Dry cough and dyspnoea rapidly increasing to respiratory failure in a male smoker.
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Biomedical subjects
Publications and source records attributed to T Vassilakopoulos.
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Resistive breathing is an "immune challenge" for the body, initiating an inflammatory response consisting of an elevation of plasma cytokines, and the recruitment and activation of lymphocyte subpopulations. These cytokines do not originate from monocytes, but are, instead, produced within the diaphragm, secondary to the increased muscle activation. Oxidative stress is a major stimulus for the cytokine induction, secondary to resistive breathing. The production of cytokines within the diaphragm may be mediating the diaphragm muscle fibre injury that occurs with strenuous contractions, or contributing towards the expected repair process. These cytokines may also compromise diaphragmatic contractility or contribute towards the development of muscle cachexia. They may also have systemic effects, mobilising glucose from the liver and free fatty acid from the adipose tissue to the strenuously working respiratory muscles. At the same time, they stimulate the hypothalamic-pituitary-adrenal axis, leading to production of adrenocorticotropin and beta-endorphins. The adrenocorticotropin response may represent an attempt of the organism to reduce the injury occurring in the respiratory muscles via the production of glucocorticoids and the induction of the acute phase-response proteins. The beta-endorphin response would decrease the activation of the respiratory muscles and change the pattern of breathing, which becomes more rapid and shallow, possibly in an attempt to reduce and/or prevent further injury to the respiratory muscles.
In this study, we evaluated the differential influence of chronic treadmill training (30 m/min, 15% incline, 1 h/day, 5 days/wk) on nitric oxide (NO) production and NO synthase (NOS) isoform expression as well as 3-nitrotyrosine formation (footprint of peroxynitrite) both in limb (gastrocnemius) and ventilatory (diaphragm) muscles. A group of exercise-trained rats and a control group (no training) were examined after a 4-wk experimental period. Exercise training elicited an approximate fourfold rise in gastrocnemius NOS activity and augmented protein expression of the endothelial (eNOS) and neuronal (nNOS) isoforms of NOS to approximately 480% and 240%, respectively. Qualitatively similar but quantitatively smaller elevations in NOS activity and eNOS and nNOS expression were observed in the diaphragm. No detectable inducible NOS (iNOS) protein expression was found in any of the muscle samples. Training increased the intensity of 3-nitrotyrosine only in the gastrocnemius muscle. We conclude that whole body exercise training enhances both limb and ventilatory muscle NO production and that constitutive and not iNOS isoforms are responsible for increased protein tyrosine nitration in trained limb muscles.
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The FHIT gene, located at the FRA3B fragile site of chromosome 3p14.2, encodes a 16.8 kD homologue of the yeast enzyme diadenosine tetraphosphate (Ap(4)A) hydrolase. Frequent allelic losses at this region in various malignancies, including non-small cell lung carcinomas (NSCLCs), imply that FHIT may represent a tumour suppressor gene (TSG). Increasing evidence suggests that multiple TSG impairment has a synergistic effect on tumour growth. The present study of 67 NSCLCs investigated the allelic imbalance (AIm) within the FHIT locus and its relationship with p53 abnormalities, kinetic parameters [proliferative activity or proliferation index (PI) and apoptotic index (AI)], and ploidy status of the carcinomas. Allelic imbalance at FHIT was observed in 35 out of 55 informative (heterozygous: H) cases (64%). Similar frequencies of loss of heterozygosity (LOH) were noticed among squamous cell lung carcinomas and adenocarcinomas. The high percentage of AIm in stage I tumours (71%) is indicative of its relatively early involvement in NSCL carcinogenesis. No association was found between LOH at FHIT, kinetic parameters, and ploidy status of the tumours. Concurrent loss at FHIT and p53 overexpression [FHIT(LOH)/p53(P)] was the most frequent pattern and was observed in 39% of the informative cases. The latter pattern was not associated with smoking, supporting the hypothesis that in patients with a history of tobacco exposure, FHIT allelic loss may not be a consequence of p53 checkpoint defects, but the outcome of tobacco-induced mutagenesis. Statistically significant differences in the presence of FHIT(LOH)/p53(P) and FHIT(LOH)/p53(N) patterns were noted at the proliferative and apoptotic level, whereas ploidy was similar amongst all groups, implying that wild-type (wt) p53 may play a safeguard role against altered FHIT function. However, the possibility of a masking effect from wt p53 cannot be excluded, since the FHIT(LOH)/p53(P) profile demonstrated a higher growth index (GI=PI/AI mean value ratio) than FHIT(H)/p53(P) (32 vs. 8), although this was not significant. Further studies are needed in order to elucidate the role of FHIT and its relationships with other cell-cycle regulatory molecules involved in NSCL carcinogenesis.
We examined p53, p21WAF-1, and Bcl-2 protein expression in malignant and nonmalignant bronchial specimens obtained during bronchoscopy from 60 lung cancer patients. Twenty-six (43.3%), 36 (60%), and 20 (33.3%) of the tumors were p53, p21WAF-1, and Bcl-2 positive, respectively. High-level p53 and Bcl-2 expression characterized advanced preneoplastic lesions, while hyperplasias, squamous metaplasias, and mild dysplasias exhibited low levels of expression. There was no difference between early and advanced preneoplastic lesions in the level of p21WAF-1, expression. A history of heavy smoking was associated with p21WAF-1, expression in preneoplastic lesions (p = 0.022) and tumors (p = 0.032). p53(-)/p21WAF-1(++)/bcl-2(-) was the only significant independent predictor of lower clinical stage (OR: 0.88, p = 0.038). In univariate analysis, survival of NSCLC patients was affected by disease stage (p <0.001) and tumor histology (p = 0.018). While single-protein expression was not associated with prognosis, the combined immunophenotype p53(-)/p21WAF-1(++)/bcl-2(-) predicted longer survival (p = 0.03). In multivariate analysis, only the TNM stage was found to be a prognostic factor for NSCLC. We conclude that p53 and Bcl-2 alterations may happen early in bronchial carcinogenesis and that absence of these alterations in combination with p21WAF-1, overexpression may be associated with a less aggressive tumor behavior.
Squamous cell carcinoma antigen (SCC-Ag) is a glycoprotein secreted by non-small cell lung tumours (NSCLC). This study investigated the diagnostic and prognostic significance of SCC-Ag in NSCLC. Receiver operating characteristic (ROC) curve analysis was used to test the diagnostic performance of the SCC-Ag and determine the optimal threshold value in a group of 100 NSCLC patients undergoing surgery and 50 age matched healthy controls. This threshold was then prospectively validated in a group of 53 patients and 49 healthy controls. The prognostic significance of the preoperative SCC-Ag level and its postoperative decrease were tested using univariate and multivariate proportional hazard models. The area under the ROC curve was 0.71+/-0.04, and the best cutoff value was 1.4 ng/ml. This discriminated patients in the validation group, with a sensitivity of 0.55 and a specificity of 1.0. The hazard ratio was 0.144 (95% CI 0.074-0.281) for the postoperative decrease in the SCC Ag, and 5.823 (3.299-10.278) for the preoperative SCC Ag level. Multivariate analysis revealed that only disease stage and patients' age are strong prognostic factors for survival. In conclusion, the SCC-Ag serum level has moderate diagnostic role in NSCLC. Both the preoperative SCC-Ag level and its postoperative decrease have prognostic significance, yet inferior to the disease stage and the patient's age.
AIMS: In view of the dual role that DNA topoisomerase IIa (TopoIIa) plays as a cell proliferation marker and as a possible indicator of chemosensitivity, we investigated its expression in non-Hodgkin's lymphomas (NHL) in relation to conventional clinicopathological parameters, cell proliferation (as defined by Ki67 immunoreactivity), response to therapy and patient outcome. METHODS AND RESULTS: Formalin-fixed paraffin-embedded tissues from 153 patients with NHL were immunohistochemically stained for TopoIIalpha. Patients were followed up until death (n = 63) or for an average of 68 months (median 64 months, n = 90). The percentage of TopoIIalpha positive cells (TopoIIalpha LI) increased with grade (P < 0.001), extranodal location (P = 0.05) and Ki67 LI (P = 0.01, r = 0.673). In most cases (58%), Ki67 LI exceeded TopoIIalpha LI (TopoIIalpha/Ki67 < 1), especially within the indolent group (P < 0.001). TopoIIalphaLI, Ki67LI and TopoIIalpha/Ki67 ratio were all adversely related to overall survival in univariate analysis, though their significance was not maintained after adjustment for grade. In multivariate analysis high TopoIIalpha/Ki67 ratio and high TopoIIalpha LI independently predicted shortened overall and post-relapse survival, respectively. Most importantly, low TopoIIalpha/Ki67 ratio was the only independent predictor of diminished disease-free survival. However, there was no relationship between TopoIIalpha expression and response. CONCLUSIONS: Our results suggest that evaluation of TopoIIalpha expression and TopoIIalpha/Ki67 ratio as cell proliferation markers provides independent prognostic information in relation to post-relapse and overall survival. Furthermore, TopoIIalpha/Ki67 ratio appears to play a key role in the identification of patients prone to early relapse.
Although restrictive lung disease is the predominant abnormality of pulmonary function in patients with thalassaemia major (TM), its aetiology and its association with pulmonary hypertension (PH) detected in some patients with TM remains unknown. We report a patient with TM, iron overload, frequent pulmonary infections, and progressive severe precapillary PH over the previous 5 years. A severe restrictive pattern and interstitial lung fibrosis were revealed by pulmonary function tests and high resolution computed tomography, respectively. This presentation suggests that interstitial fibrosis may complicate lung involvement in TM and can significantly contribute to the development of PH.
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The aim of this study was to investigate the echocardiographic and electrocardiographic findings in top water-polo athletes and test the hypothesis that their hearts exhibit dilatation associated with hypertrophy secondary to the mixed type (isotonic and isometric) of exercise they are subjected to. Eighteen athletes of the Greek national water-polo team and 15 healthy sedentary men serving as controls were studied. All underwent an echocardiogram, a standard 12-lead ECG and 24-h ECG monitoring. In athletes, as compared to healthy controls, an increase was detected in the following indices: left ventricular (LV) end-diastolic diameter index (EDDI-LV) (by 10%; P = 0.02), interventricular septal thickness (IVS) (by 32%; P<0.001), thickness of the posterior wall (PW) (by 29%; P<0.001), relative wall thickness (IVS + PW/EDD-LV) (by 12%; P < 0.001) and LV mass index (by 82%; P < 0.001). Mild asymmetric thickening of the septum (IVS/PW = 1.40 and 1.37) was measured in two athletes. LV fractional shortening was normal. Standard 12-lead ECG abnormalities (LV hypertrophy or abnormal repolarization pattern) were observed in 33% of athletes. Athletes had sinus bradycardia during day and night, respiratory arrhythmia (RA) (83% vs 40% of controls; P = 0.03) and sinus pauses (SP) (39% vs 0% of controls; P = 0.02), with occassional arrhythmias and conduction abnormalities. We conclude that top water-polo athletes have dilatation combined with substantial hypertrophy and normal systolic function of the LV In addition they present bradycardia, RA and SP, with occassional arrhythmias and conduction abnormalities.
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Anaerobic muscle metabolism and local release of inflammatory mediators play key roles in the mechanism of postfatigue-induced activation of group IV muscle afferents. The present study focused on activation of these muscle afferents after a 3-min period of low-frequency muscle stimulation (LFMS) in different conditions of muscle oxygenation, such as occur in patients with respiratory insufficiency and subjects living at high altitude. In anesthetized rabbits, spontaneous activity of group IV afferents (conduction velocity = 1.52 +/- 0.13 m.s(-1)) from the tibialis anterior muscle was recorded at rest (baseline) and then after LFMS under normoxic (PaO(2) = 113 mmHg), hyperoxic (PaO(2) = 186 mmHg), or hypoxic (PaO(2) = 35 mmHg) conditions. The maximal force decay at the end of LFMS did not differ significantly with respect to conditions of muscle oxygenation. Compared with normoxia, hypoxia significantly increased the baseline activity of group IV muscle afferents, whereas no effect was noted when hypoxia followed a period of hyperoxia. LFMS-induced activation of group IV afferents occurred in all circumstances, except when hypoxia was first tested. The activation of group IV muscle afferents after LFMS was markedly reduced when hypoxia followed normoxia (+14% versus +27%) or hyperoxia (+55% versus +144%), whereas it was accentuated when hyperoxia followed hypoxia (+25% versus +8%). We concluded that the sensorimotor control of skeletal muscles may be altered during acute hypoxia but facilitated after reoxygenation.
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We describe a previously healthy 28-year-old woman who presented with the clinical picture of large vessel occlusions (stroke with left hemiparesis, myocardial infarction) and developed multi-organ failure (i.e. kidneys, heart, brain, liver, blood, skin) over a very short period of time. Peripheral blood smear was consistent with thrombotic thrombocytopenic purpura. Transesophageal echocardiogram was supportive of the diagnosis of catastrophic antiphospholipid syndrome (CAPS), revealing Libman-Sacks endocarditis. Blood cultures were negative, anticardiolipin antibodies were highly increased and lupus anticoagulant was positive. Cerebral and coronary angiograms were negative, suggesting possible microthrombotic occlusive disease in the setting of CAPS.
UNLABELLED: Nonsteroidal antiinflammatory drugs may reduce postoperative opioid consumption. We evaluated the analgesic efficacy of preoperatively administered tenoxicam in patients undergoing total abdominal hysterectomy. Patients were randomly assigned to receive IV either normal saline 4 mL (Group NS), tenoxicam 20 mg (Group T20), or tenoxicam 40 mg (Group T40) before the induction of anesthesia in a double-blinded fashion. Patient-controlled analgesia with fentanyl was used to assess postoperative opioid requirements. Pain was evaluated by visual analog scale at 2, 4, 6, 8, and 24 h postoperatively. Intraoperative bleeding as assessed by the surgeon, incidence of nausea, and gastrointestinal symptoms were recorded. No statistically significant difference was identified between groups in fentanyl consumption or pain scores. The incidence of nausea was similar in all groups. Two patients in Group T20 and two in Group T40 exhibited mild gastrointestinal symptoms. Intraoperative oozing was noted in two patients in Group T40. We conclude that patients undergoing total abdominal hysterectomy and receiving fentanyl via patient-controlled analgesia postoperatively do not benefit from tenoxicam pretreatment. On the contrary, the drug may be associated with an increased incidence of side effects. IMPLICATIONS: The preoperative administration of 20 or 40 mg IV tenoxicam does not reduce fentanyl consumption via Patient-Controlled Analgesia, compared with placebo, after total abdominal hysterectomy. Additionally, tenoxicam may increase intraoperative bleeding and gastrointestinal side effects.
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Upper abdominal surgery causes respiratory muscle dysfunction. Multiple factors have been implicated in the occurrence of such dysfunction; however, the role of pain remains unclear. To elucidate the role of pain, we studied 50 patients undergoing elective upper abdominal surgery in a randomized, controlled investigation. Inspiratory and expiratory muscle function were assessed through sniff mouth pressure (Psniff) and maximal expiratory pressure (MEP), respectively. Pain during the pressure maneuvers was assessed with a visual analog scale (VAS). Measurements were made before surgery (Session 1), 24 h after surgery (Session 2), and 1 h later, after intramuscular administration of pethidine (analgesia group) or placebo (placebo group) (Session 3). To evaluate the effect of pain, we used a mixed-effects model with random intercept, having either Psniff or MEP as the dependent variable and both surgical operation and the level of pain as fixed effects. Upper abdominal surgery decreased Psniff in both the analgesia and placebo groups (from 70 +/- 15 to 42 +/- 11 cm H(2)O [p < 0.05] in the analgesia group, and from 69 +/- 15 to 42 +/- 10 cm H(2)O [p < 0.05] in the placebo group). Intramuscular pethidine caused an increase in Psniff to 56 +/- 14 cm H(2)O (p < 0.05), whereas placebo had no effect. Pain increased comparably after upper abdominal surgery in both groups (from 0.3 +/- 0.6 to 4.4 +/- 1.5) [p < 0.05] in the analgesia group and from 0.4 +/- 0.5 to 4.3 +/- 1.5 [p < 0.05] in the placebo group). Intramuscular pethidine decreased pain as measured by VAS score to 2.1 +/- 1.0 (p < 0.05) in the analgesia group, whereas placebo had no effect. Psniff had a statistically significant relationship to pain (p < 0.001). Adjusting for the occurrence of surgical operation did not affect this result. MEP showed the same tendency as Psniff, but the observed changes did not reach statistical significance. We conclude that pain contributes to inspiratory muscle dysfunction after upper abdominal surgery.