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Effects of 6-hydroxydopamine on pre- and post-junctional 5-HT1-like receptor-mediated responses in dog saphenous vein.

To investigate whether 5-HT1-like receptor-mediated inhibition of adenosine 3':5'-cyclic monophosphate (cyclic AMP) accumulation occurs in nerves or smooth muscle of saphenous vein, infusions of 6-hydroxydopamine (6-OHDA) were administered to dogs with the aim of inducing sympathetic nerve damage. The effects of 6-OHDA on other 5-HT1-like receptor-mediated responses at the pre- and post-junctional level were investigated for comparison by studying 5-hydroxytryptamine (5-HT)-induced inhibition of 3H-noradrenaline release and contraction of smooth muscle respectively. Disruption of nerve function by 6-OHDA was revealed by the lack of catecholaminergic fluorescence and neurogenic contractile responses in saphenous veins from dogs treated with 6-OHDA. In addition, severe impairment of neuronal uptake mechanisms were apparent since basal efflux of 3H-noradrenaline, electrically-evoked release of 3H-noradrenaline and remaining 3H-noradrenaline content were considerably reduced. Some 3H-noradrenaline was taken up and released in 6-OHDA-treated tissues which is consistent with the existence of nerve varicosities resistant to the present dosing regime of 6-OHDA, an observation substantiated by electron microscopy studies showing inconsistent lesions of nerve terminals. 6-OHDA pre-treatment potentiated the smooth muscle contractile responses mediated by 5-HT1-like receptors as well as potentiating 5-HT-evoked inhibition of prostaglandin E2-stimulated cyclic AMP accumulation. It did not, however, affect 5-HT-induced inhibition of 3H-noradrenaline release. The present results suggest that inhibition of cyclic AMP accumulation by 5-HT occurs predominantly in smooth muscle.

Animals↗

Effects of A1-adenosine receptor antagonists on purinergic transmission in the guinea-pig vas deferens in vitro.

1. Intracellularly recorded excitatory junction potentials (ej.ps) were used to study the effects of adenosine receptor antagonists on neurotransmitter release from postganglionic sympathetic nerve terminals in the guinea-pig vas deferens in vitro. 2. The A1 adenosine receptor antagonists, 8-phenyltheophylline (10 microM) and 8-cyclopentyl-1,3-dipropylxanthine (0.1 microM), increased the amplitude of e.j.ps evoked during trains of 20 stimuli at 1 Hz in the presence, but not in the absence, of the alpha2-adrenoceptor antagonist, yohimbine (1 microM) or the non-selective alpha-adrenoceptor antagonist, phentolamine (1 microM). 3. Adenosine (100 microM) reduced the amplitude of e.j.ps, both in the presence and in the absence of phentolamine (1 microM). This inhibitory effect of adenosine is most likely caused by a reduction in transmitter release as there was no detectable change in spontaneous ej.p. amplitudes. 4. In the presence of phentolamine, application of the adenosine uptake inhibitor, S-(p-nitrobenzyl)-6-thioinosine (0.1 microM), had no effect on ej.p. amplitudes. 5. The phosphodiesterase inhibitor, 3-isobutyl-1-methylxanthine (100 microM), significantly increased the amplitudes of all e.j.ps evoked during trains of 20 stimuli at 1 Hz, both in the presence and in the absence of phentolamine (1 microM). 6. These results suggest that endogenous adenosine modulates neurotransmitter release by an action at prejunctional A1 adenosine receptors only when alpha2-adrenoceptors are blocked.

1-Methyl-3-isobutylxanthine↗

Dual effects of adenosine on acetylcholine release from myenteric motoneurons are mediated by junctional facilitatory A(2A) and extrajunctional inhibitory A(1) receptors.

1. The coexistence of both inhibitory A(1) and facilitatory A(2) adenosine receptors in the rat myenteric plexus prompted the question of how adenosine activates each receptor subtype to regulate cholinergic neurotransmission. 2. Exogenously applied adenosine (0.3-300 microm) decreased electrically evoked [(3)H]acetylcholine ([(3)H]ACh) release. Blocking A(1) receptors with 1,3-dipropyl-8-cyclopentylxanthine (10 nm) transformed the inhibitory action of adenosine into a facilitatory effect. Adenosine-induced inhibition was mimicked by the A(1) receptor agonist R-N(6)-phenylisopropyladenosine (0.3 microm), but the A(2A) agonist CGS 21680C (0.003 microm) produced a contrasting facilitatory effect. 3. Increasing endogenous adenosine levels, by the addition of (1) the adenosine precursor AMP (30-100 microm), (2) the adenosine kinase inhibitor 5'-iodotubercidin (10 microm) or (3) inhibitors of adenosine uptake (dipyridamole, 0.5 microm) and of deamination (erythro-9(2-hydroxy-3-nonyl)adenine, 50 microm), enhanced electrically evoked [(3)H]ACh release (5 Hz for 40 s). Release facilitation was prevented by adenosine deaminase (ADA, 0.5 U ml(-1)) and by the A(2A) receptor antagonist ZM 241385 (50 nm); these compounds decreased [(3)H]ACh release by 31+/-6% (n=7) and 37+/-10% (n=6), respectively. 4. Although inhibition of ecto-5'-nucleotidase by alpha,beta-methylene ADP (200 microm) or by concanavalin A (0.1 mg ml(-1)) attenuated endogenous adenosine formation from AMP, analysed by HPLC, the corresponding reduction in [(3)H]ACh release only became evident when stimulation of the myenteric plexus was prolonged to over 250 s. 5. In summary, we found that endogenously generated adenosine plays a predominantly tonic facilitatory effect mediated by prejunctional A(2A) receptors. Extracellular deamination and cellular uptake may restrict endogenous adenosine actions to the neuro-effector region near the release/production sites.

5'-Nucleotidase↗

The roles of stored calcium in contractions of cat tracheal smooth muscle produced by electrical stimulation, acetylcholine and high K+.

Effects of direct or indirect (nerve-mediated) muscle stimulation, acetylcholine (ACh), caffeine and procaine on the membrane and mechanical properties of smooth muscle cells of the cat trachea were investigated by means of double sucrose-gap and isometric tension recording methods. Outward current pulses (2 s in duration) applied to the muscle tissue in the presence of tetrodotoxin (10(-7)M), atropine (10(-6)M) and propranolol (10(-6)M) evoked no action potential (spike); however, when the depolarization exceeded 9 mV, a contraction was evoked. The spike and contraction evoked by outward current pulses in the presence of tetraethylammonium (TEA, 10 mM) were suppressed by treatment of the tissue with either Ca2+-free EGTA (2 mM) containing solution or Mn2+ (5 mM). In the presence of procaine (10 mM), outward current pulses evoked an action potential but no contraction. Field stimulation of short duration (50 microseconds) applied to the whole tissue produced an excitation of the intrinsic nerves and evoked excitatory junction potentials (e.j.ps), and when the amplitude of e.j.ps exceeded 4 mV, a twitch contraction occurred. E.j.p. was more effective in producing a contraction than was the membrane depolarization evoked by outward current pulses. Amplitudes of contractions evoked by exogenous ACh (10(-5)M) were much larger than those evoked by 128 mM-[K]0 or caffeine (10 mM), in normal Krebs solution. When the amplitudes of the contractions produced by 128 mM [K]0 were defined as a relative amplitude of 1.0, the mean amplitudes of contraction produced by ACh (10(-5)M) or caffeine were 2.5 +/- 0.20 or 1.2 +/- 0.26, respectively. In Ca2+-free EGTA (2 mM)-containing solution, the contraction induced by 128 mM-[K]0 was rapidly abolished, whereas the contractions evoked by caffeine (10 mM) or the initial phasic contraction produced by ACh (10(-5)M) were largely unaffected. When the amount of Ca2+ stored in the muscle cell was estimated from the amplitude of caffeine-induced contraction evoked in Ca2+-free solution, procaine (10 mM) applied simultaneously with Ca2+, after depletion of Ca2+ from the cells by means of caffeine, increased the amount of Ca2+ stored to 1.31 +/- 0.14 (n = 6) times the control value. However, ACh (10(-7)M) or excess concentrations of [K]0 applied with Ca2+ did not increase the amount of Ca2+ stored in the caffeine-sensitive intracellular compartment. 8 These results indicate that the amount of Ca2 + stored in the smooth muscle cells of the cat trachea may be larger than other visceral smooth muscle and plays an important role in the initiation of contraction, in response to endogenous or exogenous ACh.

Acetylcholine↗

Actions of indomethacin and prostaglandins on neuro-effector transmission in the dog trachea.

Neuro-effector transmission in the smooth muscle layer of the dog trachea was studied in vitro using the micro-electrode and double sucrose gap methods.1. Electrical field stimulations with short duration (50-100 musec) applied to the whole tissue produced an excitation of the intrinsic nerves, and evoked excitatory junction potentials (e.j.p.s) followed by twitch tension development and subsequent long lasting relaxation of the smooth muscle tissue.2. The effects of field stimulations were abolished by tetrodotoxin (2 x 10(-7)m), and atropine (1.7 x 10(-5)m) selectively blocked both the e.j.p. and twitch tension. On the other hand, propranolol (1.9 x 10(-5)m) suppressed the generation of the prolonged relaxation evoked by the field stimulations.3. E.j.p.s recorded by the double sucrose gap method showed gradual and continuous reduction in amplitude during prolonged exposure in Krebs solution (1-2 hr), and there were no changes in the membrane potential or in the input membrane resistance.4. With application of indomethacin (10(-5)m), a gradual and continuous reduction in the amplitude of e.j.p. was no longer observed, and (after the initial increase in the amplitude) e.j.p.s with a constant amplitude were obtained during 1-1.5 hr. Indomethacin (10(-5)m) modified neither the resting membrane potential nor the input membrane resistance of smooth muscle cells.5. After pre-treatment with indomethacin, low concentrations (10(-11)-10(-8)m) of prostaglandin E(1) or E(2) (PGE series) markedly suppressed the amplitude of e.j.p. with no changes in the resting membrane potential or in the input membrane resistance.6. During the repetitive field stimulation at the stimulus frequency of 0.1-1 Hz, the amplitude of the e.j.p.s was gradually reduced (the depression process). The depression was not affected by applications of prostaglandins, indomethacin or alpha- and beta-adrenoceptor blockers.7. These results indicate that in the dog tracheal smooth muscles, the endogenous PGE series may play an important role in feed-back inhibitory mechanisms, at the nerve terminals related to acetylcholine release.

Animals↗

Diltiazem-induced vasodilatation of smooth muscle cells of the canine basilar artery.

1 The effects of diltiazem on smooth muscle cells of the canine basilar artery were investigated by means of microelectrode, double sucrose gap and isometric tension recording methods. 2 The mean membrane potential of the smooth muscle cells was -49.8 mV and they were electrically quiescent. Diltiazem (over 10(-5) M) depolarized the membrane. After pretreatment with 5 and 10 mM tetraethylammonium (TEA), an outward current pulse (1 and 2 s in duration) produced a spike and this spike was abolished by application of 10(-5) M diltiazem. 3 The spike could also be generated by the excitatory junction potential (e.j.p.) evoked by perivascular nerve stimulation (0.05 ms in pulse duration) in the presence of 5 mM TEA. Diltiazem (greater than 10(-6) M) suppressed both the spike and the e.j.ps, the suppression being more apparent for spike generation. The amplitude of the e.j.ps was reduced by diltiazem in concentrations greater than 10(-6) M. The effects were dose-dependent: when the amplitude of e.j.ps was reduced by application of diltiazem, the resulting mechanical response was also proportionally smaller. 4 The contractions evoked by 128 mM [K]o, 10(-3) M adenosine 5'-triphosphate (ATP) or, NaCl-free solution were abolished in Ca-free solutions containing 2 mM EGTA, but the amplitude of caffeine-induced contraction (10 mM) was only slightly reduced. Diltiazem, in concentrations above 3 X 10(-7) M suppressed the contraction evoked by excess [K]o, ATP or caffeine, but the inhibitory action of diltiazem on the K-induced contraction was greatest. 5 Following pretreatment with 2.5 mM [Ca]o, a contraction was evoked by caffeine in Ca-free solution. The amplitude of the caffeine-induced contraction was increased by simultaneous application of 2.5 mM [Ca]o with 128 mM [K]o and to a lesser extent by simultaneous application of 2.5 mM [Ca]o with 5.9 mM [K]o. The amplitude of the caffeine-induced contraction generated in the presence of 5.9 mM or 128 mM [K]o was suppressed to the same extent by application of diltiazem [10(-5) M) during preincubation in [Ca]o. This result suggests that the Ca stored in cell is replenished by Ca-influx from [Ca]o during the resting and active states of the membrane, and that diltiazem has no effect on the mobilization of Ca stored in the cell. 6 Thus, diltiazem acts on the canine basilar artery suppressing the Ca-influx during the active condition as a Ca-spike suppressor and the voltage-dependent Ca-influx induced by excess [K]o or by chemical depolarization. Diltiazem has no effect on the Ca mobilization from the store site. This agent also suppresses the amplitude of e.j.ps due to inhibition of the release of chemical transmitter from nerve terminals following the suppression of the Ca-influx. Diltiazem appears to act as a vasodilator on the canine basilar artery.

Adenosine Triphosphate↗

NANC inhibitory neuromuscular transmission in the hamster distal colon.

The neurotransmitter(s) that generate the inhibitory junctional potential (IJP) in the circular muscle of hamster distal colon and their mechanisms have not been elucidated. The aim of the present study, therefore, was to determine the contributing roles of the non-adrenergic, non-cholinergic (NANC) inhibitory transmitter(s) including nitric oxide (NO), adenosine 5'-triphosphate (ATP) and vasoactive intestinal polypeptide (VIP) in the generation of IJP in the hamster distal colon. For this purpose, the effects of the corresponding blockers of these putative NANC inhibitory mediators have been investigated using microelectrode technique. Intracellular membrane potential recordings were made from smooth muscle cells at 35 degrees C in Tyrode's solution that contained atropine (0.5microM), guanethidine (3microM) and nifedipine (0.5microM). Single electrical stimuli (0.5ms, 50V) as well as trains of two and five pulses (20Hz at the same duration and voltage) elicited NANC IJP consisted of initial fast (IJP-F) followed by a slow hyperpolarization (IJP-S). The response had been abolished by tetrodotoxin (TTX, 0.3microM). The nitric oxide synthase (NOS) inhibitor, N(G)-nitro-L-arginine methyl ester (L-NAME; 200microM) blocked IJP-S but enhanced IJP-F. The later had been blocked with suramin, a universal P2 receptor antagonist, or with CBF3GA, a P2Y receptor antagonist at dose-dependent fashions. The IJP-F had been markedly inhibited by desensitization of P2Y receptor with its putative agonist 2-methylthio-ATP (2-meSATP, 50microM for 30min). IJP-F was sensitive to the P2Y1 receptor specific antagonist A3P5PS (10microM) and to the G-protein inhibitor, pertussis toxin (PTX, 400ng/ml for 2h) as well as to the small and intermediate Ca(2+) sensitive K(+) channels blocker, apamin (0.3microM). IJP-S was blocked by the guanylate cyclase (GC) inhibitor, 1H-[1,2,4]oxadiazolo-[4,3-a]quinoxalin-1-one (ODQ, 10microM) and was partially sensitive to apamin. Exogenously applied ATP (100microM-1mM) produced typical hyperpolarization that was blocked by suramin, CBF3GA and 2-meSATP desensitization; while exogenously applied NO (3-10microM) produced slowly developing hyperpolarization that was not blocked by L-NAME but ODQ. In the presence of both purinergic and nitrergic inhibitors, stimulation using a train of eight pulses at 25Hz evoked a small slow hyperpolarization that was sensitive to the VIP antagonist (VIP 6-28, 1microM). Exogenous application of VIP (1-10microM) produced similar response that was not evident in the presence of VIP 6-28. These data indicate that NANC IJP that is generated in the circular muscle cells of hamster distal colon is mediated by ATP and NO via P2Y1/P2Y2 receptor and GC-dependent pathways, respectively. A masked role for VIP is also indicated.

Adenosine Triphosphate↗

The effects of ricin on the sympathetic vascular neuroeffector system of the rabbit.

Ricin is a toxic lectin that inhibits protein synthesis. Because ricin decreases arterial pressure and causes cardiovascular collapse, its effects on the vascular neuroeffector system were investigated. Rabbits were given either of two doses of ricin, and then norepinephrine (NE) release from aorta to transmural stimulation, NE uptake into aorta, NE content of aorta, monoamine oxidase activity, and catechol-O-methyl transferase activity in aorta were determined 18 hours, 4 days or 7 days later. Norepinephrine uptake and enzyme activities in the aorta were not altered by ricin administration. Norepinephrine release and content of aorta were increased at most time periods following ricin administration, significantly so for NE content at 4 days and for release at 18 hours following the lower dose of ricin. We conclude that the mechanisms involved in the release of NE from sympathetic nerves in the vasculature are not impaired by ricin administration, but rather show changes that indicate increased compensatory activity.

Animals↗

Brain macrophages: neurotoxic or neurotrophic effector cells?

The development of the central nervous system and various pathological contexts imply remodeling or alteration of neuronal networks associated with tissue recruitment of mononuclear phagocytes. Purification and culture of brain macrophages have provided a tool for investigating the functions of these cells. We discuss different mechanisms whereby macrophages could directly influence the survival of neurons and the growth of their processes.

Brain↗

Long-term administration of 1,3-dipropyl-8-sulphophenylxanthine (DPSPX) alters alpha 2-adrenoceptor-mediated effects at the pre- but not at the postjunctional level.

The present investigation was undertaken to see whether a long-term inhibition of adenosine receptors--leading to hypertension--interferes with alpha 2-adrenoceptor-mediated modulation of noradrenaline release. Rat tail arteries were removed from normal and from hypertensive animals obtained by chronic treatment with intraperitoneally infused DPSPX (1,3-dipropyl-8-sulphophenylxanthine) or orally administered L-NAME (NG-Nitro-L-arginine methyl ester). To study prejunctional effects, the influence of UK-14,304 (5-bromo-6(imidazoline-2-ylamino)-quinoxaline) and yohimbine on the overflow of tritium evoked by electrical stimulation (100 V; 1 Hz; 2 ms; 5 min) from tissues preloaded with 3H-noradrenaline was analysed. To study postjunctional effects, concentration-response curves to UK-14,304 were determined. In DPSPX-treated rats there was an enhancement of the prejunctional effects of UK-14,304: its Ec30% was reduced from 381 (250; 579) to 85 (73; 99) nmol.l-1 (n = 5; P < 0.05) and its maximal effect--expressed as percent reduction of tritium overflow-increased from 45 +/- 5% to 61 +/- 5% (n = 6; P < 0.05). In L-NAME-treated rats there was no change in either of these two parameters. At the postjunctional level, there was no change in the sensitivity to UK-14,304 in tissues from either DPSPX- or L-NAME-treated rats. Yohimbine (10-1000 nmol.l-1) caused a concentration-dependent increase of tritium overflow evoked by electrical stimulation in both control and hypertensive animals (either DPSPX- or L-NAME-treated).(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic alpha-Agonists↗

The effect of omega conotoxin GVIA, a peptide modulator of the N-type voltage sensitive calcium channels, on motor responses produced by activation of efferent and sensory nerves in mammalian smooth muscle.

1. The effect of omega-conotoxin (CTX) GVIA, a peptide which blocks neuronal calcium channels, were investigated on nerve-mediated motor responses in a variety of isolated smooth muscle preparations from rats and guinea-pigs. 2. In the rat or guinea-pig isolated vas deferens CTX (1 nM-1 microM) produced a concentration and time-related inhibition of the response to field stimulation, while the responses to KCl, noradrenaline or adenosine triphosphate were unaffected. In the presence of CTX a series of tetrodotoxin-resistant contractions could be elicited by field stimulation by increasing pulse width and/or voltage. 3. In the rat or guinea-pig isolated urinary bladder, CTX produced a concentration and time-dependent inhibition of twitch responses to field stimulation without affecting the response to exogenous acetylcholine. In the rat bladder the maximal effect did not exceed 25% inhibition while a much larger fraction of the response (about 70%) was inhibited in the guinea-pig bladder. The CTX-resistant response was abolished, in both tissues, by tetrodotoxin. 4. The effects of CTX in the rat bladder were also studied with a whole range of frequencies of field stimulation (0.1-50 Hz). Maximal inhibition was observed toward contractions elicited at frequencies of 2-5 Hz. At low frequencies the inhibitory effects of CTX and atropine were almost additive while at high frequencies of stimulation a large component of the atropine-sensitive response was CTX-resistant. 5. In the rat isolated proximal duodenum, field stimulation in the presence of atropine and guanethidine produced a primary relaxation followed by a rebound contraction.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Studies on the interactions between nerve fibres from para- and orthosympathetic ganglia and adreno-cortical and -medullary cells in joint culture.

The interactions between nerve fibres from para- and orthosympathetic ganglia and adreno-cortical and -medullary cells were studied in joint cultures using explanted guinea-pig ciliary and sympathetic chain ganglia and enzyme-dispersed rat adrenal gland cells. Nerve fibres from both para- and orthosympathetic ganglia made only transitory contact with cortical cells, but consistently formed associations with isolated chromaffin cells which lasted for up to 10 days. Contacts between axons and chromaffin cells often showed particularly large varicosities and frequently withstood severe tests of durability from pulls of the fibre or the cell or both. By correlating phase contrast and catecholamine histochemistry (Falck-Hillarp method) it was shown that sympathetic fibres forming long-lasting contacts with chromaffin cells were adrenergic. The functional implications of the ability of autonomic nerves to distinguish between adreno-cortical and -medullary cells and the lack of specificity shown by the para- and orthosympathetic neurons during formation of long-lasting associations with chromaffin cells are discussed.

Adrenal Cortex↗

The autonomic innervation of rabbit salivary glands studied electron microscopically after 5-hydroxydopamine administration.

In submandibular glands of rabbits both adrenergic and cholinergic axons are intimately associated with parenchymal cells of the intercalary ducts and the granular tubules, lying beneath the basement membrane and often in the space between the parenchymal cell and an associated myoepithelial cell. The submandibular acini receive a less intimate and less plentiful innervation by adrenergic and cholinergic axons which remain outside the basement membrane and are still associated with Schwann cells. Occasional axons of both adrenergic and cholinergic type occur beneath the basement membrane of submandibular striated ducts in intimate association with basal parts of the cells. In the parotid glands numerous adrenergic and cholinergic axons are found beneath the basement membrane of acini and intercalary ducts in intimate association with the cells.

Adrenergic Fibers↗

The innervation of the salivary gland of the tick, Boophilus microplus.

Salivary of the ixodid tick Boophilus microplus Canestrini are at least partially innervated by a branch of the pedipalpal nerve. Axons containing both large granular and smaller agranular vesicles were observed within the acini associated with all types of secretory cells. A modification of the Falk-Hillarp histochemical technique was used to demonstrate discrete areas of fluorescence within the salivary acini. It is suggested that the transmitter involved with the control of salivary activities is a catecholamine and may even be dopamine.

Animals↗