The influence of ramipril on blood pressure, ACE-activity, sperm density and motility of spontaneously hypertensive rats during puberty.
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Biomedical subjects
Publications and source records attributed to H Hilse.
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The paper demonstrates that in spontaneously hypertensive rats (SHR) as compared with normotensive controls exudative processes at the sites of lesions are much more prominent. Such exudative processes include edema, fibrinous exudation as well as permeability of capillaries and venular walls for leukocytes. These effects prolong the phase of its inflammation and retard the regeneration phase in wound healing. Morphine and SP1-11 stimulate in a similar fashion repair during wound healing in the both rat strains. Their effect is similar to the effect of opioid peptides. SP1-4 does not affect vessel reactivity and wound healing in SHR, which is related to disturbed expression of receptors to SP fragments. Synergism in the effect of two functional antagonists i.e. opioids and SP on wound healing confirms our hypothesis about the role of pain as an inducer of a variety of mechanisms underlying repair regeneration.
With regard to the blood pressure the regulative function of the renin-angiotensin-system (RAS) is well known. Knowledge of the last years is that components of the RAS are available also in organs and excrets of the male reproductive tract. So, the angiotensin-converting-enzyme (ACE) - a key enzyme of the RAS - exists in the testes in an extraordinary high activity exceeding those of the lung tissue. In the ejaculate this so-called "testicular ACE" is associated with sperms, whereas the seminal plasma contains the higher molecular "pulmonary ACE". Because both isoenzymes posses the same catalytic effectiveness, the occurrence of adequate substrates (angiotensin I, bradykinin) and degrading products as effectors (angiotensin II), respectively, is of high importance for the valuation of the physiological relevance of the RAS in the process of fertility. Up to date, the knowledge is still insufficient, partly even contradictory. Therefore at present the regulative function(s) of the RAS in the male reproductive tract can only be expressed as postulates.
Biochemical and immunological studies of the last years reveal the existence of an "ovarian renin-angiotensin system (RAS)". Despite of the low angiotensin-conterting enzyme (ACE) activity in the ovary the follicular fluid is rich in angiotensin II (AII). The detection of AII receptors on cells within maturating follicles proves them as AII targets. Therefore, it is supposed that AII may be involved in the regulation of fundamental processes of follicle maturation and/or corpus luteum formation. Further interesting findings are the high concentration of prorenin in the follicle fluid of women causing an increase of the prorenin blood plasma level at time of ovulation, and a second increase of the blood prorenin concentration in the middle of the luteal phase. With respect to the ACE activity in the ejaculate it is imaginable that the smooth muscle tonus of the uterus and the oviduct could be affected by local generation von AII and/or degradation of bradykinin and thus the transit of the semen may be facilitated. Further systematic research is necessary to bring more light into the physiological context and to replace hypothetical interpretations of the findings by exact knowledge.
To clarify a possible participation of the renin-angiotensin-system (RAS) in physiological processes of pregnancy, findings are listed about occurrence and variations of RAS components in uterus, placenta, amniotic fluid, fetal membranes, fetus and serum. There exist complete and independent RAS in the respective organs and tissues. During pregnancy concentrations and/or activities of the components change, but in different ways and non-uniforming. The information now available does not yet allow a definite view on the role of RAS during pregnancy and on the correlations to estrogens, progesterone, chorionic gonadotropin, prostaglandins etc. Supposedly RAS may be involved to a high degree in the local regulation of blood flow and the maintenance of fetal vascular homeostasis. Furthermore, there are relations between fetoplacental components of RAS and pregnancy-induced hypertension. Further investigations are necessary. They are expected to offer therapeutic possibilities for influencing pathological processes in which RAS plays a role.
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Selye found that in response to different stressors the body reacts with a characteristic stress syndrome: adrenal enlargement, gastrointestinal ulcera, and thymicolymphatic involution. In this paper we demonstrate that i.p. injected Substance P (SP) can prevent stress-induced involution of thymus in Wistar rats. This protecting effect on the immune system of SP, in addition to the "normalizing" effects of this peptide on stress-induced disorders in vegetative and central functions first described by Oehme and co-workers and Hecht and co-workers is a new hint to the function of SP as an "anti-stress" agent. The mode of action of the anti-stress effect of SP in adrenals as well as in the thymus is discussed. It is suggested that the anti-stress effect of SP1-11 and its N-terminal fragment SP1-4 is mediated by specific receptors in adrenals and/or thymus which are different from the so called SP-P and SP-E receptors.
The influence of adrenal demedullation on stress-related behaviour (chronic immobilization) was investigated in respect to the following parameters and physiological processes: number of animals surviving the exposure, blood pressure behaviour, endogenous opioid system, pain sensitivity, endogenous level of substance P (SP) in pituitary and hypothalamus. The results showed that chronic immobilization stress and adrenal demedullation induce the same direction of alterations of physiological processes and parameters. This fact suggests the involvement of common regulatory mechanisms both in demedullation and chronic stress. An important process in this respect may be the induction of functional insufficiency of the adrenal medulla especially concerning the adrenal peptidergic mechanisms. Contrary to the sham operated rats the demedullated animals showed differences in their stress-related behaviour of parameters of adaptive regulatory processes. In rats with demedullation either no additional stress-related alterations of parameters in relation to the general adaptation processes were induced or the demedullation-induced alterations were antagonized partially or completely by chronic immobilization.
Substance P, administered i.p. to female spontaneously hypertensive rats in the last 6 d of gestation, diminishes the age dependent increase of blood pressure especially in male offspring and the additionally stress related blood pressure increase in both sexes.
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Substance P and the N-terminal sequences SP1-9, SP1-7, SP1-4 and SP1-2 were investigated in their action on stress related alterations in blood pressure behaviour, stress related disturbances in conditioned reflex learning behaviour, alterations in the endogenous opioid system and on the blood pressure behaviour of spontaneously hypertensive rats. In addition the occurrence of vegetative effects such as acute hypertension and histamine release from mast cells were investigated. The results of this work show that N- and C-terminal sequences of the Substance P molecule differ in their actions. Whereas the vegetative effects decrease if the SP molecule is shortened from the C to the N-terminus the "antistress effect" of the Substance P molecule remains unchanged. Whereas the N-terminal tetrapeptide SP1-4 can be considered "essential" for the "antistress effect", the C-terminal pentapeptide of SP is considered to be the "essential sequence" for the vegetative effects. These results will open new possibilities for the synthesis of selectively acting SP-agonists.
In 1980 Oehme and co-workers [11] reported that Substance P (SP) has a dual effect on nociception, which is related to the pain threshold before SP administration. Our recent results showed that the N-terminal part of the SP sequence may be important to the hyperalgesic action, and the C-terminal part to the analgesic action of this peptide. The hyperalgesic effect of SP (and N-terminal fragments of SP) seems to be related to the "anti-stress" effect which was first demonstrated by Hecht and co-workers [5] and Oehme and co-workers [12]. Interaction of SP with opioid peptides could be the common reason of both the "anti-stress" effect and the hyperalgesic activity of SP.
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The influence of chronic immobilization on blood pressure and on substance P-like immunoreactivity (SPLIR) in blood plasma was examined in 11-week-old male spontaneously hypertensive rats (SHR) and male normotensive Wistar Kyoto rats (WKY). In SHR chronic immobilization caused a stop of the genetically fixed development of hypertension at the level already reached. Also, SPLIR in blood plasma was lower compared with a SHR control group without immobilization. In WKY rats chronic immobilization has no influence on blood pressure and SPLIR. The observed variations in SPLIR and blood pressure under the influence of chronic immobilization is discussed in relation to a possible function of substance P in the development of hypertension.
The substance P-like immunoreactivity (SPLIR) of plasma and adrenal medulla from spontaneously hypertensive (SHR) and normotensive WKY rats was measured by a sensitive and highly specific radioimmunoassay for substance P (SP). With increasing age the level of substance P in the adrenal medulla decreased, whereas the SP content of the plasma remained constant in both groups. The SPLIR in plasma of SHR was significantly lower than in normotensive WKY rats. After acute stress the SPLIR, especially of the adrenal medulla of WKY rats, increases, and decreases in SHR. The reason for this different behaviour is discussed and it is assumed that hyperreactions in the sympathetic system may be responsible.
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Using Gly-Pro-pNa as a substrate, the authors photometrically determined the dipeptidyl peptidase activity in organic homogenates and serum of Wistar rats at two pH values. The activity of the serine peptidase DP IV was measured at pH = 7.6; a mixed activity (DP MA) which is composed of the activities of several dipeptidyl peptidases, at pH = 5.0. Particularly high DP IV activities were determined in the kidney, lung, adrenal gland, liver and aortic arch, the differences among the enzyme activities measured in the single organic homogenates at pH = 5.0 being smaller. The DP IV activities and the values found for DP MA in the structures of the nervous system were in general lower. Maximum DP IV values were measured in the spinal ganglion, cerebral cortex and spinal bulb; and maximum DP MA values, in the hypothalamus, cerebellum and cerebral cortex. The results obtained are discussed from the aspects of the participation of these enzymes in peptidergic regulatory mechanisms and of a possible relation to blood-pressure regulation.