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Biomedical subjects

M Kelm

Publications and source records attributed to M Kelm.

At least 37 records · Page 2Linked to original sources

Comparative evaluation of thermodilution and gated blood pool method for determination of right ventricular ejection fraction at rest and during exercise.

BACKGROUND: Since the development of a Swan-Ganz thermodilution ejection fraction catheter several studies have been published which compare this technique for obtaining right ventricular ejection fraction (RVEF(TD)) with alternative methods. However, the reliability of RVEF(TD) measurements under exercise conditions remains undetermined. Therefore, the aim of the present study was a comparative evaluation of RVEF(TD) with the established gated blood pool method (RVEF(GBP)) under exercise conditions. METHODS AND RESULTS: Twenty-two patients with different cardiac diseases underwent right heart catheterization, including RVEF(TD) and simultaneous RVEF(GBP) determination at rest and during supine bicycle exercise. Linear regression analysis showed a significant correlation between RVEF(TD) and RVEF(GBP) at rest (r = 0.73, p < or = 0.0005) and during exercise (r = 0.74, p < or = 0.0005). A Wilcoxon analysis showed a high probability of agreement of RVEF(TD) and RVEF(GBP) at rest and exercise (level of significance for error of the 0 hypothesis of 95.9/73.3%). CONCLUSION: The thermodilution ejection fraction catheter provides a useful device for reliable, repetitive and safe RVEF measurements, not only at rest but also under exercise conditions. This seems to be clinically important, because by it means RVEF, as a sensitive parameter of primary or secondary right ventricular dysfunction, can be determined in the course of standard right heart catheterization.

Adult↗

Nitric oxide prevents cardiovascular disease and determines survival in polyglobulic mice overexpressing erythropoietin.

Nitric oxide (NO) induces vasodilatatory, antiaggregatory, and antiproliferative effects in vitro. To delineate potential beneficial effects of NO in preventing vascular disease in vivo, we generated transgenic mice overexpressing human erythropoietin. These animals induce polyglobulia known to be associated with a high incidence of vascular disease. Despite hematocrit levels of 80%, adult transgenic mice did not develop hypertension or thromboembolism. Endothelial NO synthase levels, NO-mediated endothelium-dependent relaxation and circulating and vascular tissue NO levels were markedly increased. Administration of the NO synthase inhibitor N(G)-nitro-L-arginine methyl ester (L-NAME) led to vasoconstriction of peripheral resistance vessels, hypertension, and death of transgenic mice, whereas wild-type siblings developed hypertension but did not show increased mortality. L-NAME-treated polyglobulic mice revealed acute left ventricular dilatation and vascular engorgement associated with pulmonary congestion and hemorrhage. In conclusion, we here unequivocally demonstrate that endothelial NO maintains normotension, prevents cardiovascular dysfunction, and critically determines survival in vivo under conditions of increased hematocrit.

Animals↗

[Cardiac complications in diabetes mellitus].

Diabetes mellitus as a disease of epidemiological impact leads to diabetic cardiopathy by modulation of myocardial, vascular and metabolic components. This includes the development of a coronary microangiopathy and a decrease of diastolic and systolic function of the left ventricle as well as the development of an autonomic diabetic neuropathy. Patients with diabetes show an increased mortality concerning cardiovascular events. They more often suffer from myocardial infarction as non-diabetics mostly with a more serious course. Moreover, the post-infarction course is affected with a worse prognosis as in non-diabetics. For diagnosis of cardial involvement in diabetes electrocardiographic and echocardiographic procedures are of use. Special tests of the autonomic function complete the diagnostic ensemble. An early therapy with ACE-inhibitors and beta blocking agents as well as a strong diabetes therapy, in particular with insulin, can influence the mortality favorably. Moreover, the diagnosis and therapy of additional cardiovascular risk factors (arterial hypertension, dyslipidemia) are very important, because these are correlated with a for diabetic patients markedly increased risk of mortality. The clinical relevance of the term diabetic cardiopathy is justified by the 6 factors: macroangiopathy, microangiopathy, disturbances of the myocardial metabolism, myocardial fibrosis, autonomic diabetic neuropathy and disturbances of the coagulability. Diagnostic and therapeutic goals are discussed.

Arteriosclerosis↗

Endogenous nitric oxide and myocardial adaptation to ischemia.

Ischemic myocardium does not inevitably undergo necrosis but rather can survive through downregulation of contractile function, ie, "hibernate." To study the role of endogenous NO in this adaptation, 41 enflurane-anesthetized swine were subjected to 90 minutes of moderate left anterior descending coronary artery hypoperfusion and assigned to placebo (P), to 30 mg/kg N(G)-nitro-L-arginine (L-NNA) IV to inhibit NO synthase, or to aortic constriction (AO) to match the increased left ventricular pressure observed with L-NNA. During normoperfusion, a regional myocardial external work index (WI, mm Hg. mm, sonomicrometry and micromanometry) was reduced with L-NNA (from 326+/-27 [SEM] to 250+/-19, P<0.05) but increased with AO (from 321+/-16 to 363+/-19, P<0.05 versus L-NNA). At 10 minutes of ischemia, WI was lower with L-NNA (109+/-10, P<0.05) than P (180+/-22) and AO (170+/-11) and did not change further at 85 minutes of ischemia. Relationships between WI and transmural myocardial blood flow and oxygen consumption were shifted rightward by L-NNA versus P and AO at both 10 and 85 minutes of ischemia. The maximal increment in calcium-activated external work was not different during normoperfusion among groups but was decreased during ischemia with L-NNA. L-NNA transiently increased myocardial contractile calcium sensitivity along with systemic pressure but reduced it during ongoing ischemia. The free-energy change of ATP hydrolysis after an early ischemic decrease recovered toward baseline values in all groups, and necrosis was absent after 2 (triphenyltetrazolium chloride staining) or 8 (histology) hours of reperfusion. Thus, endogenous NO contributes to hibernation by reducing oxygen consumption and preserving calcium sensitivity and contractile function without an energy cost during ischemia.

Analysis of Variance↗

Age-related decline of PCr/ATP-ratio in progressively hypertrophied hearts of spontaneously hypertensive rats.

Although the ultimate cause for the myocardial dysfunction of hypertensive heart disease is still unclear, a crucial role of the myocardial energy metabolism has been suggested. Therefore, the aim of the present study was to investigate whether age-related myocardial dysfunction in hearts of spontaneously hypertensive rats (SHR) is associated with an impaired myocardial energy metabolism. Isolated hearts of SHR and Wistar Kyoto rats (WKY) aged about 40, 60, and 80 weeks, respectively (each n = 4-5), were perfused according to the working heart technique. Cardiac work and coronary flow were monitored online. Myocardial energy metabolism was evaluated by calculating the ratio of phosphocreatine (PCr) and adenosine triphosphate (ATP) which were measured by nuclear magnetic resonance (31P-NMR) spectroscopy. All hearts were subjected to work for 30min at baseline conditions (low afterload), followed by another 30min under a moderate pressure load (high afterload). Each SHR group showed a higher heart weight/body weight ratio than the age-matched WKY controls. The SHR showed a progressive age-dependent reduction of cardiac work (40 weeks = 5.1+/-0.3, 60 weeks = 4.0+/-0.3, 80 weeks = 3.8+/-0.2 (mW/g) at baseline conditions) and PCr/ATP-ratio (40 weeks = 1.82+/-0.06, 60 weeks = 1.69+/-0.05, 80 weeks = 1.59+/-0.09 (PCr/ATP) at baseline conditions). Similar results were found for hearts of SHR at high afterload. In WKY no significant decline in cardiac work or PCr/ATP-ratio was found under either low or under high afterload. The cardiac work capacity of hearts of SHR progressively decreases with increasing age and left ventricular hypertrophy. This myocardial dysfunction is closely associated with an impaired PCr/ATP-ratio, suggesting a decreased energy reserve.

Adenosine Triphosphate↗

Automated ultrasonic measurement of human arteries for the determination of endothelial function.

AIM: Brachial artery ultrasonography is used to measure flow-mediated dilatation (FMD) as a marker of endothelial function in patients at risk for atherosclerosis. Major disadvantages are the time-consuming manual readings and the high within- and between-observer variability. The authors hypothesize that the ultrasound-based determination of endothelial function can be simplified and refined by an automated analysis system. METHODS AND RESULTS: FMD was quantified by a 7.5 MHz linear transducer following 5 minutes of ischemia of the proximal forearm in 8 healthy volunteers on two occasions. Brachial artery diameter was comparatively assessed 1. manually from the video signal and 2. by a PC-based analyzing system. For the manual readings the mean differences for the FMD were 2.5 +/- 2.3% between-reader, 2.0 +/- 0.9% within-reader and 2.1 +/- 1.5% for scans on different days in contrast to 0.8 +/- 0.4 (between-reader), 0.8 +/- 0.6 (within-reader) and 1.3 +/- 0.9% (day-to-day) for the computerized system. The coefficient of variability for the measurement of arterial diameter was 1.34% for manual readings and 0.78% for the automated analysis system. The mean time for manual readings from S-VHS tapes was 35 minutes in contrast to 9 minutes for the PC-based analysis system. CONCLUSIONS: The new automated analysis system for the boundary detection of the vascular wall reduces the variability and greatly increases the speed of the measurements to determine endothelial function. In future, these advantages will help to screen larger numbers of individuals for endothelial dysfunction, particularly for follow-up and intervention trials, and to reduce the variability between different laboratories.

Adult↗

Intracoronary dipyridamole reduces the incidence of abrupt vessel closure following PTCA: a prospective randomised trial.

OBJECTIVES: To investigate the effect of intracoronary dipyridamole on the incidence of abrupt vessel closure, myocardial infarction, necessity for bypass grafting, and death following percutaneous transluminal coronary angioplasty (PTCA). PATIENTS: Patients were randomly allocated to receive either conventional pretreatment (heparin 15 000 IU and aspirin 500 mg intravenously) or additional intracoronary dipyridamole (0.5 mg/kg bodyweight). Dipyridamole was administered in 550 PTCA procedures (455 interventions in men, mean (SD) age 59.2 (8.4) years; 74 acute coronary syndromes), while conventional pretreatment was administered in 544 interventions (444 interventions in men 58.3 (7.9) years old; 81 acute coronary syndromes). In 53 interventions bail out stenting was performed for threatened abrupt vessel closure. RESULTS: Intracoronary dipyridamole significantly reduced the incidence of abrupt vessel closure (odds ratio 0.42. 95% confidence interval (CI) 0.22 to 0.79). While abrupt vessel closure occurred in 6.1% of interventions following conventional pretreatment, dipyridamole reduced the incidence to 2.5%. Restricting the analysis to balloon angioplasty, this reduction was observed in patients with stable angina (odds ratio 0.49, 95% CI 0.23 to 0.96) as well as in those with acute coronary syndromes (odds ratio 0.29, 95% CI 0.09 to 0.87). Reduction of secondary end points in the dipyridamole treated patients failed to reach significance in the PTCA group. CONCLUSIONS: Intracoronary dipyridamole before PTCA reduces the incidence of abrupt vessel closure following PTCA for stable angina and acute coronary syndromes.

Adult↗

Additive effect of coexistent type 2 diabetes and arterial hypertension on endothelial dysfunction in resistance arteries of human forearm vasculature.

Population studies suggest that vascular complications accumulate when arterial hypertension supervenes on diabetes mellitus. Although it has been demonstrated that endothelial function is impaired in patients with either diabetes mellitus or arterial hypertension it is unknown whether or not both diseases exert additive effects on endothelial dysfunction. The authors therefore investigated endothelium-dependent and endothelium-independent vasodilation in the forearm vasculature of 44 individuals: in 10 type 2 diabetic patients (DM), in 12 patients with arterial hypertension (HT), in 10 patients with both DM and HT (DM+HT), and in 12 healthy control subjects (C). Forearm blood flow (FBF) was measured by venous occlusion plethysmography at rest and following intraarterial infusion of acetylcholine (ACh) and the NO-donor sodium nitroprusside (SNP) at increasing doses. FBF at rest was significantly lower in diabetic patients: 2.2 +/- 0.1 (DM) and 2.6 +/- 0.2 (DM+HT) versus 3.1 +/- 0.1 (HT) and 3.4 +/- 0.2 (C) mL/min per 100 mL of tissue. ACh and SNP both increased FBF dose-dependently in each group. The maximum response to ACh was progressively decreased in DM and HT: 13.7 (C) > 8.1 (DM) > 7.6 (HT) > and 5.7 (DM+HT) mL/min per 100 mL of tissue. Reduction of the endothelium-dependent flow reserve assessed as percent increase in maximum FBF was also impaired following the same rank order: 349 (C) > 268 (DM) > 160 (HT) > 126 (DM+HT)%. The flow response to the NO-donor SNP amounted to: 327 (C), 306 (DM), 200 (HT), and 194% (DM+HT). In DM+HT the reduction of endothelium-dependent flow response was more pronounced compared with the endothelium-independent flow response. The present data provide evidence that type 2 diabetes and arterial hypertension impair endothelium-dependent dilation of resistance arteries in an additive manner suggesting that this progressive endothelial dysfunction might contribute to the increased incidence of cardiovascular complications when both diseases are coexistent.

Acetylcholine↗

Nitric oxide metabolism and breakdown.

The steady-state concentration and thus the biological effects of NO are critically determined not only by its rate of formation, but also by its rate of decomposition. Bioreactivity of NO at physiological concentrations may differ substantially from that suggested by in vitro experiments. The charge neutrality and its high diffusion capacity are hallmarks that characterize NO bioactivity. Reactive oxygen derived species are major determinants of NO breakdown. Biotransformation of NO and its related N-oxides occurs via different metabolic routes within the body. S-Nitrosothiols formed upon reaction of NO with redox-activated thiols represent an active storage pool for NO. The major oxidative metabolites represent nitrite and nitrate, the ratio of both is determined by the microenvironmental redox conditions. In humans, circulating nitrite represents an attractive estimate of regional endothelial NO formation, whereas nitrate, with some caution, appears useful in estimating overall nitrogen/NO turnover. Within the near future, more specific biochemical tools for diagnosis of reduced NO bioactivity will become available. Increasing knowledge on the complex metabolism of NO in vivo will lead to the development of new therapeutic strategies to enhance bioactivity of NO via modulation of its metabolism.

Animals↗

Quantification of extracellular and intracellular adenosine production: understanding the transmembranous concentration gradient.

BACKGROUND: Inhibitors of adenosine membrane transport cause vasodilation and enhance the plasma adenosine concentration. However, it is unclear why the plasma adenosine concentration rises rather than falls when membrane transport is inhibited. We tested the hypothesis that the cytosolic adenosine concentration exceeds the interstitial concentration under well-oxygenated conditions. METHODS AND RESULTS: In isolated, isovolumically working guinea pig hearts (n=50), the release rate of adenosine and accumulation of S-adenosylhomocysteine (after 20 minutes of 200 micromol/L homocysteine), a measure of the free cytosolic adenosine concentration, were determined in the absence and presence of specific and powerful blockers of adenosine membrane transport (nitrobenzylthioinosine 1 micromol/L), adenosine deaminase (erythro-9-hydroxy-nonyl-adenine 5 micromol/L), and adenosine kinase (iodotubericidine 10 micromol/L). Data analysis with a distributed multicompartment model revealed a total cardiac adenosine production rate of 2294 pmol. min-1. g-1, of which 8% was produced in the extracellular region. Because of a high rate of intracellular metabolism, however, 70.3% of extracellularly produced adenosine was taken up into cellular regions, an effect that was effectively eliminated by membrane transport block. The resulting approximately 2.8-fold increase of the interstitial adenosine concentration evoked near-maximal coronary dilation. CONCLUSIONS: We rejected the hypothesis that the cytosolic adenosine concentration exceeds the interstitial. Rather, there is significant extracellular production, and the parenchymal cell represents a sink, not a source, for adenosine under well-oxygenated conditions.

Adenine↗

Reevaluation of the Griess method for determining NO/NO2- in aqueous and protein-containing samples.

Nitric oxide (NO) is an important intracellular and extracellular signal substance. Nitrite is one product of the oxidative metabolism of NO. The purpose of this study was to establish a simple method of determining nitrite (NO2-) to provide a means of estimating the endogenous formation of NO or NO2-. A flow injection analysis (FIA) based on the Griess reaction was developed for this purpose. Using a standard additive method, it is possible to eliminate matrix effects such as those that can occur in samples containing protein. This measuring method is suitable for measurements in effluates or protein-rich cellular supernatants. The sensitivity of the method is 2 nmol/L for samples in aqueous phases and 8 nmol/L for protein-containing phases. The two-point discrimination is 2 nmol/L. A linear correlation between nitrite and signal level can be demonstrated over a range of 0.002-5 micromol/L. Reproducibility, including sample preparation and analysis, can be specified with a coefficient of variation (C.V.) of 6.7%. Day-to-day variability for identical samples 0.8% (C.V.). This study presents examples of the application of this method (measurements in blood samples and in isolated perfused hearts) and compares them to established methods of measuring NO and NO2. We found the FIA method to be equally sensitive as NO measurement by means of oxyhemoglobin assay. The FIA method is seven times more sensitive than HPLC methods, and its design is significantly simpler. Compared to the traditional Griess method, its sensitivity is higher by a factor of 500. With its high sensitivity, high reproducibility, and its unsurpassed low susceptibility to interference, this method of analysis provides a means of reliably determining nitrite concentration as a marker of NO formation in various matrices. Therefore, it can be a valuable instrument in experimental and clinical studies to determine the physiologic and pathophysiologic relevance of NO.

Chromatography, High Pressure Liquid↗

Serum nitrite sensitively reflects endothelial NO formation in human forearm vasculature: evidence for biochemical assessment of the endothelial L-arginine-NO pathway.

OBJECTIVE: A reduced bioactivity of endothelial nitric oxide (NO) has been implicated in the pathogenesis of atherosclerosis. In humans, the endothelial L-arginine-NO pathway has been indirectly assessed via the flow response to endothelium-dependent vasodilators locally administered into the coronary, pulmonary or forearm circulation. However, biochemical quantification of endothelial NO formation in these organ circulations has been hampered so far because of the rapid metabolism of NO. Therefore, we aimed to work out a reliable biochemical index to assess endothelial NO formation in human circulation. METHODS: In 33 healthy volunteers, forearm blood flow (FBF) was measured by standard techniques of venous occlusion plethysmography at rest, after local application of the endothelium-dependent vasodilator acetylcholine (ACH), the endothelium-independent vasodilator papaverine (PAP), the stereospecific inhibitor of endothelial NO synthase (eNOS) L-NMMA, and L-arginine (ARG), the natural substrate of eNOS. In parallel, nitrite and nitrate concentrations in blood samples taken from the antecubital vein were measured by HPLC using anion-exchange chromatography in combination with electrochemical and ultraviolet detection following a specific sample preparation method. RESULTS: ACH dose-dependently increased resting FBF (from 3.0 +/- 0.3 to 10.4 +/- 0.9 ml/min per 100 ml tissue) and serum nitrite concentration (from 402 +/- 59 to 977 +/- 82 nmol/l, both p < 0.05, n = 12). A significant correlation was observed between the changes in FBF and the serum nitrite concentration (r = 0.61, p < 0.0001). L-NMMA reduced resting FBF and endothelium-dependent vasodilation by 30% and this was paralleled by a significant reduction in serum nitrite concentration at the highest dose of ACH (n = 9, p < 0.001). PAP increased FBF more than fourfold, but did not affect serum nitrite concentration (n = 11), whereas ARG significantly increased both FBF and nitrite. Basal serum nitrate amounted to 25 +/- 4 mumol/l and remained constant during the application of ACH, PAP and L-NMMA. CONCLUSIONS: The concentration of serum nitrite sensitively reflects changes in endothelial NO formation in human forearm circulation. This biochemical measure may help to characterize the L-arginine-NO pathway in disease states associated with endothelial dysfunction and to further elucidate its pathophysiological significance for the development of atherosclerosis in humans.

Acetylcholine↗

[Duplex ultrasound risk stratification of percutaneous puncture of the brachial artery for diagnostic and interventional coronary angiography].

Diagnostic and interventional heart catheterization in peripheral vascular disease often requires due to iliacal disease additional methods of arterial approach besides the Judkin's technique. The percutaneous catheterization of the brachial artery finds widespread use. A major complication linked with this method is an increased rate of thrombotic occlusions at the puncture site. Thus, we investigated in a prospective set-up the ability of duplex ultrasound to identify predictive risk factors for vascular complications. Over a period of 20 months, 8000 patients referred to heart catheterization were studied. Routine catheterization via the femoral route was contraindicated in 34 out of 8000 mostly due to severe peripheral vascular disease with multiple vascular risk factors (diabetes, hypertension, and smoking). 53 patients who had a comparable low risk-profile served as the control group. The brachial artery was examined by ultrasound duplex for vessel anatomy and diameter at the puncture site before coronary angiography. Both groups (patient and control group) showed in 15% a variable anatomy with a premature division of the brachial artery in 6% proximal of the elbow and in 9% already distal to the axillary artery. Because of reduced diameters of these variable vessels no procedure was carried out at these arms. In all cases the opposite arm was successfully used instead, because the variants were always located only at one arm. The diameter of the brachial artery measured in average 5.0 +/- 0.8 mm and 4.8 +/- 0.7 mm in patients and controls, respectively. Women had a significantly smaller vessel diameter than men, measuring a difference of 0.4 and 0.6 mm, respectively (p < 0.05). For coronary angiography 6F and 7F arterial sheats were used equally, and in 32% of all cases a coronary intervention was performed. 31 (91%) procedures were carried out without complications; there was a false aneurysm in 1 patient (3%) and an occlusion of the brachial artery at the puncture site in 2 patients (6%). The occluded vessels of two diabetic women had a reduced diameter at the level of 10% of the standard distribution and an unfavorable ratio of sheat-to-vessel-diameter which lead initially to an obstruction of nearly 50% of the vessel lumen during catheterization. Screening of the brachial artery by ultrasound duplex before a percutaneous catheterization for coronary angiography and intervention showed reproducibly the variable anatomy and differences in vessel diameter, which can be risk factors for thrombotic occlusion. Important details for the location of the puncture site and the possible size of the arterial sheat can be obtained, so that coronary interventions with 7F catheter systems are still practicable. This technique is a simple and efficient method to estimate the relative risk of arterial occlusion prior to percutaneous puncture of the brachial artery, especially in a group of patients with severe atherosclerosis and elevated vascular risk-factors.

Adult↗

[Relevance and methods for determining coronary flow reserve].

The assessment of coronary flow reserve, defined as the ratio of hyperemic to resting coronary blood flow, allows a more functional analysis of the coronary vasculature in addition to coronary angiography. Three different kinds of cardiac catherization procedures for measurement of coronary flow reserve will be reviewed with respect to reliability, feasibility and clinical significance in the diagnosis and treatment of diseases of coronary conductance and resistive vessels: first, from the techniques utilizing selective catherization of coronary sinus, the thermodilution and the oxymetry have to be considered qualitatively rather than quantitatively because of a large variance and an underestimation of hyperemic blood flow responses. The gas chromatographic argon method provides a more quantitative rationale for the selective measurement of resting and hyperemic coronary flow, and thus to more exact differentiation between a reduced hyperemic vs an increased resting flow as a major cause of a reduced flow reserve. Furthermore, because of a reliable reproducibility this approach allows to proceed follow up studies to assess impact of therapeutic interventions on coronary flow reserve in individual patients. Second, angiographic methods utilize either densitometry or time-to-arrival measurements of defined boluses of contrast medium. The utility of the TIMI-frame count and of densitometric algorithms will be discussed. These methods offer the advantage of being rather easy to handle and to be performed within routine coronary angiography. However, they can be applied to a only rather small group of patients because of methodological limitations in patients with multivessel disease, with disturbed left ventricular function and with irregular heart rate. Third, this group comprises methods in which devices have to be advanced into coronary circulation such as pressure or doppler guide wires, which allows selective assessment of regional coronary flow and reserve. Currently evaluated approaches to assess significance of coronary stenosis will be discussed. In conclusion, currently different methods for the assessment of coronary flow reserve are available in cardiac catherization laboratories and each of these methods provides specific advantages and disadvantages, which have to be considered to select the appropriate approach for the diagnosis of functional disturbances of the coronary conductance and resistance vessels. The obtained functional data on coronary circulation should always be interpreted only in context with myocardial function and clinical symptoms of the individual patient.

Cardiac Catheterization↗

Assessing the coronary circulation in hypertension.

Systemic arterial hypertension is one of the major risk factors for coronary artery disease, coronary microangiopathy, and left ventricular hypertrophy, all of which can potentially lead to cardiac failure and sudden cardiac death. Coronary flow reserve is defined as the maximal increase in coronary flow above its resting, autoregulated level for a given perfusion pressure. In arterial hypertension functional and structural alterations are observed at the level of epicardial vessels as well as in resistive vessels requiring sophisticated approaches to assess coronary flow reserve and thus myocardial perfusion. Electrocardiographic tests and echocardiography can be regarded as monitoring and screening methods. Myocardial scintography is useful to semiquantitatively estimate hypertension-associated perfusion abnormalities, whereas positron emission tomography provides the only quantitative approach of a non-invasive technique for myocardial blood flow measurement. Invasive methods for the assessment of coronary blood flow need cardiac catheterization procedures, such as techniques requiring catheterization of the coronary sinus, angiographic methods, and guidewire based methods. Thermodilution and venous oxymetry in the coronary sinus systematically underestimate coronary flow reserve and are thus considered as only semiquantitative approaches. In contrast, the gas chromatographic argon method allows a quantitative measurement of coronary blood flow at baseline and during maximum vasodilation; thus it is possible to distinguish between an altered autoregulated and maximal flow as the major cause of a reduced coronary flow reserve and to evaluate long-term therapeutic interventions in hypertensive hearts. Videodensitometric and angiographic methods should be restricted only to patients with coronary microangiopathy or with coronary single-vessel disease. Guidewire-based Doppler techniques are suitable to semiquantitatively assess coronary flow reserve with a considerable spatial and time resolution. Myocardial biopsies may gain insight into hypertension-associated structural alterations in small arterioles. Long-term treatment of hypertensive heart disease aims to normalize blood pressure, to reduce left ventricular hypertrophy and to achieve cardioreparation including reversal of the abnormal structure and function of coronary circulation. Based on the different methods for assessment of coronary circulation the therapeutic value of different classes of antihypertensive therapeutics will be evaluated in this overview.

Animals↗