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[Disturbances in coronary microcirculation (author's transl)].

The clinical syndrome "coronary insufficiency at normal coronary arteriogram" is found in approximately 10-20 per cent of patients with exercise-induced coronary insufficiency. In most of these cases disturbances of coronary microcirculation are present. They can appear in vascular diseases (arterial hypertension, systemic immunopathies, immune complex vasculitis etc.), in rheological diseases (paraproteinemia, hyperlipoproteinemia, polyglobulia etc.) and in disturbances of transport and diffusion of oxygen (carbon monoxide intoxication, methemoglobinemia, hyperlipoproteinemia). The clinical diagnosis is based on usual diagnostic programs (electrocardiogram, exercise electrocardiogram, responsiveness to nitroglycerin etc.), as well as on a newer, functionally orientated diagnostic procedures (determinations of coronary blood flow and of coronary vascular reserve, production of lactate, serological findings, histology and immune histology of peripheral arteries, measurements of viscosities in both, plasma and blood etc.). Many clinically relevant disturbances in coronary microcirculation can thus be detected and therefore can be treated on a rational basis by the management of the internal main disease, this is by the treatment of the vascular, rheological and metabolic disorders. Persistent angina pectoris, in the presence of normal coronary arteriogram, represents no termination of coronary diagnostics, but moreover implies the clinical task for using newer diagnostic possibilities in order to enable functional and therapeutical assessment of coronary microcirculation.

Cardiomyopathies↗

[The effect of dopamin on the microcirculation on the pancreas in hemorrhagic-shock (author's transl)].

The influence of Dopamine on microcirculation during hemorrhagic shock was investigated by means of the pancreas chamber technique (HEISIG, 1967). Parameter of microcirculation was the corpuscular flow velocity measured with the "flying spot" method. Simultaneously arterial and venous blood pressure, heart rate, blood gases and pH-status were registered. While a Dopamine-dosage of 5 mug/kg/min did not markedly effect perfusion of the pancreas, application of 10 as well as 20 mug/kg/min Dopamine caused a significant improvement of microcirculation. There was no difference between 10 and 20 mug/kg/min Dopamine. The increase of capillary perfusion can certainly not be explained by the small rise of blood pressure that was found under treatment with Dopamine. The results support the statement of the existence of Dopamine-specific receptors in pancreatic vessels. Compared to a group of animals treated with 5 mug/kg/min Dopamine and an untreated control group, survival rate of animals treated with 10 as well as 20 mug/kg/min Dopamine was significantly increased.

Animals↗

Measurement of the skin microcirculation through intact bandages using laser Doppler flowmetry.

The microcirculation under compression bandages has been assessed by numerous methods; however, the measurement techniques can disrupt the bandage-skin interface, affecting the measurement. In this study, a non-invasive method for measuring cutaneous blood flow using laser Doppler flowmetry (LDF) is presented. Ten volunteers had their microcirculation assessed by a laser Doppler probe being placed on their upper forearm with and without a light-transmissive gel and with a compression bandage plus light-transmissive gel. A circulatory challenge to the bandaged forearm in two of the volunteers was also undertaken. The median (95% confidence interval) perfusion (p.u.) for the skin surface was 24 (15-33) perfusion units (p.u.), and the skin plus light-transmissive gel demonstrated a higher perfusion: 66 (50-82) p.u., (p < 0.012). The addition of the compression bandage, with additional gel allowed to permeate through to the underlying skin, decreased the perfusion to 27 (20-34) p.u. (p < 0.007). In both volunteers, the microcirculatory flow responded to the vascular challenge, resulting in flow changes related to the cuff pressure (45-27 and 14-8 p.u.). This method demonstrated that it may be possible to assess the microcirculation through intact bandages, without the need to place any sensors at the skin-bandage interface.

Adult↗

The effects of DPPH on cochlear microcirculation.

To investigate the effects of the free radical, 1,1-Diphenyl-2-picylhydrazyl, on cochlear blood flow, 20 guinea pigs were divided into 3 groups at random, 6 for control group, 6 for 1 mmol/L group and 8 for 0.1 mmol/L group. 2 microliters vehicle or drugs were dropped into round window membrane (RWM). Cochlear microcirculation was monitored by laser Doppler flowmeter (LDF), and mean arterial blood flow (MABP), which was transferred by pressure conductor sensor and preamplifier, was simultaneously recorded on the computer. Our results showed that MABP was stable throughout the experiment. Cochlear blood flow (CBF) increased by 10.32% (P < 0.05) in 1 mmol/L group, and decreased by 4.89% in 0.1 mmol/L group (P < 0.05). In control group cochlear microcirculation showed no significant changes. It is concluded that DPPH exerted effects on cochlear microcirculation.

Animals↗

Skin microcirculation in healthy subjects and patients with arteriosclerosis.

The concept to use the human skin microcirculation as a pharmacological in-vivo test system is old; however, methods developed in the 50s have been abandoned because of side effects and/or use of radioactive substances. We describe a newly developed minimally invasive method that allows in-vivo pharmacology in the human skin microcirculation injecting very low doses of a substance of drug without any systemic effects. The double injection technique (DIT) bears the potential to predict the effects of a drug and/or the vascular reactivity or dysfunction of other less accessible areas of the circulation (e.g. the myocardium). The DIT has been applied for studies in healthy volunteers and patients with atherosclerosis; the focus of interest was endothelial (dys-)function and the effect of exogenous vasoactive drugs. Using endothelin antagonists, we investigated the role of endogenous endothelin under physiological conditions and in atherosclerosis. The NO-synthase inhibitor L-NMMA has been applied to study the L-arginine-NO-pathway and the role of endothelial adrenoceptors. Ongoing studies with the DIT comparing coronary and skin microcirculation may help to develop minimally invasive methods to predict the effects of drugs and vascular function in the heart.

Arteriosclerosis↗

Pancreatic microcirculation in acute pancreatitis.

We present a review of the microvascular morphology of the pancreas and microstructure of the pancreatic lobule, and report our experimental results of the investigation of pancreatic microcirculation following acute pancreatitis. Impairment of pancreatic microcirculation in the early phase of acute pancreatitis may play a key role in the progression of this disease. Possible contributory mechanisms include increased vascular permeability, reduced blood flow, leukocyte-endothelial cell interaction and intravascular thrombus formation. Using an in-vivo microscope system and off-line computer analysis, we achieved direct visualization and quantification of changes in microvascular permeability and leukocyte behavior in pancreas with acute pancreatitis. Bradykinin and oxygen radicals have been demonstrated to be involved in the increase of vascular permeability in the early stage of caerulein pancreatitis. Leukocyte adherence to the vessels in the pancreatic microcirculation is a secondary event following permeability changes in acute pancreatitis. Leukocyte infiltration during exacerbation of acute pancreatitis is mediated by leukocyte-endothelial cell interaction via leukocyte integrin CD11b/18.

Acute Disease↗

[Myocardial microcirculation in humans--new approaches using MRI].

INTRODUCTION: One crucial goal of magnetic resonance imaging (MRI) in patients with coronary artery disease (CAD) is the characterization of myocardial microcirculation that reflects tissue supply much better than detection and quantification of a stenosis itself. PERFUSION: Myocardial perfusion is one important parameter of microcirculation and it is commonly detected by first-pass techniques using contrast agents (CA). Despite the quantification of perfusion it is an indispensable component of a comprehensive diagnosis to determine the perfusion reserve, which is believed a good indicator for viability of myocardium. However, most MRI techniques for perfusion imaging are Ca based and this implies a restricted reproducibility in humans. Beyond it, most first-pass techniques are qualitative and not quantitative. REGIONAL BLOOD VOLUME: Another parameter of microcirculation is the regional intracapillary myocardial blood volume (RBV) that almost represents the whole intramyocardial blood volume due to its dominating volume fraction. The RBV reflects the autoregulatory adaptation of microvessels, e.g., a severe stenosis may lead to an increase of the RBV by capillary recruitment, and the RBV is reduced in scar areas. The RBV may be quantified by first-pass techniques; however, this demands a definite relation between signal intensity and concentration of the CA, which is difficult to find for the range of concentrations present during the first pass. Until recently, no techniques existed for the exact and noninvasive assessment of the RBV. CAPILLARY RECRUITMENT: The evaluation of the relevance of a coronary artery stenosis is of paramount interest for the therapeutic decision. A severe stenosis implies the activation of compensation mechanisms, which includes poststenotic dilation of the microvascular system. This lowering of the vascular resistance aims to maintain sufficient blood supply at least under resting conditions. However, many obstacles hamper the noninvasive assessment of this autoregulatory response so far. Our laboratory recently developed different techniques for the assessment of myocardial perfusion, regional myocardial blood volume, and capillary recruitment. These techniques are based on theoretical and physiologic considerations and work mainly without CA. In this article, feasibility and reproducibility of these approaches are shown in volunteers and patients. CLINICAL STUDIES: MR exams were performed on a 1.5-T whole body scanner (SIEMENS Vision) and a 2-T system (BRUKER Tomikon). Stress examinations were done repeatedly under pharmacologically induced stress (dipyridamole or adenosine, infusion rate: 0.56 mg/kg body weight over 4 min via an antecubital vein). Heart rate and blood pressure were continuously monitored during stress exams. T1 MEASUREMENTS: Spin labeling used in this work is based on T1 measurements after global and slice-selective spin preparation using a fast ECG-gated saturation recovery FLASH sequence. Due to the inflow of unsaturated proton spins, T1 in tissue is shortened after slice-selective preparation case compared to global saturation. We showed that, assuming a two compartment model with fast proton exchange between the compartments, the absolute perfusion P (in [ml/g/min]) can be calculated as P = lambda/T1(blood) ([T1(global)/T1(selective)] - 1), where the blood tissue partition coefficient lambda represents the quotient of water content of capillary blood and perfused tissue, which is approximately 0.9 ml/g in myocardial tissue. T1(blood) is the longitudinal relaxation time T1 of the arterial blood, measured in the left ventricle (LV). T1(global) and T1(selective) are the myocardial T1 calculated after the respective spin preparation. Perfusion reserve is evaluated as the quotient of perfusion under adenosine-induced stress and perfusion at rest. In volunteers quantitative perfusion was determined as 2.5 +/- 0.7 ml/g/min (rest), perfusion reserve was about 2.0. Absolute perfusion decreased to 1.6 +/- 0.6 ml/g/min under oxygen breathing. In patients with CAD, myocardial regions with decreased perfusion reserve could be identified. perfusion reserve could be identified. Performing the described spin-labeling technique with an intravascular CA facilitates the determination of the intra-extracapillary water proton exchange frequency and the RBV. In a patient study, the effect of the intravascular CA Feruglose (Amersham) on relaxation rate in myocardium (R1(myo)) in the steady state was investigated (Figure 1). The dependence of R1(myo) on R1(blood) was characterized and compared with a theoretical model which allowed determination of the intra-extracapillary water proton exchange frequency (f = 0.48 s(-1)) and the intracapillary blood volume (RBV = 12.9%). A linear response range of Delta R1(myo) on Delta R1(blood) was estimated which, in future studies, will allow the determination of RBV with intravascular CA (Figure 2). T2* MEASUREMENTS: We anticipated that poststenotic vasodilatation implies a capillary recruitment. Almost all (i.e., > 90%) of intramyocardial blood residues in that type of vessel. Due to their large arteriovenous oxygenation difference, myocardial capillaries contain considerable amounts of deoxyhemoglobin (Figure 3). Hence, in regions with autoregulatory capillary recruitment the tissue concentration of deoxyhemoglobin should be elevated when compared to myocardium supplied by a normal vessel (Figure 5b). Due to its paramagnetic property and its intravascular confinement, the natural CA deoxyhemoglobin may be assessed by susceptibility sensitive, or also called blood oxygenation level-dependent (BOLD) MRI. For T2* measurements, a segmented gradient echo pulse sequence was used, which acquired ten successive gradient echoes per rf excitation in a single breathhold. In volunteers, there was an increase in T2* of about 10% under dipyridamole-induced stress (Figure 4). This means a decrease of the intracapillary deoxyhemoglobin concentration, whereas the oxygen consumption under increased perfusion did not change. In myocardial regions of patients, associated with the stenotic artery T2* was significantly lower than in residual myocardium (p < 0.01; Figure 5a). This difference in T2* increased after application of the vasodilator dipyridamole (p < 0.001). In patients being reinvestigated after therapeutic interventions, the microvascular dilation was partly removed (Figure 5c). For the first time we could show that myocardial BOLD MRI detects poststenotic capillary recruitment dependent on a coronary artery stenosis.

Adenosine↗

[Microcirculation of cutaneous melanoma].

The microcirculation of human skin tumours can be visualized with noninvasive methods from clinical microcirculation research (capillaroscopy and laser Doppler fluxmetry (LDF). The latter can also be used to measure the blood flow in such tumours. This prospective study was designed to evaluate melanoma-associated cutaneous neoangiogenesis. We studied the microcirculation of 114 pigmented skin tumours in 103 patients (63 women, 40 men) averaging 38.8 +/- 21.1 years of age. On the basis of histological findings, we diagnosed melanocytic naevus in 86 cases and malignant melanoma in 28. The malignant melanoma was characterized by a chaotic arrangement of the capillaries, which were dilated and formed corkscrew-shaped or glomerular structures. In the transitional area between healthy and cancerous areas there was hypervascularization. The capillaries of the melanoma appeared to be more permeable towards the low-molecular-weight, water-soluble sodium fluorescein. Laser Doppler flux, a measure of cutaneous circulation in the upper 2 mm of the skin, is higher in the center of the melanoma than in either the middle of melanocytic naevus (p < 0.0005) or in neighbouring healthy skin areas (P < 0.005). In the future, antiangiogenetic therapy strategies could play a significant role in the treatment of malignant melanoma. These methods provide a reliable means of evaluating the specific antiangiogenetic efficacy of treatments for cutaneous melanoma.

Adolescent↗

Opening the microcirculation: can vasodilators be useful in sepsis?

OBJECTIVE: A prominent feature of sepsis is dysfunction of the microcirculation, with impaired perfusion and regional tissue oxygenation causing a deficit in oxygen extraction. If shunting of oxygen transport past closed hypoxic microcirculatory beds is responsible for this, vasodilator therapy, which raises the driving pressure of the microcirculation and thereby promotes flow, could recruit such shunted microcirculatory units and improve tissue oxygenation. DESIGN: A literature search was conducted in Medline for evidence of this expected benefit of vasodilators in sepsis. METHODS: Studies were searched using the keyword for vasodilating drugs in combination with "sepsis," "septic," "multiple organ failure," or "critically ill patients." The search included animal and clinical investigations but only where the effects of vasodilator therapy were demonstrated by regional measures of oxygen transport variables (e.g., oxygen extraction variables, regional ischemia, microcirculatory flow or tissue oxygenation measurements). The vasodilating drugs investigated included prostacyclin, pentoxifylline, N-acetyl-cysteine, and nitric oxide donors used in animal and human sepsis. RESULTS: Prostacyclin and nitric oxide donors are the best studied vasodilating agents in experimental sepsis and have shown improved tissue perfusion and oxygen extraction. In several clinical studies prostacyclin has also been shown to have such beneficial effects. Recent studies using orthogonal polarization spectral imaging have shown microcirculatory recruitment by nitric oxide donors in hemodynamically resuscitated septic patients. Whether such therapeutic modalities aimed at recruitment of the microcirculation improve outcome, however, still has to be determined.

Acetylcysteine↗

Protective effects of PARP inhibition on liver microcirculation and function after haemorrhagic shock and resuscitation in male rats.

OBJECTIVE: The aim of this study was to investigate the impact of the water-soluble poly-(ADP)-ribose-polymerase (PARP) inhibitor 5-aminoisoquinolinone (5-AIQ) on liver microcirculation and function after haemorrhagic shock and resuscitation. DESIGN: Controlled, randomized animal study. SETTING: University animal care facility and research laboratory. SUBJECT: Male Sprague-Dawley rats were subjected to haemorrhagic shock for 1 h, followed by resuscitation with shed blood and crystalloid solution for a total of 5 h. INTERVENTIONS: The PARP inhibitor 5-AIQ (3 mg/kg; n=7) or vehicle (n=7) was administered 5 min prior to resuscitation. Sham-operated animals without induction of shock served as controls (n=7). MEASUREMENTS AND RESULTS: Using intravital fluorescence microscopy hepatic microcirculation was assessed at baseline, end of shock phase as well as 1 h and 5 h after resuscitation. Systemic arterial blood pressure and bile flow were continuously monitored. 5-AIQ treatment attenuated shock/resuscitation-induced increase of intrahepatic leukocyte-endothelial cell interaction with a marked reduction of both sinusoidal leukostasis and venular leukocyte adherence. Moreover, nutritive perfusion was found improved, guaranteeing sufficient oxygen supply to tissue, as indicated by low NADH autofluorescence, which was not different to that in controls. Most notably, excretory liver function reached baseline level over 5 h of reperfusion in 5-AIQ-treated animals. CONCLUSIONS: In the present setting of shock/resuscitation in male rats the PARP inhibitor 5-AIQ proved to be very effective in ameliorating compromised liver microcirculation and function. Further research has to confirm that PARP inhibition is a suitable tool in the acute treatment of patients suffering from reduced circulating blood volume and thus microcirculatory organ dysfunction.

Animals↗

Influence of nitric oxide on microcirculation in pancreatic ischemia/reperfusion injury: an intravital microscopic study.

Recently, protective effects of nitric oxide donors in pancreatic ischemia/reperfusion (IRI) injury have been described. Their role in post-ischemic microcirculation was previously not investigated. Ischemia reperfusion was induced in an isolated pancreatic tail segment in situ. Animals were randomized to four experimental groups (n=7 animals/group), the control group (CO) received saline as placebo. Treatment groups received either sodium nitroprusside (SN) 5 min before until 2 h after reperfusion, L-arginine (LA) 30 min before reperfusion until 2 h after reperfusion or sodium nitroprusside and L-arginine (SNLA) together. After induction of ischemia (2 h) post-ischemic microcirculation was observed for 2 h by intravital-fluorescence microscopy. Functional-capillary density (FCD), leukocyte adherence in post-capillary venules (LAV) and histological damage were analysed. After reperfusion FCD decreased in all groups (P<0.05). FCD was significantly restored in all groups with administration of nitric oxide donors after reperfusion (P<0.05) as compared to CO without significant difference between the individual nitric oxide donor groups. Leukocyte adherence was significantly increased 1 h and 2 h after reperfusion (P<0.001) as compared to baseline, which was lower in all nitric oxide donor groups. Histological damage in the pancreatic tail-segment was significantly reduced in nitric oxide donor groups (P<0.01). Administration of nitric oxide donors might be useful in ischemia-reperfusion injury of the pancreas by its protective effect on microcirculation and inflammatory reaction.

Animals↗

Effects of portal vein clamping time on rat liver microcirculation following extended cold preservation and transplantation.

Orthotopic rat liver transplantation (ORLT) following extended cold preservation in University of Wisconsin (UW) solution has been shown to induce alterations of the hepatic microcirculation, mainly characterized by areas of no-reflow. The present study was performed to determine whether these alterations were related to the portal vein clamping time (PVCT), shown to be the main determinant of survival after ORLT. The hepatic microcirculation was evaluated using the multiple-indicator dilution curve (MIDC) technique after ORLT following 24-hour cold ischemia in UW solution. Two groups of rats were studied: one with PVCTs of less than 14 min (survival conditions) and one with PVCTs of more than 18 min (nonsurvival conditions). Four hours after ORLT, only long PVCTs were associated with small, but significant, nonperfused areas, about 10% of the liver not being perfused by water; however, in both survival and nonsurvival conditions, the sinusoidal sieving function was well-maintained in perfused areas. In addition, liver viability parameters and hepatocyte function were similarly and minimally altered. The hepatic microcirculation is minimally altered 4 h after ORLT following extended cold preservation in UW solution, whatever the survival condition. Although only found after long PVCTs, the low magnitude of areas of no-reflow should not be associated with lethal injury of the transplanted liver, a finding further supporting the concept that survival after ORLT following 24-hour cold preservation in UW solution is mainly influenced by extrahepatic factors.

Adenosine↗

Impairment of pancreatic microcirculation in the early reperfusion period during simultaneous pancreas-kidney transplantation.

The most likely cause of graft pancreatitis is the ischemia/reperfusion injury which can be a major problem in simultaneous pancreas-kidney transplantation. Animal experiments suggest the important role in this process of an impaired microcirculation after reperfusion. We have investigated pancreatic microcirculation in the early reperfusion period during clinical pancreas-kidney transplantation. Tissue PO2 (PO2ti) was monitored by a PO2-sensitive electrode. After reperfusion (a.r.) samples were taken from the venous effluent of the pancreas and simultaneously from the radial artery. After an initial peak a transient fall of PO2 was found. Total blood flow and hemoglobin oxygen saturation (sHbO2) in the venous effluent increased until 90 min a.r. (107 ml/min, 97.1%) High venous sHbO2 and high PO2ti correlated with good graft outcome. These findings can be explained by an impairment of capillary perfusion (no reflow) and concomitant shunt perfusion. The data suggest the considerable relevance of pancreatic microcirculation in the early reperfusion period during clinical pancreas transplantation.

Humans↗

Analysis of the microcirculation during xenogeneic liver perfusion in the guinea pig--rat model. The contribution of leukocytes to the rejection process.

Since the main feature of hyperacute rejection is a disturbance of the xenograft's microcirculation, we analyzed microhemodynamic parameters during xenogeneic hemoperfusion of the guinea pig (GP) liver and investigated the contribution of leukocytes to the rejection process using intravital fluorescence microscopy. Isolated GP livers were hemoperfused via the portal vein in a recirculating system with a constant flow of 1 ml/min per g liver. In contrast to isogeneic perfusion with heparinized GP blood, a disturbance in the microcirculation was observed during xenogeneic perfusion using heparinized rat blood, with significantly higher values of perfusion pressure, reduced sinusoidal perfusion rates, and a larger number of stagnant leukocytes. A complete breakdown of the microcirculation, with the highest values of perfusion pressure and the smallest perfusion index, was associated with 100% accumulated leukocytes when rat blood was anticoagulated with sodium citrate. Almost isogeneic perfusion values were obtained when fucoidin, which inhibits L-selectin-dependent cell interaction, was added to heparinized rat blood. These data indicate that leukocyte-endothelial cell interaction contributes to xenogeneic rejection.

Animals↗

Impact of vasoactive intestinal polypeptide and gastrin-releasing peptide on small bowel microcirculation and mucosal injury after hepatic ischemia/reperfusion in rats.

BACKGROUND AND AIMS: Alterations in microvascular perfusion of the intestine after hepatic ischemia/reperfusion have been suggested as an important cause of postoperative septic complications. We therefore investigated small bowel microcirculation and mucosal injury after liver ischemia/reperfusion in a rat model. Furthermore, we analyzed the effects of the regulatory peptides vasoactive intestinal polypeptide and gastrin-releasing peptide for their splanchnic vasoactivity. METHODS: Hepatic ischemia was induced by clamping of the left hepatic artery and vein for 40 min, followed by 60 min of reperfusion. The control group was treated similarly, but without clamping of the liver vessels. Ten minutes after clamping of the hepatic vessels, vasoactive intestinal polypeptide or gastrin-releasing peptide, respectively, were continuously infused intravenously in the experimental groups. Small bowel microcirculation and mucosal injury were assessed using intravital microscopy and the Chiu-score, respectively. RESULTS: The functional capillary density of the small intestine following ischemia and reperfusion of the left hepatic lobe significantly decreased compared to normal controls in both the mucosa and the smooth intestinal muscle. Red blood cell velocity decreased, whereas leukocyte-endothelium adherence, stasis index and the mucosal injury score increased. Administration of vasoactive intestinal polypeptide resulted in an increase of functional capillary density in the mucosa and of the red blood cell velocity and a decrease in the stasis index. The mucosal injury score was significantly higher in reperfused animals without treatment. The application of gastrin-releasing peptide resulted in an isolated increase of the red blood cell velocity. Leukocyte adherences could not be altered by the regulatory peptides. CONCLUSION: We conclude that hepatic ischemia/reperfusion injury leads to significant alterations of small bowel microcirculation and mucosal injury. Vasoactive intestinal polypeptide and gastrin-releasing peptide attenuate the damage in a different manner.

Animals↗

Does microcirculation play a role in the pathogenesis of inflammatory bowel diseases? Answers from intravital microscopic studies in animal models.

The potential role of intestinal microcirculation for the development of inflammatory bowel diseases (IBD) has not been systematically investigated, mainly because of methodological problems. Using a well-established rodent model of IBD and intravital microscopy, the present study investigated whether (and when) gut microcirculation is disturbed in IBD, and whether microcirculatory disorders contribute to histological and functional alterations in the development of IBD. Colitis was induced by rectal injection of trinitrobenzene sulfonic acid. After 1, 3, and 15 days rats were laparotomized for intravital microscopic determination of mucosal colonic blood flow. In a second series it was examined whether enhancing colonic capillary blood flow by hemodilution therapy stabilizes colonic wall resistance and other electrophysiological parameters of gut permeability. Additional measurements involved hemodynamic monitoring and histological examinations. Colonic capillary blood flow was significantly decreased 3 days after colitis induction (1.8 +/- 0.05 vs. 2.6 +/- 0.04 nl/min in healthy control animals) when histology revealed signs of acute inflammation, and normal values after 15 days (2.4 +/- 0.06 nl/min) when chronic histological changes were evident. Hemodilution therapy enhanced colonic capillary blood flow in the initial stage (2.1 +/- 0.02 vs. 1.6 +/- 0.02 nl/min in saline-treated animals with trinitrobenzene sulfonic acid colitis) and improved gut resistance and electronic chloride secretion (73 +/- 15 vs. 33 +/- 8 microA cm2). Histological alterations were not significantly attenuated. Impaired colonic capillary blood flow in the initial stage of experimental colitis and improved mucosal microcirculation with stabilized gut permeability suggests that the early microcirculatory disturbances precede chronic histological changes and influence functional alterations in the course of the disease. Research should be continued in this field because important mechanisms in the pathogenesis of IBD and potentially therapeutic (vasoactive) substances may otherwise be overlooked.

Animals↗

Evaluation of anastomotic microcirculation after low anterior rectal resection: an experimental study with different reconstruction forms in dogs.

BACKGROUND: Data on anastomotic microcirculation of coloanal anastomoses are contradictory. Therefore, it was the aim of the present study to investigate perianastomotic blood perfusion in a standardized experimental setting comparing three forms of reconstruction using laser fluorescence videography, a new method for the evaluation of microcirculation. METHODS: After a standardised rectal resection in dogs, reconstruction was performed as straight end-to-end (n = 6), side-to-end (n = 6), or J-pouch (n = 6) coloanal anastomosis. Bowel perfusion was evaluated using IC-View laser fluorescence videography. RESULTS: The perfusion index was significantly reduced in all three groups compared to the reference regions: endto-end anastomosis, median, 93% (range, 63%-136%); side-to-end-anastomosis, 65% (35%-138%); colonic-J-pouch anal anastomosis, 52% (32%-72%); p < 0.001). CONCLUSIONS: Straight coloanal anastomoses provide better anastomotic microcirculation after rectal resections than colonic-J-pouch anal anastomoses or side-to-end anastomoses. However this effect does not seem to be decisive for the prevention of anastomotic leaks.

Anastomosis, Surgical↗

Gastric microcirculation as target of gastroprotective action of glucocorticoid hormones in rats with desensitization of capsaicin-sensitive sensory neurons.

The study was designed to investigate whether gastric microcirculation is involved in mechanisms of gastroprotective action of glucocorticoids during desensitization of capsaicin-sensitive sensory neurons (CSN). The effects of desensitization of CSN on gastric microcirculation and gastric erosions after indomethacin administration (35 mg/kg) were compared in sham-operated rats and adrenalectomized animals without and with corticosterone replacement (4 mg/ kg s.c.). Desensitization of CSN (by capsaicin, 100 mg/kg s.c.) and adrenalectomy or sham-operation was performed 2 or 1 weeks before experiment, respectively. An in vivo microscopy technique for the direct visualization of gastric microcirculation and the analysis of red blood cell (RBC) velocity was employed. The results obtained indicate that desensitization of capsaicin-sensitive sensory neurons potentiate indomethacin-induced microvascular disturbances in gastric submucosa and mucosa and gastric injury. These potentiated effects of the desensitization are profoundly promoted by concomitant glucocorticoid deficiency. The results suggest that protective action of glucocorticoids against indomethacin-induced injury during desensitization of CSN is provided by their maintenance of gastric blood flow.

Adrenalectomy↗