PubMed Health⌕ Search

Biomedical subjects

G Peruzzi

Publications and source records attributed to G Peruzzi.

At least 37 records · Page 2Linked to original sources

Effect of prenatal treatment with methylazoxymethanol on carbachol-, norepinephrine- and glutamate-stimulated phosphoinositide metabolism in the neonatal, young, and adult offspring.

Carbachol-, norepinephrine- and glutamate-stimulated phosphoinositide metabolism was investigated in the neonatal, young and adult cerebral cortex slices of rats prenatally treated with methylazoxymethanol (MAM) on gestational day 15 (GD15) or GD19. In rat offspring treated on GD15 there was a significant reduction in the accumulation of [3H]inositol phosphates induced by carbachol and a significant increase in the accumulation of [3H]inositol phosphates induced by norepinephrine on day 7, whereas no changes were observed at the other ages. No significant changes, on the other hand, were observed for glutamate-stimulated phosphoinositide metabolism in GD15 treated rats and for carbachol-, norepinephrine- and glutamate-stimulated phosphoinositide metabolism in animals treated on GD19 at any of the different ages evaluated. These results indicate that treatment with MAM on GD15, which results in a marked microencephaly, causes a marked alteration of muscarinic and alpha 1-adrenergic receptor-stimulated phosphoinositide metabolism during brain development and that these alterations undergo adaptive changes in the adult brain.

Animals↗

[Cardiodepressive effects of muscular exercise in spontaneously hypertensive rats].

Conflicting results have been reported on the differences in the cardiovascular reactivity to muscular exercise between normotensive and hypertensive subjects and normotensive subjects with family history of hypertension and normotensive subjects without familial hypertensive history. Also studies performed in spontaneously hypertensive in comparison with normotensive rats have not led to final conclusions. Therefore, the aim of the present study was twofold: to evaluate cardiorespiratory reactivity to different types of muscular exercise in normotensive (WKY) compared to spontaneously hypertensive rats (SHR) at pre-hypertensive and hypertensive stages; to verify the role played by the "muscular reflex drive" in mediating the cardiorespiratory responses in rats. We utilized four groups of anesthetized rats: 8 young WKY, 8 SHR in pre-hypertensive stage, 6 adult WKY and 6 SHR in hypertensive stage. We evaluated the cardiorespiratory responses to (rhythmic) dynamic and (static) isometric contractions of gastrocnemius muscles induced by electrical stimulation of the tibial nerve. Cardiorespiratory responses during the initial phase of dynamic and static contractions of hindlimb muscles were studied. Muscle contractions were elicited by stimulating the tibial nerves at 3 and 100 Hz. We measured: mean arterial pressure (MAP), heart rate (HR), and pulmonary ventilation (VE). Both types of exercise caused a significant decrease in MAP and a significant increase in VE while HR did not change significantly. The four groups of rats did not show significant differences in the pattern of cardiorespiratory responses to muscular exercise. The cardiorespiratory reflexes initiated by activation of muscle receptors, verified by interrupting the afferents from the contracting muscles.(ABSTRACT TRUNCATED AT 250 WORDS)

Age Factors↗

Evaluation of spontaneous baroreflex modulation of sinus node during isometric exercise in healthy humans.

The purpose of this study was to 1) evaluate the baroreflex (BR) modulation of the sinus node during isometric exercise in humans by analyzing the variations in pulse interval (PI) in response to beat-by-beat spontaneous changes in systolic arterial pressure (SAP), thus avoiding external intervention to alter arterial pressure (AP); and to 2) evaluate the specific influence of muscle chemoreflex on the SAP-PI relationship. Sixteen healthy males were studied during rest, handgrip at 30% of maximum voluntary contraction [isometric handgrip (IHG)], post-IHG arrested forearm circulation (AFC), and recovery. AP and PI were measured continuously and noninvasively. A BR response was defined by series of at least three consecutive beats in which SAP and PI of the following beat either increased or decreased in a linear fashion. In nine subjects, forearm (FVR) and calf vascular resistances (CVR) were determined. Mean slope (by linear regression) of SAP-PI sequences did not significantly differ between rest, IHG, and AFC (14.1 +/- 2.0, 12.2 +/- 1.6, and 13.2 +/- 1.4 ms/mmHg, respectively), i.e., BR sensitivity was unchanged. IHG resulted in a rightward shift of the regression line relating SAP to PI. The shift was maintained during AFC, when PI returned to control and AP fell slightly but remained significantly elevated. CVR, which did not change during IHG, significantly increased during AFC, whereas FVR increased during both IHG and AFC, but not significantly. The data indicate that arterial BR is "reset" to a higher operating point during isometric exercise. Muscle chemoreflex appears to be partially involved in this modification.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Myocardial expression of atrial natriuretic factor gene in early stages of hamster cardiomyopathy.

Ventricular cardiomyocytes represent the most important source of atrial natriuretic factor (ANF) in pathological conditions such as congestive heart failure (CHF). It has been suggested that in cardiomyopathic Syrian hamster ventricles the ANF gene can be reactivated during the hypertrophic stage occurring before heart failure. The present study was undertaken to investigate ANF gene expression during early stages of myocardial damage and its distribution throughout atrial and ventricular myocardium in UM-X7.1 cardiomyopathic Syrian hamsters (CMPH) before hypertrophy and cardiac failure occur. Atria, right and left ventricles, and interventricular septum of hearts of 20-23 days old (young) and 90-95 days old (adult) CMPH were studied. The absence of hypertrophy and cardiac failure was preliminarly ascertained by microscopic and hemodynamic evaluation. ANF-mRNA as well as tissue and plasma immunoreactive ANF were assayed. Moreover, ANF secretion pattern was evaluated by immunocytochemical techniques. Young and adult CMPH hearts were in the necrotic stage of myocardial disease, as demonstrated by histopathological evaluation and by decreased wet weights (mg/g body weight) of different heart regions. Hemodynamic assessment showed no significant changes of left ventricular end-diastolic pressure (LVEDP) and a decrease of the left ventricular peak systolic pressure (LVSP) and +dP/dt. Plasma immunoreactive ANF (IR-ANF) levels were higher in young (3-fold) and adult (6-fold) CMPH than in age-matched normal hamsters. A reduced IR-ANF concentration (per milligram protein) was observed in both young and adult cardiomyopathic atria in respect to healthy controls, whereas a higher IR-ANF concentration was present in ventricles. A 3-fold, 6-fold and 20-fold increase of IR-ANF concentration was found in right ventricular free-wall (RV), left ventricular free-wall (LV) and interventricular septum (IVS), respectively. Northern-blot analysis confirmed that IVS was the major site of ventricular ANF-mRNA transcription in both young and adult CMPH. ANF-mRNA was increased also in atria where a faster peptide secretion can be hypothesized to lower tissue IR-ANF concentration. ANF secretion in ventricular myocardium was achieved via constitutive pathway as demonstrated by immunocytochemistry. Different patterns of ANF gene reactivation occur in CMPH myocardium before intraventricular pressure increases and structural hypertrophic modifications are detectable. The extent of ANF gene reactivation in CMPH ventricles parallels the severity of necrotic damage. Moreover, ANF gene expression is heterogeneously distributed throughout the myocardium, suggesting that interventricular septum, the ontogenically youngest heart region, might preserve foetal characters which can be rapidly reactivated in pathological conditions.

Animals↗

Effects of alpha-human atrial natriuretic peptide in guinea-pig isolated heart.

The aim of the present investigation has been to ascertain whether or not atrial natriuretic peptides (ANP) can exert a direct effect on myocardial contractility. Alpha-human ANP (alpha-hANP) concentrations ranging from 1 pM to 50 nM have been used to perfuse guinea-pig isolated hearts in a non-recirculating Langendorff apparatus. A dual concentration-related effect has been induced by alpha-hANP on myocardial function. A maximal increase of +LV dP/dtmax (+56%; P < 0.001) has been observed when guinea-pig hearts were perfused with 100 pM alpha-hANP, whereas a 25% decrease (P < 0.01) occurred with 50 nM alpha-hANP. Similar effects have also been induced by alpha-hANP on the coronary flow rate (CFR). A significant CFR increase (maximal at 10 pM alpha-hANP) was induced by picomolar concentrations of alpha-hANP, whereas a progressive decrease, which was maximal (-28%; P < 0.01) at 50 nM alpha-hANP, was observed with nanomolar concentrations of the peptide. No effects have been observed on heart rate. These results suggest that ANP has direct effects on both vascular and myocardial muscle cells. Coronary vasoconstriction induced by nanomolar concentrations of ANP can contribute to the cardiodepression, whereas ANP in picomolar concentrations can induce a coronary vasodilation which is not coupled with the enhanced myocardial contractility. The latter is the likely expression of a direct effect of the peptide on myocardial function.

Animals↗

Physiological unloading of cardiopulmonary mechanoreceptors by posture change does not influence the pressor response to isometric exercise in healthy humans.

In recent studies in humans the role of cardiopulmonary baroreflexes in modulating the cardiovascular responses to isometric exercise (somatic pressor reflex) has been investigated by performing static handgrip exercise during deactivation of cardiopulmonary receptors produced by low levels of lower body negative pressure; however, findings from these studies have not been consistent. The purpose of this study was to investigate whether a more physiological unloading stimulus of cardiopulmonary baroreceptors, obtained by sequentially changing posture, could influence the pressor response to somatic afferent stimulation induced by isometric exercise. To accomplish this, ten healthy subjects performed a 2-min isometric handgrip (IHG) at 30% maximal voluntary contraction after 10 min of supine rest and, in rapid sequence, after 10 min of sitting and 10 min of standing, at the time when, owing to their transitory nature, the cardiovascular effects, due to arterial baroreceptor intervention should have been minimal. During IHG arterial pressure (BPa) was continuously and noninvasively measured to quantify accurately the blood pressure response to IHG both in magnitude and time course. Results showed that the pressor response to IHG was not significantly influenced by change in posture, either in magnitude or in time course. The mean arterial pressure increased by 17.4 (SEM 2.5), 18.6 (SEM 1.2) and 17.0 (SEM 1.3) mmHg in supine, sitting and standing [2.3 (SEM 0.3), 2.5 (SEM 0.2) and 2.3 (SEM 0.2) kPa] positions, respectively. Also the heart rate response to IHG was unaffected by change in posture.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Cholinergic hyperinnervation in the cerebral cortex of microencephalic rats does not result in muscarinic receptor down-regulation or in alteration of receptor-stimulated phosphoinositide metabolism.

Administration of methylazoxymethanol (MAM; 25 mg/kg) to pregnant rats at gestational day 15 (GD 15) induces a marked reduction of telencephalic areas of the offspring brain. Previous neurochemical studies demonstrated a marked cholinergic hyperinnervation in the cerebral cortex of microencephalic rats. In this study we have evaluated whether this cholinergic hyperinnervation could result in altered functionality of muscarinic receptors. Acetylcholinesterase activity (AChE) was increased by 69% in the cerebral cortex of MAM treated rats, confirming a relative hyperinnervation, whereas in the hippocampus and striatum no significant changes were observed. Despite the marked hyperinnervation, in the cerebral cortex of microencephalic rats neither muscarinic receptor-stimulated phosphoinositide metabolism nor muscarinic receptor density were altered. No differences in receptor density were also observed in the hippocampus and striatum. Chronic diisopropylfluorophosphate (DFP) administration induced a marked decrease of AChE activity and down-regulation of muscarinic receptors whereas atropine administration resulted in receptor up-regulation in cerebral cortex, striatum and hippocampus of both control and MAM rats. The results confirm a relative cholinergic hyperinnervation in the cerebral cortex of microencephalic rats and demonstrate that the regulation of muscarinic receptor-stimulated phosphoinositide metabolism and muscarinic receptor plasticity is not modified in a condition of increased cholinergic presynaptic terminals.

Abnormalities, Drug-Induced↗

Physiology and pathophysiology of atrial natriuretic factor in lungs.

UNLABELLED: OBJECTIVE AND DATA SOURCE: Experimental and clinical data reported in the international literature have been collected and critically reviewed to summarize knowledge of the role of atrial natriuretic factor (ANF) in lung physiology and pathophysiology. DATA SYNTHESIS: Lung contribution to circulating ANF concentration is modest, whereas its capability of degrading ANF is very high, the lung being one of the major sites of ANF catabolism. The impairment of ANF protease activity in lung tissue by hypoxia and pulmonary hypertension could be responsible for the increase in ANF plasma levels observed in several pulmonary pathological conditions. ANF-specific binding sites in lung are reportedly greater than in any other tissue. ANF induces a cGMP-mediated relaxation of central (rather than peripheral) bronchi. ANF bronchodilating effect has also been clinically demonstrated; eg, asthmatic patients show increased plasma ANF levels and exogenous ANF infusion provokes bronchial relaxation comparable with the salbutamol-induced effect. Moreover, ANF determines pulmonary artery vasodilation, thus contributing to improved pulmonary circulation. When pathophysiological levels are present in plasma, ANF influences pulmonary fluid regulation provoking protein mobilization from arteries to the alveolar space whereas ANF pharmacological concentrations re-equilibrate the transwall gradient. A remarkable enhancement of guanylate cyclase activity in lung tissue before hemodynamic modifications by both endogenous end exogenous ANF has been reported in pneumocytes of cardiomyopathic hamsters. On the other hand, ANF infusion provokes a reduction of pulmonary edema induced by pneumotoxic chemicals through a mechanism independent of the natriuretic/hypotensive action of the peptide and not mediated by cGMP. CONCLUSIONS: The modest amount of specific research on ANF effects on lung does not permit a final assessment of natriuretic peptides in pulmonary physiology and pathophysiology. In particular, further investigations are needed to determine the potential clinical relevance of ANF in asthma and pulmonary edema.

Animals↗

[The physiopathological aspects and new therapeutic approaches in cardiac-circulatory failure].

Pathophysiological mechanisms are reviewed concerning the onset and the perpetuation of the clinical features of congestive heart failure. This syndrome is a severe condition of poor prognosis and bad life quality which in the last decades has reached, in the western industrial countries, the highest levels of general mortality, mainly due to the high prevalence of hypertensive and ischaemic myocardiopathies in the last years. To the clinical features of heart failure mainly contributes a deregulation of the physiological compensatory mechanisms contemporarily and concurrently activated following the primary deficiency of the heart pump function. In physiological conditions, following the myogenic adapting mechanisms reflex mechanisms intervene, activated by intracardiac and aortic and carotid-sinus mechanoreceptors following the variations in intracardiac and intravascular pressure and generally evoking negative feed-back effects. In patients with heart failure arterial high pressure mechanoreceptors respond to the reduction in effective arterial pressure thus provoking a deactivation of the tonic inhibition on the sympathetic cardiovascular drive. This leads to an activation of peripheral and renal vasoconstrictor tone, to a raised medullary catecholamine incretion, to heart rate and inotropism stimulation, and to an increase in pituitary gland ADH production as well as to an activation of renin-angiotensin-aldosterone system (RAAS). Analogous vasoconstrictive, and sodium and water retentive effects can be elicited by endothelin produced by endothelial cells and found in high plasma levels in CHF. These excitatory effects, leading to a rise in systemic vascular resistance and to hydro-electrolytic retention with volume expansion, are not efficiently counteracted by the opposite effects triggered by cardiopulmonary vagally mediated mechanoreceptors activated by the raised cardiac filling pressure and leading to sympathetic nervous inhibition, peripheral and renal vasodilation, ADH and RAAS inhibition. Analogous effects should be provoked by the raised production, due to enhanced heart wall distension, of atrial natriuretic factor leading to vasodilation, natriuresis and diuresis. Reduced sensitivity of cardiopulmonary baroreceptors and lowered production of ANF due to structural cardiac changes could represent, according to most opinions, the main factors responsible for the prevailing sympathetic activation and hydro-saline retention in CHF. The activation of cardiopulmonary sympathetic positive-feed back afferents, could be also involved in the characteristic alteration of the vago-sympathetic balance in heart failure. The persistent reduction in heart pump function could lead to the instauration of vicious circles among the various regulatory systems and create an overcompensation condition.(ABSTRACT TRUNCATED AT 400 WORDS)

Adaptation, Physiological↗

On the role of neural mechanisms in the cardiocirculatory inhibitory action of alpha-human atrial natriuretic peptide in the anesthetized rabbit.

The effects induced by alpha-human 28-amino acid residue atrial natriuretic peptide (alpha-hANP) on arterial pressure, heart rate and vascular resistance, measured as hindlimb perfusion pressure (HPP), were examined in anesthetized rabbits. In particular, the involvement of the autonomic nervous system in mediating the cardiocirculatory effects of alpha-hANP was investigated. Intravenous alpha-hANP (8 micrograms/kg, bolus injection) in anesthetized rabbits caused a sustained decrease in atrial pressure, a transient decrease in HPP and no significant changes in heart rate. After sinoaortic denervation, alpha-hANP produced a greater decrease in arterial pressure and in hindlimb vascular resistance and also a consistent decrease in heart rate. Bilateral vagotomy did not significantly alter the cardiocirculatory responses to alpha-hANP in either normal or in sinoaortic denervated rabbits. Intravenous infusion of alpha-hANP (2 micrograms/kg bolus + 0.2 micrograms/kg per min) did not substantially change the baroreflex cardiocirculatory responses to loading and unloading carotid and aortic baroreceptors with bilateral carotid occlusion and phenylephrine or nitroglycerin bolus injection. In addition, alpha-hANP infusion did not modify the cardiovascular reflex responses to chemical stimulation of neural receptors (sensory endings of group III and IV somatic afferents) in the hindlimb muscles which are primarily mediated by sympathetic nerves in the anesthetized rabbit. Pharmacological blockade of the autonomic nervous system with atropine and guanethidine did not reduce the hypotensive and bradycardic effects caused by alpha-hANP in sinoaortic denervated animals. The results indicate that in anesthetized rabbits: (1) alpha-hANP can induce inhibitory cardiocirculatory responses (hypotension, bradycardia, musculocutaneous vasodilation) which are consistently offset by the sinoaortic baroreceptor system; (2) alpha-hANP does not alter the reflex control of arterial pressure and heart rate by arterial baroreceptors and muscle chemosensitive receptors; (3) activation of cardiopulmonary vagally-mediated depressor reflexes does not contribute to the inhibitory cardiovascular action of alpha-hANP; and (4) inhibitory effects on sympathetic activity do not constitute a significant component of the cardiocirculatory action of alpha-hANP.

Anesthesia↗

Treatment with methylazoxymethanol at different gestational days: two-way shuttle box avoidance and residential maze activity in rat offspring.

Pregnant rats were injected with a single dose of methylazoxymethanol (MAM, 25 mg/kg) on gestational days 14, 15, 16, 17, 18 or 19 which resulted in various degrees of microencephaly. Offspring were tested on a two-way shuttle box avoidance and residential maze activity at 60-90 days of age. Rats treated on gestational day 19 (GD19) were severely impaired in the acquisition of the two-way shuttle box task whereas the other groups did not show any significant difference from controls. Spontaneous activity measured for 23 hr in the residential maze was altered as total, time-course and pattern depending on the time of MAM administration: treatment on GD14 prolonged exploratory behavior, treatment on GD15 and GD16 increased nocturnal activity, treatment on GD16 and GD17 induced changes in locomotion patterns and treatment on GD18 and GD19 decreased total activity. These findings indicate that treatment with MAM results in selective deficits in the acquisition of a shuttle box avoidance and alterations of locomotion patterns in the offspring which are dependent on the time of administration.

Alkylating Agents↗

[A comparison of the parameters used in determining the anaerobic threshold by a computerized analysis of the indices of breath-by-breath gas exchange].

Anaerobic threshold (AT) determination by gas exchange measurements has to date been performed mostly by visual inspection from plots of ventilatory and gas exchange indexes. Owing to its subjective nature, this approach appears to be somehow arbitrary. Moreover, it still remains undetermined which of the commonly used gas exchange indexes is most reliable in detecting the anaerobic threshold. In the present study we have compared the AT values provided by the gas exchange indexes in common use, each one processed by a computerized method, based on a 2-segments linear regression model. A quantitative analysis of their reproducibility has also been performed. By comparison, the same has been done by using the conventional technique based on visual inspection of plots of the same gas exchange indexes, made by 2 independent observers. The aim of the study was to evaluate whether an objective method of AT detection improves the reliability of anaerobic threshold determination by gas exchange measurements. Eight healthy male subjects performed 2 incremental exercise tests at exhaustion with a 2-week interval. Respiratory exchange data were collected on a breath-by-breath basis. The following gas exchange indexes have been employed: V-slope; VE vs VO2; VE/VO2 vs VO2 or time; PetO2 vs VO2 or time. The latter 2 have been examined coupled with the VE/VCO2 and PetCO2 curves, respectively. By employing the computerized method, there were no significant differences in AT detection among the 4 indexes. The best agreement was between V-slope and VE vs VO2 (delta 15.8 ml/min).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Treatment with methylazoxymethanol at different gestational days: physical, reflex development and spontaneous activity in the offspring.

Pregnant rats were injected with a single dose of methylazoxymethanol (MAM, 25 mg/kg) on gestational day 14, 15, 16, 17, 18 or 19 and offspring were tested for their physical development, reflex development and spontaneous activity. MAM treatment did not affect gestational and litter parameters at any of the time of administration studied. Treatment at gestational day 14 (GD14) had the most severe effect on functional neurodevelopment until weaning: righting reflex at surface, chimney test, horizontal wire test resulted altered. Administration at GD15, 16, 18, 19 did not affect the performance in these tests. Offspring treated at GD17 showed a delayed eye opening and an impaired performance in the horizontal wire test. When tested at 50 days of age on the rotarod, all the treated groups performed worse than controls with the exception of GD19 treated offspring. Administration at GD14 and GD15 resulted in increased spontaneous activity of the offspring at 21 days but not at 60 days of age. Different degrees of microencephaly were observed for all treated groups. The results indicate that alterations of physical and behavioral development induced by MAM treatment are dependent on the time of MAM administration, and specific behavioral tests are able to detect different abnormalities and differentiate among treatment groups. Some alterations observed in MAM rats undergo to adaptive changes during maturation of the CNS.

Animals↗

Morphometrical and microdensitometrical studies on peptide- and tyrosine hydroxylase-like immunoreactivities in the forebrain of rats prenatally exposed to methylazoxymethanol acetate.

Methylazoxymethanol acetate (MAM Ac) injected into pregnant rats at a dose of 25 mg/kg at gestational day 15 causes microcephaly due to an atrophy of various telencephalic areas, mainly neocortex, hippocampus and basal ganglia. Previous studies demonstrated alterations in various neurochemical markers of classical transmitter systems in these regions. The present paper deals with changes in peptide and tyrosine hydroxylase (TH)-containing neurons in MAM Ac-induced microcephaly using immunocytochemistry coupled with computer-assisted morphometry and microdensitometry. No change in the number of vasoactive intestinal polypeptide (VIP)-immunoreactive neurons in the neocortex and neuropeptide Y (NPY)-immunoreactive neurons in the nucleus caudatus-putamen was found whereas cholecystokinin (CCK)-and NPY-immunoreactive neurons in the neocortex and CCK- and VIP-immunoreactive neurons in the hippocampus were decreased. The reduction of the latter peptide containing neuronal populations led to a maintained density of cells in MAM Ac-exposed rats, due to the parallel reduction of the overall mass of these regions. TH immunoreactivity was found to be unchanged in the basal ganglia, and increased in the cerebral cortex in agreement with previous reports on noradrenaline cortical system after MAM Ac exposure. The present results show a heterogenous vulnerability of different peptide immunoreactive neuronal populations to MAM Ac exposure. The sparing of VIP- and NPY-immunoreactive neurons may be due to their late development in the neocortex and striatum, respectively. The hypothesis is introduced that cortical VIP interneurons can develop independent of marked alterations in the intrinsic circuitry of the cortical region.

Animals↗

The role of chemosensitive muscle receptors in cardiorespiratory regulation during exercise.

Several possible mechanisms leading to the cardiorespiratory adjustments to muscular exercise can be considered. Activation of the cardiovascular and respiratory centers may result from: (1) direct or reflex action of circulating metabolites (humoral control); (2) cortical influxes (central drive); (3) nervous impulses from receptors in the contracting muscles (peripheral drive). Information presently available focuses most of the interest upon the muscular drive. Our studies on anesthetized animals (rabbits, dogs) have demonstrated that different types of exercise (dynamic and static) produce two different types of adjustments reflexly elicited by activation of sensory endings of somatic afferents in muscles. Dynamic exercise produces a vasodilatory effect with a decrease in blood pressure and heart rate and an increase in breathing frequency; static exercise provokes an increase in blood pressure, heart rate and depth of breathing. These two patterns of adjustments to exercise are also reproducible, in anesthetized animals, by injecting chemical substances into muscular arteries. Injections of bradykinin, K+ ions and acid solutions evoke cardiorespiratory responses analogous to those produced by dynamic contractions; injections of hypertonic NaCl or glucose evoke an excitatory pattern closely similar to that elicited by isometric contractions. These research studies lead to the hypothesis that two functionally distinct types of chemosensitive receptors (K and P) exist in the skeletal muscles which are activated in proportionally different measures during different types of muscular activity, thus evoking coordinated changes in the cardiovascular and respiratory functions. These studies also strongly support the important role of the peripheral reflex mechanism in governing the circulatory and respiratory systems to perfectly match cardiorespiratory changes to the muscular metabolic needs during exercise.

Animals↗