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Biomedical subjects

M Lamy

Publications and source records attributed to M Lamy.

At least 91 records · Page 5Linked to original sources

Purification of myeloperoxidase from equine polymorphonuclear leucocytes.

Increases of plasma concentrations of neutrophil myeloperoxidase (MPO) can be used as markers of polymorphonuclear leucocytes (PMN) activation in pathological situations (sepsis, acute lung injury, acute inflammation). To develop an assay for measurement of plasma MPO in horses during the above-mentioned infectious and inflammatory conditions, MPO was purified from equine PMN isolated from blood anticoagulated with citrate. PMN were extracted in a saline milieu (0.2 M Na acetate, 1 M NaCl, pH 4.7) to eliminate most of cellular proteins. Pellets were then extracted in the same buffer containing cationic detergent (1% cetyltrimethyl ammonium bromide). The supernatant was further purified by ion exchange chromatography (Hiload S Sepharose HP column 0.5 x 26 cm, equilibrated with 25 mM Na acetate, 0.2 M NaCl, pH 4.7) with a NaCl gradient (until 1 M). Most of the peroxidase activity of MPO (spectrophotometrically measured by the oxidation of orthodianisidine by hydrogen peroxide) was eluted at 0.65 M NaCl. MPO was further purified by gel filtration chromatography (Sephacryl S 200 column 2.6 x 42 cm with 25 mM Na acetate, 0.2 M NaCl, pH 4.7). MPO (specific activity: 74.3 U/mg) was obtained with a yield of 30% from the detergent extraction supernatant. Electrophoresis (non-reducing conditions) showed 3 bands identified, by comparison with human MPO, (i) the mature tetrameric enzyme (150 kDa) with 2 light and 2 heavy subunits, (ii) the precursor form (88 kDa) and (iii) a form of the heavy subunit without the prosthetic heme group (40 kDa). The mature enzyme and its precursor were glycosylated and possessed peroxidase activity. Equine MPO showed strong similarities with human and bovine MPO, with an absorption peak at 430 nm (Soret peak) characteristic of ferrimyeloperoxidase. Enzymatic activity was pH dependent (optimal value at pH 5.5).

Animals↗

[The current status of organ transplantation: the role of xenotransplantation?].

In the last few years, transplantation was an area of intense research activity. However, there is a worldwide shortage of donor organs for clinical transplantations. Currently, interest in xenotransplantation research is growing not only because of the increased demand for organs but also because of advances in molecular biology techniques that make possible the genetic or immunological manipulations of the animal donor rather than the human recipient. The better definitions of the mechanisms responsible for xenograft rejection should facilitate appropriate therapeutic strategies for long xenograft survival.

Animals↗

Effects of target-controlled anesthesia with propofol and sufentanil on the hemodynamic response to Mayfield head holder application.

The effects of target-controlled anesthesia with propofol and sufentanil on the hemodynamic response to Mayfield head holder (MH) application were evaluated in 18 ASA I and II patients undergoing scheduled intracranial surgery. Premedication consisted of hydroxyzine, alprazolam and atropine given orally 1 h before surgery. Anesthesia was provided with propofol and sufentanil using a target-controlled infusion device; constant calculated plasma concentrations of 4 micrograms ml-1 propofol and 0.5 ng ml-1 sufentanil were maintained throughout the study. Muscle relaxation was obtained with atracurium and ventilation was controlled with air/oxygen. The MH was fixed 45 +/- 12 min (mean +/- SD) after induction of anesthesia. Heart rate and systolic, diastolic, and mean non invasive arterial pressure were monitored and recorded 5 min before induction of anesthesia (control), 1 min before MH application (MH-1), at MH application, and 1 and 2 min after MH application. Systolic, diastolic, mean arterial pressure, and heart rate increased significantly during and after MH application when compared with MH-1 values, but remained constantly lower than control. Hemodynamic parameters measured 1 min before MH application were significantly lower than control. The results of the study indicate that target-controlled anesthesia maintained with constant calculated plasma concentrations of 4 micrograms ml-1 propofol and 0.5 ng ml-1 sufentanil prevents the increase in arterial pressure and heart rate beyond control values following MH application but may induce some degree of arterial hypotension in the absence of nociceptive stimulation.

Adjuvants, Anesthesia↗

JL 13, a potential successor to clozapine, is less sensitive to oxidative phenomena.

The oxidation behaviour of JL 13, a promising antipsychotic, was investigated in comparison with clozapine and loxapine, by measuring their direct "radical scavenging" abilities and their efficacies in inhibiting the lipid peroxidation. In the lipid peroxidation system, the reactivity of these compounds with free radicals produced by gamma-irradiation of linoleic acid may be presented as follows: JL 13 = loxapine < clozapine. In two enzymatic systems (HRP/GSH and HRP/H2O2/ GSH) which generate the thiyl free radicals, clozapine produces a strong enhancement of the thiyl-radical EPR signal intensity while JL 13 and loxapine exhibit no or minimal effect on this signal. The redox potential values for the three derivatives confirm the spectro-photometric and EPR results. Following this study, we show that JL 13, although presenting a preclinical clozapine-like profile, appears less sensitive to oxidation than clozapine.

Antipsychotic Agents↗

[Contributions and prospects of hemoglobin derivatives].

Anoxia-reoxygenation leads to severe metabolic alterations, which result in a generalized inflammatory reaction and multiple organ dysfunction. Direct blood transfusion limits these alterations, but is accompanied by risk of transmission of infections or viral diseases. To avoid these risks, "blood substitutes" have been designed. The modified hemoglobins are not true blood substitutes because they do not possess the complex functions of erythrocytes. They are only oxygen carriers, with a short intravascular life, adapted for temporary use. They are stable, devoid of toxicity and antigenicity, and are able to carry and deliver O2 without regulation of this oxygen transport and without chemical reaction with O2. They possess rheologic properties and an oncotic pressure like those of blood. The use of natural hemoglobin solutions, obtained after lysis of erythrocytes, remains "at risk" because these solutions easily form methemoglobin, increase the oncotic pressure, present renal toxicity, and possess a too high affinity for O2. For these reasons, 5 types of modified hemoglobin solutions have been designed, prepared from human or bovine hemoglobin or by genetic engineering. These hemoglobins are highly purified to eliminate trace amounts of stroma, lipids and endotoxins, which are responsible for acute toxicity. They are modified by internal cross-linking between the monomers, or by binding to macromolecules. Afterwards, they can be polymerized or encapsulated in liposomes. The purpose of these modifications is to modulate the affinity for O2 (by decreasing the binding of O2 and increasing its delivery to tissue), to reduce the dissociation into monomers and to guard against oxidation into methemoglobin. Encapsulation in liposomes allows co-encapsulation of effector molecules and protective substances. Genetic engineering allows the production of recombinant hemoglobin with selective modifications. The modified hemoglobin solutions are essentially used in hemorrhagic shock and perioperative hemodilution. Experimental work in animals has afforded good results: restoration of normal O2 pressure and no toxicity. These assays allow frequent observation of an unexpected rapid hypertensive effect, transient, reversible, and that could be controlled by antihypertensive drugs. The mechanisms of this hypertensive effect remain controverted (stimulation of endothelin production, inhibition of nitric oxide effects, etc.). In humans, studies with healthy volunteers have been completed, while phase II clinical studies are under way in hypovolemic shock, in major abdominal, orthopedic and cardiac surgery, in stroke and in intensive care patients after surgery. The detailed results are awaited, but the modified hemoglobin solutions already appear to be without toxicity and present the same hypertensive effect as observed in animals. However, until now only low doses have been used, and the catabolism of these solutions remains largely unknown.

Animals↗

Psychological approaches during conscious sedation. Hypnosis versus stress reducing strategies: a prospective randomized study.

Stress reducing strategies are useful in patients undergoing surgery. Hypnosis is also known to alleviate acute and chronic pain. We therefore compared the effectiveness of these two psychological approaches for reducing perioperative discomfort during conscious sedation for plastic surgery. Sixty patients scheduled for elective plastic surgery under local anesthesia and intravenous sedation (midazolam and alfentanil upon request) were included in the study after providing informed consent. They were randomly allocated to either stress reducing strategies (control: CONT) or hypnosis (HYP) during the entire surgical procedure. Both techniques were performed by the same anesthesiologist (MEF). Patient behavior was noted during surgery by a psychologist, the patient noted anxiety, pain, perceived control before, during and after surgery, and postoperative nausea and vomiting (PONV). Patient satisfaction and surgical conditions were also recorded. Peri- and postoperative anxiety and pain were significantly lower in the HYP group. This reduction in anxiety and pain were achieved despite a significant reduction in intraoperative requirements for midazolam and alfentanil in the HYP group (alfentanil: 8.7 +/- 0.9 microg kg(-1)/h(-1) vs. 19.4 +/- 2 microg kg(-1)/h(-1), P < 0.001; midazolam: 0.04 +/- 0.003 mg kg(-1)/h(-1) vs. 0.09 +/- 0.01 mg kg(-1)/h(-1), P < 0.001). Patients in the HYP group reported an impression of more intraoperative control than those in the CONT group (P < 0.01). PONV were significantly reduced in the HYP group (6.5% vs. 30.8%, P < 0.001). Surgical conditions were better in the HYP group. Less signs of patient discomfort and pain were observed by the psychologist in the HYP group (P < 0.001). Vital signs were significantly more stable in the HYP group. Patient satisfaction score was significantly higher in the HYP group (P < 0.004). This study suggests that hypnosis provides better perioperative pain and anxiety relief, allows for significant reductions in alfentanil and midazolam requirements, and improves patient satisfaction and surgical conditions as compared with conventional stress reducing strategies support in patients receiving conscious sedation for plastic surgery.

Adult↗

Failure of lipopolysaccharides to directly trigger the chemiluminescence response of isolated equine polymorphonuclear leukocytes.

Divergent results have been reported on the effects of lipopolysaccharides (LPS) on the activation of equine polymorphonuclear leukocytes (PMN). We therefore attempted to determine whether LPS alone can stimulate equine PMN or whether plasma factors are necessary. PMN were isolated from citrated blood on a discontinuous density gradient of Percoll. The luminol (10(-3) mol/L)-enhanced chemiluminescence (CL) of 1.25 x 10(6) cells was measured after addition of Escherichia coli LPS (0.001-10 micrograms/ml) alone or after incubation in autologous plasma (1 h, 37 degrees C). After direct stimulation with LPS, there were random variations of CL in 16 horses that were not reproducible from one sample to the next for the same horse. LPS which had been incubated in plasma gave a dose-dependent stimulation of the CL of the PMN, which did not occur if the plasma had been heat inactivated (1 h, 56 degrees C). These results indicated a role for plasma factors, which were unlikely to be cytokines, as there were no monocytes or lymphocytes in the plasma incubated with LPS, but might have been complement fragments or LPS ligands, such as LPS binding protein. Studies using specific antibodies against these factors are needed to clarify this question.

Animals↗

Mild endotoxaemia and the inflammatory response induced by a marathon race.

1. To address the question of whether endotoxaemia could be involved in the inflammatory response induced by long-term strenuous exercise, 18 male marathon runners [mean age 41 +/- 2 (SEM) years] were studied. Their performance in the marathon ranged from 2 h 46 min to 4 h 42 min. 2. Four venous blood samples were drawn: at rest, just before the race (baseline); within 15 min following the completion of the marathon; after 1 h of recovery; and the morning after the race. 3. The following humoral markers of the inflammatory response to exercise were measured: polymorphonuclear myeloperoxidase (MPO), anaphylatoxin C5a (C5a), tumour necrosis factor-alpha (TNF-alpha) and interleukin-6 (IL-6). Plasma endotoxin was measured by a sensitive and rapid chromogenic Limulus assay. All inflammatory markers were significantly increased (P < 0.001) after the race, reaching in most cases peak values in the first blood sample drawn following the completion of the marathon [MPO, 298 +/- 19 ng/ml (SEM); C5a, 1.45 +/- 0.32 ng/ml; TNF-alpha, 20 +/- 3 pg/ml; IL-6, 88 +/- 13 pg/ml] when compared with baseline [MPO, 146 +/- 16 ng/ml (SEM); C5a, 0.27 +/- 0.2 ng/ml; TNF-alpha, 12 +/- 1.5 pg/ml: IL-6, 1.0 +/- 0.5 pg/ml]. Traces of plasma endotoxin (ranging from 5 to 13 pg/ml, with one exceptionally high value of 72 pg/ml measured in one runner) were detected in seven subjects within the first hour of recovery. An ELISA method was used to determine the endogenous IgG antibodies toward a range of Gram-negative bacterial lipopolysaccharides (LPSs) of different sizes and structures. A transient decrease in certain anti-LPS activities, mainly against rough LPS, occurred in most cases in the first blood sample drawn after the race. There was no correlation between the magnitude of the inflammatory response to exercise, as assessed by the increase in blood levels of humoral markers of inflammation, and the changes in circulating endotoxin levels of anti-LPS IgG activity following the race. 4. From these results, we conclude that the mild, transient endotoxaemia detected in some of our subjects does not play a major role in the observed inflammatory response to a marathon competition.

Adult↗

Postoperative spirometry after laparoscopy for lower abdominal or upper abdominal surgical procedures.

In this prospective study, we have compared women undergoing laparoscopic cholecystectomy, laparoscopic gynaecological surgery and laparoscopic minor gynaecological procedures (diagnostic, tubal, ligation) (n = 10 in each group) to determine if lower abdominal laparoscopy results in less postoperative pulmonary dysfunction than upper abdominal laparoscopy. Pulmonary testing was performed before operation, and 3 and 6 h after operation, on the first and second days after surgery. After operation, a significant reduction in forced vital capacity, forced expiratory volume in 1 s and peak expiratory flow rate occurred after laparoscopic cholecystectomy at each time. There were no significant changes after minor gynaecologic laparoscopy, whereas laparoscopic gynaecological surgery resulted in minor pulmonary dysfunction on the day of surgery only. We conclude that postoperative pulmonary function was less impaired after gynaecological laparoscopy than after laparoscopic cholecystectomy. This study suggests that the site of surgery is an important determinant of lung dysfunction after laparoscopy.

Abdomen↗

Sepsis and serum cytokine concentrations.

OBJECTIVE: To look for relationships between the classification of sepsis and plasma cytokine concentrations. DESIGN: Prospective, consecutive entry study of patients meeting severe sepsis criteria and having bacteriologically documented infections. SETTING: University hospital, surgical intensive care unit. PATIENTS: Fifty consecutive patients developing severe sepsis or septic shock between December 1991 and December 1993. MEASUREMENTS AND MAIN RESULTS: Concentrations of tumor necrosis factor, interleukin (IL)-6, IL-8, and leukemia inhibitory factor were measured by immunoradiometric assay in the plasma of patients as soon as they developed severe sepsis or septic shock. Septic shock patients were divided into three groups in a blinded fashion (i.e., without knowing the results of the concentrations of cytokines), according to the presence of sustained hyperlactacidemia and to the rapidity of the onset of sepsis. Peak concentrations of all cytokines were statistically different between severe sepsis and septic shock patients. This finding was almost exclusively due to the data from patients with rapid onset of septic shock, who demonstrated very high but transient cytokine concentrations. Septic shock patients may thus have different profiles in the time course of their cytokine concentrations. The transient, high peak concentrations of cytokines were also related to transient leukopenia. Among the cytokines measured, IL-8 appeared to be the one that correlated best with lactacidemia, the presence of disseminated intravascular coagulation, severe hypoxemia, the Acute Physiology and Chronic Health Evaluation II score, and mortality rate. CONCLUSIONS: According to the profiles of the cytokines, septic shock patients do not represent a homogeneous population. These profiles should be described in order to distinguish between patients, and the profiles may be useful to identify those patients susceptible to new therapies.

APACHE↗

Predictive accuracy of continuous propofol infusions in neurosurgical patients: comparison of pharmacokinetic models.

The performance of 10 pharmacokinetic models in predicting blood propofol concentrations was evaluated in patients during neurosurgical anesthesia. Eight patients-ASA category I or II, aged 49 +/- 18-years, weighing 71 +/- 20 kg, and scheduled for routine neurosurgery-were anesthetized with propofol and sufentanil using Ohmeda pumps controlled with a personal computer. Sufentanil was administered as a bolus of 0.3 microgram.kg-1, 5 min before induction of anesthesia, and infused at a constant rate of 0.5 microgram.kg-1.h-1 throughout the study. At induction, propofol was administered as a bolus of 1.5 mg.kg-1 followed by a continuous infusion of 6 mg.kg-1.h-1. During surgery, the propofol infusion rate was deliberately increased by 2 mg.kg-1.h-1 every 15 min up to 12 mg.kg-1.h-1. Arterial blood samples were drawn at the end of each infusion step for measurement of propofol concentrations by high-performance liquid chromatography. Measured propofol concentrations were compared with theoretical concentrations derived from 10 published pharmacokinetic models designed in different clinical settings. Each model has been assessed by calculating the median of the performance error, the median of the absolute performance error, and their 10th and 90th percentiles. Models designed for certain categories, such as children, young, or elderly patients who received propofol as a bolus injection, showed a bad predictive accuracy. The models of Gepts et al. (Anesth Analg 1987; 66:1256-1263, Anaesthesia 1988; 43(suppl):8-13), Tackley et al. (Br J Anaesth 1989;62:46-53), and Cockshott (Postgrad Med J 1985;61:55), derived from healthy patients receiving continuous propofol infusions, provided the best agreement between expected and measured propofol concentrations; they showed bias and inaccuracy lower than 17%. In conclusion, the accurate prediction of blood propofol concentrations from different continuous infusion rates in ASA I or II patients requires the selection of appropriate pharmacokinetic models derived from similar categories of patients and using a similar technique of propofol administration. However, in clinical practice, the selection of a specific set among the appropriate models is balanced by the interindividual variability in blood propofol concentrations adjusted to clinical effects.

Adult↗

Increase in antioxidant capacity of plasma during propofol anesthesia.

We have examined the effect of total intravenous anesthesia (TIVA) using a continuous propofol infusion on the antioxidant capacity of plasma in 18 neurosurgical patients who required cerebrospinal fluid shunting. Patients were premedicated with hydroxyzine, alprazolam, and atropine. Anesthesia was induced intravenously with propofol 1.5 mg kg-1 and sufentanil 0.15-0.3 microgram kg-1. Tracheal intubation was facilitated with atracurium 0.5 mg kg-1. Anesthesia was maintained with a continuous propofol infusion at an increasing rate from 6 to 12 mg kg-1 h-1 under controlled ventilation (FiO2 = 0.4 in air). In all patients, arterial blood samples were drawn before induction of anesthesia and during surgery for measurement of blood propofol concentration and plasma antioxidant capacity, which was assessed as the ability to inhibit lipid peroxidation. Lipid peroxidation was induced in vitro by exposing a linoleic acid microemulsion to hemoglobin-generated oxoferryl radicals, and assessed by ultraweak chemiluminescence in the absence (control) and the presence of the plasma samples. The antioxidant capacity of plasma, measured by the inhibition of light emission and expressed as a percentage of control, increased significantly from 39.8 +/- 2% (mean +/- SEM) to 44.7 +/- 2.4% during anesthesia (Wilcoxon test, p < 0.001). No correlation was observed between this increased resistance to lipid peroxidation and blood propofol concentrations (Spearman test, r = 0.07, NS). We conclude that the capacity of plasma to inhibit lipid peroxidation increases in patients during TIVA maintained with a continuous propofol infusion.

Anesthesia, Intravenous↗

Effects of perfluorocarbon emulsions on cultured human endothelial cells.

Perfluorocarbons (PFCs) and their emulsions (PFCEs) were used in organ preservation before transplantation, but not in organ perfusion. Our purpose was to achieve organ perfusion with a PFCE at room temperature or at 37 degrees C, i. e. with oxygenation, to prevent damages related to reoxygenation after hypoxia. Therefore, we first investigated the effect of such emulsions on endothelial cells, the first cells to be in contact with the emulsion. A stem emulsion was prepared from perfluorooctyl bromide (90% w/v), emulsified with egg yolk phospholipids (2% w/v) and stabilized with a mixed fluorocarbon-hydrocarbon "molecular dowel" (1.4% w/v) (droplets of ca 0.2 micron in diameter). This emulsion was found to be stable when diluted with cell culture media or organ preservation fluids. Endothelial cells from human umbilical vein (HUVECs) were cultured in multiwell plates in M199 medium (with growth factors, 10% foetal calf serum and 5% human serum). Confluent cells were incubated overnight with 51Cr, washed and overlayed with M199 (control) or the above PFCE diluted 2x or 4x with M199 (test). After incubation, the cytotoxicity of the PFCEs was estimated by measuring 51Cr release and observing cell morphology by electron and light microscopy. The percentages of released 51Cr were identical to those of the control cells for the 2x, 3x or 4x diluted PFCEs at 4, 25 or 37 degrees C. After return to the M199 medium, the cells grew and multiplied normally. We conclude that the diluted PFCEs were devoid of cytotoxicity. The 2x diluted PFCE was however partially taken up by the cells: by microscopy, we observed intracellular PFC droplets and by density gradient analysis we found a slight increase in cellular density. The diluted PFCEs were compared to classical organ preservation solutions : HUVECs were incubated with UW (University of Wisconsin) or EC (EuroCollins) solutions at +4 and 37 degrees C (3, 17 or 24 h of incubation). The solutions were observed to be toxic to the cells under these conditions, with cell mortality after return to the M199 medium. This cytotoxicity may be attributed to the high K+ concentration of UW and EC, since similar assays performed on HUVECs with Hank's solution adjusted to 100 mM K+ showed a similar % of 51Cr release. UW and EC are therefore not acceptable as dilution media for PFCEs.

Cell Survival↗

Elevated plasma alpha 1-acid glycoprotein levels: lack of connection to resistance to vecuronium blockade induced by anticonvulsant therapy.

This study was designed to investigate the relationships among anticonvulsant therapy, plasma alpha 1-acid glycoprotein (AAG) levels, and resistance to vecuronium blockade. Thirty-one patients scheduled for routine neurosurgery were included in the study. The patients were treated (TG; n = 20) with phenytoin (n = 15) and/or carbamazepine (n = 4) and/or phenobarbital (n = 3) for > or = 6 days or were left untreated (UG; n = 11, control group). TG patients were further assigned to one of two subgroups according to the plasma anticonvulsant level measured the day before surgery and found to be within (TGW, n = 10) or below (TGB, n = 10) the therapeutic range. Finally, the 31 patients were divided into two more groups according to their plasma AAG levels: higher than (HAAG, n = 17) or within (NAAG, n = 14) the normal range (25-94 mg dl-1). Anesthesia was induced and maintained with propofol and sufentanil. Muscle relaxation was obtained with vecuronium 0.1 mg kg-1. A train-of-four (TOF) stimulation mode at 2 Hz was applied to the ulnar nerve every 15 s, and neuromuscular transmission was assessed using a TOF-Guard accelograph monitor. Plasma AAG concentrations (means +/- SEM) were 103.7 +/- 7.6 mg dl-1 in TG, 80.7 +/- 6.7 mg dl-1 in UG, 95.9 +/- 13.2 mg dl-1 in TGW, 111.6 +/- 7.6 mg dl-1 in TGB. 114.9 +/- 7.4 mg dl-1 in HAAG, and 71.4 +/- 3.8 mg dl-1 in NAAG groups. The differences in plasma AAG concentrations between UG and TG and between HAAG and NAAG groups were statistically significant. No significant relationship was found between plasma AAG levels and phenytoin concentrations (r = -0.26). The time (mean +/- SEM) to recovery of T1 to 25% of control was significantly shorter in TG (28.2 +/- 1.4 min) than in UG (42.2 +/- 3.1 min) but did not differ significantly according to the plasma anticonvulsant level (27.3 +/- 2.0 min in TGW; 29.1 +/- 1.9 min in TGB) and the plasma AAG level 31.7 +/- 1.9 min in HAAG; 35.3 +/- 3.3 min in NAAG). The time for the TOF ratio to recover to 25% yielded similar profiles and statistical significance levels: TG, 32.9 +/- 2.2 min; UG, 51.2 +/- 4.0 min; TGW, 35.0 +/- 3.9 min; TGB, 30.7 +/- 1.8 min; HAAG, 38.1 +/- 3.1 min; NAAG, 42.0 +/- 4.1 min. We conclude that anticonvulsant therapy induces an increase in plasma AAG independently of the plasma anticonvulsant level. However, duration and recovery of vecuronium blockade do not differ according to plasma AAG levels. Consequently, elevated AAG does not contribute to the resistance to vecuronium blockade induced by anticonvulsants.

Adult↗

Bactericidal activity against Pseudomonas aeruginosa is acquired by cultured human monocyte-derived macrophages after uptake of myeloperoxidase.

Myeloperoxidase (MPO) is an enzyme located within polymorphonuclear neutrophils capable of producing cytotoxic oxidant species that are particularly active against bacteria with polysaccharide capsules. Pseudomonas aeruginosa (10(6) bacteria per 1ml) are killed within 1 h in vitro by a MPO/H2O2/C1- system (48mU=132ng of MPO). The question arose as to whether human macrophages would acquire cytotoxic activity when loaded with this enzyme. Monocytes were therefore isolated from human blood and cultured for up to ten days to induce maturation to macrophages. These cells lost endogenous MPO within five days while H2O2 production in response to stimulation by phorbol myristate acetate (10(-6)M) decreased to 23% within ten days. On the other hand, their capacity to take up exogenous MPO increased fourfold from day three to day ten. Human macrophages cultured from eight days (when both H2O2 production and MPO uptake were sufficient) were therefore used to study the effects of MPO uptake on cytocidal activity against Pseudomonas aeruginosa. After a 1 h MPO loading period, macrophages (5X10(5) cells per ml) were incubated in the presence of bacteria (0.5 to 2X10(6) bacteria per ml) for 2 h at 37 degrees C. At a bacteria/macrophage ratio of 1, only 34.8+/-7.0% of bacteria survived (compared to killing by non-loaded macrophages), while 74.4+/-9.3% survived at a ratio of 4. From these results, we conclude that loading macrophages with exogenous MPO could enhance their microbicidal activity, suggesting a potentially useful therapeutic application.

Blood Bactericidal Activity↗

Experimental model for the study by chemiluminescence of the activation of isolated equine leucocytes.

The activation of human polymorphonuclear leucocytes (the respiratory burst) can be studied by measuring their chemiluminescent response. This technique was adapted to equine leucocytes to investigate the effects of cell number, activator concentration, enhancers of chemiluminescence, pH, temperature and inhibitors. Leucocytes were isolated from citrated blood from healthy horses and chemiluminescence was measured with a Bio-Orbit luminometer sensitive to 900 nm light. The optimal cell density for the maximal chemiluminescent response ranged from 10(6) to 10(7) leucocytes 600 microliters-1. Chemiluminescence increased as a function of temperature, and the concentrations of luminol, lucigenin and phorbol myristate acetate (PMA), and was pH related (optimal pH value = 8.0 for lucigenin and 8.5 for luminol). The inhibition of chemiluminescence by 5 x 10(-5) M azide was 88 per cent for luminol and 37 per cent for lucigenin. Superoxide dismutase (100 IU) totally inhibited the chemiluminescence response. Approximately 30 per cent variability in chemiluminescence was observed under the same assay conditions, depending on the origin of the leucocytes. Based on these results, the conditions selected for the measurement of equine leucocyte chemiluminescence were: 10(6) to 10(7) leucocytes 600 microliters-1, 1 x 10(-6)M PMA, 1 mM luminol or 0.4 mM lucigenin, physiological pH (7.4) and physiological temperature (37.8 degrees C). These conditions were similar to those used for measuring the chemiluminescent response of human leucocytes.

Acridines↗