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S Thelin

Publications and source records attributed to S Thelin.

At least 37 records · Page 2Linked to original sources

Variable FHIT transcripts in non-neoplastic tissues.

We used nested reverse transcriptase PCR to investigate the expression of the FHIT gene, a presumptive tumor suppressor gene located in chromosomal band 3p 14.2, in non-neoplastic samples. Multiple transcripts of the FHIT gene were found in peripheral blood lymphocytes, skeletal muscle, and liver of healthy individuals, as well as in a cell line derived from isynovial tissue. The data indicate that variable splicing of the FHIT transcript, leading to deletions of exons and thus anomalous or absent FHIT protein production, occurs frequently in non-neoplastic tissues. Hence, the finding of multiple nonfunctional FHIT transcripts is not tumor-specific and cannot be used as a genetic marker of neoplasia.

Acid Anhydride Hydrolases↗

Monocyte tissue factor expression, cell activation, and thrombin formation during cardiopulmonary bypass: a clinical study.

OBJECTIVES: Cardiopulmonary bypass is associated with extensive thrombin generation and cell activation. Our main hypothesis in this study was that the expression of tissue factor on circulating monocytes contributes to the formation of thrombin. METHODS: Markers of activation of the coagulation cascade and cell activation were measured in 26 patients undergoing elective heart operations randomized to the use of heparin-coated (Duraflo II, n = 13) or standard cardiopulmonary bypass circuits (n = 13). RESULTS: Thrombin generation, measured as the thrombin-antithrombin complex, increased considerably during cardiopulmonary bypass with peak levels 3 hours afterward and with remaining elevation 20 hours later. Despite increased monocyte and granulocyte activation and increased levels of monocyte chemotactic protein-1, which upregulates monocyte tissue factor expression in vitro, monocyte tissue factor expression was not increased at the end of cardiopulmonary bypass. Furthermore, at this time the monocytes were less sensitive to in vitro stimulation by endotoxin. These results might be explained by simultaneous enhanced levels of interleukin-10, which effectively downregulates monocyte tissue factor expression in vitro. Twenty hours after cardiopulmonary bypass was discontinued, the tissue factor expression on freshly isolated monocytes and on monocytes stimulated by endotoxin was significantly increased compared with preoperative levels. At this time increased activation markers of granulocytes, monocytes, and lymphocytes were also recorded. None of the measured parameters was found to be different between the groups. CONCLUSIONS: The tissue factor expression on circulating monocytes is upregulated the day after heart operations. The clinical relevance and the regulatory mechanism behind the enhanced expression, however, are not fully elucidated.

Aged↗

Effects of heparin-coating of cardiopulmonary bypass circuits on leukocytes during simulated extracorporeal circulation.

Heparin-coated circuits used during extracorporeal circulation reduce many postoperative complications occurring after heart surgery. Such complications are partly related to leukocyte activation with subsequent release of active substances, e.g. oxygen free radicals, myeloperoxidase and lactoferrin. This experiment was performed to elucidate a possible influence of heparin-coating on leukocytes. A 2-h-long simulated extracorporeal circulation was performed on two groups of five extracorporeal circulation circuits, primed with heparinized, fresh whole human blood and Ringer's solution. Heparin-coated circuits (HC group) were compared with uncoated circuits (NC group). Oxygen free radical production was estimated by determination of malonyldialdehyde in plasma and erythrocyte suspension. Granulocyte activation was measured in terms of myeloperoxidase and lactoferrin release. Time-related changes in leukocyte subset counts were analysed. Heparin-coating diminished myeloperoxidase and lactoferrin release. There were significant inter-group differences after 90 and 120 min of extracorporeal circulation for myeloperoxidase (101 (12) microg/l and 107(12) microg/l in the HC group versus 154(20) microg/l and 174(23) microg/l in the NC group), and after 120 min of extracorporeal circulation for lactoferrin (78(5) microg/l in the HC group versus 212(49) microg/l in the NC group). No significant changes of MDA concentration were observed in plasma or erythrocytes; however, a tendency towards lower MDA levels was seen after 90 and 120 min of extracorporeal circulation in the NC group. Neutrophil, monocyte and eosinophil numbers decreased significantly in the NC group but were unchanged in the HC group, as were lymphocyte counts. Heparin-coated extracorporeal circulation circuits significantly reduce granulocyte activation and better preserve the number of circulating neutrophils, eosinophils and monocytes, but do not change oxygen free radical production during simulated extracorporeal circulation.

Anticoagulants↗

Duraflo II coating of cardiopulmonary bypass circuits reduces complement activation, but does not affect the release of granulocyte enzymes : a European multicentre study.

OBJECTIVE: This study was carried out to: (a) compare complement and granulocyte activation during cardiac operations in patients operated with cardiopulmonary bypass coated with heparin by the Duraflo II method, with activation in patients operated with uncoated circuits; and (b) relate complement, and granulocyte activation to selected adverse effects. METHODS: In a multicentre study among Rikshospitalet, Ullevaal Hospital in Norway and Uppsala University Hospital in Sweden, plasma concentrations of the complement activation products C4b/iC4b/C4c (C4bc), C3b/iC3b/C3c (C3bc), the terminal SC5b-9 complement complex (TCC), and the granulocyte proteins myeloperoxidase and lactoferrin were assessed in two groups of patients undergoing aortocoronary bypass. Seventy-six patients underwent surgery operated with circuits coated by the Duraflo II heparin coating and 75 uncoated circuits. The same amount of systemic heparin was administered to all patients. RESULTS: In both groups a significant increase in C4bc was first seen by the end of operation, from 86.7 +/- 12.5 to 273.0 +/- 277.4 nM in controls and from 86.9 +/- 18.5 to 320.2 +/- 190.5 nM in the control group, confirming previous documentation that the classical pathway is not activated during CPB, but as a consequence of protamin administration. The formation of C4bc did not differ significantly between the two groups. In the uncoated group the C3bc concentration increased from 124.0 +/- 15.3 to a maximum of 1176.1 +/- 64.7 nM (P < 0.01) and in the coated group it increased from 129.8 +/- 16.1 to a maximum of 1019.4 +/- 54.9 nM (P < 0.01) during CPB. Summary values but not peak values differed significantly between the groups. In the uncoated group the TCC concentration increased from 0.52 +/- 0.03 to a maximum value of 8.09 +/- 0.57 AU/ml (P < 0.01) while in the coated group the TCC concentration increased from a baseline of 0.53 +/- 0.03 to a peak value of 5.2 +/- 0.24 AU/ml (P <0.01). The difference between the peak values was statistically significant (P = 0.00002). In both groups a significant increase in myeloperoxidase and lactoferrin release was observed by the end of operation. There was no difference in myeloperoxidase or lactoferrin release between the two groups. TCC levels were compared to the occurrence of perioperative infarction, development of lung or renal failure, postoperative bleeding, time on ventilator and days in hospital. Three patients developed perioperative infarction; the peak levels of TCC were significantly higher in these patients than in the 148 patients that did not develop infarction. The reduction in TCC formation in the heparin-coated group was not associated with differences in any of the other clinical parameters. Few adverse effects occurred in the study. The peak values of C3bc were higher in the patients needing inotropic support that in those who did not, the relevance of this finding remains uncertain. CONCLUSION: It is concluded that the Duraflo II heparin coating reduces complement activation, particularly TCC formation, during CPB, but not the release of specific neutrophil granule enzymes. No certain correlation was established between complement and granulocyte activation and clinical outcome.

Aged↗

Biocompatibility reflected by haemostasis variables during cardiopulmonary bypass using heparin-coated circuits.

Cardiopulmonary bypass (CPB) is associated with haemostatic disturbances and signs of acute inflammatory response, most likely related to poor biocompatibility of the artificial surfaces. Some haemostatic variables are known as markers of acute-phase reaction, blood cell trauma, and endothelial damage. The aim of the study was to evaluate the effect of heparin-coating of artificial surfaces on those variables of hemostasis. 14 patients operated on with elective coronary artery revascularization were randomized into two groups. In group H (n = 7), heparin-coated CPB circuits and in control group C (n = 7), noncoated CPB sets were used. Patients in group C received normal heparinization, e.g. bolus 300 IU/kg and additional doses to maintain activated coagulation time (ACT) over 400 sec during CPB. In group H, a bolus heparin dose was reduced by 25% (to 225 IU/kg) in order to compensate for the amount of heparin immobilized on circuit surfaces and the corresponding ACT limit was 300 sec. There were significant increases of the von Willebrand factor (vWf), plasminogen activator inhibitor-1 (PAI) and tissue-plasminogen activator (tPA) starting at CPB end and rising to about twice the baseline levels postoperatively. This reaction was less evident in group H, as indicated by significantly lower levels of tPA compared to group C at CPB end (135% +/- 9 in group H versus 241% +/- 15 in group C, p < 0.0005) and at two hours postoperatively. The rates of tPA and vWF increase were lower in group H, also indicating reduced endothelial damage in this group. Marginally significant, a higher value of PAI was found in the C group early after CPB onset. Group H showed significantly lower concentrations of circulating complex between elastase and alpha 1-antitrypsin at CPB end and postoperatively, implicating a reduced granulocyte activation (60 min after protaminization 41 micrograms/L +/- 5 in group H versus 256 micrograms/L +/- 55 in group C, p < 0.05). It was concluded that the heparin-coated CPB circuits demonstrated improved biocompatibility which may be related to less disturbed haemostasis.

Anticoagulants↗

Atelectasis is a major cause of hypoxemia and shunt after cardiopulmonary bypass: an experimental study.

BACKGROUND: Respiratory failure after cardiopulmonary bypass (CPB) remains a major complication after cardiac surgery. The authors tested the hypothesis that atelectasis is an important factor responsible for the increase in intrapulmonary shunt after CPB. METHODS: Six pigs received standard CPB (bypass group). Six other pigs had the same surgery but without CPB (sternotomy group). Another six pigs were anesthetized for the same duration but without any surgery (control group). The ventilation-perfusion distribution was measured with the inert gases technique, extravascular lung water was quantified by the double-indicator distribution technique, and atelectasis was analyzed by computed tomography. RESULTS: Intrapulmonary shunt increased markedly after bypass but was unchanged over time in the control group (17.9 +/- 6.2% vs. 3.5 +/- 1.2%; P < 0.0001). Shunt also increased in the sternotomy group (10 +/- 2.6%; P < 0.01 compared with baseline) but was significantly lower than in the bypass group (P < 0.01). Extravascular lung water was not significantly altered in any group. The pigs in the bypass group showed extensive atelectasis (32.3 +/- 28.7%), which was significantly larger than in the two other groups. The pigs in the sternotomy group showed less atelectasis (4.1 +/- 1.9%) but still more (P < 0.05) than the controls (1.1 +/- 1.6%). There was good correlation between shunt and atelectasis when all data were pooled (R2 = 0.67; P < 0.0001). CONCLUSIONS: Atelectasis is produced to a much larger extent after CPB than after anesthesia alone or with sternotomy and it explains most of the marked post-CPB increase in shunt and hypoxemia. Surgery per se contributes to a lesser extent to postoperative atelectasis and gas exchange impairment.

Animals↗

High incidence of Chlamydia pneumoniae in sclerotic heart valves of patients undergoing aortic valve replacement.

Chlamydia pneumoniae has previously been demonstrated in the atherosclerotic lesions of various arteries, including the coronary arteries, and has been proposed to play a role in the pathogenesis of atherosclerosis. A prospective study of the incidence of C. pneumoniae in the sclerotic valves of patients undergoing aortic valve replacement because of aortic stenosis and in the aortic valves of cases dying of non-cardiac reasons and undergoing forensic autopsy was undertaken. The results were correlated to serological markers of past (IgG) or persistent (IgA) C. pneumoniae infection. C. pneumoniae, as determined by the polymerase chain reaction (PCR), was detected in the aortic valve in 19/39 (49%) patients and in 1/11 (9%) autopsy controls (p = 0.018) and confirmed by electron microscopy in one patient. There was no significant difference in the incidence rate of IgG or IgA antibody positivity between PCR-positive and PCR-negative cardiac patients. These results extend the hypothesis of a pathogenic role of C. pneumoniae in atherosclerosis to include also aortic valve sclerosis.

Adult↗

Haemostasis at low heparin dosage during cardiopulmonary bypass with heparin-coated circuits in pigs.

Cardiopulmonary bypass (CPB) causes activation of cascade systems. Although heparin coating of CPB circuits improves biocompatibility, the effects on coagulation remain controversial. Theoretically, heparin coating should permit the reduction of systemic anticoagulation during CPB. We investigated influences on haemostatic variables in animal CPB, comparing heparin-coated circuits and reduced systemic heparinization (group HC) with uncoated circuits and full heparinization (group C). Twenty pigs underwent 2-h CPB. Seven (HC, n = 4; C, n = 3) were weaned from CPB and studied for up to 4 h. Total administered heparin was 470 +/- 6 IU/kg (mean +/- SEM) in group C and 100 +/- 0 IU/kg in group HC. Protamine dosage was significantly reduced in group HC. In group C, levels of prothrombin complex, factor VIII and adhesive platelets were reduced significantly during CPB, and postoperatively there were significantly lower values of prothrombin complex, fibrinogen, antithrombin III, factor VIII and adhesive platelets but a significantly increased concentration of von Willebrand factor and cumulative bleeding after 4 h. In conclusion, heparin-coated CPB circuits combined with lowered heparin dosage reduced coagulation factor consumption and preserved platelet function, possibly contributing to improved postoperative haemostasis.

Animals↗

Haemostasis at low heparin dosage during cardiopulmonary bypass with heparin-coated circuits in pigs.

Cardiopulmonary bypass (CPB) causes activation of cascade systems. Although heparin coating of CPB circuits improves biocompatibility, the effects on coagulation remain controversial. Theoretically, heparin coating should permit the reduction of systemic anticoagulation during CPB. We investigated influences on haemostatic variables in animal CPB, comparing heparin-coated circuits and reduced systemic heparinization (group HC) with uncoated circuits and full heparinization (group C). Twenty pigs underwent 2-h CPB. Seven (HC, n = 4; C, n = 3) were weaned from CPB and studied for up to 4 h. Total administered heparin was 470 +/- 6 IU/kg (mean +/- SEM) in group C and 100 +/- 0 IU/kg in group HC. Protamine dosage was significantly reduced in group HC. In group C, levels of prothrombin complex, factor VIII and adhesive platelets were reduced significantly during CPB, and postoperatively there were significantly lower values of prothrombin complex, fibrinogen antithrombin III, factor VIII and adhesive platelets but a significantly increased concentration of von Willebrand factor and cumulative bleeding after 4 h. In conclusion, heparin-coated CPB circuits combined with lowered heparin dosage reduced coagulation factor consumption and preserved platelet function, possibly contributing to improved postoperative haemostasis.

Animals↗

The FHIT and PTPRG genes are deleted in benign proliferative breast disease associated with familial breast cancer and cytogenetic rearrangements of chromosome band 3p14.

We have used nested reverse transcription-PCR (RT-PCR) and PCR on genomic DNA to search for aberrations in the FHIT and PTPRG genes, both located in chromosomal band 3p14.2, in specimens from cytogenetically analyzed benign breast lesions (three samples with atypical hyperplasia and one with fibroadenosis) from two women belonging to breast cancer families. The transcription analysis showed that the FHIT gene was either not expressed or that its expression was dramatically reduced to a level not detectable by nested RT-PCR in the samples with atypical hyperplasia. Genomic analysis of exons 3 and 5 of FHIT and exon 12 of PTPRG provided evidence that these DNA segments were homozygously deleted in the majority of the cells. These data are in line with the histopathological features and cytogenetic findings in the three samples; none contained normal parenchyma, and all had chromosomal aberrations involving band 3p14. RT-PCR analysis of the fibroadenosis specimen, which had a normal karyotype, detected the expected 856-bp fragment as well as an additional alternative transcript variant of FHIT with 1014 bp. The additional 158-bp sequence, which may add 38 amino acids to the NH2-terminal part of the previously described FHIT protein, was inserted between exons 4 and 5 and seems to be a new exon located in intron 4 of FHIT.

Acid Anhydride Hydrolases↗

Effects of heparin coating of cardiopulmonary bypass circuits on in vitro oxygen free radical production during coronary bypass surgery.

During cardiopulmonary bypass (CPB) oxygen free radicals (OFR) are formed, which can mediate reactions damaging tissue components. Blood contact with artificial surfaces during CPB leads to an activation of leukocytes, which are one of the sources of the OFR. Heparin coating of the CPB circuit reduces granulocyte activation. In the present study, the heparin-coated circuits with noncoated cardiotomy reservoirs (Group HC) were compared with noncoated, otherwise similar CPB sets (Group C). In each group, 8 patients were operated on for coronary revascularization. The release of granulocyte granule proteins myeloperoxidase (MPO) and lactoferrin (LF) was evaluated. Production of OFR in the whole blood and in the granulocyte suspension were measured by chemiluminescence (CL). In both groups the whole blood CL declined during CPB. The whole blood CL induced by serum-opsonized zymosan, when enhanced by luminol, was significantly lower in Group HC at 45 min after CPB start (68 +/- 6% of initial values in Group HC vs. 87 +/- 6% in Group C, mean +/- SEM) and 30 min after protaminization (54 +/- 6% of initial values in Group HC vs. 72 +/- 6% in Group C, mean +/- SEM), and CL was significantly higher in Group HC at CPB end (83 +/- 5% of initial values in Group HC vs. 67 +/- 5% in Group C, mean +/- SEM) when enhanced by lucigenin. CL of isolated granulocytes showed no significant differences between the groups. Release of MPO at CPB end and of LF 45 min after start of CPB and at CPB end were significantly lower in the heparin-coated CPB circuits.

Adult↗

Eosinophil granule proteins in cardiopulmonary bypass with and without heparin coating.

Extracorporeal circulation with exposure of blood to foreign surfaces causes activation of different defense systems, eg, white cells. Several potent mediators are released into plasma, capable of causing harmful effects to different organs, contributing to postoperative morbidity after operations using cardiopulmonary bypass. The eosinophil granulocyte has not previously been investigated in this respect. We studied two of its activation products, eosinophil cationic protein and eosinophil protein X in coronary bypass patients. In 17 control patients, plasma levels of eosinophil cationic protein and eosinophil protein X increased considerably during cardiopulmonary bypass. In 19 patients with heparin-coated cardiopulmonary bypass equipment the levels were significantly reduced, indicating improved biocompatibility of the cardiopulmonary bypass circuit. The heparin-coated surface causes less activation of eosinophils; also released eosinophil cationic protein is bound to the heparinized surface.

Blood Proteins↗

Thrombin generation during cardiopulmonary bypass using heparin-coated or standard circuits.

For quantitative comparison of thrombin generation during cardiopulmonary bypass (CPB) with heparin-coated vs conventional CPB circuits, thrombin-antithrombin III complex (TAT) and prothrombin fragment 1 + 2 (F1 + 2) were analyzed in 20 patients undergoing combined heart valve surgery and coronary artery bypass grafting (CABG), in ten cases with heparin-coated circuits (COMB-HC) and in ten with standard circuits (COMB-C). Extensive thrombin generation was found in both groups, with maximal TAT and F1 + 2 levels at the end of CPB. Of 15 operations with only CABG, seven were performed with heparin-coated circuits and heparin dose 40% of normal (CABG-HC), and eight with standard circuits and normal heparin doses (CABG-C). TAT was maximal at the end of CPB and F1 + 2 peaked 3 hours after protamine injection. At the end of CPB both levels were significantly higher in the CABG-HC than in the CABG-C group, though thrombin generation was less than in the COMB groups. The abundant thrombin generation during CPB thus was much more pronounced during complex operations. Use of heparin-coated circuits did not reduce thrombin generation, which was increased by 60% reduction of the systemic heparin dose. The clinical implications are still unknown, as no complications were observed.

Anticoagulants↗

Circulating cytokines and granulocyte-derived enzymes during complex heart surgery. A clinical study with special reference to heparin-coating of cardiopulmonary bypass circuits.

Blood contact with artificial surfaces during cardiopulmonary bypass (CPB) triggers a systemic inflammatory response in which complement, granulocytes and cytokines play a major role. Heparin-coated CPB circuits were recently shown to reduce complement and granulocyte activation in such circumstances. The present study comprised 20 complex heart operations, 10 with heparin-coated circuits (group HC) and 10 controls (group C), with evaluation of changes in terminal complement complex, the granulocyte enzymes myeloperoxidase and lactoferrin, and the cytokines interleukin-6 (IL-6) and interleukin-8 (IL-8). Standard heparin dose and uncoated cardiotomy reservoir were used in all cases. In both groups the levels of enzymes and terminal complement complex rose significantly, beginning at conclusion of CPB, above base values, without significant intergroup differences. IL-6 and IL-8 also increased significantly, but tended to be lower in the HC group, starting at CPB end and continuing until 20 hours postoperatively: for IL-6 the difference was significant at CPB end (83 +/- 18 vs 197 +/- 39 micrograms/l, p = 0.21). Significantly increased inflammatory response was thus found during complex heart operations even with use of heparin-coated CPB sets. The heparin-coating of circuits seems to diminish cytokine production.

Aged↗

Complement activation during cardiopulmonary bypass: effects of immobilized heparin.

The role of complement in biocompatibility reactions and the correlation between complement activation during cardiopulmonary bypass (CPB) and postperfusion syndrome have inspired attempts to improve the biocompatibility of extracorporeal blood oxygenation devices. Here we assessed the effect of immobilized heparin on the generation of C3a and terminal complement complexes during CPB. Thirty patients undergoing aortocoronary bypass were randomized to CPB with either heparin-coated (Duraflo II; Bentley, Irvine, CA) or noncoated control membrane oxygenators (Univox; Bentley). A standard dose of heparin (300 IU/kg) was given to the control group while the heparin dose was reduced to 30% (100 IU/kg) in the heparin-coated group. Significantly lower levels of terminal complement complexes were detected in the heparin-coated group by the end of CPB. From 28 +/- 5 AU/mL (heparin-coated group) and 26 +/- 3 AU/mL (control group, mean +/- standard error of the mean) the terminal complement complex levels increased to 391 +/- 35 AU/mL and 602 +/- 47 AU/mL, respectively (p < 0.002). This difference was still apparent 180 minutes after CPB. Although there was no difference in C3a levels between the two groups at the end of CPB, C3a levels were significantly lower in the heparin-coated group 30 minutes after CPB (194 +/- 18 ng/mL and 307 +/- 18 ng/mL in heparin-coated and control groups, respectively; p < 0.001). We conclude that the heparin-coated surface is more biocompatible with regard to complement activation than is the ordinary unmodified surface in extracorporeal circuits.

Biocompatible Materials↗