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Intracellular cytokine profile of CD14 positive cells in patients with hematologic malignancies and solid tumors during hematologic recovery phase after intensive chemotherapy designed to mobilize peripheral blood stem cells.

We studied intracellular cytokines in monocytes by flow cytometry from 28 patients with hematologic malignancies and solid tumors to analyze the role of monokines in the hematologic recovery phase for peripheral blood stem cell harvest. The patients were divided into three groups: the first group, A, had a documented infection; the second group, B, had fever of unknown origin; and the third group, C, was afebrile. We found an increase in intracellular IL-1alpha, IL-6, IL-8 and TNF-alpha positive monocytes as CD14 positive gated cells cultured with lipopolysaccharide in all groups, but no increase was found with medium only when cultured for 4 h. We also found an increase in intracellular IL-1a, IL-6, IL-8 and TNF-alpha positive monocytes cultured with autologous serum for 4 h, but only in group A. The rate of intracellular cytokine positive cells was higher in monocytes cultured with only autologous serum from group A patients compared to those cells from the other groups; the data concerning IL-1a, IL-6 and TNF-alpha reached statistical significance (P < 0.05). However, increasing intracellular cytokine levels in the control group of patients exhibiting only infectious disease were observed. Thus, it appear that pro-inflammatory intracellular cytokine levels in monocytes are only related to microbial infections.

Adult↗

Enhanced sensitivity of dobutamine stress echocardiography by observing wall motion abnormalities during the recovery phase after acute beta-blocker administration.

Dobutamine stress echocardiography (DSE) has a modest sensitivity for detecting single-vessel coronary artery disease (CAD). This study assessed the additional diagnostic value of new or worsening wall motion abnormalities during recovery after acute administration of beta blockers. The study population consisted of 200 patients (mean 59 +/- 11 years of age, 144 men), who underwent DSE. Images were acquired at rest, low dose, peak dose, and during recovery. Patients received intravenous metoprolol (1 to 5 mg/min). The dose was adjusted to achieve a recovery heart rate within a 10% range of heart rate at rest. Coronary angiography was performed within 2 months. Inducible new wall motion abnormalities were observed in 168 patients (84%) at peak stress. An additional 14 patients (7%) developed new or worsening wall motion abnormalities during recovery. CAD was detected in 182 patients (86 had single-vessel CAD). Sensitivity, specificity, and accuracy of DSE were 88%, 65%, and 73% at peak stress and 97%, 65%, and 74% during recovery. Sensitivity was particularly higher during recovery than during peak stress in patients with single-vessel CAD (98% vs 81%, p <0.001). In conclusion, assessment of wall motion abnormalities during the recovery phase after acute beta blockade improves sensitivity of DSE, particularly in patients with single-vessel CAD.

Adrenergic beta-Antagonists↗

[Multiparameter analysis of the ergometric test. Significance of the failure of systolic blood pressure to decrease during recovery phase as an index of coronary disease].

Ergometric tests were performed in 27 patients who had previously undergone coronarography following instrumental findings and/or symptoms which seemed highly indicative of ischemic cardiopathy. The aim of the study was to assess the diagnostic importance of the failure of systolic blood pressure to decrease during the third minute of the recovery phase of the test as an index of coronary disease. In particular, as reported by other studies, the ratio between systolic blood pressure at the third minute of recovery and maximum systolic blood pressure during the test was also assessed values above 0.7 were considered pathological. Sixteen out the 27 patients examined showed lesions which were hemodynamically significant, whereas 11 patients were free of lesions and 9 had previous myocardial necrosis. The level of the above ratio in subjects without significant coronary lesions was 0.66 +/- 0.05, whereas it was 0.85 +/- 0.04 (p less than 0.01) in patients with coronary disease. Sensitivity, specificity, and positive and negative prognostic values were respectively 91.6%, 62%, 64.7% and 90.9%. In patients with lesions to the three main arteries both the sensitivity and the specificity were 100%. In the same patients, the ST criteria were 85.7%, 50%, 81.8% and 74.3%.

Blood Pressure↗

The influence of ipratropium bromide in the recovery phase of methacholine induced-bronchospasm.

BACKGROUND: The protective effect of Ipratropium Bromide (IB) in the methacholine-induced bronchospasm is well known from some time. The objective of the present study was to assess whether a pretreatment with IB may influence the subsequent phase of methacholine-induced bronchospasm relief. METHODS: Sixteen patients with bronchial hyper-reactivity (PD20 FEV1 < 200 microg) were randomly assigned to three methacholine challenge tests at a 48 to 72 hours interval apart. In the first test IB was inhaled before the challenge (pre-IB), in the second IB was administered soon after the PD20 FEV1 (post-IB), and in the third no treatment was given (control). RESULTS: The pre-IB PD20 FEV1 (695 +/- 587.6 microg) was significantly greater (p < 0.0001) than that of post-IB (82.2 +/- 49.18 microg) and of control (73.9 +/- 41.8 microg). The dose response slope (DRS) (decline percentage of FEV1/cumulative methacholine dose), in pre-IB was greatly lower (p < 0.0001) than that in post-IB and in control. During the bronchospasm relief phase, the increase of FEV1 measured after 5, 10, 15, 30 and 60 minutes from the PD20 FEV1 was significantly greater in post-IB (p < 0.05) compared with the other two conditions. Conversely, the recovery slope (RS) (increase percentage of FEV1 at 60 minutes after PD20 FEV1 x cumulative methacholine dose) was significantly more efficient (p < 0.001) in pre-IB than in post-IB and in control. CONCLUSION: In conclusion, ipratropium bromide confirmed to have a good protective activity against methacholine-induced bronchospasm; the pre-administration of ipratropium bromide showed also a positive effect on the recovery phase.

Administration, Inhalation↗

The use of pulse oximetry in the immediate recovery phase following dental extractions under general anesthesia in children.

Over the past decade, an array of monitoring devices have been developed to continuously assess patient oxygenation. While actual tissue oxygenation is the most desirable measurement, the pulse oximeter offers a non-invasive method of measuring oxygenation of arterial blood. In this study, the arterial oxygen saturation (SaO2) of children presenting for oral surgical procedures under general anesthesia was continuously monitored. We were particularly interested in the saturation during the period from termination of anesthesia until arrival in the recovery room, a potentially critical 2-3 minutes. This study showed that 22.5 per cent of children significantly desaturated (SaO2 less than 90 per cent) during this period - a figure which is in complete agreement with several similar studies done recently. This desaturation preceded not only hemodynamic changes, but frequently changes in tissue and blood colour as well. The authors conclude that children should receive supplemental oxygen in the immediate recovery phase following general anesthesia.

Adolescent↗

Kawasaki syndrome in an adult: endomyocardial histology and ventricular function during acute and recovery phases of illness.

Kawasaki syndrome, an acute systemic inflammatory illness of unknown origin usually affecting children, may develop into a serious illness complicated by coronary artery aneurysms or myocarditis. This report describes an adult with Kawasaki syndrome studied by right ventricular endomyocardial biopsy and cardiac catheterization during the acute and recovery phases of illness. The initial biopsy specimen showed acute myocarditis and was associated with hemodynamic evidence of biventricular dysfunction, a severely depressed left ventricular ejection fraction and global hypokinesia. With time, there was spontaneous and rapid resolution of the inflammatory cell infiltrate with concurrent return to normal myocardial function. Right ventricular endomyocardial biopsy studies early in the course of the cardiac disease associated with Kawasaki syndrome may correlate with ventricular function and may be useful for monitoring immunosuppressive therapy in patients with this syndrome.

Adult↗

Co-ordinate variations in methylmalonyl-CoA mutase and methionine synthase, and the cobalamin cofactors in human glioma cells during nitrous oxide exposure and the subsequent recovery phase.

We investigated the co-ordinate variations of the two cobalamin (Cbl)-dependent enzymes, methionine synthase (MS) and methylmalonyl-CoA mutase (MCM), and measured the levels of their respective cofactors, methylcobalamin (CH3Cbl) and adenosylcobalamin (AdoCbl) in cultured human glioma cells during nitrous oxide exposure and during a subsequent recovery period of culture in a nitrous oxide-free atmosphere (air). In agreement with published data, MS as the primary target of nitrous oxide was inactivated rapidly (initial rate of 0.06 h(-1)), followed by reduction of CH3Cbl (to <20%). Both enzyme activity and cofactor levels recovered rapidly when the cells were subsequently cultured in air, but the recovery was completely blocked by the protein-synthesis inhibitor, cycloheximide. During MS inactivation, there was a reduction of cellular AdoCbl and holo-MCM activity (measured in the absence of exogenous AdoCbl) to about 50% of pre-treatment levels. When the cells were transferred to air, both AdoCbl and holo-MCM activity recovered, albeit more slowly than the MS system. Notably, the regain of the holo-MCM and AdoCbl was enhanced rather than inhibited by cycloheximide. These findings confirm irreversible damage of MS by nitrous oxide; hence, synthesis of the enzyme is required to restore its activity. In contrast, restoration of holo-MCM activity is only dependent on repletion of the AdoCbl cofactor. We also observed a synchronous fluctuation in AdoCbl and the much larger hydroxycobalamin pool during the inactivation and recovery phase, suggesting that the loss and repletion of AdoCbl reflect changes in intracellular Cbl homoeostasis. Our data demonstrate that the nitrous oxide-induced changes in MS and CH3Cbl are associated with reversible changes in both MCM holoactivity and the AdoCbl level, suggesting co-ordinate distribution of Cbl cofactors during depletion and repletion.

5-Methyltetrahydrofolate-Homocysteine S-Methyltran↗

S-phase cell distribution in the small intestine irradiated at different times of the day. II. Recovery phase.

Modifications occurring during recovery in the small intestine of animals exposed to the same radiation dose given at different times of the day were evaluated. S-phase cell distribution along the crypts and invertase activity were evaluated to ascertain the functional capacity of epithelial cells. In animals killed between 5 and 6 days after exposure, S-phase cell distribution and functional conditions tended towards normality although recovery was not complete. Labelled cells occurred also at villus junctions, demonstrating limitation in size of the differentiating compartment. This was confirmed by reduced activity of the brush border enzymes. Animals irradiated at the end of the dark period recovered more quickly and efficiently. In this group, labelled cell distribution was almost the same as in the controls starting from 120 h, and invertase activity was also closer to the controls than in any other group.

Animals↗

Alteration of glycolytic intermediary metabolism in erythrocytes during diabetic ketoacidosis and its recovery phase.

The concentrations of glycolytic intermediates and adenine nucleotides were determined in erythrocytes from patients with diabetic ketoacidosis before and during insulin treatment. Ketoacidosis resulted in an increase in the levels of intermediates above the phosphofructokinase (PFK) step and a marked decrease in the levels of those below this step. Thus, a "crossover" point was seen at the PFK step in a crossover plot. This indicated that the rate of glycolytic flow during ketoacidosis was controlled by PFK and that the reduced level of 2,3-bisphosphoglycerate (2, 3-BPG) was attributed to the inhibition of this enzyme. In vitro studies revealed that acidemia is mainly responsible for the inhibition of PFK, whereas elevated levels of ketone bodies and free fatty acids have no direct bearing on it. Insulin administration produced hypophosphatemia within 8-12 h and it persisted for 24 h or longer. The levels of fructose-6-phosphate and glucose-6-phosphate were decreased transiently during this hypophosphatemic phase, while those of fructose bisphosphate and triose phosphates were increased. This indicated that PFK was activated. Thus, it is no longer reasonable to think that the inhibition of PFK is a factor responsible for a delay in normalization of the 2, 3-BPG level during the recovery phase. The levels of these glycolytic intermediates, including 2, 3-BPG, were normalized within 4 days by appropriate therapy.

Adult↗

Improved capacity of exercise electrocardiography in the detection of coronary artery disease by focusing on diagnostic variables during the early recovery phase.

The temporal distribution of the diagnostic information for the detection of coronary artery disease (CAD) provided by exercise-induced electrocardiographic (ECG) ST-segment amplitude changes in different ECG leads in men and women has not been fully investigated. To shed further light in this area, 1877 electrocardiograms selected from 8322 patients undergoing a routine exercise test on a bicycle ergometer were evaluated. ST-segment amplitude and the difference between heart rate-matched recovery and exercise ST-segment amplitudes (ST/HR difference) were measured. Coronary artery disease was verified angiographically in 669 patients and excluded in 1208 patients by angiography (n = 119), by myocardial scintigraphy (n = 250), or on clinical grounds (n = 839). The diagnostic performance of the 2 ECG methods used was assessed by constructing receiver operating characteristic curves for each sampling point every 12 seconds during 10 minutes of recovery as well as the last 4 minutes of exercise for the ST-segment amplitude. ST-segment amplitude performed better after exercise than during exercise and best within the first 2 minutes of recovery. Its diagnostic ability did not differ from the ST-amplitude hysteresis assessed by the difference between recovery ST-segment amplitude and exercise ST-segment amplitude at matched heart rate. Both methods performed better in men and the diagnostic information appeared mainly in leads I, -aVR, II, V 4 , V 5 , and V 6 . The best discrimination of CAD is provided by analysis of ST-segment amplitude changes in 6 specific leads early during the recovery phase. This information should be targeted by exercise ECG diagnostic methods.

Coronary Angiography↗

DAPK catalytic activity in the hippocampus increases during the recovery phase in an animal model of brain hypoxic-ischemic injury.

Death-associated protein kinase (DAPK) is a pro-apoptotic, calmodulin (CaM)-regulated protein kinase whose mRNA levels increase following cerebral ischemia. However, the relationship between DAPK catalytic activity and cerebral ischemia is not known. This knowledge is critical as DAPK function is dependent on the catalytic activity of its kinase domain. Consequently, we examined DAPK catalytic activity in a rat model of neonatal cerebral hypoxia-ischemia (HI). An increase in DAPK specific activity was found in homogenates of the hippocampus from the injured right hemisphere, compared to the uninjured left hemisphere, 7 days after injury. The results raised the possibility that an upregulation of DAPK activity might be associated with the recovery phase of HI, during which neuronal repair and differentiation are initiated. Therefore, we examined the change of DAPK in an experimentally tractable cell culture model of neuronal differentiation. We found that DAPK catalytic activity and protein levels increase after nerve growth factor (NGF)-induced differentiation of rat PC12 cells. These results suggest that DAPK may have a previously unappreciated role in neuronal development or recovery from injury, and that potential future therapies targeting DAPK should consider a restricted time window.

Animals↗

Local production of chemokines and prostaglandin E2 in the acute, chronic and recovery phase of murine experimental colitis.

Increased levels of chemokines and prostaglandins have been reported in patients with inflammatory bowel disease, although their changes during disease development are less understood. The aim of this study was to investigate the local production of nine selected chemokines and prostaglandin E(2) (PGE(2)) to elucidate their role in colitis progression in BALB/c and C57BL/6 mice exposed to dextran sulphate sodium. The acute inflammation in both strains was accompanied by a significant up-regulation of CXCL1, CXCL2/3, CXCL10, CCL2, CCL4 and CCL22 and a downregulation of PGE(2). In the recovery phase in BALB/c, one-week post-DSS, PGE(2) levels were significantly increased with a concomitant downregulation of CXCL1, CXCL2/3, CXCL10, CCL2, and CCL4. In contrast, in C57BL/6 mice CXCL1, CXCL2/3, CXCL10, CCL2, CCL3 and CCL4 production remained high during the chronic phase, without any up-regulation of PGE(2). In addition, CCL5 was significantly increased at d26 and 33 compared to d5. Interestingly, the number of macrophages was significantly increased during the acute phase, whereas T cells were significantly increased in both the acute and chronic phase in C57BL/6 mice. Thus, our results show that chemokines are produced in a dynamic manner during colitis progression.

Acute Disease↗

L-Arginine counteracts nitric oxide deficiency and improves the recovery phase of ischemic acute renal failure in rats.

BACKGROUND: In ischemic acute renal failure (ARF), nitric oxide-dependent regulation of renal hemodynamics and glomerular function is disturbed. Previous studies indicate that the nitric oxide precursor l-arginine (l-Arg) has beneficial effects on renal function. Here we further analyzed the impact of l-Arg on functional and biochemical parameters of nitric oxide signaling during the course of ischemic ARF. METHODS: Ischemic ARF was induced in rats by bilateral clamping of renal arteries for 45 minutes. l-Arg was applied intraperitoneally during clamping, and orally during 14 days of follow-up. Glomerular filtration rate (GFR) and renal plasma flow (RPF) were measured, and biochemical parameters analyzed by protein immunoblots. RESULTS: Clamping resulted in 70% to 90% reduction of GFR and RPF, with a gradual recovery by day 14. Using an in situ assay with the oxidative fluorescent dye hydroethidine, increased tubular generation of O2- was detected in the early course of ischemic ARF, indicating enhanced oxidative stress. These findings were accompanied by up-regulation of the nitric oxide receptor, soluble guanylate cyclase, and by significant regulatory changes of inducible nitric oxide synthase (iNOS) and endothelial NOS expression. l-Arg had a beneficial effect on GFR and RPF, decreased O2- production, diminished up-regulation of soluble guanylate cyclase, and prevented up-regulation of iNOS. CONCLUSION: Ischemic ARF is accompanied by marked alterations in the expression of key enzymes of the nitric oxide pathway, indicative for deficiency of constitutive NOS activity. l-Arg supplementation reduces O2- generation and significantly improves the expression of nitric oxide signaling proteins as well as the recovery phase of ischemic ARF.

Acute Kidney Injury↗

Renal ammoniagenesis during the recovery phase of postischemic acute renal failure in the dog.

Renal ammoniagenesis has been studied in 6 dogs before and 48 h after a 60-min period of renal ischemia induced by clamping the renal artery and in 6 sham-operated animals. Two days after temporary renal ischemia, the dogs showed a 25% decrease in glomerular filtration rate and renal plasma flow and a similar decrease in sodium reabsorption. Renal production of ammonium was not significantly different under basal conditions or 2 days after ischemia, but more ammonia was released by the urine in the postischemic dogs. Renal uptake of glutamine was similar in control and in postischemic kidneys. It is concluded that during the recovery phase of the ischemia, renal ammoniagenesis is conserved.

Acute Kidney Injury↗

T helper type 2 like cytokine responses to peptides from P0 and P2 myelin proteins during the recovery phase of Guillain-Barré syndrome.

T-lymphocytes are probably involved in the pathogenesis of Guillain-Barré syndrome (GBS). T-helper-1 (Th1) cytokines activate macrophages and induce a delayed type hypersensitivity (DTH) inflammatory response, consistent with the morphology of the demyelination in GBS. Th2 cytokines encourage antibody production and downregulate Th1 responses. To study the Th1/Th2 cytokines in relation to the clinical course of GBS an ELISPOT method for determination of single cells secreting interferon-gamma, IFN-gamma (Th1) or interleukin-4, IL-4 (Th2) was used. We serially investigated antigen-induced cytokine secretion from circulating T-cells stimulated with human peptides from the P0 and P2 proteins in seven patients and compared to results from seven serially investigated healthy controls. Most patients (five of seven) showed IL-4 responses during the plateau- or recovery-phase as compared to controls. One patient with a prolonged disease course, on the other hand, had an IFN-gamma dominated reactivity. We suggest that the IL-4 responses are beneficial in GBS, and may have a role in terminating the disease process in this self-limiting inflammatory disease.

Adult↗

Serum thymidine kinase, a possible marker for monitoring the effect of bone marrow transplant treatment in early recovery phase.

We measured serum thymidine kinase (TK) activity with a radioenzyme assay system employing [I-125]-iododeoxyuridine as the tracer on serial specimens from five bone marrow transplant (BMT) patients before and after transplantation. The serum level of TK activity in the 4 patients with effective BMT treatment ranged from 3.0 to 16.9 U/L (mean, 7.80 U/L) before transplantation and from 27.3 to 236.1 U/L (mean, 82.95 U/L) after the BMT treatment. Mean serum TK activity increased 13.17-fold (range, 1.68 to 29.14-fold). In contrast, the activity in the patient with ineffective BMT treatment was not significantly different during, before, or after BMT treatment. In addition, serum TK activity in BMT patients was well correlated with the change in the number of leukocytes before and after BMT treatment [r = +0.709 (p less than 0.01), y = 0.012 x +0.87]. We conclude that the determination of serum TK activity in BMT patients is very useful in monitoring the course of bone marrow transplantation in the early recovery phase.

Adolescent↗

Renal cortical intermediary metabolism in the recovery phase of postischemic acute renal failure in the dog.

Renal metabolism has been studied in eight dogs before and 48 hr after a 60-min period of renal ischemia induced by clamping the left renal artery with the simultaneous removal of the right kidney, and in 12 sham-operated animals. The study involved the measurement of renal uptake and production of lactate, glutamine, glutamate, alanine, ammonium, and oxygen, and the measurement of the tissue concentrations of ATP, glutamine, lactate, alpha-ketoglutarate, aspartate, and alanine in the renal cortex. Two days after a temporary renal ischemia, the remaining kidney showed a 22% decrease in glomerular filtration rate (GFR) and a 25% decrease in renal plasma flow. Fractional sodium and potassium excretions were similar to those of control dogs. Renal production or extraction of glutamine, glutamate, alanine, ammonium, and oxygen (all expressed by 100 ml of GFR) was not significantly different in basal conditions or 2 days after ischemia, but lactate extraction was reduced in postischemic kidneys (-101 +/- 29 vs -204 +/- 38 mumol/100 ml GFR in control dogs). The cortical concentrations of glutamine and glutamate were lower in postischemic than in control kidneys. No differences were found in cortical concentration of alpha-ketoglutarate, aspartate, lactate, pyruvate, or ATP, but total nucleotides and inorganic phosphate were decreased in postischemic kidneys. It is concluded that in the recovery phase of the ischemia, a decreased lactate uptake is the main metabolic change, and total ATP production is adapted to the decrease of GFR and sodium reabsorption.

Acute Kidney Injury↗