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E Klinge

Publications and source records attributed to E Klinge.

At least 37 records · Page 2Linked to original sources

Correlation between electrical and mechanical activity in myogenic and neurogenic control of the bovine retractor penis muscle.

The electrical and mechanical activity of fine bundles of the bovine retractor penis muscle (rp) were investigated with the sucrose-gap technique. The main results were: the muscle displayed prominent automaticity. It showed a vigorous and long lasting active response to stretch. Phasic contractions of the rp were associated with electrical firing while tonic contractions were not necessarily correlated to spike activity. Stimulation of excitatory nerves induced excitatory junction potentials (EJP). Single EJPs could elicit spikes and repetitive firing with long lasting contraction. The EJPs were abolished by phentolamine and adrenergic neuron blocking agents. Physostigmine suppressed EJPs while scopolamine and atropine enhanced them and counteracted the effect of physostigmine. This points to an endogenous neurogenic prejunctional muscarinic suppression of the excitatory adrenergic neurotransmission. Inhibitory nerve stimulation could produce an inhibitory junction potential (IJP). However, the inhibitory nerves may also act on the contractile process without an IJP as a necessary step.

Animals↗

Myocardial catecholamines and their biosynthetic enzymes in various human heart diseases.

Myocardial noradrenaline (NA) content, together with the activities of the enzymes tyrosine hydroxylase (TH) and dopamine beta-hydroxylase (DBH) was measured in biopsy specimens taken during cardiac surgery from patients with various heart diseases. Fluorescence histochemical studies were also performed on comparable specimens. The mean NA content in patients with symptomatic ischaemic heart disease (IHD) was significantly higher than that in patients with valvular heart disease (VHD), atrial septal defect (ASD) or congestive heart failure (CHF). The lowest mean NA content was found in patients with CHF. The activities of TH and DBH were highest in the IHD group, although the differences between IHD and VHD groups were not significant. Histochemical investigations of adrenergic structures showed less fluorescence intensity in the CHF than in the other 3 groups. On the other hand, the density of the adrenergic nerve net and the size and number of varicosities were greatest in patients suffering from IHD. The significance of these results is discussed in relation to the pathophysiological mechanisms underlying these various disease conditions. In IHD the high myocardial NA content creates local conditions for excessive NA release into the myocardial interstitium at the onset of ischaemia, which is known to result in several adverse local consequences.

Adult↗

Principal mechanisms controlling penile retraction and protrusion in rabbits.

The effects on penile volume of nerve stimulations and drugs injected into the systemic circulation were studied plethysmographically. Dilator responses at selective perfusion of the penile artery were studied by measuring the perfusion pressure. The main results and conclusions are: The penis has an adrenergic vasoconstrictor supply coming from the sacrococcygeal parts of the sympathetic chains. A very low (0.2 Hz) vasomotor tone keeps the penis relaxed. If this tone is interrupted the penis will protrude but autoregulation will soon take over and eventually produce hyperinvolution of the penis. Two vasodilator paths, both with pelvic ganglionic relays, were found. 1) The pelvic parasympathetic nerves, probably having mainly non-cholinergic postganglionic neurons and operating quite effectively at low frequencies. 2) The sympathetic hypogastric nerves, presumably having at least partly cholinergic postganglionic neurons which, apart from muscarinic dilation of minute inflow resistance vessels to the erectile tissue, may also work by suppression of excitatory adrenergic neurotransmission. The pelvic and hypogastric vasodilator outflows work synergistically. The vasoconstrictor nerves are very strong and efficient antagonists of the vasodilator nerves.

Animals↗

Changes in penile volume during some cardiovascular reflexes and reactions in rabbit.

The effect of various cardiovascular reflexes and reactions on the plethysmographically recorded penile volume in rabbit was investigated. Stimulation of the aortic nerve or direct stimulation of the carotid sinus produced increase in penile volume, while carotid occlusion produced decrease. Brief volume load or protoveratrine given into the right atrium produced increase in penile volume. Asphyxia, hypercapnia, hypoxia, cyanide and lobeline produced decrease in penile volume, while hypocapnia increased it. Moderate blood taps decreased penile volume, while hypocapnia increased it. Moderate blood taps decreased penile volume. With the exception of the response to asphyxia all these reactions required intact vasomotor nerves. Clonidine increased penile volume if vasomotor nerves were intact but decreased it if the penis was decentralized. Penile volume decreased in shivering animals but increased on warming. Carotid occlusion impaired erectile responses to hypogastric and pelvic nerve stimulation. In certain experiments this effect was more pronounced in the latter case. It is concluded that the medullary neuron pool responsible for penile vasomotor tone participates in general reflex cardiovascular homeostasis and that this may have implications for normal erectile responses.

Animals↗

Cholinergic and adrenergic innervation of the penis artery of the bull: transmitter concentrations and synaptic vesicles.

The penile artery of the bull contained significant amounts of acetylcholine, noradrenaline and dopamine, and its axon profiles contained either numerous small granular or agranular vesicles, as well as some large granular vesicles. In the dorsal metatarsal artery, only noradrenaline and dopamine were detectable, and the axon profiles observed contained numerous small granular vesicles. In the penile artery, the axons with small agranular vesicles, probably cholinergic axons, were in close contact with axons containing small granular vesicles. It is suggested that, in the penile artery of the bull, one of the functions of the cholinergic nerves is suppression of excitatory adrenergic neurotransmission.

Animals↗

Auricular tyrosine hydroxylase and dopamine-beta-hydroxylase activities and noradrenaline content in ischaemic heart disease.

Assessments were made of the tyrosine hydroxylase (TH) and dopamine-beta-hydroxylase (DBH) activities as well as the noradrenaline (NA) content of samples excised from right auricular tissue during cardiac surgery on a total of 55 patients with ischaemic heart disease (IHD), valvular heart disease (VHD), uncomplicated atrial septal defect (ASD) or congestive heart failure (CHF). The NA content was significantly higher in the IHD group than in the other three groups. The TH activity was highest in the IHD group although the difference was statistically significant only compared with the ASD and CHF groups. The DBH activity was also highest in the IHD group, but again the difference was statistically significant only compared with the ASD and CHF groups. In the whole material there was a significant positive correlation between the NA content and TH or DBH activity, as well as between TH and DBH activity. In the IHD group there was a significant positive correlation between heart volume and TH activity. The results suggest that at least compared with ASD and CHF, the sympathetic tone is relatively high in IHD, possibly involving an enhanced NA turnover.

Adult↗

Auricular catecholamine content in ischaemic heart disease.

The noradrenaline (NA) content (mean +/- S.D.) of tissue samples from the right atrial appendage in 19 patients with ischaemic heart disease (IHD) was 2.81 +/- 0.94 microng/g and in 7 patients with valvular heart disease (VHD) 2.79 +/- 1.12 microng/g. In 10 patients with uncomplicated atrial septal defect (ASD) the NA content was 1.64 +/- 0.32 microng/g and in 11 patients with congestive heart failure (CHF) 0.75 +/- 0.41 microng/g. The difference in NA content between the IHD group and the ASD and CHF groups is significant (p is less than 0.001). Small amounts of adrenaline and dopamine were found in all groups. There was no significant correlation between auricular NA content and either systemic diastolic blood pressure. The relatively high level of NA in the IHD group is assumed to be a contributory factor in the intracellular metabolic as well as in the systemic changes typical of ischaemia and infarction.

Adult↗

Effect of acetyl derivatives of some sympathomimetic amines on the blood pressure of the rat.

The effect of five sympathomimetic amines and some of their acetyl derivatives on the blood pressure of the rat was determined on the left carotid artery. After pretreatment with chlorisondamine (1 mg/kg subcutaneously) the blood pressure rise by sympathomimetic amines and their acetyl derivatives was compared with that of adrenaline. If the potency of adrenaline is specified as 100, the potencies of the other drugs are phenylephrine (metaoxedrinum, NFN) 37, tyramine 1.1, O-acetyltyramine 0.52, amphetamine 0.50, O-diacetylphenylephrine 0.25, ephedrine 0.23, O-acetylephedrine 0.02, N-acetylphenylephrine 0.01. The effects of N-acetyltyramine, N-acetylephedrine and N-acetylamphetamine are even weaker. Reserpine 5.0 or 0.05 mg/kg intraperitoneally 24 hours before the experiment increased the blood pressure rise by the directly acting sympathomimetic amines and their acetyl derivatives, but decreased the effects of the indirectly acting drugs. After treatment with phenoxybenzamine (2 mg/kg intraperitoneally), adrenaline exhibited the greatest blood pressure decrease and the effects of the other drugs in descending order: orciprenaline, O-acetyltyramine, phenylephrine, ephedrine, amphetamine, O-diacetylphenylephrine and O-acetylephedrine. Tyramine did not show any blood pressure decrease. The blood pressure decrease by sympathomimetic amines and by their acetyl derivatives was probably due to beta-receptor stimulation because it was prevented by propranolol. The N-acetyl derivatives recembled their parent drugs with regard to the immediate onset and short duration of their effects. The O-acetyl derivatives exhibited slower onset and longer duration of effect than their parent drugs. Physostigmine-pretreatment diminished the rise in blood pressure by O-acetyltyramine, but the effect of tyramine remained unchanged.

Amphetamines↗

Comparative study of some isolated mammalian smooth muscle effectors of penile erection.

Spontaneous rhythmic activity, responses to drugs and effects of field stimulation of nerves of the retractor penis (rp) and/or corpus cavernosum urethrae (ccu) of macaque, rabbit, guinea-pig, rat, dog, cat, horse, boar, elk, bull, ram and goat, as well as of the penile artery (pa) of bull were studied. A basic property of all these muscles was automaticity. Their responses to 5-hydroxytryptamine, histamine, adenosine triphosphate, prostaglandins E1, E2, AND F2alpha, oxytocin, vasopressin, substance P, bradykinin and angiotensin exhibited considerable species variations. Their excitatory innervation seems to be adrenergic. They also have an inhibitory innervation. In spite of comprehensive pharmacological analysis the inhibitory mediator remains obscure. The frequency--response relationship to inhibitory nerve stimulation was characterized by a rapidly achieved maximum at low frequencies, indicating high efficiency of the neuroeffector unit.

Adenosine Triphosphate↗

Suppression of the excitatory adrenergic neurotransmission; a possible role of cholinergic nerves in the retractor penis muscle.

The excitatory adrenergic response to transmural nerve stimulation of the isolated retractor penis (rp) of dog, cat, horse, boar, elk, bull, ram and goat, as well as the evoked release of 3H from dog rp preloaded with 3H-noradrenaline were studied. In untreated preparations a low concentration of scopolamine could markedly increase the excitatory adrenergic response. On the contrary, physostigmine per se suppressed this response and so did acetylcholine. Scopolamine or atropine totally prevented these suppressions. They also immediately restored the suppressed responses in spite of continuous presence of physostigmine and/or acetylcholine. In the rat rp there was no suppression of the response by physostigmine. Physostigmine decreased the evoked release of 3H and this effect was counteracted by scopolamine. The rp of dog, gelding, boar, hog, bull and ram contained considerable amounts of noradrenaline and also of acetylcholine. It is suggested that one action of cholinergic nerves in the rp is muscarine suppression of the excitatory adrenergic neurotransmission.

Acetylcholine↗

Paneth cells in experimental amyloidosis.

The effect of experimental amyloidosis on the morphology of the Paneth cells of the mouse was investigated by using light and fluorescence microscopy. Amyloidosis was induced by daily subcutaneous casein injections for 4 weeks. It was found that the number of secretory granules of the Paneth cells increased in the jejunum, but remained normal in the duodenum. Small morphological alterations took place in the Paneth cells during the induction of amyloidosis, and occasionally the Paneth cells were totally lost. These changes suggest that the function of the Paneth cells of the jejunum may be partly inhibited during experimental amyloidosis.

Amyloidosis↗

Effect of cessation of propranolol treatment on myocardial noradrenaline and acetylcholine content in the rat.

Cessation of long-term treatment of rats with propranolol 10 mg/kg/day subcutaneously produced no alteration in the myocardial noradrenaline content estimated 12, 24, 48 and 96 hours after the last propranolol injection; nor did the myocardial acetylcholine content change. These results do not support the idea that the withdrawal-rebound phenomenon caused by abrupt cessation of propranolol therapy is associated with an accumulation of the autonomic neurotransmitters in myocardial tissue.

Acetylcholine↗

Different types of synaptic vesicles in axons of the retractor penis muscle of the bull.

Three types of axon profiles were observed in the smooth muscle of the retractor penis and the penile artery of the bull: 1. profiles containing small granular vesicles, presumably representing adrenergic axons; 2. profiles containing small agranular vesicles, presumably representing cholinergic axons; 3. profiles containing numerous large and small granular vesicles. The third type of profile was not found in the vas deferens or the metatarsal artery. It is therefore possible that this type of profile represents the non-adrenergic, non-cholinergic inhibitory nerves, the presence of which has previously been pharmacologically indicated in these tissues.

Animals↗