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Biomedical subjects

E Zavala

Publications and source records attributed to E Zavala.

At least 19 recordsLinked to original sources

Liver transplantation in high-risk patients: hepatopulmonary syndrome and portopulmonary hypertension.

Two pulmonary vascular disorders, considered mutually exclusive, may be present in candidates for orthotopic liver transplantation (OLT). On the one hand, hepatopulmonary syndrome (HPS), with a prevalence about 20% in end-stage liver disease, is characterized by pulmonary vascular dilatation and abnormal gas exchange. On the other hand, portopulmonary hypertension (POPH), a process defined by pulmonary hypertension associated with portal hypertension, is less common than HPS (4%). These entities have very distinct clinical implications; whereas HPS is clinically characterized by respiratory symptoms that evolve to severe hypoxemia, patients with POPH are commonly asymptomatic, frequently diagnosed in the setting of OLT, and the symptoms appear when there is hemodynamic compromise. The pathogenesis of both entities is a putative mechanism, the imbalance of vasoactive substances in pulmonary vessels. The role of OLT to reverse these vascular disorders is controversial, although complete resolution of HPS and, less frequently, POPH following OLT has been reported. The recognition that the presence of both HPS and POPH is an important cause of morbidity and mortality among recipients of OLT has resulted in a change in the policy to select OLT candidates. Accurate identification of patients with pulmonary vascular disorders associated with liver disease should be the first step in the management of OLT candidates. Because the determinants of the prognosis of OLT in the setting of these pulmonary vascular changes have not been well established, an accurate cardiopulmonary evaluation with careful assessment of pulmonary gas exchange (in HPS) and right ventricular function (in POPH) of potential OLT recipients is mandatory before the procedure.

Hemodynamics↗

Recruitment manoeuvres in acute lung injury/acute respiratory distress syndrome.

Acute respiratory distress syndrome/acute lung injury is characterised by profound hypoxaemia due to a permeability pulmonary oedema. In this setting, recruitment manoeuvres (RMs) can be a useful tool as adjuncts to lung protective ventilatory strategies to prevent cyclic alveolar stress and avoid alveolar collapse. Many experimental and physiological studies have discussed the use of RMs but only a few heterogeneous clinical experiences have demonstrated the beneficial and deleterious effects that can occur using these manoeuvres. Besides, a lot of questions remain to be answered to find the best way to perform optimal RMs. Further experimental and clinical trials are needed to understand the potential beneficial effects of recruitment manoeuvres when using a protective mechanical ventilation strategy. This paper is a general review of experimental works that support application of recruitment manoeuvres emphasising the clinical studies that have been published to date in acute respiratory distress syndrome patients.

Acute Disease↗

Mechanisms of pulmonary gas exchange improvement during a protective ventilatory strategy in acute respiratory distress syndrome.

To investigate the mechanisms underlying improvement of arterial oxygenation during a protective ventilatory strategy (PVS) in early acute respiratory distress syndrome (ARDS), we studied eight patients during volume-controlled mechanical ventilation, keeping respiratory rate and fraction of inspired oxygen (FI(O(2))) (0.82 +/- 0.20) unchanged: (1) at baseline (tidal volume [VT] 10 to 12 ml x kg(-1); positive end-expiratory pressure [PEEP] 8 to 10 cm H(2)O); (2) during PVS (PEEP 2 cm H(2)O above the low inflexion point (P(FLEX)) and VT of 5 to 7 ml x kg(-1)); and (3) post-PVS, back to baseline conditions. Inert gas measurements were done after 30 min in each ventilatory modality. During PVS, Pa(O(2)) increased significantly from 93 +/- 27 to 166 +/- 77 mm Hg (p < 0.008) and Pa(CO(2)) rose from 39 +/- 7 to 57 +/- 11 mm Hg (p < 0.0002) because of the decrease in minute ventilation (V E) (-3.6 L x min(-1)) (p < 0.005). Both heart rate (HR, +13 min(-1)) (p < 0.002) and cardiac output (Q, +1.2 L x min(-1)) (p < 0.05) increased. Static respiratory system linear compliance increased from 36 +/- 14 to 44 +/- 16 ml. cm H(2)O(-1) (p < 0.0002). PVS provoked recruitment of previously collapsed alveoli and redistribution of pulmonary blood flow from nonventilated alveoli to normal lung. Despite the increase in Q, intrapulmonary shunt fell from 39 +/- 15% to 31 +/- 11% (p < 0.04). We conclude that the decrease in intrapulmonary shunt owing to alveolar recruitment remains the pivotal mechanism to explain improvement of arterial oxygenation during this PVS.

Adult↗

Episodic high irrigation pressure during surgical neuroendoscopy may cause intermittent intracranial circulatory insufficiency.

Intermittent high peak pressure values inside the endoscope during neuroendoscopic surgical procedures are associated with postoperative morbidity. Unexpected delay in awakening is the complication most frequently observed by the anesthesiologist as a result of high peak pressure values inside the endoscope. During eight neuroendoscopic procedures the authors continuously monitored cerebral hemodynamic function, using a transcranial doppler (TCD) probe fixed on patients' temporal window. We observed that episodes of high peak pressure values inside the endoscope during neuroendoscopic navigation rinsing periods resulted in changes in the TCD wave profile consistent with "near intracranial circulatory arrestlike" wave. No systemic hemodynamic warning signs accompanied these intermittent episodes of severe decrease in cerebral perfusion pressure. When the rinsing liquid was allowed to escape, the pressure inside the endoscope decreased and the TCD wave immediately returned to its previous value. Neuroendoscopic procedures, although classified as minimally invasive surgery, warrant special monitoring that could alert us to a decrease in cerebral perfusion pressure. Middle cerebral artery TCD recording is a reliable and accurate tool for this purpose.

Adult↗

[Outcome after spontaneous subarachnoid hemorrhage. Relationship between admission glycemia and clinical status on admission and on hospital discharge].

BACKGROUND: To determine the relationship between the glycemia on hospital admission after subarachnoid haemorrhage (SAH) and neurological score. PATIENTS AND METHODS: On 44 patients we recorded the glycemia value on admission, coma Glasgow scale (CGS) and Hunt and Hess scale grade (HH), on admission, on discharge and six months later. RESULTS: The patients with HH IV-V and GCS between 3 and 8 had glycemia values higher than patients with HH I-III and GCS between 9 and 15. The patients with HH IV-V on discharge had glycemia values higher than patients with HH I-III. CONCLUSIONS: Glycemia value on admission is related with the acute injury severity and represents a prognosis factor in spontaneous subarachnoid haemorrhage outcome.

Acute Disease↗

Comparison of systemic cytokine levels in patients with acute respiratory distress syndrome, severe pneumonia, and controls.

BACKGROUND: The inflammatory response has been widely investigated in patients with acute respiratory distress syndrome (ARDS) and pneumonia. Studies investigating the diagnostic values of serum cytokine levels have yielded conflicting results and only little information is available for the differential diagnosis between ARDS and pneumonia. METHODS: Clinical and physiological data, serum concentrations of tumour necrosis factor (TNF)-alpha, interleukin (IL)-1beta and IL-6, and quantitative cultures of lower respiratory tract specimens were obtained from 46 patients with ARDS and 20 with severe pneumonia within 24 hours of the onset of the disease and from 10 control subjects with no inflammatory lung disease. Cytokine concentrations were compared between groups and determinants in addition to the diagnosis were tested. RESULTS: Serum TNF-alpha levels were significantly higher in ARDS patients (67 (57) pg/ml) than in patients with severe pneumonia (35 (20) pg/ml; p = 0.031) or controls (17 (8) pg/ml; p = 0.007). For IL-1beta and IL-6 the observed differences were not statistically significant between patients with ARDS (IL-1beta: 34 (65) pg/ml; IL-6: 712 (1058) pg/ml), those with severe pneumonia (IL-1beta: 3 (4) pg/ml, p = 0.071; IL-6: 834 (1165) pg/ml, p = 1.0), and controls (IL-1beta: 6 (11) pg/ml, p = 0.359; IL-6: 94 (110) pg/ml, p = 0.262). TNF-alpha (standardised coefficient beta = 0.410, p<0.001) and IL-1beta (standardised coefficient beta = 0.311, p = 0.006) were most strongly associated with the degree of lung injury, even when the diagnostic group was included in the statistical model. CONCLUSIONS: Serum TNF-alpha levels were higher in patients with ARDS than in those with severe pneumonia or in control subjects. Multivariate results suggest that the levels of systemic TNF-alpha and IL-1beta reflect the severity of the lung injury rather than the diagnosis.

Biomarkers↗

The influence of clinical variables on hospital costs after orthotopic liver transplantation.

BACKGROUND: The burgeoning influence of managed care in transplantation, coupled with a shrinking health-care dollar, has placed most transplant programs under intense pressure to cut costs. We undertook a retrospective cost-identification analysis to determine what clinical variables influenced financial outcomes after orthotopic cadaver liver transplants (OLTx). METHODS: Fifty patients receiving 53 transplants between April 1995 and November 1996 were reviewed. Clinical data were obtained from our institution's transplant database, and total costs (not charges) for the transplant admission and the 6 months after transplant were obtained with use of an activity-based cost accounting system (HBOC Trendstar, Atlanta, Ga). RESULTS: The average total cost of second transplants (n = 5) was $97,262 greater than for first transplants (n = 48, P < .05). Patients transplanted initially as United Network for Organ Sharing (UNOS) status 2 (n = 20) incurred average costs that were $51,762 higher than for patients transplanted as UNOS status 3 (n = 28, P = .008). Patients with a major bacterial or fungal infection (n = 28) incurred average costs $46,282 higher than recipients who were infection free (n = 22, P = .02). Multivariate analysis demonstrated that only length of stay, retransplantation, and postoperative dialysis were significantly and independently correlated with costs (r2 = .605). When the model was repeated with preoperative variables alone, only UNOS status was significantly correlated with 6-month total costs (P = .006, r2 = .16). CONCLUSIONS: Length of stay is the most important determinant of costs after OLTx. Rational strategies to design cost-effective protocols after OLTx will require further studies to truly define the cost of various morbidities and outcomes after OLTx.

Adult↗

The interaction of phospholipase A2 with liposomes: an immunological approach to its study.

Porcine pancreatic phospholipase A2 (PLA2) has been incubated for 2 hours at 34 degrees C with rabbit anti-pig pancreatic PLA2 polyclonal antiserum in the absence or presence of phosphatidylcholine liposomes in different physical states. Subsequent assay of hydrolysis -triggered through addition of 5 mM Ca2+- at 34 degrees C, shows that preincubation with antiserum in the presence of 1,2-dimyristoyl-3-sn-phosphatidylcholine liquid-crystalline vesicles, renders the PLA2 activity undetectable, similarly to what is found if preincubation is carried out in the absence of liposomes. In contrast, 1,2-dipalmitoyl-3-sn-phosphatidylcholine liposomes, which at 34 degrees C are in the gel-phase, protect the enzyme from the antiserum effect. The results are consistent with a stronger binding of PLA2 to gel phase, as compared to liquid crystalline vesicles and suggest that through the physical interaction with liposomes in the gel state, the enzyme is shielded from reaction with the antibodies. Taking into account the characteristic hydrolysis profiles of vesicles in different physical states, it can be concluded that the above interpretation agrees with the proposal that PLA2-membrane association promotes the interfacial activation of the enzyme.

1,2-Dipalmitoylphosphatidylcholine↗

Effect of inverse I:E ratio ventilation on pulmonary gas exchange in acute respiratory distress syndrome.

BACKGROUND: It is not known whether inverse I:E ratio ventilation (IRV) offers any real benefit over conventional mechanical ventilation with positive end-expiratory pressure (CMV-PEEP) at similar levels of end-expiratory pressure. METHODS: The effects of volume-controlled and pressure-controlled IRV (VC-IRV and PC-IRV, respectively) on VA/Q inequality were compared with those of CMV-PEEP at a similar level of end-expiratory pressure and with CMV without PEEP (CMV) in eight patients in the early stages of acute respiratory distress syndrome (ARDS). Respiratory blood gases, inert gases, lung mechanics, and hemodynamics were measured 30 min after the onset of each ventilatory mode. RESULTS: Recruitment of nonventilated, poorly ventilated (or both) but well-perfused alveoli increased the partial pressure of oxygen (PaO2) during CMV-PEEP (+13 mmHg) and IRV-VC (+10 mmHg; P < 0.05) compared with CMV. In contrast, PC-IRV did not affect PaO2 but caused a decrease in PaCO2 (-7 mmHg; P < 0.05). The latter was due to a concomitant decrease in dead space (P < 0.01) and shift to the right of VA/Q distributions. During PC-IRV, the increase in the mean of blood flow distribution (mean Q; P < 0.01) without a change in the dispersion (log SD Q) did not result in an increase in PaO2, probably because it reflected redistribution of blood flow within well-ventilated areas. CONCLUSIONS: Short-term PC-IRV improved carbon dioxide clearance, but the lung became less efficient as an oxygen exchanger. Furthermore, based on mean airway and plateau pressures, the risk of barotrauma was not reduced with this type of ventilation.

Adult↗

Assessment of ventilation-perfusion mismatching in mechanically ventilated patients.

The multiple inert gas elimination technique (MIGET) is a robust tool to assess both ventilation-perfusion (V'A/Q') distributions and the role of extrapulmonary factors determining arterial oxygenation during spontaneous breathing and in mechanically ventilated patients. Mixed expired gas sampling used in the MIGET is most often obtained from a 10-L mixing box (10L-MB) placed in the expiratory side of the ventilator circuit. Consequently, a considerable increase in the compression volume (Vc) would be expected which, in turn, can give rise to potential errors in the estimation of the effective tidal volume delivered to the patient. The effects of the 10L-MB on the Vc were compared with those produced by a newly designed 1-L, mixing box (IL-MB). At a given peak pressure (Ppeak) within the ventilator circuit, the Vc generated by the 10L-MB was about six-times higher than that produced by the 1L-MB. At a Ppeak =50 cmH2O, the Vc were 377 mL (10L-MB) and 67 mL (1L-MB) (p<0.001). In six patients, the mixed expired partial pressures of the six inert gases simultaneously collected from the two mixing boxes fell on the identity line. V'A/Q' distributions recovered using each of the two mixing boxes were equivalent. With the IL-MB, the effects of different positive end-expiratory pressure levels (0, 6 and 12 cmH2O) on Vc and arterial carbon dioxide tension were negligible. In conclusion, the new 1-L mixing box provides efficient gas mixing and substantially decreases the compression volume. It is, therefore, recommended when studies requiring mixed expired gas are performed in ventilated patients.

Aged↗

[Cardiopulmonary resuscitation in hospitalized patients in conventional units. Prospective study of 356 consecutive cases. Commission for Care of Cardiorespiratory Arrest].

BACKGROUND: Information regarding to the system functioning and to the outcome of patients in whom cardiopulmonary resuscitation (CPR) was performed during their in hospital period in non intensive care units are essentially lacking in Spain. The objectives of the present work were: 1) to define clinical and demographic characteristics of the patients who develop cardiopulmonary arrest in general hospitalization wards; 2) to analyze immediate and late (at discharge) survival rates as well as the frequency of severe sequelae in final survivors; 3) to identify prognostic factors in relationship to survival, and 4) to detect possible internal deficiencies in the organized system of CPR. PATIENTS AND METHODS: All patients who develop cardiac and pulmonary arrest through their hospitalization in general wards during a three year period, were prospectively included. Clinical and demographic data from all the patients as well as data related to the internal functioning of the system were recorded. RESULTS: From 356 included cases, 196 (55%) were initially recovered and 128 (36%) were discharged from the hospital. Among the latter group, 12.5% remained with severely disabling neurologic damage. Age under 80 years, resuscitation maneuvers for less than 20 minutes and respiratory arrest as the ultimate event leading to cardiopulmonary arrest were associated with better prognosis. The internal deficiencies most commonly recorded in the system were false calling to the emergency team, the wrong identification of the location in the hospitalization unit and several abnormalities in the content of CPR sets. CONCLUSIONS: With the currently available organized system directed towards CPR for patients admitted in general hospitalization wards, our rates of success are good and similar to those achieved in some intensive care units. Thus, a similar policy may be encouraged in large hospitals. Since most of the detected deficiencies in internal functioning are easy to rectify, a close monitoring is warranted in order to optimize the results.

Aged↗

Effects of noninvasive ventilation on pulmonary gas exchange and hemodynamics during acute hypercapnic exacerbations of chronic obstructive pulmonary disease.

Noninvasive positive pressure ventilation (NIPPV) can replace tracheal intubation in acute exacerbations of chronic obstructive pulmonary disease (COPD) with severe hypercapnic respiratory failure. However, the underlying mechanisms by which NIPPV improves pulmonary gas exchange are not known. We studied 10 male COPD patients (68 +/- 8 [SD] yr) with acute severe hypercapnic respiratory failure within 36 h after hospital admission. Measurements of pulmonary gas exchange, hemodynamics, and respiratory mechanics were done: (I) breathing spontaneously (baseline); (2) after 15 and 30 min of NIPPV with pressure support (inspiratory pressure = 12 +/- 2 cm H20, PEEP = 3 +/- 2 cm H20); and (3) 15 min after NIPPV withdrawal. Patients were ventilated using a full face mask, keeping FIO2 constant (0.23 +/- 0.02) in all conditions. Compared with baseline, during NIPPV (15 min) we observed a moderate increase in Pa02 (from 50 +/- 6 to 57 +/- 9 mm Hg; p < 0.05), and a fall in PaCO2 (from 66 +/- 10 to 59 +/- 10 mm Hg; p < 0.0001), but AaPO2 increased (from 39 +/- 13 to 48 +/- 13 mm Hg; p < 0.001). Breathing frequency decreased (from 26 +/- 5 to 19 +/- 3 breaths/min; p < 0.0001), tidal volume increased (from 311 +/- 42 to 520 +/- 133 ml; p < 0.0001), and minute ventilation increased (from 8.0 to 1.7 to 9.6 +/- 2.0 L/min; p < 0.05). Cardiac output fell during NIPPV in all patients (from 6.7 +/- 1.6 to 5.8 +/- 1.3 L/min; p < 0.0025) with no impact on mixed venous PO2. No substantial changes in VA/Q mismatching (multiple inert gas elimination technique) were observed. While oxygen uptake showed a trend to decrease, the respiratory exchange ratio (R) increased (from 0.78 +/- 0.17 to 0.90 +/- 0.22; p < 0.001). The effects of NIPPV were unchanged at 30 min compared with 15 min and were reversed after 15 min of NIPPV withdrawal. We conclude that improvement in respiratory blood gases during NIPPV is essentially due to higher alveolar ventilation (p < 0.001) and not to improvement in VA/Q relationships. The increase in AaPO2 was explained by the rise in R due to an increased clearance of body stores of C02 during NIPPV. Our results indicate that attainment of an efficient breathing pattern rather than high inspiratory pressures should be the primary goal to improve arterial blood gases during NlPPV in this type of patient.

Acute Disease↗

Anticoagulant and estrogenic effects of two new 17 beta-aminoestrogens, butolame [17 beta-(4-hydroxy-1-butylamino)-1,3,5(10)-estratrien-3-ol] and pentolame [17 beta-(5-hydroxy-1-pentylamino)-1,3,5(10)-estratrien-3-ol].

The syntheses and characterizations of two new 17 beta-aminoestrogens, butolame [17 beta-(4-hydroxy-1-butylamino)-1,3,5(10)-estratrien-3-ol] and pentolame [17 beta-(5-hydroxy-1-pentylamino)-1,3,5(10)-estratrien-3-ol], are presented. Both compounds, when administered in single subcutaneous injections to male mice and rats, produce dose-dependent increases in blood clotting times that may last several days. The estrogenic effects assessed by the vaginal cornification test are of relatively short duration.

Amino Alcohols↗