources

L-fucose, D-mannose, L-galactose, and their BSA conjugates stimulate macrophage migration.

The effect of selected monosaccharides on the random migration of normal adult rabbit alveolar macrophages (AM) was investigated. It was observed that 10 mM of L-fucose, L-galactose, or D-mannose stimulated AM migration 1.5-2.0 times. In addition, derivatives of L-fucose and D-mannose occupying the carbon-6 position such as L-fucosyl-lactose, D-mannose-6-phosphate, D-mannitol, and mannan enhanced the migration of AM, whereas derivatives of L-fucose and D-mannose in the carbon-1 position produced no migration enhancement. Macrophage migration enhancement activity that was produced spontaneously by spleen cell cultures from normal young rabbits was destroyed by treatment with L-fucosidase. Accordingly, the migration enhancement factor (MEF) found in spleen cell culture supernatants appeared to depend on L-fucose conjugated to some protein carrier because MEF was non-dialyzable. When normal adult AM were treated with L-fucosidase, they lost their responsiveness to migration inhibitory factor (MIF) but retained their responsiveness to MEF. We have interpreted this to mean that the MIF and MEF receptors are distinct. Synthetic MEFs were prepared by conjugating L-fucose, D-mannose, of L-galactose to bovine serum albumin (BSA). It was noted that these sugar-BSA conjugates were about 200 times more effective than the corresponding free sugars in producing migration enhancement. In addition, these sugar-BSA conjugates neutralized MIF activity in a migration inhibition test.

Animals↗

Macrophage migration inhibition induced by MDP, LPS, PMA, and MIF/MAF: reversal by macrophage migration enhancement factor (MEF), L-fucose, L-fucosyl BSA, D-mannose, and D-mannosyl BSA.

Our data establish that migration inhibition factor (MIF) and migration enhancement factor (MEF) mutually neutralize the effect of each other in a concentration-dependent manner. The monosaccharides L-fucose and D-mannose were also shown to reverse MIF and additionally to stimulate alveolar macrophage (AM) migration in the absence of MIF. The specific activity of these sugars was increased 200-fold when conjugated to bovine serum albumin (BSA). Macrophage activation is usually observed concurrently with migration inhibition when macrophages are incubated with MIF preparations. Migration inhibition occurred also when AM were incubated in the presence of known metabolic activators (MDP, PMA, and LPS). It was found that L-fucose, D-mannose, L-fucosyl BSA, and D-mannosyl BSA could reverse migration inhibition caused by MIF as well as by these metabolic activators. These observations suggest that reversal of MIF by L-fucose is unexplained solely on the basis that L-fucose is functioning as a competitive inhibitor; instead, they suggest that MEF and the above sugars and their conjugates stimulate AM through a receptor system different from the MIF receptor. These observations support the concept that MEF is an important macrophage modulator in CMI responses.

Acetylmuramyl-Alanyl-Isoglutamine↗

The detection of two surface antigens on human lung macrophages using monoclonal antibodies.

Monoclonal antibodies (McAb), designated AMH1 (IgM, lambda) and AMH2 (IgG1, Kappa), against specific surface antigens of human lung macrophages were produced by the fusion of the NS-1 plasmacytoma cell line with spleen cells from BALB/c mice immunized with bronchoalveolar lavaged (BAL) cells obtained from selected smoking subjects. The screening and characterization of these McAb were carried out employing cellular radioimmunoassay, flow cytofluorography, and immunohistochemical methods. These two antibodies specifically reacted with macrophages in the alveolar spaces and BAL fluids. AMH1 did not react with peripheral blood cells including freshly separated monocytes, cultured monocytes, lymphocytes, granulocytes, and platelets. In addition, AMH1 did not react with peritoneal exudate cells or pleural exudate cells. On the other hand AMH2 showed the dull-positive reaction with some monocytes and pleural exudate cells among above-mentioned cells. These two McAb seemed to detect cell surface antigens that are expressed by highly differentiated or mature macrophages compared to OKM1. These antibodies will allow not only better characterization of immune cells but also assessment of maturity of lung macrophages.

Antibodies, Monoclonal↗

Chemiluminescent responses of alveolar macrophages from normal and Mycobacterium bovis BCG-vaccinated rabbits as a function of age.

Luminol-dependent chemiluminescence (CL) responses of alveolar macrophages (AM) from normal and Mycobacterium bovis BCG-vaccinated infant and adult rabbits were compared. AM from 1-, 7-, and 14-day-old normal rabbits exhibited much lower peak CL responses than did AM from 28- and 42-day-old normal animals as well as rabbits 2 to 3 or 5 to 6 months and 1 to 2 years of age. The most striking differences among AM from infant and adult rabbits were noted when AM were obtained from 28-day-old and 5- to 6-month old rabbits 21 days after the rabbits were immunized with 200 micrograms of BCG intravenously. In this case, AM from 5- to 6-month-old animals gave peak counts per minute of 400,000 to 500,000 whereas AM from 28-day-old rabbits vaccinated with BCG (harvested at 49 days of age) gave peak counts per minute of only 40,715 +/- 2,688. These data reveal that AM from neonatal animals are grossly deficient as responders to phorbol myristate acetate-induced CL. This deficiency, which improved with age, is still apparent in AM from 28-day-old animals. The data also reveal that BCG vaccination of 28-day-old animals yields AM that are poor responders to phorbol myristate acetate compared with AM from BCG-vaccinated animals 2 to 3 and 5 to 6 months of age. AM from animals vaccinated with BCG at 28 days of age contained fewer and smaller electron-dense lysosomelike structures than did AM from adult rabbits similarly vaccinated. These findings provide an explanation for the difficulties infants have in developing effective cell-mediated immune responses against intracellular parasites.

Aging↗

A clinicopathologic correlation study of thallium-201 myocardial scintigraphy in diagnosis of myocardial infarction.

In a series of 1,000 consecutive autopsy cases, we evaluated the clinical utility of thallium-201 (Tl-201) myocardial scintigraphy and electrocardiography (ECG) in 101 patients who had been studied while alive. Fifty-five cases had myocardial infarctions (MI) at autopsy. The Tl-201 scintigram and ECG in diagnosis of MI showed sensitivities of 68% and 60%, specificities of 87% and 83%, and diagnostic accuracies of 76% and 70%, respectively. The sensitivity of the Tl-201 scintigram was 70% in anterior MI, 80% in postero-inferior MI, 25% in lateral and subendocardial infarction. The sensitivity was 88% for large massive MI, but was low in scattered (50%) or middle-sized MI (17%). The diagnostic limit of the resolution of Tl-201 scintigrams was 4.5 cm in long diameter. All 8 cases with MI of less than 4 cm could not be diagnosed with the technique. There were 48 cases of large MI (more than 5 cm), but 8 cases could not be diagnosed by scintigraphy because of non-transmural or scattered MI. A comparison of the Tl-201 scintigram and ECG showed that 27 cases out of 60 cases were diagnosed by both methods, 14 only by the Tl-201 scintigram, 9 only by ECG and 10 by neither method.

Aged↗

Inter-individual variations of arylhydrocarbon-hydroxylase activity in cultured human epidermal and dermal cells.

Arylhydrocarbon hydroxylase (AHH) activity was determined in cultured human epidermal and dermal cells with and without induction by benz[a]anthracene (BA). Large inter-individual variations were found in the basal and induced AHH activities and the induction ratio. The average basal AHH activity of 29 epidermal cultures in primary culture was 3.9 units (SD, 4.2; range, 0-16.3) (one unit was defined as 1 pmol of 3-hydroxybenzo[a]pyrene formed/mg protein/hr). AHH activity was induced time- and dose-dependently by BA. The average AHH activity induced by treatment with 13 microM BA for 24 hr was 97.4 units (SD, 69.4; range, 2.7-216.9). The induction ratio ranged from 0.6 to 262.0, but in the majority of cultures (15 of 27 cultures, 55%) it was less than 30. The mean induction ratio and SD was 51.1 +/- 63.0. The frequency distributions of basal AHH activity and the induction ratio were asymmetrical with a right tail. No correlation was found between the AHH activity or induction ratio and the age or sex of the donors or their residential district. The basal and induced AHH activities of dermal fibroblasts were both lower than those of epidermal cells; the average basal AHH level of 14 cultures was 1.5 units (SD, 1.4; range, 0-5.2), while the average induced AHH activity was 9.6 units (SD, 6.3; range 0-23.5). The induction ratio of dermal fibroblasts was lower than that of epidermal cells, the mean and SD being 7.5 +/- 7.4 (range, 1.9-27.0). There was no correlation between the AHH activities or induction ratios in epidermal and dermal cells isolated from the same donors.

Adolescent↗

Down regulation of phorbol diester receptors by proteolytic degradation of protein kinase C in a cultured cell line of fetal rat skin keratinocytes.

Down regulation of phorbol diester receptors was studied with respect to proteolysis of protein kinase C, which is activated by Ca2+, phospholipids, and diacylglycerols and which binds to phorbol diesters. We used FRSK cells, a cell line derived from fetal rat skin keratinocytes, because in these cells specific binding of phorbol 12,13-dibutyrate decreased rapidly (50% decrease in 30 min). This decrease (down regulation) was inhibited by some protease inhibitors, such as N-tosyl-L-phenylalanine chloromethyl ketone (TPCK), N-p-tosyl-L-lysine chloromethyl ketone (TLCK), and leupeptin, but not by inhibitors of lysosomal hydrolases. On treatment with 12-O-tetradecanoylphorbol 13-acetate, protein kinase C was rapidly translocated from the cytosol to the membranes and then decreased. This decrease in protein kinase C was also inhibited by TPCK, TLCK, and leupeptin. The decrease in membrane activity of protein kinase C was associated with increase in cytosolic activity of a protein kinase that was smaller in molecular weight (Mr 40,000-60,000) than protein kinase C, did not depend on Ca2+/phosphatidylserine/diacylglycerol, and did not bind to phorbol 12,13-dibutyrate. These results indicate that down regulation of phorbol diester receptors is probably caused by nonlysosomal proteolysis of protein kinase C. The kinase formed by cleavage may be an active catalytic site of protein kinase C.

Animals↗

Cholera toxin, a potent inducer of epidermal hyperplasia but with no tumor promoting activity in mouse skin carcinogenesis.

Intracutaneous injection of cholera toxin into mice induced epidermal hyperplasia to a greater extent than 12-O-tetradecanoylphorbol-13-acetate. It also induced adenylate cyclase and though weakly, ornithine decarboxylase of the epidermis. Cholera toxin, however, showed no tumor promoting activity in mouse skin carcinogenesis. In the single stage promotion, cholera toxin (50 ng) was injected once a week for 10 weeks into the skin of SENCAR mice initiated with 25 micrograms 7,12-dimethylbenz[a]anthracene, but no tumors developed. In the two-stage promotion test, cholera toxin (10-100 ng) was injected for one or two weeks into the initiated skin and then mezerein (4 micrograms) was applied twice a week for 18 weeks, but the toxin did not increase incidence or numbers of papillomas.

9,10-Dimethyl-1,2-benzanthracene↗

A novel vasodepressor response elicited from the rat cerebellar fastigial nucleus: the fastigial depressor response.

We sought to determine by using kainic acid (KA), an agent stimulating neuronal cell bodies but not fibers, whether the elevations in arterial pressure (AP) and heart rate (HR) elicited by electrical stimulation of the cerebellar fastigial nucleus (FN) are due to excitation of local neurons in FN or fibers passing through the area. Rats were anesthetized (chloralose 40 mg/kg), paralyzed (tubocurarine) and artificially ventilated. Electrical stimulation of FN (50 Hz, 10-100 microA) increased AP and HR. In contrast restricted microinjections of KA (0.05-5 nmol/100 nl) in FN elicited a sustained, dose-dependent decrease in AP and HR. The response is not due to diffusion of KA to adjacent sites. Excitation by KA of neurons intrinsic to FN elicits a heretofore unrecognized vasodepressor response, the fastigial depressor response.

Animals↗

Enhancement by 1 alpha,25-dihydroxyvitamin D3 of chemically induced transformation of BALB 3T3 cells without induction of ornithine decarboxylase or activation of protein kinase C1.

We reported previously that 1 alpha,25-dihydroxyvitamin D3 [1 alpha,25(OH)2D3], a hormonally active form of vitamin D3, markedly enhanced methylcholanthrene-induced transformation of BALB 3T3 A31-1-1 cells. When the cells were treated with methylcholanthrene (1 microgram/ml) for 72 h and then with 1 alpha,25(OH)2D3 (5 ng/ml) for 2 wk, the transformation frequency was 1.95 +/- 0.73 (SD) foci/dish in 8 independent experiments, which was about 20 times that in cultures treated with methylcholanthrene only. Even at a physiological concentration in plasma, i.e., 0.05 ng/ml, 1 alpha,25(OH)2D3 enhanced the transformation frequency significantly (P less than 0.001). 1 alpha,25(OH)2D3 was not cytotoxic but slightly inhibited growth of the cells. Cells treated with 1 alpha,25(OH)2D3 were thin and became arranged in a meshwork with wide intercellular spaces. These morphological changes were reversible. 1 alpha,25(OH)2D3 induced DNA synthesis in quiescent BALB 3T3 cells dose and time dependently, but this effect was less than that of 12-O-tetradecanoylphorbol-13-acetate. Unlike 12-O-tetradecanoylphorbol-13-acetate, 1 alpha,25(OH)2D3 did not interfere with the binding of epidermal growth factor or phorbol dibutyrate. 1 alpha,25(OH)2D3 did not induce ornithine decarboxylase. Moreover, it did not activate protein kinase C in quiescent BALB 3T3 cells or this enzyme isolated from mouse brain. BALB 3T3 cells and their transformants contain a specific cytosol receptor for 1 alpha,25(OH)2D3, but the binding sites of the transformants were fewer and had lower affinity than those of untransformed BALB 3T3 cells. These effects of 1 alpha,25(OH)2D3 were specific, because other derivatives of vitamin D3 induced the same effects only at 200 times or more higher concentrations.

Animals↗

Growth-inhibitory effects of epidermal growth factor and overexpression of its receptors on human squamous cell carcinomas in culture.

The role of epidermal growth factor (EGF) and its receptors in human cancers was studied using 24 human cell cultures including 15 of squamous cell carcinoma (SCC) of the skin, oral cavity, and esophagus. EGF was found to inhibit the growth and colony formation of all the SCC cells at doses that are mitogenic in many other cells, including epidermal keratinocytes and dermal fibroblasts. This inhibitory effect of EGF on SCCs was specific, because EGF did not inhibit and in some cases slightly stimulated the growth of other tumor cells, such as adenocarcinomas of the stomach, cervix, and breast and sarcomas. The amounts of EGF receptors on these SCC cells were measured by immunoprecipitation of labeled proteins with anti-EGF receptor polyclonal antibody and binding assay of membrane preparations using 125I-EGF. Of 13 SCC cell cultures tested, all except 3 of esophageal SCC showed higher levels of EGF receptor than normal epidermal keratinocytes, which contain 1.5 X 10(5) binding sites/cell. In general, SCCs of the skin and oral cavity had large amounts of EGF receptor on the order of 10(6)/cell, whereas the receptor of esophageal SCCs was on the order of 10(5)/cell. Some SCC cells had about twice as many EGF receptors as A431 cells. The values for the equilibrium dissociation constant (Kd) of these cells were on the order of nM. The sensitivity to the inhibitory effect of EGF correlated well with the elevated level of EGF receptors in 12 SCC cell lines, and higher significance was obtained when data on esophageal SCCs were excluded. The present observations suggest that EGF and EGF receptors play a role in the development of SCCs.

Carcinoma, Squamous Cell↗

Activation of protein kinase C and specific phosphorylation of a Mr 90,000 membrane protein of promotable BALB/3T3 and C3H/10T1/2 cells by tumor promoters.

The activation of protein kinase C and protein phosphorylation by tumor promoters were examined using quiescent cultures of BALB/3T3 and C3H/10T1/2 cells, because in these cells tumor promoters enhance chemically induced transformation and also induce DNA synthesis and ornithine decarboxylase. The cytosol and membrane fractions were partially purified, and the activity of protein kinase C was assayed. In quiescent cells, protein kinase C activity was found only in the cytosol fraction. Treatment with 100 ng of 12-O-tetradecanoylphorbol-13-acetate or teleocidin B per ml caused rapid translocation of protein kinase C from the cytosol to the membrane fraction. The activity in the cytosol disappeared almost completely after 15 min when the activity in the membrane reached a peak. The membrane activity gradually decreased to the control level after 6 h, while no activity reappeared in the cytosol within 6 h. Under these circumstances, a membrane protein with a molecular weight of 90,000 and pl of 4.0-4.4 (termed p90) was specifically phosphorylated, possibly by the activated protein kinase C, in both cell-free and intact-cell systems. On treatment of quiescent BALB/3T3 cells with 100 ng of 12-O-tetradecanoylphorbol-13-acetate, p90 phosphorylation increased 2-fold in 1 min, reaching a peak in 15 min of 3.4-fold the initial value. The phosphorylation of p90 increased with increase in the concentrations of 12-O-tetradecanoylphorbol-13-acetate between 0.1 and 10 ng/ml and reached a plateau at 10 ng/ml. p90 phosphorylation also occurred on exposure of the cells to non-phorbol ester tumor promoters (mezerein and teleocidin B) and growth factors, such as platelet-derived growth factor and fibroblast growth factor. p90 was not immunoprecipitated by antibody against the insulin receptor. Phosphorylation of p90 occurred at a serine residue. The present study suggests that activation of protein kinase C and phosphorylation of p90 by it are early events leading to tumor promotion.

Animals↗