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The antagonism induced by ruthenium red of the actions of capsaicin on the peripheral terminals of sensory neurons: further studies.

Ruthenium Red, an inorganic dye which blocks transmembrane calcium (Ca) fluxes in neural tissues, reduced the capsaicin-induced release of substance P-like immunoreactivity from muscle strips of the guinea-pig urinary bladder in a concentration-dependent (30 nM - 3 microM) manner, and protected the sensory fibers from capsaicin-induced densensitization. A similar antagonism of the actions of capsaicin was observed in functional experiments (capsaicin-induced contraction of the isolated guinea-pig bladder or inhibition of twitches of the isolated rat vas deferens). In view of its established action on the depolarization-coupled entry of Ca into synaptosomes and the secretion of transmitter, we propose that Ruthenium Red could antagonize the action of capsaicin on the peripheral terminals of sensory nerves by a similar mechanism, thereby suppressing transmitter secretion and preventing the establishment of desensitization.

Animals↗

Displacement of [3H]oxotremorine-M binding by muscarinic antagonists in guinea-pig atrial and ileal membrane homogenates.

Displacement of [3H]oxotremorine-M [( 3H]oxo-M) binding by muscarinic antagonists that are functionally non-selective (atropine), ileoselective (4-DAMP) or cardioselective (gallamine, pancuronium, vecuronium, himbacine) was investigated in guinea-pig atrial and ileal longitudinal muscle membranes. [3H]Oxo-M bound to a single population of high affinity sites in atrial (KD = 11.40 nM) and ileal (KD = 6.15 nM) membranes. Atropine displaced [3H]oxo-M binding sites in a competitive manner, showing similar affinities in the two tissues. 4-DAMP showed two binding sites in ileum but not in atria. The dissociation constant at the high affinity site in ileum was ca 5-fold lower than the value observed in atria, indicating ileoselectivity. Vecuronium also displaced [3H]oxo-M binding in a competitive manner and exhibited similar affinities in both tissues. Gallamine, pancuronium and himbacine displayed two binding sites in each of the two tissues with the majority of sites (ca. 60-80%) showing high affinity. Overall the cardioselective antagonists do not exhibit any consistent correlation between the affinities found in functional experiments and those determined in binding experiments.

Animals↗

Cyproheptadine displays high affinity for muscarinic receptors but does not discriminate between receptor subtypes.

The affinity of cyproheptadine for different muscarinic receptor subtypes was investigated in vitro by functional experiments in field-stimulated vas deferens of the rabbit (ganglionic M1- and cardiac M2-receptors) and in guinea-pig ileum (smooth muscle M3-receptors). Cyproheptadine displayed high but similar affinity for all muscarinic receptor subtypes studied (pA2 = 7.99-8.02). In contrast, (+)-telenzepine (M1 over M2 and M3), and for mefurtramine (M2 over M3 and M1) were found to be selective.

Animals↗

Occurrence, specific binding sites and functional effects of endothelin in human cardiopulmonary tissue.

Endothelin (ET)-like immunoreactivity (-LI) was detected in the human cardiopulmonary system, with the highest levels being found in the left anterior descending coronary artery, followed by the lung, right atrium, pulmonary artery, bronchus, pulmonary vein and left ventricle. Chromatographic characterization showed that the ET-LI in the lung and left ventricle corresponded to synthetic ET-1. Specific, high-affinity binding sites for ET-1, with an extremely slow dissociation rate, were found in the lung, right atrium and left ventricle. Displacement studies revealed a rank order of potency of ET-1 greater than ET-2 and sarafotoxin 6b greater than ET-3 and big ET-1. Scatchard analysis indicated a single receptor population in the lung (KD 1.53 x 10(-10) M) and left ventricle (KD 3.0 x 10(-11) M). In functional experiments, ET-1 evoked concentration-dependent, long-lasting vasoconstriction of a higher potency than that evoked by ET-2 and ET-3 in epicardial coronary arteries as well as in pulmonary arteries. ET-1 and ET-2 also showed bronchoconstrictor activity at considerably lower concentrations (threshold 10(-11) M) of ET-1 than those needed to cause vasoconstriction (10(-9) M). ET-LI, mainly consisting of ET-1, occurs in human cardiopulmonary tissue. Specific, high-affinity sites with irreversible binding for ET-1 are found in both the heart and lung. ET-1 is more potent than ET-2 or ET-3 in displacing ET-1 binding and in causing vasoconstriction and bronchoconstriction. Thus, in the human heart and lung, ET-1 seems to be the most abundant and biologically active of the endothelin peptides.

Adult↗

Affinity profiles of pizotifen, ketotifen and other tricyclic antimuscarinics at muscarinic receptor subtypes M1, M2 and M3.

The affinity of pizotifen, ketotifen and other tricyclic antimuscarinic drugs for different muscarinic receptor subtypes was investigated in vitro in functional experiments with field-stimulated vas deferens of the rabbit (M1 and M2 receptors) and with ileum and trachea of the guinea-pig (M3 receptors). All compounds were competitive antagonists in the three tissues. Like the close analogue cyproheptadine (pA2 = 7.99-8.08), pizotifen (pA2 = 7.23-7.81) and ketotifen (pA2 = 6.34-6.99) were devoid of selectivity for the receptor subtypes studied. Thiazinamium, although exhibiting high affinity for muscarinic receptors (pA2 = 7.83-8.51), was found to be non-selective. In contrast, the novel pirenzepine analogue nuvenzepine was selective for M1 receptors (pA2 = 6.63-7.74). The lack of selectivity of cyproheptadine, pizotifen and ketotifen is reflected in the chemical structures of these drugs. All three antagonists are composed of a very similar tricyclic ring system linked to a 1-methyl-4-piperidylene ring. The finding that thiazinamium, pizotifen and cyproheptadine were potent muscarinic antagonists and possessed non-selective affinity characteristics may have therapeutic implications.

(4-(m-Chlorophenylcarbamoyloxy)-2-butynyl)trimethy↗

Characterization of [3H]meta-chlorophenylbiguanide binding to 5-HT3 receptors in N1E-115 neuroblastoma cells.

The binding characteristics of a radiolabelled 5-HT3 receptor agonist, [3H]meta-chlorophenylbiguanide (mCPBG), were examined in membranes from N1E-115 neuroblastoma cells. Scatchard plots of saturation binding data showed the presence of two populations of binding sites, with Kd = 0.03 +/- 0.01 nM and 4.4 +/- 1.2 nM and Bmax = 11.9 +/- 4.2 and 897.9 +/- 184.7 fmol/mg protein respectively. Competition studies with a selection of agonists and antagonists revealed the pharmacological profile expected for a 5-HT3 receptor. The rank order of potency for antagonists was granisetron > quipazine > GR65630 > ondansetron > MDL72222, and for agonists was mCPBG > 5-HT (5-hydroxytryptamine, serotonin) > 2-methyl-5-HT. IC50 values for 5-HT and 2-methyl-5-HT were lower than those observed using radiolabelled antagonists, and combined with functional experiments, the data suggest that [3H]mCPBG may label high affinity desensitized states of the receptor. We conclude that [3H]mCPBG labels 5-HT3 receptors in N1E-115 neuroblastoma cell membranes and may be a useful compound with which to explore 5-HT3 receptors in other systems.

Animals↗

Cloning, functional expression and tissue distribution of human alpha 1c-adrenoceptor splice variants.

We report the cloning and characterization of two isoforms of human alpha 1c-adrenoceptor cDNA (alpha 1c-2, alpha 1c-3). These isoforms are generated by alternative splicing and differ from the clone we previously isolated (alpha 1c-1) in their length and sequences of the C-terminal domain. Tissue distribution of mRNAs showed that these variants co-express with alpha 1c-1 in the human heart, liver, cerebellum and cerebrum. Despite the structural differences, functional experiments in transfected CHO cells showed that the three isoforms have similar ligand binding properties, and all couple with phospholipase C/Ca2+ signaling pathway.

Alternative Splicing↗

A micro-method for the study of in vitro lymphocyte transformation to specific antigens.

A quantitative method for studying blast-transformation of cultured lymphocytes in the presence of specific antigens is described. The technique is performed in 0.3 ml microtrays, using 2.5 X 10(5) lymphocytes per culture, with an optimal culture period of 6 days. Cultures are pulsed for 4 h with [3H]-thymidine, giving maximum incorporation and minimum cellular damage. The study also describes some disadvantages of using lymphocyte responses to phytohaemagglutinin (PHA), as a marker of T-cell function. Experiments to establish ideal conditions for each stage of the method are described. The technique can be adjusted to accommodate different antigens, cell types and for the study of animal as well as human lymphocytes.

Epitopes↗

Beta-adrenoceptors in human tracheal smooth muscle: characteristics of binding and relaxation.

Specific binding of [125I]-(-)-cyanopindolol to human tracheal smooth muscle membranes was saturable, stereo-selective and of high affinity (Kd = 5.3 +/- 0.9 pmol/l and RT = 78 +/- 7 fmol/g tissue). The beta 1-selective antagonists atenolol and LK 203-030 inhibited specific [125I]-(-)-cyanopindolol binding according to a one binding site model with low affinity in nearly all subjects, pointing to a homogeneous beta 2-adrenoceptor population. In one subject using LK 203-030 a small beta 1-adrenoceptor subpopulation could be demonstrated. The beta-mimetics isoprenaline, fenoterol, salbutamol and terbutaline recognized high and low affinity agonist binding sites. Isoprenaline's pKH- and pKL-values for the high and low affinity sites were 8.0 +/- 0.2 and 5.9 +/- 0.3 respectively. In functional experiments isoprenaline relaxed tracheal smooth muscle strips having intrinsic tone with a pD2-value of 6.63 +/- 0.19.

Atenolol↗

Heterogeneity of alpha-2 adrenergic receptors.

Alpha adrenergic receptors are subdivided into alpha-1 and alpha-2 subtypes on the basis of their pharmacologic properties. An evaluation of data from radioligand binding and functional experiments indicates that the receptors classified as alpha-2 are not a homogeneous group. The best example of this heterogeneity is the differences in the pharmacologic properties of alpha-2 receptors in rodent and non-rodent mammalian species. Prazosin generally has a high affinity for rodent alpha-2 receptors, but a low affinity for non-rodent alpha-2 receptors, while oxymetazoline is more potent at non-rodent alpha-2 receptors. A definition of alpha-2 adrenergic receptor subtypes is proposed with prazosin having a lower affinity (200-300 nM) at alpha-2A receptors and a higher affinity (5-10 nM) at alpha-2B receptors. Using this definition, the human platelet appears to have only the alpha-2A subtype, while all the receptors in the neonatal rat lung are of the alpha-2B subtype. The rat brain has roughly equal amounts of alpha-2A and -2B receptors while in the rat submandibular gland, about 85% of the receptors are alpha-2A. The ability to pharmacologically define putative alpha-2 adrenergic receptor subtypes should promote the development of additional subtype selective drugs which will increase our understanding of adrenergic pharmacology and may provide new therapeutic approaches.

Animals↗

Space motion sickness.

Space motion sickness, presumably triggered by sudden entry into a weightless environment, occurred with unexpected frequency and severity among astronauts who flew the Skylab missions. Recovery from symptoms was complete within 3-5 days, and as revealed by the Skylab M131 Human Vestibular Function Experiment, all crewmembers were immune to experimentally induced motion sickness after mission day 8. This syndrome has been recognized as a possible threat to the early mission well-being and operational efficiency of at least some individuals who will fly space missions in the future. The causes of space motion sickness are not clearly understood, nor have satisfactory methods been identified to date for its prediction, prevention and treatment. In order to minimize the potential impact of this syndrome on Space Shuttle crew operations the National Aeronautics and Space Administration has organized a broad program of inter-disciplinary research involving a large number of scientists in the United States. Current research on the etiology of space motion sickness is based to a large extent on the so called sensory conflict theory. Investigations of the behavioral and neurophysiological consequences of intralabyrinthine, as well as intermodality sensory conflict are being performed. The work in this area is being influenced by the presumed alterations that occur in otolith behavior in weightlessness. In addition to sensory conflict, the possible relationship between observed cephalad shifts of body fluids in weightlessness and space motion sickness is being investigated. Research to date has failed to support the fluid shift theory. Research underway to identify reliable test methods for the prediction of susceptibility to space motion sickness on an individual basis includes attempts to (a) correlate susceptibility in different provocative environments; (b) correlate susceptibility with vestibular and non-vestibular response parameters, the latter including behavioral, hemodynamic and biochemical factors and (c) correlate susceptibility with rate of acquisition and length of retention of sensory adaptation. Controlled studies are also being performed during parabolic flight as a means of attempting to validate predictive tests for susceptibility to this syndrome. Research to develop new or improved countermeasures for space motion sickness is underway in two primary areas. One of these involves anti-motion sickness drugs. Significant achievements have been realized with regard to the identification of new highly efficacious drug combinations, dose levels and routes of administration. Although pronounced individual variations must be accounted for in selecting the optimum drug and dose level, combinations of promethazine plus ephedrine or scopolamine plus dexidrine are presently the drugs of choice. Work is also underway to identify side effects associated with anti-motion sickness drug use and to identify new drugs which may selectively modify activity in central neural pathways involved in motion sickness. In addition to research on drugs, efforts are being made to develop practical vestibular training methods. Variables which influence rate of acquisition of adaptation, length of retention of adaptation and transfer of protective adaptation to new environments are being evaluated. Also, included in this area is the use of biofeedback and autogenic therapy to train individuals to regulate autonomic responses associated with motion sickness. While valuable new knowledge is expected to evolve from these combined research programs, it is concluded that the final validation of predictive tests and countermeasures will require a series of controlled space flight experiments.

Adaptation, Physiological↗

The role of substance P in arterial chemoreflex control of ventilation.

The postulate that Substance P (SP) plays a neurotransmitter-like role in the arterial chemo- and thermoreflex control of ventilation was examined in conscious rabbits. The investigation was based on CNS neurotransmitter criteria and involved morphological studies using a monoclonal SP antibody, and functional experiments which compared within-animal responses to severe arterial hypoxia (PaO2 less than 35 mm Hg) and to intracisternal SP infusions. Experiments were performed in normal rabbits, and in rabbits pretreated at birth with capsaicin. The data support a neurotransmitter-like role for SP in the arterial chemo- and the thermoreflex control of ventilation, and there appear to be SP-dependent collateral chemoreflex pathways which block thermoregulatory panting through an inhibitory interneuron system.

Afferent Pathways↗

Influence of cerebrovascular parasympathetic nerves on resting cerebral blood flow, spontaneous vasomotion, autoregulation, hypercapnic vasodilation and sympathetic vasoconstriction.

Activation of perivascular parasympathetic nerves enhances cerebral blood flow. In the present experiments, functional aspects of this flow regulating capacity were investigated. It was found that parasympathetic nerve stimulation does not facilitate the normalization of the cerebral blood flow reduced by sympathetic stimulation. In contrast, activation of sympathetic nerves may contribute to a rapid normalization of the cerebral blood flow increased by parasympathetic stimulation. The lower limit of cerebral autoregulation is shifted towards higher blood pressures in parasympathetically denervated rats. Parasympathetic nerves do not influence hypercapnic cerebral vasodilatation, but CO2 influence the effect of parasympathetic stimulation on cerebral blood flow. We conclude that activity in parasympathetic nerves does not contribute to cerebral vasomotion.

Animals↗

Further concerns over Cheng-Prusoff analysis.

In his article in last month's issue of TiPS (14, 89-91), Douglas Craig discussed the application of the Cheng-Prusoff relationship to the analysis of antagonists in functional experiments. Craig described how the translation of this method from biochemistry to pharmacology can be accompanied by errors due to theoretical misunderstanding. He also emphasized the lower level of rigour associated with this means of estimating antagonist affinity constants compared with Schild analysis. In this article, Paul Leff and Iain Dougall extend Craig's arguments by describing some additional ways in which the application of the Cheng-Prusoff method to pharmacological experiments are likely to result in misinterpretation and erroneous estimates of antagonist affinity.

Animals↗

Seedling growth and development on space shuttle.

Young pine seedlings, and mung bean and oat seeds were flown on shuttle flights, STS-3 and STS-51F, in March, 1982 and July/August, 1985, respectively. The plant growth units built to support the two experiments functioned mechanically as anticipated and provided the necessary support data. Pine seedlings exposed to the microgravity environment of the space shuttle for 8 days continued to grow at a rate similar to ground controls. Pine stems in flight seedlings, however, averaged 10 to 12% less lignin than controls. Flight mung beans grew slower than control beans and their stems contained about 25% less lignin than control seedlings. Reduced mung bean growth in microgravity was partly due to slower germination rate. Lignin also was reduced in flight oats as compared to controls. Oats and mung beans exhibited upward growing roots which were not observed in control seedlings. Chlorophyll A/B ratios were lower in flight tissues than controls. The sealed PGCs exhibited large variations in atmospheric gas composition but the changes were similar between flight and ground controls. Ethylene was present in low concentrations in all chambers.

Avena↗

New perspectives in the function of pituitary folliculo-stellate cells.

Classical morphological studies of the folliculo-stellate (FS) cells of the anterior pituitary have suggested that these cells play roles as supporting cells, in metabolism and in macromolecular transport. Over the last 10 years the details of their activity in both trophic and catabolic processes has been clarified, and recent work has demonstrated several transport systems in these cells. Various novel peptides with growth factor or cytokine activity have been identified in FS cells and/or FS cell conditioned media. These recent functional experiments confirm and extend previous morphological and experimental studies, and in addition open new perspectives on the physiological roles of FS cells.

Animals↗

[Leu31, Pro34] NPY, a selective functional postjunctional agonist at neuropeptide-Y receptors in anaesthetised rats.

Neuropeptide Y (NPY), a sympathetic cotransmitter, has both prejunctional and postjunctional actions in the cardiovascular system. In the bioassay system used here NPY attenuates cardiac vagal action (an indicator of prejunctional or Y2 action) and increases blood pressure (an indicator of postjunctional or Y1 action). [Leu31,Pro34]NPY has little or no prejunctional activity i.e. does not attenuate cardiac vagal action, but increases blood pressure as effectively as NPY. [Leu31,Pro34]NPY can therefore be used in functional experiments to distinguish between the two types of NPY receptor.

Anesthesia, General↗

Location of neurones with cardiovascular and respiratory function, at the ventral surface of the cat's medulla.

A study has been made of the ventral surface of the medulla, to identify neurones with cardiovascular and respiratory functions. Experiments were performed on chloralose-anaesthetized, artificially ventilated cats. Ventral medullary neurones were stimulated by microinjections of excitant amino acid (which selectively activates cell bodies), and responses measured in blood pressure, heart rate, renal sympathetic and phrenic nerve activity. A small region of ventral medulla was found, corresponding to the "glycine-sensitive area", from which large increases in blood pressure and renal nerve activity were evoked by amino acid injections. More caudally, another cell group was localized lateral to the hypoglossal nerve roots, and these neurones depressed blood pressure and renal nerve activity. Two distinct regions were found to increase phrenic nerve activity: rostral to the pressor neurones, encroaching on the trapezoid body (roughly corresponding to area "M"), and a caudal group, close to the depressor neurones (i.e. lateral to the hypoglossal roots). No respiratory response could be evoked from medial to the hypoglossal roots (area "L") and stimulation of neurones in area "S" generally depressed phrenic activity. Neurones with cardiovascular and respiratory actions could be distinguished anatomically. Their locations have been mapped and compared with previous studies.

Animals↗