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D Spina

Publications and source records attributed to D Spina.

At least 91 records · Page 5Linked to original sources

Novel, contrast gradient-oriented, automated chromatin texture analysis. I. Feasibility study on nuclei from benign and malignant breast epithelial cell lines in fine needle aspirates.

Coarse granularity of nuclear chromatin texture is a prominent feature of most malignant cell lines. We have chosen the abrupt transition from eu- to heterochromatic foci (high contrast gradient [CG]) as a novel parameter for coarseness. This feature was quantified using automated image analysis of single nuclei in smears stained by the May-Grünwald-Giemsa technique. The principle of this approach consists of eliminating, with the help of subtraction between two image lowpass filters, the small grey level differences among pixels, so that only high CG values are retained on the digitized image. The sum of these distinctive microareas is then taken as a fraction of the area of the peripherally eroded nucleus, and this ratio is designated as contrast gradient index (CGI) per nucleus. This method was tested on fine needle aspirates from 11 patients with benign breast disease (BBD) and 14 with mammary carcinoma (CA). For each specimen, 60 nuclei were analyzed, with a measuring time per nucleus of about 1 min. A high significant distinction between epithelial cell populations in BBD and CA, respectively, was obtained by variance analysis of all CGIs per nucleus (p = 2 x 10(-18). The median and the mean values of CGI per specimen were the next best discriminators, followed by the modes and the standard deviation of CGI per specimen. The percentage of nuclei per specimen with CGI values of greater than 12 was also significantly greater in CA than in BBD.

Adolescent↗

The release of a non-prostanoid inhibitory factor from rabbit bronchus detected by co-axial bioassay.

1. Methacholine relaxed phenylephrine-contracted aorta of the rat with the endothelium intact. This effect was inhibited by haemoglobin, methylene blue, gossypol, phenidone and L-NG-nitroarginine methyl ester (L-NAME). Rat aorta denuded of endothelium failed to relax in response to methacholine, histamine and the peptidoleukotrienes C4, D4 and E4. 2. Methacholine and histamine but not leukotrienes C4, D4 and E4 relaxed phenylephrine-contracted rat aorta without endothelium when surrounded by rabbit epithelium-intact bronchus. The muscarinic antagonist atropine antagonized the methacholine-induced relaxation. 3. Removal of the epithelium either mechanically or chemically, abolished methacholine-induced relaxation of rat aorta in the co-axial bioassay. These data indicate that the epithelium is responsible for the observed relaxant effect to methacholine and histamine. 4. The cyclo-oxygenase inhibitor, indomethacin, the phospholipase A2 inhibitor, mepacrine and the lipoxygenase inhibitor, nordihydroguaiaretic acid (NDGA), failed to inhibit methacholine-induced relaxation of rat aorta in the co-axial bioassay. This indicates that the epithelium-derived inhibitory factor (EpDIF) is not a product of the cyclo-oxygenase or lipoxygenase pathway or a product derived from activation of phospholipase A2. 5. Haemoglobin, methylene blue, phenidone, gossypol and L-NAME failed to inhibit the relaxation of rat aorta in the co-axial bioassay. These results demonstrate that EpDIF detected in the co-axial bioassay is not endothelium-derived relaxing factor (EDRF) or nitric oxide. Similarly, catalase was without effect. 6. EpDIF is unlikely to be a peptide since papain and alpha-chymotrypsin failed to alter the methacholine-induced relaxation of rat aorta in the co-axial bioassay. Furthermore, thiorphan, captopril and aprotinin were also without effect, suggesting that EpDIF is not a substrate for airway peptidases. 7. The results presented in this paper demonstrate the release of a vasoactive epithelium-derived inhibitory factor (EpDIF) from rabbit intrapulmonary bronchi by use of a co-axial bioassay preparation.

Animals↗

Effect of capsaicin on PAF-induced bronchial hyperresponsiveness and pulmonary cell accumulation in the rabbit.

1 Platelet activating factor (PAF), but not the carrier molecule bovine serum albumin (BSA) induced bronchoconstriction in the anaesthetized rabbit. This bronchoconstriction was not altered by prior treatment with capsaicin. 2 Rabbits demonstrated increased airways responsiveness to histamine 24h after exposure to PAF but not to BSA. PAF failed to increase airways responsiveness to histamine in animals pretreated with capsaicin (80 mg kg-1). 3 A significant increase in inflammatory cells was obtained in bronchoalveolar lavage (BAL) 24h after PAF exposure in vehicle-treated rabitts. This was associated with an increase in the numbers of neutrophils and eosinophils. Capsaicin treatment inhibited the PAF-induced influx of inflammatory cells found in BAL, although this was not associated with an inhibition of PAF-induced pulmonary eosinophilia. 4 Capsaicin-induced motor effects were modest in epithelium-intact rabbit bronchial preparations, but were significantly enhanced in epithelium-denuded preparations in the presence of thiorphan. The contractile response to capsaicin was significantly inhibited in tissues exposed to a consecutive dose of capsaicin. Furthermore, ruthenium red abolished capsaicin-induced contraction in epithelium-denuded preparations. 5 Tissue content of calcitonin gene-related peptide-like immunoreactivity and substance P-like immunoreactivity was not reduced in bronchus and iris obtained from capsaicin-treated rabbits, although capsaicin-induced contractile responses in rabbit bronchus obtained from animals previously treated with capsaicin were significantly reduced. Furthermore, airway responses to histamine, methacholine and electrical field stimulation in vitro, were not altered by pretreatment of rabbits in vivo for 3 days with capsaicin. 6. In conclusion, PAF-induced airways responsiveness and pulmonary cell accumulation is inhibited by in vivo capsaicin pretreatment in the rabbit, via a mechanism that may not involve depletion of sensory neuropeptides.

Anesthesia↗

PAF-induced bronchial hyperresponsiveness in the rabbit: contribution of platelets and airway smooth muscle.

1. Aerosol administration of platelet activating factor (PAF) to normal rabbits induced an enhanced airway responsiveness to inhaled histamine, 6 and 24 h after exposure. Following exposure to bovine serum albumin (BSA) as the carrier molecule for PAF, there was an increase in airway responsiveness to histamine 6 h after challenge, although by 24 h this was not significantly different from the responsiveness of airways to histamine before BSA. 2. PAF-induced bronchial hyperresponsiveness at 24 h was associated with a substantial increase in the number of neutrophils and mononuclear cells and a small, but significant increase in the number of eosinophils in the lungs as assessed by bronchoalveolar lavage. BSA exposure failed to alter the total number of cells in the lungs, although there was a significant increase in the number of neutrophils in the bronchoalveolar lavage fluid. 3. Selective platelet depletion with a guinea-pig anti-rabbit platelet serum inhibited PAF-induced bronchial hyperresponsiveness. In addition, there was an attenuation of PAF-induced airway inflammation in animals rendered thrombocytopenic. 4. The contractile potency to histamine, methacholine and carbachol was similar in intrapulmonary bronchi taken from rabbits exposed to an aerosol of BSA or PAF. Furthermore, the relaxant potency to the non-selective beta-adrenoceptor agonist isoprenaline, was unaltered in PAF-treated rabbits. In contrast, there was a 2.58 fold reduction in the relaxant potency to theophylline in rabbits exposed to PAF compared with rabbits exposed to BSA. 5. These results suggest that in the rabbit, PAF-induced bronchial hyperresponsiveness at 24 h is associated with airways inflammation and is dependent upon platelet activation, but is not related to changes in airway smooth muscle function.

Aerosols↗

The role of platelet activating factor in allergic inflammation.

It is becoming increasingly apparent that platelet activating factor (PAF) is an important mediator in allergic disease. It is synthesized by a variety of cells including those which are thought to participate in the inflammatory process. In turn, PAF may stimulate these cells which further propagates the inflammatory process. Furthermore, PAF can mimic most of the characteristics which are relevant in allergic inflammation and PAF can produce effects comparable to that produced by antigen in animal models of allergic inflammation and in man. Other evidence to support the involvement of PAF in allergic disease has also arisen with the advent of PAF antagonists. Many PAF-induced responses can be attenuated by these agents and many antigen-induced responses in both animal models and in man can also be attenuated by PAF antagonists. This review attempts to summarize the results from studies which have investigated the role of PAF in allergic inflammation and the effects of PAF antagonists against both PAF and allergic-induced responses.

Animals↗

Alpha 1-adrenoceptor function and autoradiographic distribution in human asthmatic lung.

1. The autoradiographic distribution of alpha 1-adrenoceptors was investigated in non-diseased and asthmatic human lung by use of [3H]-prazosin (H-PZ). To validate binding and autoradiographic methods, H-PZ binding was also measured in rat heart. 2. Significant levels of specific H-PZ binding were detected in sections of rat heart. This binding was associated with a single class of non-interacting sites of high affinity (dissociation constant, Kd = 1.17 +/- 0.26 nM). The maximum binding capacity (Bmax) was 59.5 +/- 4.5 fmol mg-1 protein. 3. In sharp contrast, very low levels of specific H-PZ binding were found in both human nondiseased and asthmatic bronchus, although a high level of binding of [125I]-iodocyanopindolol (I-CYP, 50 pM) to beta-adrenoceptors was detected in these airways. Furthermore, very low levels of autoradiographic grains representing specific H-PZ binding were found in all airway structures in human non-diseased or asthmatic lung parenchyma. 4. Consistent with these data, the alpha-adrenoceptor agonist phenylephrine failed to induce significant increases in tone in bronchi isolated from either non-diseased or asthmatic human lung. Results indicate that asthma does not involve significant increases in airway alpha 1-adrenoceptor function.

Adult↗

Autoradiographic localization of beta-adrenoceptors in asthmatic human lung.

The autoradiographic distribution and density of beta-adrenoceptors in human non-diseased and asthmatic bronchi were investigated using [125I]iodocyanopindolol (I-CYP). Analysis of the effects of the beta-adrenoceptor antagonists on I-CYP binding demonstrated that betaxolol (20 nM, beta 1-selective) had no significant effect on specific grain density in either nonasthmatic or asthmatic human bronchus, whereas ICI-118551 (20 nM, beta 2-selective) inhibited I-CYP binding by 85 +/- 9% and 89 +/- 3%, respectively. Thus, homogeneous populations of beta 2-adrenoceptors existed in bronchi from both sources. Large populations of beta-adrenoceptors were localized to the bronchial epithelium, submucosal glands, and airway smooth muscle. Asthmatic bronchial tissue featured epithelial damage with exfoliated cells associated with luminal mucus plugs. A thickened basement membrane and airway smooth muscle hyperplasia were also evident. High levels of specific I-CYP binding were also detected over asthmatic bronchial smooth muscle, as assessed by autoradiography and quantitation of specific grain densities. Isoproterenol and fenoterol were 10- and 13-fold less potent, respectively, in bronchi from asthmatic lung than in those from nonasthmatic lung. However, this attenuated responsiveness to beta-adrenoceptor agonists was not caused by reduced beta-adrenoceptor density in asthmatic airways. A defect may exist in the coupling between beta-adrenoceptors and postreceptor mechanisms in severely asthmatic lung.

Asthma↗

Beta-adrenoceptor desensitization in guinea-pig isolated trachea.

Exposure to (-)-isoprenaline (25 microM, 1 h) caused a stereoselective, time and concentration-related decrease in smooth muscle beta 2-adrenoceptor function in guinea-pig trachea. Furthermore, tracheal relaxant responsiveness to the beta-adrenoceptor agonists (+/-)-fenoterol and (-)-noradrenaline was reduced, while that to theophylline and nitroprusside was unaffected. Responsiveness to forskolin was marginally but significantly reduced. Indomethacin, a cyclooxygenase inhibitor and mepacrine, an inhibitor of phospholipid turnover, had no significant effect on the extent of isoprenaline-induced desensitization. Conversely, cortisol (25 microM) significantly reduced desensitization and enhanced the rate of spontaneous recovery of responsiveness to isoprenaline. Desensitization was not accompanied by a reduction in the density of beta-adrenoceptors in the trachea, as assessed by binding and light microscopic autoradiography using [125I]iodocyanopindolol [( 125I]CYP). Thus, desensitization was probably caused primarily by beta-adrenoceptor/adenyl cyclase uncoupling. This model may be useful in investigations of the effect of glucocorticoids on the beta-adrenoceptor dysfunction recognized in severe asthma.

Animals↗

Autoradiographic localisation of ascorbic acid-dependent binding sites for [125I]iodocyanopindolol in guinea-pig trachea.

Light microscopic autoradiography showed that the supposedly beta-adrenoceptor-selective radioligand [125I]iodocyanopindolol (I-CYP) bound to sites in both the guinea-pig tracheal epithelium and smooth muscle that were sensitive to propranolol and isoprenaline. Low levels of binding were associated with sub-epithelial mucosal cells. Ascorbic acid caused a concentration-related increase in total I-CYP binding which was predominantly associated with the sub-epithelial mucosa, was not inhibited by propranolol, and was thus not associated with beta-adrenoceptors.

Animals↗

In vitro responsiveness of human asthmatic bronchus to carbachol, histamine, beta-adrenoceptor agonists and theophylline.

Responses of human bronchial strip preparations to contractile and relaxant agonists were measured in preparations from non-diseased and from asthmatic lung obtained 3-15 h post-mortem. The potencies of carbachol and histamine were approximately two times less in asthmatic than in non-diseased bronchi. This was statistically significant for carbachol (P less than 0.05), but not for histamine (P greater than 0.05). These results clearly indicate that the bronchial hyperreactivity to airway spasmogens observed in asthma is exclusively an in vivo phenomenon not involving increasing sensitivity of bronchial smooth muscle. The potencies of the beta-adrenoceptor agonists isoprenaline, fenoterol and terbutaline were significantly reduced by 4-5 fold in asthmatic bronchi compared with non-diseased airways. In contrast, theophylline was equipotent in the two populations of airway preparations. Thus, it appears that severe asthma is associated with decreased bronchial smooth muscle beta 2-adrenoceptor function.

Adolescent↗

Influence of the epithelium on responsiveness of guinea-pig isolated trachea to contractile and relaxant agonists.

The potency (pD2) and maximal contractile effect (Emax) of histamine, acetylcholine, carbachol and K+ were assessed from cumulative concentration-effect curves in guinea-pig isolated tracheal ring preparations with and without an intact epithelium. Estimates of Emax were not significantly different in epithelium-denuded preparations compared with those measured in intact preparations; pD2 values for acetylcholine, carbachol and K+ were not significantly altered. In contrast, the potency of histamine was significantly increased by about 4 fold in preparations devoid of epithelial cells. Estimates of potency and Emax were also determined for the smooth muscle relaxants isoprenaline, forskolin and theophylline (which increase intracellular cyclic AMP) and for nitroglycerin (which increases cyclic GMP) in both intact and epithelium-stripped tracheal rings. The pD2 values for these relaxants were not significantly altered by the removal of the epithelium. However, with the exception of nitroglycerin, Emax values for these relaxants were significantly lower in stripped than in intact tracheal rings that had been maximally precontracted with carbachol. The autoradiographic localisation of binding sites for the non-selective beta-adrenoceptor ligand [125I]-iodocyanopindolol (I-CYP) showed that the epithelium of the guinea-pig trachea had a 75 +/- 16% greater density of beta-adrenoceptors than the smooth muscle. Removing the epithelium did not significantly alter either the density of smooth muscle binding sites or the affinity of I-CYP binding. It was concluded that the reduced functional response of guinea-pig trachea to isoprenaline was probably not due to smooth muscle beta-adrenoceptor dysfunction. Results indicate that the epithelium plays an important role in the modulation of responsiveness of guinea-pig trachea to histamine and relaxants that mediate their effects by selectively increasing intracellular cyclic AMP levels.

Acetylcholine↗

Autoradiographic localization of beta-adrenoceptors in pig lung using [125I]-iodocyanopindolol.

The binding of the beta-adrenoceptor radioligand [125I]-iodocyanopindolol (I-CYP) has been studied in pig lung parenchyma and the distribution of binding sites visualised by light microscopic autoradiography. I-CYP binding was saturable (maximum binding capacity Bmax = 51 +/- 3 fmol mg-1 protein), involving sites with high affinity (dissociation constant KD = 73 +/- 10 pM). Specific I-CYP binding was displaceable both by beta-adrenoceptor agonists ((-)-isoprenaline greater than (-)-adrenaline greater than (+/-)-fenoterol greater than (-)-noradrenaline greater than (+)-isoprenaline greater than (+/-)-RO363) and antagonists ((+/-)-propranolol greater than ICI-118551 greater than atenolol), indicating a predominance of beta 2-adrenoceptors. Further analysis showed that displacement data for the beta 1-selective antagonist atenolol and the beta 2-selective antagonist ICI-118551 were fitted best to a 2 binding site model and that both beta 1- and beta 2-adrenoceptors were present in pig lung in the ratio 28:72 respectively. Autoradiographic grains were localized over tissue and were most dense over alveolar walls greater than vascular endothelium greater than vascular smooth muscle greater than bronchial smooth muscle = bronchial epithelium. Atenolol (10(-5) M) caused a 31% reduction in specific grain density over alveolar wall tissue, while a 10 fold lower concentration of ICI-118551 (10(-6) M) caused a 50% decrease. These results are consistent with binding data in pig lung parenchyma demonstrating a mixed population of beta-adrenoceptors with a predominance of the beta 2 subtype. 6 It is possible that the previously described relaxant responses of the pig lung parenchyma strip to beta-agonists, mediated via beta 2-adrenoceptors, resulted from the sum of reactivities in airway and vascular smooth muscle together with relaxation of alveolar interstitial cells.

Animals↗

Beta agonist-induced desensitization in pig bronchus.

Pretreatment of pig isolated bronchial preparations with isoproterenol (Iso) caused a time and concentration-related decrease in both the relaxant potency (pD2) and maximal relaxant effect (Emax) of Iso. Exposure to Iso (5 microM) caused an apparent reduction in the Iso pD2 at 6 hr of approximately 74-fold with a concomitant decrease in Iso Emax from 108 +/- 2 (n = 43) to 55 +/- 6% (n = 11). Responsiveness to the relaxant effects of Iso recovered spontaneously but slowly, being still incomplete 4 hr after desensitization with Iso (1 microM, 3 hr). Responsiveness to norepinephrine and fenoterol was also reduced markedly after exposure to Iso (5 microM), although the relaxant effects of the nonbeta agonists theophylline and forskolin were not reduced. Indeed, the potency of forskolin, was increased 4-fold. The beta antagonists propranolol (nonselective) and atenolol (beta-1 selective) protected bronchi from Iso-induced desensitization, whereas ICI-118551 (beta-2 selective) did not. Furthermore, the dextro (+)-isomer of Iso was virtually inactive as a desensitizing agent. Pretreatment with norepinephrine and fenoterol also decreased the relaxant effects of Iso, although they were at least 100 times less potent than Iso in desensitizing pig bronchi. These results indicate that desensitization was specifically mediated via beta-1 adrenoceptors which predominate in pig bronchus. Alpha adrenoceptor activity mediating increased bronchial tone was apparent in Iso-desensitized bronchi but not in nondesensitized preparations even in the presence of beta adrenoceptor blockade. Neither the cyclooxygenase inhibitor indomethacin, nor the phospholipase A2 inhibitor mepacrine had any significant effect on the extent of Iso-induced desensitization in pig bronchus.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic beta-Agonists↗

Morphometrical assessment of mean nuclear area in breast cancer in comparison with that of lymph node metastases.

Morphometrical measurements of nuclear area and form factors are carried out by means of a semiautomated image analyzer on 90 cases of ductal breast cancers and on lymph node tumor deposits. The value of the mean nuclear area in lymph node metastases is significantly higher than in primary tumors regardless of the size of the tumor. Since the value of mean nuclear area is also significantly higher in primary tumors with lymph node involvement than in those without lymph node involvement it is possible to assume that primary tumors with large-nucleus areas are more liable to invade lymph nodes. No significant differences are noted as far as the form factors are concerned.

Breast Neoplasms↗

Classification of beta-adrenoceptors in human isolated bronchus.

(+/-)-Isoprenaline (Iso), (-)-adrenaline (Ad), (-)-noradrenaline (NA), (+/-)-phenylephrine (Phe) and the beta 2-selective adrenoceptor agonist (+/-)-fenoterol (Fen) caused a concentration-dependent relaxation of human isolated bronchial preparations. Iso, Ad and NA caused complete relaxation of both spontaneous and carbachol-induced bronchial tone. Fen, which was only tested in preparations where tone was induced with carbachol, also caused complete relaxation. However, Phe was a partial agonist in all preparations tested. When relaxation responses to these amines were calculated as a % of their maximal effects, comparison of EC50 values showed that the order of potency was Iso greater than Ad = Fen greater than NA greater than Phe (92:27:25:1:0.2) in preparations with carbachol-induced tone and Iso greater than Ad greater than NA greater than Phe (112:38:1:0.3) in preparations with spontaneous tone. pA2 values determined for the beta-adrenoceptor antagonists propranolol (non-selective), atenolol (beta-selective) and ICI-118, 551 (beta 2-selective), using Iso as an agonist were, 9.3, 5.3 and 9.1 respectively. These results indicate that beta 2-adrenoceptors mediate relaxation of human isolated bronchus to sympathomimetic amines in preparations obtained 4-14 h post-mortem from non-diseased lung. alpha-Adrenoceptors were apparently sparse or absent in this tissue.

Adolescent↗

Morphometric nuclear analysis of lymphoid cells in center cell lymphomas and in reactive germinal centers.

A comparison between neoplastic and nonneoplastic lymphoid cell nuclei within germinal centers of nodular lymphomas and of reactive follicular hyperplasias has been carried out with the help of a semiautomated image analyzer by measuring nuclear area, by assessing the presence or absence of invaginations, and by defining the form of the invagination. Nuclear areas are larger in lymphomas, where the invagination, if present, decreases in depth and increases in angle as the value of nuclear area becomes greater. Nuclei with such a large area and shallow invaginations are not present within the nonneoplastic germinal centers. Moreover, no correspondence has been found between neoplastic and nonneoplastic nuclei with regard to the form of the invagination, that is, its symmetry and angle. Therefore, it is possible to argue that the neoplastic nuclei in nodular lymphomas are different from the nuclei found in the sequential pathway of reactive germinal centers.

Cell Nucleus↗

A morphometric semiautomated method for analyzing cell nuclei in lymph node sections from non-Hodgkin's lymphomas. Significance of data.

A semiautomated electronic system has been employed for sizing nuclear area and for evaluating nuclear form factors in non-Hodgkin's lymphomas with the purpose to correlate these parameters with survival and histotype. By mathematical models for best fits correlating the dependent variables with the survival has been demonstrated that an inverse correlation corresponding to a negative exponential function exists between mean nuclear area and survival. It has also been shown that the nuclear form is less irregular (i.e. more similar to an ellipse) when the mean nuclear area ranges from 12.5 to 20 mu2 and from 30 to 37.5 mu2 than when it ranges from 20 to 30 mu2. Lymphomas of low-grade malignancy are characterized by a mean nuclear area which is significantly lower than that of lymphomas of high-grade malignancy. The authors believe that morphometrical analysis of the nuclear area and of the form factors may eliminate subjectivity and give reproducible data to be used in both classification and prognosis of lymphomas.

Autoanalysis↗