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Biomedical subjects

E Castanas

Publications and source records attributed to E Castanas.

At least 37 records · Page 2Linked to original sources

Diagnostic value of ferritin, haptoglobin, alpha 1-antitrypsin, lactate dehydrogenase and complement factors C3 and C4 in pleural effusion differentiation.

Searching to define diagnostic criteria for malignant and non-malignant pleural effusions, the differential diagnostic value of ferritin (FRT), haptoglobin (Hp), alpha 1-antitrypsin (alpha 1-AT), lactate dehydrogenase (LDH) and complement factors C3 and C4 were investigated prospectively in 100 consecutive patients with pleural effusions of various aetiologies. Pleural effusion FRT, C3 and C4 concentrations were found to be useful in differentiating exudates from transudates, so that transudates practically could be excluded in pleural effusion: serum FRT ratio lower than 0.5 and/or in pleural effusion values for C3 and C4 higher than 300 mg dl-1 and 70 mg dl-1, respectively. A pleural effusion: serum C3 ratio greater than 2 is seen only in malignant effusions. No discriminative pleural: serum ratio could be found in FRT and C4 values capable of differentiating malignant from non-malignant effusions. Pleural effusion alpha 1-AT and LDH values were elevated in exudates, as compared with transudates, and had an excellent sensitivity and predictive value, but low specificity, in differentiating malignant from non-malignant effusions. Finally, the sensitivity, specificity and positive predictive value of pleural effusion Hp concentrations were lower than those of FRT and complement factors C3 and C4, respectively.

Adult↗

Identification and characterization of opioid and somatostatin binding sites in the opossum kidney (OK) cell line and their effect on growth.

Opioids and somatostatin analogs have been implicated in the modulation of renal water handling, but whether their action is accomplished through central and/or peripheral mechanisms remains controversial. In different cell systems, on the other hand, opioids and somatostatin inhibit cell proliferation. In the present study, we have used an established cell line, derived from opossum kidney (OK) proximal tubules, in order to characterize opioid and somatostatin receptors and to investigate the action of opioids and somatostatin on tubular epithelial tissue. Our results show the presence of one class of opioid binding sites with kappa, selectivity (KD 4.6 +/- 0.9 nM, 57,250 sites/cell), whereas delta, mu, or other subtypes of the kappa site were absent. Somatostatin presents also a high affinity site on these cells (KD 24.5 nM, 330,000 sites/cell). No effect of either opioids or somatostatin on the activity of the NA+/Pi cotransporter was observed, indicating that these agents do not affect ion transport mechanisms. However, opioid agonists and somatostatin analogs decrease OK cell proliferation in a dose-dependent manner; in the same nanomolar concentration range, they displayed reversible specific binding for these agents. The addition of diprenorphine, a general opioid antagonist, reversed the effects of opioids, with the exception of morphine. Furthermore, morphine interacts with the somatostatin receptor in this cell line too, as was the case in the breast cancer T47D cell line. Our results indicate that in the proximal tubule opioids and somatostatin do not affect transport, but they might have a role in the modulation of renal cell proliferation either during ontogenesis or in kidney repair.

Animals↗

Identification of a novel opioid peptide (Tyr-Val-Pro-Phe-Pro) derived from human alpha S1 casein (alpha S1-casomorphin, and alpha S1-casomorphin amide).

A new casomorphin pentapeptide (alpha S1-casomorphin) has been isolated from the sequence of human alpha S1-casein [alpha S1-casein-(158-162)], with the sequence Tyr-Val-Pro-Phe-Pro. This peptide was found to bind with high affinity to all three subtypes of the kappa-opioid receptor (kappa 1-kappa 2). When amidated at the C-terminus, alpha S1-casomorphin amide binds to the delta- and kappa 3-opioid sites. Both alpha S1-casomorphin and its amide inhibit in a dose-dependent and reversible manner the proliferation of T47D human breast cancer cells. This anti-proliferative activity was greater for alpha S1-casomorphin, which was the most potent opioid in inhibiting T47D cell proliferation. In T47D breast cancer cells, other casomorphins have been found to bind to somatostatin receptors in addition to opioid sites. In contrast, alpha S1-casomorphin and its amide do not interact with somatostatin receptors in our system.

Amino Acid Sequence↗

Antiproliferative and receptor binding properties of alpha- and beta-casomorphins in the T47D human breast cancer cell line.

In previous studies, we have shown that opioid agonists ([D-Ala2, D-Leu5]enkephalin (DADLE), [D-Ser2, Leu5]enkephalin-Thr6 (DSLET), ethylketocyclazocine and etorphine) bind to opioid binding sites and decrease cell proliferation of human T47D breast cancer cells. Furthermore, we provided evidence about a cross-reaction, also in the T47D human breast cancer cell line, of mu-acting opioids with type-II somatostatin receptors. Since a potential source of opioid activity in the breast might be casomorphin peptides (produced by the enzymatic degradation of alpha-casein and beta-casein), we investigated the antiproliferative action of five different casomorphin peptides: alpha-casein-(90-95), alpha-casein-(90-96), beta-casomorphin, beta-casomorphin-(1-5) and morphiceptin. We show that all five peptides decreased, in a dose-dependent manner, cell proliferation. The general antagonist diprenorphine produced only a partial reversal of their action. Furthermore, we provide evidence that all peptides (except for morphiceptin) bind to delta- and kappa-opioid binding sites of T47D cells with different selectivity. Finally, we show that these peptides are also partial competitors at the somatostatin receptors present in the same cell line.

Breast Neoplasms↗

The antiproliferative effect of opioid receptor agonists on the T47D human breast cancer cell line, is partially mediated through opioid receptors.

In the present study, we investigated the action of opioid receptor agonists on the proliferation of cells of the T47D human breast cancer cell line, grown in the absence of exogenously added steroids and growth factors. We found that the opioid receptor agonists ethylketocyclazocine, morphine, [D-Ala2,D-Leu5]enkephalin (DADLE), [D-Ser2,Leu5]enkephalin-Thr6 (DSLET) and etorphine inhibit dose dependently cell proliferation. The opioid receptor antagonist diprenorphine had no significant effect per se, but it was able to reverse the action of all opioid receptor agonists except morphine. In order to investigate the mechanism of action of opioids on T47D cells, we characterised the opioid receptors present on this cell line, by saturation binding, using radiolabelled [D-Ala2,N-Me-Phe4-Gly5-ol]enkephalin (DAGO, mu-opioid receptor agonist), ethylketocyclazocine (kappa 1-, kappa 2-, mu- and delta-opioid receptor agonist), diprenorphine (kappa 2-, kappa 3-, delta- and mu-opioid receptor antagonist), DADLE (delta- and mu-opioid receptor agonist), and effectors. We identified opioid binding sites belonging mainly to the kappa-type (kappa 1, kappa 2 and kappa 3), a few delta-opioid receptor sites, but no mu-opioid receptors. Our results indicate that the inhibitory effect of opioids on T47D cell growth is mediated through kappa- and delta-opioid receptors. The effect of mu-acting morphine might not be mediated through opioid receptors.

Adenocarcinoma↗

Identification, characterization and localization of corticotropin-releasing hormone receptors in human placenta.

The purpose of this work was to identify, characterise, and localise specific CRH binding sites in whole vaginally delivered term human placental membranes as well as in dispersed and purified trophoblastic membranes. We have found that whole placenta membranes contained specific and saturable CRH-binding sites. Maximum specific binding was obtained at pH 7.2-7.4, 22 C, for 2 h. The order of potency of CRH analogs was h/rCRH > alpha-helCRH > oCRH. Scatchard analysis revealed a single population of high affinity binding sites with a dissociation constant of 1.25 nM and maximum binding capacity of 119 fmol/mg of protein. Purified syncytiotrophoblast membranes contained high affinity CRH binding sites exhibiting the same dissociation constant and maximum binding capacity as whole placental membranes, suggesting that the CRH binding sites are expressed almost exclusively by the syncytiotrophoblast. Our findings indicate that CRH binding sites in the human placenta are exhibit similar characteristics to that described for anterior pituitary, brain and adrenals.

Corticotropin-Releasing Hormone↗

Morphine cross-reacts with somatostatin receptor SSTR2 in the T47D human breast cancer cell line and decreases cell growth.

In a previous study, we found that morphine decreases, in a dose-dependent manner, the cell growth of T47D human breast cancer cells, despite the lack of mu opioid receptors and an interaction of morphine with other opioid sites. We have therefore examined a possible interaction of morphine with other membrane receptor systems of the cell. The present study describes for the first time an interaction between mu-acting opioid drugs and the somatostatinergic system. We have found that [125I]Tyr11-somatostatin binds with high affinity to T47D cells. Analysis of the binding data showed the presence of two components: one with high affinity but low capacity (Kd, 0.145 nM; 1450 sites/cell), and another of lower affinity but higher capacity (Kd, 1.192 nM; 11920 sites/cell). Somatostatin-14 and somatostatin-28 showed multiphasic displacement curves, indicating heterogeneity of binding sites. The latter was confirmed by reverse transcription-PCR, which revealed the existence of the somatostatin receptor subtypes 2 and 3 (SSTR2 and SSTR3), with a relative mRNA concentration of 85 and 15%, respectively. Morphine and the morphinomimetic peptide morphiceptine (Tyr-Pro-Phe-Pro-NH2) displace somatostatin from its binding sites. Further analysis indicated that mu-acting opioids interact with the SSTR2 receptor subtype.

Base Sequence↗

Pattern of prolactin diurnal secretion in normal humans: evidence for nonlinear dynamics.

Prolactin (PRL) circadian profiles were analyzed using methods of nonlinear dynamics, directly from the experimental data, by combining in a single time-series (432 measurements), six individual 24-hour PRL profiles (72 measurements per profile, sampling interval = 20 min), obtained from young healthy human volunteers (4 males, 2 females), under basal conditions. Significant autocorrelation exists between any given point of the time series and a limited number of its successors. Fourier analysis showed a dominant frequency of 1 cycle/24 h, without sub-24-hour harmonics. Poincaré section indicated the presence of a fractal attractor and a sketch of the attractor revealed a highly convoluted geometric structure with a conical contour. The box-counting dimension (D0), information dimension (D1) and correlation dimension (D2) of the attractor had low, fractal values, did not differ significantly from each other, and exhibited saturation at an embedding dimension of 2. The evidence taken together suggests that, under basal conditions, the daily changes in the peripheral blood levels of PRL are governed by nonlinear deterministic dynamics, with a dominant rhythm of 1 cycle/day mixed with a higher-frequency, low-amplitude signal.

Adult↗

Identification and characterization of opioid-binding sites present in the Ishikawa human endometrial adenocarcinoma cell line.

Normal epithelial cells of human endometrium, and Ishikawa human endometrial adenocarcinoma cells (an in vitro model for the study of steroid hormone effects on human endometrium) have been found to express and secrete opioid peptides deriving from proenkephalin, prodynorphin, and proopiomelanocortin. These opioids may act locally, affecting the uterine tissues. In the present study, we identified and characterized opioid-binding sites on the Ishikawa cell line, producing evidence for the mechanism of local opioid action. We used an acid shock before the receptor assay to dissociate any endogenously bound peptide. The acidification improved specific binding by 2- to 4.5-fold. Characterization of opioid binding using different radiolabeled opioids and effectors has shown the existence of a low concentration of delta-sites (Kd, 6.20 nmol/L; 4,890 sites/cell), no mu-sites, low affinity kappa 1-sites (Kd, 10.8 nmol/L; 276,000 sites/cell), kappa 2-sites with high affinity for ethylketocyclazocine (Kd, approximately 1 nmol/L) and low affinity for diprenorphine (Kd, approximately 8 nmol/L) at a concentration of 93,000 sites/cell, and high affinity kappa 3-sites (Kd, 3.6 nmol/L; 77,000 sites/cell). In conclusion, our report characterizes opioid sites in a particular and homogeneous cell type of human endometrium, i.e. in epithelial cells. The coexistence of opioid sites and their endogenous ligands in the Ishikawa cell line makes these cells a good model for the study of autocrine/paracrine interactions of opioids in nonneural tissues.

Acids↗

Estrogen and progesterone receptors in breast cancer microsamples simultaneously quantified by enzyme-ligand immunoassay.

A new method (enzyme-ligand immunoassay, ELIA) is described for the estimation of estrogen (ER) and progesterone (PR) receptors in microsamples of human breast cancer tissue. The technique, based on the nonisotopic measurement of receptor-bound estradiol and progesterone, involves three steps: (a) simultaneous saturation of active receptors with their respective authentic ligands, (b) heat treatment of the cytosol to release the steroids from their cognate receptors before or after absorption with dextran-coated charcoal, and (c) measurement of both steroids present in the cytosol by a modified competitive-inhibition enzyme immunoassay. The useful range of the method was 10-4000 pmol/L for ER and 6.5-1000 pmol/L for PR. The correlation coefficient (r) between the one-point and Scatchard plot analysis was 0.95 for ER and 0.99 for PR. Comparison of the one-point ELIA and expected values with the radioligand binding assay (RLBA) results for EORTC samples gave r = 0.88 and 0.99 for ER and PR, respectively. Further comparison of the one-point ELIA with RLBA and with a commercial enzyme immunoassay, in blind testing of cancer tissue microsamples from 70 patients, gave good agreement for ER with r = 0.95-0.97 and concordance of 92.9-94.4% (cutoff, 15 pmol/g protein) against the other two methods. The results were more disperse in all three methods for PR estimation, the assay correlating perhaps better with the enzyme immunoassay (r = 0.90) at a concordance of 89.4% (same cutoff value).

Adult↗

Acidification reveals a greater number of epidermal growth factor receptors in human placental and breast cancer membranes.

The detection of epidermal growth factor receptors (EGFR) has been proposed as a prognostic factor in different kinds of neoplastic diseases. In this study, we have compared different conditions of EGFR assay, in human placental membranes, in order to establish the best conditions for the routine use of EGFR assay in clinical laboratories. Three kinds of membrane treatment (non-treated, preincubated at 37 degrees C for 30 min, or acid treated at pH 3.0 for 3 min at 0 degrees C), two different separation conditions (hydroxylapatite and centrifugation), two different incubation times (30 min at 37 degrees C and overnight at 18 degrees C) and the effect of proteolytic enzyme inhibitors have been investigated. Preincubated or acid treated membranes showed a two- and three-fold increase of the number of receptors, respectively, as compared with non-treated membranes. In the case of acid pretreated membranes a second, low affinity, site became apparent. Both separation methods gave similar results. The addition of aprotinin had an effect only during long incubation conditions. Freezing of membranes in liquid nitrogen, followed by storage at -80 degrees C for 48 h, resulted in three different patterns. No change was observed in non-treated membranes. Preincubated samples showed a significant decrease both in the number and the affinity of detected EGFR. Acid treated membranes showed a decrease of the affinity of high affinity EGFR with no modification of their number. It is proposed that acid pretreatment, freshly prepared membranes, addition of aprotinin and the use of hydroxylapatite, for the separation of bound and free radiolabelled EGF, should be used in order to standardize the EGFR assay in clinical laboratories. Using these conditions, we were able to detect a significantly higher number of EGFR in 6/29 cases of human breast cancer specimens.

Breast Neoplasms↗

Comparative thermodynamics of opioid receptor ligand interaction in the bovine adrenal medulla membranes--evidence of opioid site heterogeneity.

1. A marked dependence on temperature of agonist binding delta, mu and kappa 1-3 opioid sites in the bovine adrenal medulla was observed, at the range of 0 to 37 degrees C. These changes concern kinetic (k1) and equilibrium constants (Kd), but not binding capacities (Bmax). 2. These dependences are different for each ligand and each opioid receptor, suggesting their molecular heterogeneity. 3. The comparative thermodynamics indicates that the interaction of opioid agonists with their receptor is exergonic (delta G degree < 0) and entropy driven (delta S degree > 0). 4. The comparison of Van't Hoff and Arrhenius plots indicates a discrete mechanism in the binding of each opioid receptor.

Adrenal Medulla↗

Protein measurement of particulate and solubilized ovine liver membranes.

Protein concentration measurements are critical in biochemical work with cellular membranes, including the determination of cell surface receptor concentration in human malignant tissues obtained at surgery or after biopsy. In this study we compared the results of protein concentration measurements in ovine liver cellular membranes using either particulate preparations or membranes solubilized with four different detergents. In all cases protein was determined by two different indirect methods (Lowry's Folin phenol method and Bradford's Coomassie Brilliant Blue dye binding method) and compared to the direct biuret method. Our results indicate that the direct biuret method gives the highest protein concentrations followed by the method of Lowry. Maximal concentrations (approaching those obtained by the direct biuret method) were obtained after membrane solubilization with Triton X-100 (3-5%). It is suggested that either the direct biuret method (whenever protein concentrations permit it) or the method of Lowry after solubilization of membranes with Triton X-100 (3-5%) should be used preferentially for the determination of membrane protein samples.

Animals↗

Evidence for high peptide alpha-amidating activity in the pancrease from neonatal rats.

A high peptidylglycine alpha-amidating mono-oxygenase (PAMase) activity has been measured in the pancreas of neonatal rats. A significant fraction of this activity is contained in the beta cells of the islets of Langerhans and is colocalized with thyrotropin-releasing hormone (TRH) and its precursor in secretory granules. The ontogenetic variation of PAMase activity in the pancrease parallels that of TRH concentrations, suggesting that this enzymatic activity is directly related to TRH biosynthesis. In addition, PAMase activity is able to generate TRH when incubated with less than Glu-His-Pro-Gly, a tetrapeptide present as a repetitive sequence in the TRH precursor. The perinatal evolution of the TRH precursor levels in the pancreas is similar to that of PAMase activity (unpublished results). Thus, the neonatal rat pancreas offers an endocrine model in which the levels of a neuropeptide precursor and an enzyme activity, involved in the posttranslational modification of this precursor, are similarly regulated. Our results suggest also that a fraction of PAMase activity may be produced outside of the beta cells and related to the biosynthesis of COOH-terminally amidated peptide(s) other than TRH. The ontogenetic changes in PAMase activity imply that the synthesis of this peptide(s) is high during the neonatal period, decreasing thereafter.

Aging↗

Effect of passive immunization against corticotropin-releasing factor (CRF) on the postadrenalectomy changes of CRF binding sites in the rat anterior pituitary gland.

The concentration of corticotropin-releasing factor (CRF)-binding sites decreases in the rat anterior pituitary after adrenalectomy; this change may be related either to a direct effect of the circulating glucocorticoids at the pituitary level or to a desensitization of CRF receptors through an increased CRG release in hypophysial portal blood. In order to examine the latter possibility we have measured plasma adrenocorticotropin hormone (ACTH) levels and the number of anterior pituitary CRF binding sites in sham-operated and 24-hour adrenalectomized rats after blockade of endogenous CRF by passive immunization with an antiserum anti-rat CRF (CRF-AS), or after injection of normal rabbit serum (NRS). In NRS-injected rats, after sham operation, plasma ACTH concentration increased (227 +/- 34 vs. 118 +/- 19 pg/ml in controls) without change in CRF-binding sites capacity (20.7 +/- 2.6 vs. 24.6 +/- 3.5 fmol/mg protein in controls). Adrenalectomy induced a large rise in plasma ACTH (785 +/- 89 pg/ml) and a decrease in the number of CRF-binding sites (12.2 +/- 1.7 fmol/mg protein). After CRF-AS injection, plasma ACTH was normalized in sham-operated animals (149 +/- 24 pg/ml) and significantly reduced in adrenalectomized rats (472 +/- 76 pg/ml); the adrenalectomy-induced decrease in the number of CRF-binding sites was unaffected by the CRF-AS administration (12.2 +/- 1.7 fmol/mg protein). The administration of dexamethasone to adrenalectomized rats significantly reduced plasma ACTH concentrations (23.3 +/- 10.6 pg/ml) and prevented the loss in CRF-binding sites capacity (20.7 +/- 1.3 fmol/mg protein).(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenalectomy↗

Photoaffinity crosslinking of etorphine with opioid binding sites in the bovine adrenal medulla.

The covalent crosslinking of [3H]etorphine with opioid binding sites in the bovine adrenal medulla is reported. Of all the radiolabeled opiates tested (ethylketocyclazocine, etorphine, [D-Ala2, D-Leu5]enkephalin, [D-Ala2, Me-Phe4, Gly5-ol]enkephalin only etorphine could be crosslinked under uv irradiation. In our conditions (black uv lamp, 160 W, peak mean 360 nm, from a distance of 10 cm) maximum covalent binding was observed after a 10-min irradiation. Protein concentration was a crucial factor for the irreversible/total binding ratio. A good ratio (50%) was obtained at protein concentrations of about 1.0 mg/ml. Covalent binding of nonmodified opiates could be of interest for the biochemical characterization of their binding sites.

Adrenal Medulla↗

Evidence for high peptide alpha-amidation activity in the neonatal rat pancreas.

A high peptide alpha-amidating activity is present in a mitochondrial/secretory granules preparation from 3-day old rat pancreas. It is dependent on copper, ascorbate and molecular oxygen. This preparation is able to generate TRH when incubated with Pyroglu-His-Pro-Gly, a sequence present in the TRH precursor molecular. The peptide alpha-amidating activity may be involved in the high rate of TRH biosynthesis in the pancreas during the neonatal period. In the pancreas of adult rats which contain low levels of TRH, the peptide alpha-amidating activity is barely detectable.

Amidohydrolases↗

Are opioid peptides co-localized with vasopressin or oxytocin in the neural lobe of the rat?

The content of vasopressin, oxytocin, neurophysin, leucine-enkephalin, methionine-enkephalin, dynorphin-(1-13), and alpha-neoendorphin in the rat neurohypophysis was measured after different periods of dehydration and after depolarisation of isolated neural lobes and of neurosecretory nerve endings. The rates at which the amount of neurohypophysial hormone and opioid peptides decreased, and the changes in the ratios between the amount of vasopressin or oxytocin and opioid peptide in the neurohypophysis after dehydration and in the incubation medium after depolarization in vitro cast some doubt on, and can be explained by mechanisms other than co-localisation of the different peptides.

Animals↗