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Biomedical subjects

K Messmer

Publications and source records attributed to K Messmer.

At least 109 records · Page 6Linked to original sources

Inhibition of neutrophil proteinases by recombinant serpin Lex032 reduces capillary no-reflow in ischemia/reperfusion-induced acute pancreatitis.

Because neutrophil proteinases such as elastase and cathepsin G are considered to play a major role in inflammatory tissue damage, the microcirculatory effect of the serine proteinase inhibitor (serpin) Lex032 after ischemia/reperfusion (I/R)-induced pancreatitis was investigated. Lex032 inhibits these proteinases by recombinant combination of alpha(1)-antitrypsin and alpha(1)-antichymotrypsin. Twenty-eight anesthetized rats received either Lex032 or NaCl 0.9% as a control solution during baseline conditions or after 1 h of complete reversible ischemia induced by microclip occlusion of the pancreatic arteries. The number of erythrocyte-perfused capillaries (functional capillary density) and the leukocyte adherence in postcapillary venules were assessed by intravital microscopy 45, 90, and 120 min after administration. In the baseline group, Lex032 increased leukocyte adherence compared with the NaCl 0.9% baseline group, without changing any other parameter. I/R without Lex-032 treatment resulted in a 50% reduction in functional capillary density, a 2-fold increase in leukocyte adherence, an increase in interleukin-6 serum concentration, and a significant fall in blood pressure during reperfusion time compared with baseline animals. Treatment with Lex032 in I/R resulted in significant preservation of capillary perfusion, an absence of interleukin-6 increase, and preservation of mean arterial pressure during reperfusion time, without changing the leukocyte adherence, compared with the NaCl 0.9% I/R group. Because of its considerable amelioration of microcirculatory perfusion, Lex032 might be useful in the treatment of pancreatic I/R tissue damage (e.g., cardiac bypass surgery, pancreas transplantation, and hemorrhagic shock) by prevention of capillary perfusion failure.

Acid-Base Equilibrium↗

Differential effect of anti-TNF-alpha antibody on proinflammatory cytokine release by Kupffer cells following liver ischemia and reperfusion.

To study the role of tumor necrosis factor-alpha (TNF-alpha) for induction of the proinflammatory cytokine cascade after liver ischemia and reperfusion (I/R), rats were injected intraperitoneally with anti-TNF-alpha monoclonal antibodies (mAb) or placebo (IgG1) 30 min prior to global hepatic ischemia. Blood levels of TNF-alpha, interleukin (IL)-1alpha and -6 were determined. In addition, Kupffer cells (KC) were harvested after 60 min of reperfusion and spontaneous cytokine release was measured. Sham-operated animals were used as controls. Levels of proinflammatory cytokines in serum and KC supernatants were detected using specific bioassays and ELISA. Liver I/R resulted in increased (p < .01) serum levels of TNF-alpha, IL-1alpha, and IL-6, which was associated with an enhanced (p < .05) release of these cytokines by KC. In vivo pretreatment with anti-TNF-alpha mAb led to complete neutralization of TNF-alpha serum levels and decreased (p < .01) IL-6 levels (-62%). Moreover, anti-TNF-alpha mAb markedly (p < .05) decreased the release of TNF-alpha (-69%) and IL-6 (-56%) by KC, while IL-1alpha was not affected. These data indicate that TNF-alpha produced early after liver I/R triggers both its own secretion as well as IL-6 release by KC during reperfusion while the release of IL-1alpha occurs independent from TNF-alpha.

Animals↗

In vivo assessment of synovial microcirculation and leukocyte-endothelial cell interaction in mouse antigen-induced arthritis.

OBJECTIVE: The microcirculation and leukocyte-endothelial cell interaction in synovial tissue of an inflamed joint are known to play a crucial role in the pathogenesis of rheumatoid arthritis. The aim of this study was to characterize the in vivo changes in the microvasculature and in leukocyte-endothelial cell interactions in the mouse synovial tissue using intravital fluorescence microscopy in three stages of antigen-induced arthritis. The expression of E- and P-selectin and ICAM-1 were also studied using immunohistochemistry. METHODS: Antigen-induced arthritis (AiA) was produced in Balb/c mice. The severity of arthritis at three different phases was quantified using a clinical and histological score. For the intravital fluorescence microscopy measurements, the patella tendon was partially resected for visualization of the intraarticular synovial tissue of the knee joint. The number of rolling and adherent leukocytes, functional capillary density (FCD) and RBC velocity were quantitatively measured in synovial microvessels. Expression of ICAM-1, E- and P-selectin was assessed by immunohistochemistry. RESULTS: There was a significant increase in the leukocyte rolling fraction in postcapillary venules in the acute phase of AiA (from 0.26 +/- 0.05 in controls to 0.45 +/- 0.04 8 d after AiA induction). The number of leukocytes adherent to the endothelium was significantly elevated in all phases of arthritis (from 121 +/- 27 in controls to 376 +/- 62 mm2 63 d after AiA-induction). Functional capillary density was significantly enhanced in the acute (332 +/- 15 cm/cm2) and intermediate phases (320 +/- 15 cm/cm2) compared to control values (227 +/- 15 cm/cm2). Arthritis resulted in a distinct increase in the expression of ICAM-1 on the synovial endothelium in all phases of AiA. E- and P-selectin expression were detected only in the acute phase. CONCLUSION: Our model provides new insights into the microcirculatory changes which occur in the synovial tissue of an arthritic joint.

Animals↗

Platelet-endothelial cell interactions during ischemia/reperfusion: the role of P-selectin.

Growing evidence supports a pathophysiological role for platelets during the manifestation of postischemic reperfusion injury; in the current study, we investigated the nature and the molecular determinants of platelet-endothelial cell interactions induced by ischemia/reperfusion (I/R). Platelet-endothelium and leukocyte-endothelium interactions after 1 hour of ischemia were monitored in vivo within mouse small intestine. By intravital fluorescence microscopy, we observed that platelets, like leukocytes, roll along or firmly adhere to postischemic microvascular endothelial cells. In contrast, few leukocyte-endothelial cell interactions were detected in sham-operated controls. Monoclonal antibodies against P-selectin significantly attenuated platelet rolling and adherence in response to I/R. To identify whether platelet or endothelial P-selectin plays the major role in mediating postischemic platelet-endothelial cell interactions, P-selectin-deficient or wild-type platelets were transfused into wild-type or P-selectin-deficient mice, respectively. Whereas platelets lacking P-selectin rolled along or adhered to postischemic wild-type endothelium, interactions between wild-type platelets with mutant endothelium were nearly absent, indicating that I/R-induced platelet-endothelium interactions are dependent on the expression of P-selectin by endothelial cells. Concomitantly, P-selectin expression in the intestinal microvasculature was enhanced in response to I/R, whereas no upregulation of P-selectin was observed on circulating platelets. In summary, we provide first in vivo evidence that platelets accumulate in the postischemic microvasculature early after reperfusion via P-selectin-ligand interactions. Platelet recruitment and subsequent activation might play an important role in the pathogenesis of I/R injury.

Animals↗

Influence of positive end-expiratory pressure ventilation (PEEP) on left ventricular pattern of contraction in experimental ARDS.

The aim of the present study was to investigate the pattern of ventricular dynamic contraction and its relation to changes of transseptal pressure gradient during ventilation with positive end-expiratory pressure (PEEP). For that purpose, left (LV) and right ventricular (RV) pressures as well as ventricular shortening in septal-lateral (s.l.) direction were assessed in 8 dogs (RV n = 5) exposed to experimental acute respiratory distress syndrome (eARDS) and PEEP 10 and 20 cmH2O (P10, P20). Despite maintenance of transmural central venous pressure by volume substitution, PEEP resulted in a fall of stroke index (P10 vs. eARDS: -7%, p<0.05; P20 vs. P10: -28%, p<0.05); this was accompanied by a fall of LV end-diastolic diameter (P10 vs. eARDS: -3.1%, p<0.01; P20 vs. P10: -7.4%, p<0.01). Although the transseptal LV to RV end- diastolic pressure gradient changed only minimally, there was a significant increase of paradoxic left ventricular systolic lengthening from 3.1% at eARDS to 4.5% at P10 (p<0.05 vs. eARDS) and 8.4% at P20 (p<0.05 vs. P10). Neither RV end-diastolic diameter nor s.l. shortening were significantly influenced by P10 or P20. It is concluded, that a rearrangement of LV dynamic contraction does occur during ventilation with PEEP, which is compatible with the concept of paradoxic systolic bulging of the interventricular septum towards the lumen of the right ventricle. Since this phenomenon occurred independent from changes of the end-diastolic pressure gradient between both ventricles, we suggest that systolic septal movement to the right is an active contractile process to support the function of a stressed RV.

Animals↗

Changes in the arteriolar volume pulse of the finger during various degrees of tilt using near infra-red and red photoplethysmography.

1. Photoplethysmography is a widely used non invasive technique for the measurement of peripheral oxygen saturation. A more detailed analysis of the volume pulse (VP) can indicate alterations in peripheral vascular tone, due to sympathetic stimulation, stress, pain and temperature. - 2. In six healthy male volunteers we investigated changes in the VP resulting from vasoconstriction and vasodilatation induced by varies degrees of tilt. Subjects were subjected 0 degrees tilt followed by head down -8 degrees -15 degrees, -30 degrees -15 degrees, -8 degrees, 0 degrees, 15 degrees, 30 degrees , 70 degrees, 30 degrees, 15 degrees and 0 degrees. Each tilt stage was sustained for 15 minutes. Both VP - and haemodynamic changes were continuously recorded 30s before and then for 210 s after the imposition of each tilt step. We used a new computer driven soft and hardware for the analysis of the VP. 3. The VP signal was obtained with a sensor emitting 840 nm (NIR) and 640 nm (RED) light into finger tip with a sample rate of 128 Hz. All data was normalised to the initial mean value obtained at 0 degrees tilt. The signal strength parameters amplitude, and area under the curve and the first derivative of the amplitude (flux) as well as time discrete parameters, time of first maximum (Tmax), dicrote wave (Td), volume pulse decrease (Tdec) and fundamental arterial oscillation Tag = Td - Tmax were measured. 4. HR increased significantly during 30 degrees and 70 degrees tilt, but no change in the other hemodynamic parameters was observed. Amplitude, area under the curve and flux of both the Red and the NIR signal increased following head down tilt. A significant decrease of those parameters was found during foot down tilt. 5. No significant changes were found in the time discrete values, neither within each tilt step nor when compared to the initial mean value at 0 degrees tilt. 6. This study reveals that signal strength related parameters such as area under the curve, amplitude and flux reflect changes in vascular tone. Time discrete parameters however did not depict these changes and appear unsuitable for data analysis when using this specific hardware applied in the current study.

Adult↗

Effects of oxaceprol on the microcirculation in ischemia/reperfusion injury.

Oxaceprol, an established drug for treatment of degenerative joint disease, has recently been shown in vitro to reduce leukocyte adhesion to cultured endothelial cells and leukocyte extravasation in vivo in an arthritis animal model. The aim of this study was to examine the effects of Oxaceprol on the microcirculation of striated skin muscle. In the dorsal skinfold chamber of the awake Syrian golden hamster I/R injury was induced by applying a 4-hour complete pressure ischemia. Prior to the ischemia, after 30 minutes, 2 hours and 24 hours of reperfusion the following parameters were assessed in a blinded study: macromolecular leakage, leukocyte rolling fraction, adherent leukocytes, and functional capillary density (FCD). Rhodamine 6G to stain leukocytes in-vivo and FITC Dextran (MW 150,000) was used as a plasma marker. 15 minutes prior to reperfusion the animals received either an i.v. bolus infusion of Oxaceprol (50mg/kg) or an equivalent volume of saline, which was followed by a 45-minute continuous infusion at the same dose. At the conclusion of the experiment samples were collected from the chamber tissue for histological quantification of leukocyte extravasation using an esterase stain. Oxaceprol treatment resulted in a significant decrease of postischemic leukocyte adherence after 0.5 h and 2h of reperfusion. The histological sections revealed a significant reduction in the number of extravasated leukocytes. There was a reduction of macromolecular leakage and treatment also resulted in a preservation of tissue perfusion, as was indicated by a significant increase in FCD in the treatment group compared to the ischemia group. In summary, Oxaceprol was able to protect the tissue from ischemia/reperfusion injury.

Animals↗

Increased peripheral benzodiazepine binding sites in the brain of patients with Huntington's disease.

Huntington's disease (HD) is a hereditary disorder associated with the development of dyskinesias and dementia, characterised by profound atrophy of the striatum and, to a lesser extent, other brain areas. A relative gliosis has been described. One marker for such inflammatory gliosis is an elevation of peripheral type benzodiazepine binding sites (PTBBS); these have also been shown to be increased following acute experimental and chronic degenerative neuronal damage. The present study investigates [3H]PK11195 binding to PTBBS in three brain areas of HD patients. We found a highly significant increase in PTBBS density in the putamen, a moderate but significant increase in the frontal cortex of HD patients and no significant change in the temporal cortex. Comparing these results to findings in other neurodegenerative diseases, e.g. Alzheimer's disease, where inflammation is discussed as a possible primary as well as a secondary pathological mechanism, our observations point to a possible involvement of inflammation in the neurodegenerative process in HD.

Adult↗

Expression of adhesion molecules on circulating polymorphonuclear leukocytes during orthotopic liver transplantation.

After ischemia-reperfusion, polymorphonuclear leukocytes (PMNLs) become activated by inflammatory mediators, adhere to the vascular endothelium via the interaction of specific adhesion molecules, and cause tissue injury by the release of cytotoxic oxygen radicals and enzymes. Results obtained in animal experiments suggest a key role for PMNLs in ischemia-reperfusion injury of transplanted livers; therefore, we studied the expression of adhesion molecules on circulating PMNLs (beta2-integrins [CD18] and L-selectin [CD62L]) in 20 patients undergoing orthotopic liver transplantation (study group). To determine the effects of surgical trauma to the liver in the absence of ischemia and reperfusion, the expression of PMNL adhesion molecules was measured in 10 patients scheduled for elective partial liver resection without hepatic vascular exclusion (control group). Patients were classified as responders or nonresponders based on changes in the expression of adhesion molecules elicited by reperfusion. In the control group, all patients remained nonresponders, showing that surgical trauma of the liver alone does not cause activation of circulating PMNLs. In contrast, 8 of 20 patients in the study group were classified as responders. In responders, postoperative serum liver enzyme activities were significantly higher than in nonresponders, indicating that activation of PMNL was associated with damage to hepatocellular integrity. Because expression of adhesion molecules was already changed during surgery, monitoring of the expression of beta2-integrins and L-selectin on circulating PMNLs during orthotopic liver transplantation might be useful in prediction of early graft dysfunction.

Adolescent↗

Resuscitation with hypertonic saline dextran reduces endothelial cell swelling and improves hepatic microvascular perfusion and function after hemorrhagic shock.

BACKGROUND: Hemorrhagic shock severely compromises hepatic microcirculation and function with tendency to promote hepatic insufficiency and multiple organ failure. MATERIAL AND METHODS: The aim of the study was to evaluate the effects of small volume resuscitation on liver microcirculation (intravital fluorescence microscopy and electron microscopy) and function (arterial ketone body ratio (AKBR) and bile flow), in a rat model of traumatic-hemorrhagic shock. One hour after hemorrhage (MAP 40 mm Hg) the rats were resuscitated with HSD (7.2% NaCl/10% dextran 60, 10% of shed blood/2 min, n = 8); DEX (6% dextran 60, 100% of shed blood/5 min, n = 8); or RL (Ringer lactate, 400% of shed blood/20 min, n = 6). RESULTS: HSD yielded a better recovery of sinusoidal perfusion (17.8 +/- 0.8% nonperfused sinusoids) than DEX (21.8 +/- 0. 7%, P < 0.05) and RL (23.9 +/- 0.9%, P < 0.01). Hemorrhagic shock produced a moderate increase of mean sinusoidal endothelial cell thickness, which was further enhanced by DEX and RL (P < 0.05 vs baseline), whereas HSD reduced the mean endothelial cell thickness toward baseline (P < 0.05 vs DEX and RL). Both AKBR and bile flow were profoundly reduced after 1 h shock. Resuscitation with DEX and RL produced a weak recovery, still remaining at shock level, while HSD infusion allowed a significant improvement of AKBR and bile flow (P < 0.05 vs shock). CONCLUSION: Reduction of mean endothelial cell thickness after HSD is very likely the mechanism for the amelioration of sinusoidal perfusion, resulting in a significant improvement of hepatic energetic status and excretory function.

Animals↗

[Changes in fluid filtration capacity and blood flow after tourniquet in knee operations with spinal anesthesia].

UNLABELLED: An increased microvascular water permeability has been reported after ischemia/reperfusion both in animal models and in human studies. We studied the changes in fluid filtration capacity (FFK) after ischemia/reperfusion due to tourniquet in patients undergoing arthroscopy of the knee. METHOD: Healthy male volunteers (n = 24, mean age 46.9 +/- 3.5) were studied prior to, 1 and 6 hours after arthroscopy of the knee, during which a tourniquet was applied to the thigh. FFK, isovolumetric venous pressure (Pvi) and arterial blood flow in the limb was measured in both legs (tourniquet leg and control leg) using computer assisted venous congestion plethysmography. Venous blood samples were obtained from a cubital vein prior to and from the femoral vein 2 mins after deflation of the tourniquet cuff. 12 patients received preoperatively an infusion of 6% Dextran (D) and 12 patients 500 ml of electrolyte solution (VE) an. RESULTS: The mean duration of the tourniquet was (D) 56.0 +/- 6.9 min and (VE) 53.9 +/- 4.2 min which resulted in a significant increase in venous lactate concentration from (D) 1.4 +/- 0.1 mmol.l-1 to 2.7 +/- 0.3 mmol.l-1 and (VE) 1.3 +/- 0.1 mmol.l-1 to 2.7 +/- 0.3 mmol.l-1 (p < 0.001). A significant decrease in pH from (D) 7.39 +/- 0.01 to 7.32 +/- 0.01 (p < 0.001) and from (VE) 7.39 +/- 0.01 to 7.32 +/- 0.01 (p < 0.001) was also seen. Preoperatively no significant differences in the FFK values of the tourniquet leg (D = 5.3 (4.8-10.7) ml. x 10(-3) min-1.100 ml tissue-1 mmHg-1 = FFKU) and the control leg (5.2 (4.7-8.6 FFKU)) were observed. The maximum FFK value in D was seen 1 hour after ischemia/reperfusion in both, the tourniquet leg (7.5 (4.6-14.2 FFKU) and the control leg (7.8 (5.5-9.4 FFKU). In VE however the maximal FFK value were measured 6 hours after ischemia/reperfusion with an increase in the tourniquet leg from 5.2 (4.2-6.2 FFKU) to 8.1 (3.7-10.4 FFKU) and the control leg from 6.1 (3.6-7.0 FFKU) to 7.3 (6.1-8.3 FFKU) (Median (Range). One-way ANOVA). There were no significant differences in the FFK values between D and VE except for a lower Pvi in VE at the third measurement. No significant changes in the arterial blood flow were seen perioperatively as well as between the operated and non-operated leg. CONCLUSION: A tourniquet of < 1 hour does impair tissue oxygenation as indicated by the increase in lactate and the decrease in pH. The duration of the tourniquet was however to short to have caused sufficient microvascular damage result in a more pronounced increase in fluid filtration capacity.

Anesthesia, Spinal↗

[Microcirculation research in experimental surgery].

The microcirculation is the organ that provides the direct link between blood and tissue, and thereby between the whole organism and the single cell. Modern microcirculation research in experimental surgery is characterized by the use of high-resolution video fluorescence microscopy and quantitative computer-assisted image analysis coupled with the techniques of molecular biology and transgenic or knockout gene technology. These advances should improve knowledge about surgically relevant physiologic and pathophysiologic phenomena at the interface between blood and tissues and help us to understand the initial molecular mechanisms leading to organ dysfunction following inflammation, ischemia-reperfusion, and transplantation.

Animals↗

The nitric oxide donor sodium nitroprusside protects against hepatic microcirculatory dysfunction in early endotoxaemia.

OBJECTIVE: Endotoxin rapidly inhibits the activity of the constitutive endothelial nitric oxide synthase (ecNOS); this precedes the production of NO from inducible NOS (iNOS). This leaves a period in early endotoxaemia with a supposed scarcity of NO. The present study was conducted to examine the effects of external supplementation of NO on liver microcirculation and function. MATERIAL: 13 male Sprague Dawley rats. INTERVENTIONS: The rats underwent laparotomy, and the left liver lobe was exteriorised. All animals were given a bolus dose of endotoxin (LPS) 5 mg/kg intraportally. One group (n = 6) had a continuous infusion of sodium nitroprusside (SNP) 1.4 microg/kg per min started concurrently, the other group (n = 7) was treated with normal saline. The study was terminated after 3 h LPS. MEASUREMENTS AND RESULTS: Intravital microscopy was performed at baseline, at 2 h and 3 h LPS. Hepatic function was assessed by arterial ketone body ratio, acid base values, and bile flow. At baseline 1% of the sinusoids were without perfusion. After 2 h LPS this figure had risen to 9.8+/-1.5% in the SNP group versus 16.9+/-1.4% in the controls (p < 0.05 vs controls). The corresponding values after 3 h LPS were 13.5+/-1.5 versus 19.3+/-1.5% (p < 0.05 vs controls). The leukocyte count in sinusoids and venules had a similar development. Functional parameters were all slightly better preserved in the SNP group, but with no individual significance versus controls. CONCLUSIONS: Infusion of the NO donor SNP in early endotoxaemia attenuates the detrimental effects of LPS on liver microcirculation, most probably by alleviating a relative deficit of NO at the microcirculatory level.

Animals↗

Impact of brain death on hormonal homeostasis and hepatic microcirculation of transplant organ donors.

To elucidate the pathophysiological mechanisms involved in the deterioration of hepatic graft viability in brain-dead organ donors, the impact of brain death on hepatic microcirculation was investigated with respect to hormonal homeostasis and graft viability. Rats were assigned to two groups: group I (n = 6) served as sham controls, and in group II (n = 6), brain death was induced through insufflation of an intracranial balloon. Mean arterial pressure was elevated significantly within 5 min after the induction of brain death and then decreased significantly to below the control value. Urine osmolality was significantly lower and serum osmolality significantly higher than the control values. Antidiuretic hormone level was significantly lower than the control value. Bile secretion also decreased significantly. Furthermore, in group II there were significantly higher numbers of nonperfused sinusoids (15.9% vs 6.2% in group I), and sinusoidal stagnant and postsinusoidal venular adherent leukocytes (53.9/lobule and 258.6/mm2 versus 25.2/lobule and 124.8/mm2 in group I, respectively). In summary, sinusoidal perfusion is compromised after brain death, possibly, in part, through an increased leukocyte activation and accumulation in the hepatic microvasculature, leading to the deterioration of hepatic function.

Animals↗

Failure of Kupffer cell blockade to prevent disseminated intravascular coagulation in endotoxemic rats despite improved survival.

OBJECTIVE: Studies were conducted to evaluate the impact of gadolinium chloride (GdCl3), an agent which blocks the phagocytosis of liver macrophages (Kupffer cells, KC), on the coagulation system and on mortality in a model of rats subjected to a lethal dose of Escherichia coli lipopolysaccharide (LPS) (10 mg/kg body weight, intravenously). METHODS: Rats were either pretreated with GdCl3 (10 mg/kg, i.v., 48 h and 24 h prior to LPS exposure) or saline vehicle. A variety of coagulation parameters such as activated partial prothrombin time (aPTT), fibrinogen, systemic platelet count, antithrombin III (AT III), and activities of factors V, VII, and XII were monitored in the early (1 h) and late time course (16 h) following administration of E.coli LPS. RESULTS: The administration of LPS resulted in the development of disseminated intravascular coagulation (DIC) and was associated with a mortality rate of 47% within 16 h. Blockade of KC by GdCl3 completely abolished LPS-related mortality (0%). However, despite improved survival, GdCl3 failed to prevent laboratory and clinical signs of DIC. GdCl3 per se even contributed to coagulatory and fibrinolytic disorders. CONCLUSION: These results confirm reports on the protective potential of GdCl3 pretreatment in experimental endotoxemia. However, the present study does not support the concept of DIC as a strong prognostic criterion for the outcome of sepsis and septic shock. Furthermore, the results presented suggest a minor role for KC in LPS-mediated activation of coagulation and indicate an involvement of KC in LPS-associated lethality independent of the coagulation system.

Animals↗

IV perflubron emulsion versus autologous transfusion in severe normovolemic anemia: effects on left ventricular perfusion and function.

Intact cardiac compensatory mechanisms are necessary to maintain adequate tissue oxygenation during acute normovolemic hemodilution (ANH). Left ventricular (LV) perfusion, oxygenation and function were analyzed in an experimental whole-body model of profound ANH (Hct 9%) and effectiveness of a perfluorocarbon-based oxygen carrier in maintaining myocardial oxygenation and function was evaluated. A total of 22 anesthetized dogs were hemodiluted to Hct 20% followed by a simulated, controlled blood-loss phase in which dogs were randomized to either: (1) 1:1 exchange of lost blood with autologous red blood cells (RBC-group), (2) 1:1 exchange with a colloid (control-group) and (3) 1:1 exchange with a colloid after a single dose of 1.8 g/kg BW perflubron i.v. (PFC-group). Myocardial oxygen delivery and consumption as well as endocardial perfusion were determined using radioactive microspheres. LV myocardial contractility (LV MC) was assessed from: (1) the relationship between maximum rate of LV pressure increase (LVdp/dtmax) and LV enddiastolic volume (LVEDV) and (2) analysis of the LV endsystolic pressure volume relationship (ESPVR). LV diastolic properties were reflected by (1) minimum rate of LV pressure increase (LVdp/dtmin), (2) slope and intercept of the enddiastolic pressure-volume relationship (EDPVR) and (3) the time-constant of isovolumic LV pressure decline "tau 1/2". Full sets of LV MC data were obtained from 18 dogs (n = 6 per group). LV MC (LVdp/dtmax-LVEDV relation) increased after perflubron administration. At the lowest Hct level, all parameters reflecting LV MC as well as LVdp/dtmin were significantly higher in the PFC-group than in the control-group. After profound normovolemic hemodilution (Hct 9%) superiority of LV MC and LV diastolic properties was found, when myocardial oxygenation was supported by i.v. perflubron emulsion, a temporary O2 carrier.

Anemia↗

Quantitative analysis of small intestinal microcirculation in the mouse.

Impairment of intestinal nutritive perfusion and accumulation of inflammatory cells in the intestinal microvasculature are well-known sequelae of mesenteric ischemia/reperfusion, sepsis, and shock. However, the molecular mechanisms underlying these alterations are still not fully understood. The mouse is particularly suitable for the study of these mechanisms since in this species the involvement of, for example, adhesion receptors or pro-/anti-adhesive mediators can be selectively investigated by the use of monoclonal antibodies or gene-targeted strains. The aim of our present study was, therefore, to establish a model to investigate the microcirculation in the mouse small intestine. Under anesthesia by inhalation of isoflurane-N2O, Balb/c mice (n = 16) were laparotomized, and a segment of the jejunum was exteriorized for intrvital fluorescence microscopy. Using FITC-dextran (MW 150,000) as a plasma marker, functional capillary density (FCD) of both the intestinal mucosa and muscle layer was analyzed. Nutritive perfusion was homogeneous in both compartments with values for FCD of 512 +/- 15 cm-1 in mucosa and 226 +/- 21 cm-1 in the muscle layer. No significant changes were observed throughout the observation period of 2 h (FCD values at the end of the observation period: 524 +/- 31 cm-1 and 207 +/- 7 cm-1 in mucosa and muscle, respectively). Besides capillary perfusion, leukocyte-endothelial cell interaction was analyzed in postcapillary venules of the intestinal submucosa using rhodamine-6G as an in vivo leukocyte stain. Under physiological conditions only a few white blood cells were found rolling along or firmly adherent to the microvascular endothelium (number of rolling leukocytes 1 +/- 0.2 cells/mm per second; number of adherent leukocytes: 18 +/- 7 cells/mm2). In a separate group rhodamine-6G-labeled syngeneic platelets were infused to analyze platelet-endothelial cell interactions quantitatively in vivo. Platelets rolled along or attached to the endothelium in a manner similar to leukocytes. However, in contrast to leukocytes the interactions were not restricted to venules, but were also observed in small arterioles. The newly established model allows for the visualization and quantitative assessment of both nutritive perfusion and platelet/leukocytendothelial cell interactions within the distinct layers of the mouse small intestine. Using this model in combination with gene-targeted mice or monoclonal antibodies it is possible to investigate the molecular mechanisms of intestinal inflammation reactions.

Analysis of Variance↗