Quiz case I. Unilateral lung edema due to the pulmonary re-expansion.
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Biomedical subjects
Publications and source records attributed to A Hidalgo.
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1. The effect of the non-steroidal anti-inflammatory drugs naproxen, mefenamic acid, phenylbutazone, piroxicam and tolmetin on the vanadate (0.3 mM)-induced tonic contraction, as well as the modifications of these effects by the G-protein inhibitor pertussis toxin, and the inhibitors of protein kinase A, Rp-cAMPS (Rp-Adenosine 3',5'-cyclic monophosphothioate triethylamine salt) and protein kinase C, H-7 [1(5-isoquinolynilsulfonyl)-2-methyl-piperazine], have been assayed to study the possible nature of intracellular mediators contributing to the inhibitory effects of NSAIDs in rat uterine smooth muscle incubated in medium lacking calcium plus EDTA. The effect of phorbol 12,13-dibutyrate on vanadate contraction and its modification with H-7 has also been examined. 2. Naproxen (6-600 microM), mefenamic acid (6-300 microM), phenylbutazone (6-300 microM), piroxicam (6-600 microM) and tolmetin (6-600 microM) produced concentration-dependent relaxation of vanadate-induced tonic contraction. The potency order, in accordance with their respective IC50 values was: phenylbutazone > or = mefenamic acid > or = naproxen > tolmetin > or = piroxicam. 3. The relaxant effects of naproxen, phenylbutazone, piroxicam and tolmetin were significantly antagonized with pertussis toxin (50 ng ml-1), Rp-cAMPS (100 microM) and H-7 (1 microM). However, the effect of mefenamic acid was unmodified by the three drugs. This suggests that the effect of mefenamic acid and other NSAIDs occur by different mechanisms. 4. Phorbol 12,13-dibutyrate relaxed the vanadate contraction but the maximal relaxation achieved (54.8 +/- 8.3%, n = 4) was lower than those induced with the NSAIDs. On the other hand, H-7 (1 microM) did not modify the relaxant effect of phorbol 12,13-dibutyrate. This suggests that H-7 behaves as a PKA, but not a PKC inhibitor, under the present experimental conditions. 5. The relaxation by naproxen, phenylbutazone, piroxicam and tolmetin is presumably produced by increasing cAMP because the effects of these are antagonized with Rp-cAMPS and H-7, and by pertussis-toxin-sensitive mechanisms.
1. The effect of a polyamine, spermine (0.3-30 mM), and an ornithine decarboxylase inhibitor, alpha-difluoromethylornithine (DFMO; 1-10 mM), given alone and in combination were studied on KCl (33, 60 or 90 mM)-induced tonic contraction and on the cumulative concentration-response curves elicited by CaCl2 (30 microM to 10 mM) in a depolarizing (with 33, 60 or 90 mM of KCl) calcium-free medium in isolated rat uterus. 2. Spermine elicited a concentration-dependent relaxation on KCl 33 mM (IC50 = 2.18 +/- 0.37 mM, n = 6), 60 mM (IC50 = 7.80 +/- 0.79 mM, n = 11) and 90 mM KCl (IC50 = 29.55 +/- 4.08 mM, n = 7) induced tonic contraction. The IC50 values were significantly different (P < 0.01). 3. DFMO relaxed the tonic contraction induced by 33 mM of KCl (Emax = 80.70 +/- 13.01%) but only relaxed the contractions induced by 60 and 90 mM of KCl to 23.60 +/- 4.60% and 16.90 +/- 4.10%, respectively. DFMO (10 mM) did not modify the concentration-dependent relaxation elicited by spermine on KCl (60 mM)-induced tonic contraction. 4. KCl (33, 60 or 90 mM) did not produce contraction in a calcium-free medium, but enabled CaCl2 (30 microM to 10 mM) to induce cumulative concentration-dependent contraction of the rat uterus. The EC50 values for CaCl2 were: 0.74 +/- 0.08 (n = 12), 0.34 +/- 0.03 (n = 14) and 0.48 +/- 0.02 (n = 12) mM in medium with 33, 60 or 90 mM of KCl, respectively. 5. Spermine (1 mM) and DFMO (1 mM) did not modify the concentration-response curves induced by CaCl2 in medium with 33 mM of KCl. Higher concentrations of spermine (3 mM) and DFMO (10 mM) strongly reduced the contractile effect of CaCl2 to 35.69 +/- 3.96% (n = 6) and 40.14 +/- 10.74% (n = 6). This inhibitory effect of spermine and DFMO was prevented by increasing KCl concentration in the medium to 60 or 90 mM. Thus, the Emax of CaCl2 in the presence of spermine (3 mM) was 66.26 +/- 6.96% and 89.02 +/- 2.89% in a 60 and 90 mM KCl medium, respectively. In the presence of DFMO (10 mM) the Emax of CaCl2 reached 100% when KCl was increased. 6. Spermine (1 mM) plus DFMO (1 mM) and spermine (1 mM) plus DFMO (10 mM) produced a synergic inhibitory effect of CaCl2-induced contraction in medium with 33 mM of KCl. Spermine (3 mM) plus DFMO (10 mM) produced a total inhibition of CaCl2-induced contraction. 7. The inhibitory effect of spermine (1 mM) plus DFMO (10 mM) was also prevented by increasing KCl concentration in the medium to 60 or 90 mM. The Emax for CaCl2 (10.9 +/- 5.5%) in the presence of KCl 33 mM increased up to 93.2 +/- 2.1% and 96.3 +/- 1.2% when the KCl concentration in the medium was enhanced to 60 or 90 mM. 8. Our results suggest that a calcium inhibitory effect of spermine and DFMO in isolated rat uterus could be produced, since this was prevented by depolarization, as a result of the increase of KCl concentration in the medium.
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The Drosophila wing is divided into anterior and posterior compartments, the latter characterized by the expression of the engrailed gene. A comparative analysis is presented here, and suggests that a primary conserved role of engrailed is to drive growth of limbs along the proximo-distal axis. The Apical Ectodermal Ridge in vertebrate limbs resembles the Antero/ Posterior compartment boundary in fly wings, particularly in molecular aspects. Multiple evidence suggests that the fly wing Antero/Posterior boundary is not the result of differential cell affinities between all anterior and posterior cells, but responds to the area of cell communication between anterior and posterior compartments. Arguments are presented here to support the notion that the compartment boundary is a consequence of decapentaplegic function in the control of growth. Patterning, on the other hand, requires the participation of several genes, among which are engrailed, invected and hedgehog. Finally, regulatory interactions between en/En-1 and hh/Shh may be significant in the context of morphogenetic regulation during normal development.
The dominantly inherited Multiple Endocrine Neoplasia cancer syndrome type 2B (MEN2B) is characterized by the presence of medullary thyroid carcinoma (MTC), phaechromocytoma (PHAEO), mucosal neuromas, ganglioneuromas of the intestinal tract, skeletal and ophthalmic abnormalities. MEN2B has been associated with a specific point mutation in the tyrosine kinase domain of the RET proto-oncogene (918RET mutation). We investigated a Mexican patient MEN2B for the presence of the 918RET mutation using the polymerase chain reaction followed by restriction endonuclease digestion. We have detected this mutation in DNA from the patient's MTC, PHAEO, and peripheral blood cells, but not in DNA from the patient's mother, suggesting that this mutation arose de novo. Our results are in agreement with the suggestion that the 918RET mutation is present in a vast majority of MEN2B cases around the world.
The effect of two calmodulin inhibitors, W-7 (N-(6-aminohexyl)-5-chloro-1-naphtalenesulfonamide) and calmidazolium, on the nociceptive behavior induced by the intrathecal injection of NMDA (N-methyl-D-aspartate), AMPA (alpha-amino-3-hydroxy-5-methyl-4-iso xazolepropionic acid) or of septide is described. Lumbar intrathecal injection of NMDA, AMPA or septide induced a caudally directed nociceptive reaction (biting, scratching and licking). The nociceptive behavior induced by NMDA (4 microg) was dose dependently inhibited when W-7 (0.25-1 micromol/rat) or calmidazolium (0.12-0.5 micromol/rat) was coinjected. Biting, scratching and licking produced by AMPA (2 microg) were unaffected by intrathecal calmodulin inhibitors. Finally, septide-evoked nociceptive behavior (2 microg) was antagonized by W-7 (0.12-0.5 micromol/rat) and calmidazolium (0.06-0.25 micromol/rat). Thus, calmodulin inhibitors prevent the nociceptive reaction evoked by drugs that modify intracellular Ca2+, NMDA and septide, without affecting the nociceptive response induced by AMPA, for which Ca2+ is not the main second messenger.
Drugs acting on androgen receptors modify opioid transmission in the central nervous system. To investigate a direct interaction, we studied whether the binding of [3H]diprenorphine to mouse brain membranes was modified by cyproterone acetate (progesterone derivative with antiandrogen activity), flutamide (non-steroidal antiandrogen), 5alpha-dihydrotestosterone and progesterone. Only cyproterone acetate inhibited [3H]diprenorphine binding (IC50 = (1.62 +/- 0.33) x 10(-6) M) without modifying its association rate. These results suggest that cyproterone acetate binds to opiate receptors independently of its classical androgenic intracellular receptor effect.
The effect of Rp diastereoisomer of adenosine 3',5'-cyclic monophosphothioate (Rp-cAMPS) on relaxation elicited by histamine (1-100 microM), forskolin (1-60 microM), papaverine (1-100 microM), vinpocetine (1-100 microM), rolipram (0.1-1 mM), Sp-cAMPS (10-300 microM), 8-BrcAMP (10 microM - 1 mM) and 8-BrcGMP (3 microM - 1 mM) of the previous vanadate-induced contraction was assayed. The effect of Rp-cAMPS on the relaxing effect produced by forskolin, papaverine, vinpocetine, rolipram, Sp-cAMPS and 8-BrcAMP in KCl-induced tonic contraction was also assayed. Histamine, forskolin, papaverine, rolipram, Sp-cAMPS, 8-BrcAMP and 8-BrcGMP, but not vinpocetine, relaxed the vanadate-induced contractions in rat uterus incubated in medium lacking calcium plus EDTA in a concentration-dependent way. Rp-cAMPS (1-300 microM) had no effect on vanadate contraction. However, it antagonized the relaxation elicited by histamine and papaverine, but not that of forskolin, rolipram, Sp-cAMPS, 8-BrcAMP and 8-BrcGMP. Forskolin, papaverine, vinpocetine, rolipram and 8-BrcAMP, but not Sp-cAMPS, relaxed the KCl-induced contraction. Rp-cAMPS antagonized the relaxation elicited by forskolin, papaverine and vinpocetine, but not that of rolipram and 8-BrcAMP. Our results suggest that: a) Rp-cAMPS is an effective PKA inhibitor that could be used to study the involvement of cAMP on drug-induced response in smooth muscle, and b) the effects of Sp-cAMPS, 8-BrcAMP and rolipram were independent of the activation of protein kinases.
To study whether cAMP-dependent transcriptional effect and polyamines might play a modulatory role on smooth muscle, the effect of forskolin on KCl (60 mM)-induced contractions in isolated rat uterus and its modification by inhibitors of cAMP-dependent protein kinase (PKA) (Rp-cAMPS and TPCK), transcription (actinomycin D), protein synthesis (cycloheximide) and ornithine decarboxylase (alpha-difluoromethyl-ornithine, DFMO), and a polyamine (spermine) have been assayed. Forskolin (0.1 to 6 microM) induced concentration-dependent relaxation on KCl-induced tonic contractions in rat uterus (IC50: 0.55 +/- 0.12 microM) which was antagonized (p<0.05) by Rp-cAMPS (30 microM), TPCK (3 microM), cycloheximide (300 microM), actinomycin D (4 and 12 microM) and TPCK (3 microM) plus actinomycin D (12 microM). The IC50 values of forskolin in the presence of these drugs were 3.75 +/- 1.53 microM, 12.08 +/- 8.18 microM, 6.88 +/- 5.02 microM, 3.80 +/- 2.35 and 5.31 +/- 2.80 microM, and 4.26 +/- 3.65 microM respectively. Furthermore, DFMO (10 mM) also shifted the relaxation curve to forskolin to the right (IC50: 3.06 +/- 2.66 microM, p<0.05) but DFMO (10 mM) plus actinomycin D (12 microM) (IC50: 1.78 +/- 1.33 microM) did not. However, DFMO (10 mM) and actinomycin D (12 microM) did not antagonize the spermine (1-30 mM)-elicited relaxation (IC50s: 7.8 +/- 0.7 mM vs 7.28 +/- 1.4 mM and 4.67 +/- 0.44 mM in the presence of DFMO and actinomycin D, respectively). Moreover, spermine (1 mM) did not decrease the forskolin induced relaxation and counteracted the antagonism produced by actinomycin D and DFMO. Our results suggest that, in rat uterus, forskolin: a) produced cAMP-dependent relaxation, as this is antagonized by Rp-cAMP and TPCK, and b) increased the activity of ornithine decarboxylase, as this is inhibited by DFMO. Therefore, polyamines could be the mediator of the cAMP-dependent transcriptional component involved in forskolin relaxation, since, as mentioned, DFMO antagonized this relaxation and spermine counteracted the displacement produced by DFMO and actinomycin D. Thus, a plasma membrane-nucleus interaction might, at least partially, explain the mechanisms involved in forskolin induced relaxation in smooth muscle of rat uterus under the present experimental conditions.
1. The effect of zeranol (3-100 microM) on rat uterus contractions induced by KCl (60 mM) and CaCl2 (30 microM-10 mM) has been assayed. 2. Zeranol relaxed the tonic contraction induced by KCl in a concentration-dependent manner (IC50 15.62 +/- 2.66 microM). CaCl2 (0.1-10 mM) did not counteract the relaxing effect of zeranol. 3. CaCl2 (30 microM -10 mM) produced a concentration-dependent contraction of rauuterus in medium lacking calcium plus KCl (60 mM) (EC50 0.34 +/- 0.03 mM). Zeranol (8 microM) displaced the CaCl2 concentration-response curve to the right and increased the EC50 to 1.27 +/- 0.57 mM (P < 0.05) without modifying the Emax. 4. The antiestrogen tamoxifen (1 microM) and the inhibitor of cAMP-dependent protein kinase TPCK (3 microM) did not modify the effect of zeranol. However, the inhibitors of transcription (actinomycin D, 4 microM), protein synthesis (cycloheximide, 100 microM), and ornithine-decarboxilase (alpha-difluoromethyl-ornithine, 10 mM)) antagonized the effect of zeranol, increasing the IC50 to 50.2 +/- 6.2 microM, 122 +/- 6.9 microM, and 23.51 +/- 1.14 microM, respectively. 5. Our results suggest that the relaxing effect of zeranol on rat uterus smooth muscle is produced by mechanisms unrelated to cAMP and estrogen receptors, but involves transcriptional effects and polyamine synthesis.
1. The effects of the flavonoids genistein (3-60 microM), kaempferol (3-60 microM) and quercetin (1-100 microM) on KCl (60 mM)-induced tonic contraction in rat uterus and their modifications with the inhibitor of cAMP-dependent protein kinases (TPCK, 3 microM), the inhibitor of ornithine decarboxylase [alpha-difluoromethyl ornithine (DFMO), 10 mM] and the polyamine spermine (1 mM) have been assayed. The effects of the three flavonoids were also studied on the contraction elicited by CaCl2 (30 microM to 10 mM) on rat uterus incubated in medium lacking calcium and supplemented with 33, 60 or 90 mM of KCl. For comparison, the effects of the calcium channel blockers nifedipine and verapamil and the activator of adenylyl cyclase forskolin were assayed on contractions induced by KCl and CaCl2. 2. Genistein (IC50: 20.2 +/- 1.0 microM, n = 11), kaempferol (IC50: 10.1 +/- 0.8 microM, n = 8) and quercetin (IC50: 13.2 +/- 0.5 microM, n = 8) relaxed the tonic contraction induced by KCl (60 mM) in a concentration-dependent way. Verapamil (IC50: 70.1 +/- 5.8 nM, n = 7), nifedipine (IC50: 8.4 +/- 0.7 nM, n = 6) and forskolin (IC50: 0.62 +/- 0.08 microM, n = 14) also relaxed the KCl-induced contraction. TPCK (3 microM) significantly antagonized the effect of quercetin, kaempferol and forskolin (P < 0.01) but did not modify the effect of genistein. 3. Spermine (1 mM) increased the effects of genistein and verapamil and antagonized the effect of quercetin but did not modify those of kaempferol and forskolin. DFMO (10 mM) did not modify the effect of quercetin but increased that of genistein and antagonized those of kaempferol and forskolin. The addition of spermine (1 mM) plus DFMO (10 mM) antagonized the effect of quercetin. Spermine counteracted the effect of DFMO on forskolin but not on genistein. 4. KCl (33, 60 or 90 mM) did not produce contraction in calcium-free solution, but CaCl2 (30 microM to 10 mM) induced concentration-dependent contraction after depolarizing with KCl. The EC50 values for CaCl2 were: 0.74 +/- 0.08 (n = 12), 0.34 +/- 0.03 (n = 14) and 0.48 +/- 0.02 (n = 12) mM in a medium with 33, 60 or 90 mM of KCl, respectively. 5. Genistein (20 microM), kaempferol (10 microM), quercetin (15 microM), verapamil (70 nM), nifedipine (10 nM) and forskolin (0.5 microM) inhibited the concentration-response curve to CaCl2 in medium supplemented with 33, 60 or 90 mM of KCl. The effect of kaempferol was independent of the concentration of KCl in the incubation medium. However, the inhibitory effect of genistein on CaCl2-induced contraction was inversely related to the concentration of KCl in the medium. On the contrary, the effect of quercetin was directly related to the concentration of KCl in the medium. 6. The antagonism of verapamil, nifedipine and forskolin on CaCl2-induced contraction seems to be related to the degree of depolarization because increasing the KCl in the medium counteracted their effects. 7. Our results suggest that (1) cAMP contributes to the relaxant effects of quercetin and kaempferol on KCl (60 mM)-induced tonic contraction; (2) polyamines are involved in the relaxant effects of forskolin and kaempferol on KCl-induced tonic contraction but not on CaCl2-induced contraction in the depolarized uterus, and (3) the flavonoids assayed also possess a calcium antagonist action but show a different behavior toward the calcium channel blockers and the cAMP enhancer forskolin.
Although pioneer neurons are the first to delineate the axon pathways, it is uncertain whether they have unique pathfinding abilities. As a first step in defining the role of pioneer neurons in the Drosophila embryonic CNS, we describe the temporal profile and trajectory of the axons of four pioneer neurons and show that they differ from previously published reports. We show, by targeted ablation of one, two, three or four pioneer neurons at a time, that (1) no single pioneer neuron is essential for axon tract formation, (2) the interaction between two pioneers is necessary for the establishment of each fascicle and (3) pioneer neurons function synergistically to establish the longitudinal axon tracts, to guide the fasciculation of follower neurons along specific fascicles and to prevent axons from crossing the midline.
Calcium is an important intracellular messenger that interacts with Ca(2+)-binding proteins, such as calmodulin (CaM), to activate several intracellular enzymes. The involvement of Ca2+ in the transmission of nociceptive signals has been demonstrated at the spina level. Specifically, spinal sensitization induced by persistent nociceptive stimulation seems to be related to an increase of cytosolic calcium and the subsequent activation of several enzymes, some of which are Ca2+/CaM dependent. In order to elucidate the possible implication of calmodulin in these pain processes, we have studied the effect of two calmodulin inhibitors (W-7 and calmidazolium) or the formalin and tail-flick tests in rats after their intrathecal administration. Antinociceptive effects were observed in both tests by injecting 0.12-1 mumol/rat of calmidazolium and 0.25-2 mumol/rat of W-7. Calmidazolium was more potent than W-7 in inhibiting both phases of the formalin test, whereas lower doses of W-7 in comparison to calmidazolium affected the tail-flick latencies. In addition, both drugs induced, at high doses, a muscular flaccidity of the hindlimbs that impaired normal walking in the rats. This effect caused; significant reduction of the rotarod performance when 1 mumol/rat of calmidazolium or 2 mumol/rat of W-7 were injected. Overall, our results show that calmodulin inhibitors are capable of producing spinal analgesia on phasic and tonic noxious stimuli in rats, thus rendering them a promising potential as analgesics.
In this study the effect of increased nitric oxide (NO) production on the expression of rat liver heme oxygenase-1, an inducible stress protein responsible for the catalysis of heme to biliverdin and carbon monoxide, was investigated. Rats were injected intraperitoneally with molsidomine (SIN-10), a long acting drug that is enzymatically converted in the liver to yield the active NO-releasing agent 3-morpholinosydnonimine (SIN-1). Administration of SIN-10 resulted in a significant time- and dose-dependent increase in plasma levels of nitrite/nitrate, an index of NO release. A time course of heme oxygenase-1 mRNA levels in liver showed a gradual increase in the expression of the gene encoding for this protein, which was maximal at 4 hours and returned to normal levels by 6 hours after SIN-10 treatment. Heme oxygenase activity also increased by 50% at 4 hours and was maximal 12 hours after SIN-10 administration (63% increase over baseline). These results indicate a possible role for locally generated NO in the modulation of hepatic stress response in vivo suggesting that NO mediates cell adaptation to stress by activation of endogenous defensive mechanisms.
GABAA agonists do not respond to the same degree to allosteric modulators of the GABAA receptor complex such as benzodiazepines. We report there the effects of two steroids (alfaxalone and pregnenolone sulfate) on the inhibition induced by two GABAA agonists, 3-amino propane sulphonic acid (3-APS) and muscimol, on the extracellular evoked potentials obtained in CA1 of mice hippocampi. Alfaxalone (1 microM) potentiates the effects of both agonists, although incubation times longer than 15 minutes are required to potentiate the inhibitory effect of muscimol. Lower doses of pregnenolone sulfate at shorter incubation periods are able to inhibit the effects produced by single doses of 3-APS as compared to muscimol (15 microM during 5 min vs 30 microM during 5 min). Our results confirm the possibility that there might be differences in the interaction between GABAA agonists and modulatory steroids.
The effects of estrogens 17beta-estradiol (17beta-E2), 17alpha-estradiol (17alpha-E2) and diethylstilbestrol (DES) on CaCl2 (3mM)-induced contractions on rat aorta strips have been assayed. Both 17alpha-E2 and DES, but not the 17beta-E2 relaxed and inhibited the contraction induced by CaCl2. The antiestrogen tamoxifen (0.1, 1 and 3 microM) antagonizes, in a concentration-dependent way, the relaxant effect of 17alpha-E2 but the relaxation induced by DES is only significantly antagonized with 3 microM of tamoxifen. Cycloheximide (0.1 and 0.3 mM) does not modify the 17alpha-E2 or DES effects. However, the inhibitors of cAMP-dependent protein kinase TPCK (1 microM) and Rp-cAMPS (10 microM) inhibit the relaxation induced by 17alpha-E2 and DES. The elimination of endothelium by rubbing, significantly inhibits the effect of DES but does not modify the effect of 17alpha-E2. Our results suggest that estrogen-induced relaxation is a non-genomic effect possibly or presumably produced by activation of estrogenic receptors and mediated by cAMP. The DES-effect is partially endothelium-dependent but the effect of 17alpha-E2 is independent of endothelium.