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Biomedical subjects

L Pacchiarini

Publications and source records attributed to L Pacchiarini.

At least 19 recordsLinked to original sources

Endothelin and aneurysmal subarachnoid haemorrhage: a study of subarachnoid cisternal cerebrospinal fluid.

Endothelin (ET) is considered one of the most potent vasoconstrictor polypeptides; several experimental studies have suggested its possible role in the pathogenesis of arterial vasospasm after subarachnoid haemorrhage (SAH). Previously reported data on plasma and CSF levels of endothelin in patients with a diagnosis of SAH have been controversial. Cisternal endothelin CSF levels and the possibility that they could be related to vasospasm and other clinical patterns of SAH were investigated. CSF samples were obtained from 55 patients admitted after angiographic diagnosis of intracranial aneurysm. Levels of ET-1 and ET-3 were measured through radio-immunoassay technique. Twelve patients who had operations for unruptured aneurysms were considered control cases; 43 patients with SAH were classified according to: Hunt and Hess grading at admission, vasospasm grading, CT classification and timing of surgery. In all 55 patients ET-1 was measured, while positive levels of ET-3 were found only in 17 cases of 48. No linear correlation was found between cisternal CSF ET-1 levels when considering time of surgery, CT classification, Hunt and Hess grading at admission, and vasospasm grading. The results of ET-3 assay should be considered with great caution because of the low percentage of positive cases. Cisternal CSF levels of ET-1 and ET-3 are not directly related to the occurrence of arterial vasospasm after the aneurysm rupture, or to other major clinical patterns of SAH; however, ET-1 expression occurs either in paraphysiological (unruptured aneurysm) or in pathological conditions (SAH). It is suggested that ET may potentiate, or may be potentiated by, other factors playing a consistent pathophysiological role in the development of vasospasm.

Brain Diseases↗

Different expression of procoagulant activity in human cancer cells cultured "in vitro" or in cells isolated from human tumor tissues.

We studied in a homologous system the procoagulant activity of human tumor cells cultured "in vitro" (1402 primary melanoma, Me 7110/2 metastatic melanoma, Hep G2 hepatoma and GLC1 small cell lung carcinoma) or of cells freshly isolated from different human tumor tissues. Tumor cells cultured "in vitro" possessed and released a factor VII dependent procoagulant activity, which was inhibited by concanavalin A and unaffected by iodoacetamide or HgCl2. The activity released by the cells of metastatic melanoma was higher than that released by the cells of the primary tumor. On the contrary, cancer cells isolated from tumor tissues possessed and released a factor VII independent activity which was inhibited by iodoacetamide of HgCl2 and was not modified by concanavalin A. Therefore, different methods for the preparation of tumor cell suspensions have to be used for the study of tumor procoagulants, since their expression depends very largely on the source of tumor cells. Furthermore, cultured human tumor cells are not an appropriate model for the "in vivo" procoagulant effect of tumor cells.

Blood Coagulation Factors↗

Effect of mental stress on platelet function in normal subjects and in patients with coronary artery disease.

We studied the effect of emotional stress (mental arithmetic for 10 min) in 10 postinfarction patients and in 10 age-matched apparently healthy subjects as controls. Blood samples for platelet function studies and for the determination of epinephrine levels in serum were taken in basal conditions, at the end of mental stress and after 30 min of recovery. Patients were studied twice, in washout of medications and after oral administration of dipyridamole, 200 mg twice a day for 6 consecutive days. Mental stress induced in patients significant increments in different hemodynamic parameters (heart rate, systolic blood pressure and diastolic blood pressure) and in serum epinephrine levels. Concomitantly, the test produced a significant increase in platelet aggregation (induced by 3 microM ADP or 1 microgram/ml collagen), the formation of circulating platelet aggregates and an increase in plasma thromboxane B2 levels. Hemodynamic parameters and platelet function tests returned to baseline values after 30 min. Similar activation of hemodynamic parameters, similar increase in epinephrine levels and lower increase in platelet function by emotional stress were observed in control subjects. Treatment of patients with dipyridamole had no effect on stress-induced increase in hemodynamic parameters and epinephrine levels, but decreased stress-related platelet activation. These data can contribute to a better understanding of the complex relationships between psychosocial factors, the hemostatic system and vascular disease.

Adult↗

Thromboxane production by platelets during tumor cell-induced platelet activation.

We have evaluated in a homologous system the mechanisms of platelet activation by cells isolated from fresh human tumor tissues and the role of thromboxane B2 (TxB2) generation in this process. Thirty-eight of the 46 tumor tissues considered showed a high platelet-aggregating activity, with no particular distribution in any specific tumor type. Apyrase caused a nonsignificant reduction in the aggregation response, hirudin did not change it, while iodoacetic acid or p-hydroxymercuriphenylsulfonate, specific cysteine proteinase inhibitors, significantly reduced the platelet-aggregating capacity of these tumor cells. In 9 colon carcinomas and in 8 breast carcinomas the levels of TxB2 produced by platelets after addition of tumor cells were measured: tumor cell-induced platelet aggregation was accompanied by a significant production of the metabolite; indobufen, a cyclooxygenase inhibitor, significantly reduced aggregation and particularly TxB2 production, while the drug had no effect on both parameters if preincubated with tumor cells only. These data suggest that cells isolated from different human tumor tissues activate platelets through the activity of tumor-associated cysteine proteinase(s); platelet aggregation by tumor cells is largely dependent on arachidonic acid metabolism in platelets, while such metabolism in tumor cells does not play a significant role.

Adult↗

Platelet activation by emotional stress in patients with coronary artery disease.

We studied the effects of experimentally induced emotional stress (mental arithmetic) on different hemodynamic parameters, catecholamine levels, and serum and platelet function tests in 25 postinfarction patients and in 10 apparently healthy, age-matched control subjects. Mental stress (10 minutes) induced significant increments in heart rate, systolic blood pressure, diastolic blood pressure, double product, and cardiac output, indicating a sympatho-adrenal stimulation that was confirmed by a significant increase in serum epinephrine and norepinephrine levels. All of the effects disappeared at minute 10 of recovery. Concomitantly, the test produced a significant increase in platelet aggregation (induced by 3 microM ADP or 1 microgram/ml collagen), the formation of circulating platelet aggregates, and an increase in thromboxane B2 levels in plasma and serum. These effects were also rapidly reversible. Similar activation of hemodynamic parameters and a similar but less evident increase in platelet function by emotional stress were observed in control subjects. A possible artifact due to factitious platelet activation by catheter sampling was excluded with experiments in which a 40-minute rest was introduced after the baseline period and before mental stress; platelet activation did not occur during baseline or rest periods, only after emotional stress. Furthermore, the antiplatelet drug dipyridamole reduced the stress-induced formation of platelet aggregates in postinfarction patients. These results demonstrate the existence of a direct link between emotional stress and platelet function and offer an explanation of one of the mechanisms through which mental stress may be involved in the development of coronary artery disease.

Coronary Disease↗

Arachidonic acid metabolism and pathophysiologic aspects of subarachnoid hemorrhage in rats.

We studied the ex vivo production of prostaglandin D2, prostaglandin E2, 6-ketoprostaglandin F1 alpha, and leukotriene C4 in the brain tissue of rats subjected to experimental subarachnoid hemorrhage. The ex vivo method allows the study of arachidonic acid metabolites released from brain slices at different times after subarachnoid hemorrhage induction and reflects the residual capacity for arachidonic acid metabolism after the pathologic event. The rats were sacrificed 30 minutes, 1 and 6 hours, and 2 days after subarachnoid hemorrhage was induced by the injection of 0.30 ml autologous arterial blood into the cisterna magna. Concentration of prostaglandin D2 and 6-ketoprostaglandin F1 alpha was increased significantly relative to control 2 days after induction. The concentration of prostaglandin E2 was increased significantly 6 hours after induction, while ex vivo production of leukotriene C4 was increased significantly at 1 and 6 hours and 2 days. The correlation between these results and the occurrence of vasospasm after subarachnoid hemorrhage is discussed. The results obtained from the ex vivo incubation of brain tissue slices after experimental subarachnoid hemorrhage suggest that after the hemorrhage there is a significant modification of brain eicosanoid metabolism, which could be of great importance in interpreting the pathogenesis of subarachnoid hemorrhage-related neuronal impairment.

Animals↗

Fibrinopeptide A levels in patients with acute ischaemic heart disease.

Fibrinopeptide A (FPA) levels were determined in 40 consecutive patients admitted to the coronary care unit with a typical history of chest pain: in 24 of them a diagnosis of acute myocardial infarction (AMI) and in 16 a diagnosis of angina was made. Seven of the patients with AMI suffered from recurrent episodes of early post-infarctional angina. FPA levels were determined in each patient on admission and every 4 h for 48 h. On admission in patients with both angina and AMI the FPA levels were significantly higher than in normal controls; these levels were higher in patients with AMI than in those with angina, but this difference was not significant. In patients with angina the values decreased progressively after 12 h to baseline values, while in those with AMI the high levels of FPA persisted throughout the 48-hour observation period. In many instances, particularly after 24 h, the differences between the two groups were statistically significant. In patients with early post-infarctional angina the episode of angor was preceded by or corresponded to a new great elevation of FPA levels. These data suggest that the thrombin generation is higher and more prolonged in patients with AMI than in those with angina; the determination of FPA levels, which are an index of 'in vivo' thrombin generation, can be useful to follow the clinical course of ischaemic heart disease.

Adult↗

Effects of nicardipine on the ex vivo release of eicosanoids after experimental subarachnoid hemorrhage.

The activation of lipid peroxidation and the enhancement of arachidonic acid metabolism have been demonstrated as indicators of brain damage after subarachnoid hemorrhage (SAH). Meanwhile, the final common pathway of neuronal damage seems to be related to the impaired homeostasis of Ca++. The present study evaluated the effect of the calcium-antagonist nicardipine on arachidonate metabolism after experimental induction of SAH. The ex vivo release of four eicosanoids (prostaglandin (PG)D2, PGE2, 6-keto-PGF1 alpha, and leukotriene (LT)C4) was measured at different intervals after SAH induction. Rats were separated into the following three groups: a sham-operated group, an SAH group (rats were injected with 0.3 ml autologous arterial blood), and an SAH-treated group (after SAH induction, rats were treated with nicardipine 1.2 mg/kg intraperitoneally). Nicardipine significantly decreased the ex vivo release of PGD2 at 48 hours after SAH (p less than 0.01). The release of PGE2 was significantly enhanced at 6 hours after SAH, while in the nicardipine-treated group PGE2 release is significantly reduced. Nicardipine also affects the lipoxygenase pathway, reducing the release of LTC4 at 1, 6, and 48 hours after SAH induction. The results of the present study show that nicardipine treatment exerts an inhibitory effect on both biochemical pathways of arachidonic acid metabolism; aside from vascular effects, nicardipine could exert a protective role against the release of arachidonate metabolites, which could play a significant role in the pathogenesis of brain damage after SAH.

6-Ketoprostaglandin F1 alpha↗

Mechanisms of platelet activation by cultured human cancer cells and cells freshly isolated from tumor tissues.

We studied the effects on platelet function of cells isolated from freshly dissociated human tumor tissues (11 breast carcinomas, 9 colon carcinomas and 1 lymph node metastasis from melanoma) obtained at surgery as compared with cultured human tumor cells: namely, human melanoma 1402 cell line derived from a primary tumor and two lines derived from lymph node metastases (ME 7110/2 and Me 665/1) as well as a human hepatoma cell line (Hep G2). The three melanoma cell lines activated platelets by producing ADP, as evidenced by the inhibitory effect of apyrase and by the direct measurement of the agonist in the supernatants of tumor cell suspensions; this production was much greater by the cells derived from metastases than by the cells derived from the primary tumor. On the other hand, aggregation induced by Hep G2 hepatoma cells was unaffected by apyrase and was inhibited by hirudin or concanavalin A, suggesting that the cells aggregate platelets by producing thrombin, probably through tissue factor activity of the cells themselves. Cells isolated from 16 of the 21 human tumor tissues possessed a potent platelet-aggregating effect, which was not inhibited by apyrase, hirudin or concanavalin A, but was virtually abolished by the cysteine protease inhibitors iodoacetic acid or p-hydroxymercuri-phenylsulfonate. Collectively, our data demonstrate that cells isolated from freshly dissociated tumor tissues activate platelets through tumor-associated cysteine proteinases rather than by the ADP- or thrombin-dependent mechanisms characteristic of cultured human tumor cell lines.

Adenosine Diphosphate↗

Human breast and colon carcinomas express cysteine proteinase activities with pro-aggregating and pro-coagulant properties.

We have investigated concomitantly the pro-aggregating and pro-coagulant activities of 11 breast and 2 colon human carcinomas. Tumor tissues, obtained at surgery, were immediately processed to prepare tumor-cell suspensions for the study of aggregating activity and tissue extracts for the study of procoagulant capacity. Nine carcinomas (8 breast and 1 colon) possessed a high, dose-dependent platelet-aggregating activity, which was present in the cell-free supernatant and was inhibited by HgCl2 and iodoacetic acid, specific cysteine proteinase inhibitors, while apyrase and hirudin had no significant effect; in contrast, the other tumors did not aggregate platelets. All the tumor extracts tested from 12 carcinomas (11 breast and 1 colon) were able to activate blood coagulation in both the presence and the absence of F VII. The activity was inhibited by HgCl2 and iodoacetamide, while Con A was less effective. Therefore, these tumors do not aggregate platelets through the production of ADP or thrombin, nor promote blood coagulation through the production and release of tissue factor; a tumor-associated cysteine proteinase plays a major role in both pro-aggregating and pro-coagulant activities.

Adult↗

Haemostatic variables, serum lipid abnormalities and vascular complications in diabetes mellitus: a 5 year follow-up study.

The relationship among blood lipids, haemostatic and fibrinolytic parameters have been evaluated, during a follow-up study, in 27 non-insulin dependent (type II) diabetic patients. Upon recruitment, and in periodical controls, we observed that plasma triglycerides and VLDL levels correlated inversely, and HDL directly, with the fibrinolytic activity of plasma and euglobulin precipitate. Furthermore triglycerides and VLDL correlated directly with Factor VIII antigen (vWFAg). After 5 years in the study, 12 patients (44%) had macroangiopathic complications, and 9 of these subjects showed persistently high levels of triglycerides (above 2.36 mmol/l). These haemostatic and lipid components, however, do not influence the progression of diabetic retinopathy and nephropathy. The alterations of lipid, haemostatic and fibrinolytic parameters and their possible relationships seem to play an important role in the occurrence of diabetic macroangiopathy.

Aged↗

CSF leukotriene C4 following subarachnoid hemorrhage.

Leukotrienes derive from arachidonic acid metabolism via the lipoxygenase pathway and modulate several cellular events. In the central nervous system, leukotrienes are mainly synthesized in the gray matter and in vascular tissues. Their production is enhanced in ischemic conditions and in experimental subarachnoid hemorrhage (SAH). Previous studies have indicated the ability of the leukotrienes C4 and D4 to constrict arterial vessels in vivo and in vitro and have suggested their involvement in the pathogenesis of cerebral arterial spasm. In the present study, the authors measured lumbar and cisternal cerebrospinal fluid (CSF) levels of leukotriene C4 in 48 patients who had suffered aneurysmal SAH. In 12 of the cases, symptomatic and radiological spasm was evident. The mean lumbar CSF level of immunoreactive-like activity of leukotriene C4 (i-LTC4) was significantly higher (p less than 0.005) than in control cases, while the cisternal CSF level was higher than the lumbar mean concentration (p less than 0.005). Patients presenting with vasospasm had significantly higher levels of i-LTC4 compared to patients without symptomatic vasospasm. This is the first report concerning monitoring of i-LTC4 levels in the CSF after SAH. The results of this study suggest that: 1) metabolism of arachidonic acid via the lipoxygenase pathway is enhanced after SAH; 2) the higher cisternal CSF levels of i-LTC4 may be part of the biological response in the perianeurysmal subarachnoid cisterns after the hemorrhage; and 3) the higher CSF levels of i-LTC4 in patients presenting with vasospasm suggest that a relationship exists between this compound and arterial spasm and/or reflect the development of cerebral ischemic damage.

Cisterna Magna↗

Effect of nimodipine on arachidonic acid metabolites after subarachnoid hemorrhage.

Arachidonic acid metabolites are under investigation as possible vasoactive agents involved in the pathogenesis of cerebral vasospasm after subarachnoid hemorrhage. Prostaglandins, as well as other vasoactive compounds, activate contractile proteins through utilization of extracellular bound Ca++ to the intracytoplasmic free fraction. Recently, calcium-antagonists, mainly Nimodipine, have been proposed for the prophylaxis and/or reversal of the ischemic damage caused by vasospasm. Nimodipine failed to reduce vasospasm incidence in a series of 30 patients admitted with diagnosis of subarachnoid hemorrhage from ruptured intracranial aneurysm. Nimodipine failed to reduce level of four arachidonate metabolites measured (prostaglandin D2, prostacyclin, thromboxane B2 and leukotriene C4) in lumbar and cisternal CSF. After subarachnoid hemorrhage there is a significant increase of CSF levels of arachidonate metabolites; in perianeurysmic cisterns level of prostaglandin D2, thromboxane B2 and leukotriene C4 are significantly higher than lumbar CSF levels. Moreover, cisternal CSF level of prostaglandin D2 and leukotriene C4 are significantly higher in patients with symptomatic vasospasm. Nimodipine did not significantly modify CFS level of arachidonate metabolites: this suggests that Nimodipine treatment, which definitely improves long-term results of patients for intracranial aneurysms, could exert its pharmacological action reducing Ca++ intake from the extracellular compartment and preventing a direct toxic effect of calcium, without a direct action against the release of vasoactive compounds.

6-Ketoprostaglandin F1 alpha↗

Severe platelet dysfunction in a patient with autoantibodies against membrane glycoproteins IIb-IIIa.

A young women affected by Hodgkin's disease developed chronic autoimmune thrombocytopenic purpura. Splenectomy induced normalization of her platelet count, but hemorrhagic symptoms did not disappear. The patient's platelets did not aggregate in response to collagen and ADP and the IgG fraction of the patient's plasma induced the same defect in normal platelets. The women's IgG recognized glycoproteins IIb and IIIa of normal platelet membranes. Prednisone therapy induced the disappearance of bleeding symptoms and the normalization of platelet aggregation.

Adult↗

Characterization of the platelet-aggregating activity of cancer cells with different metastatic potential.

We studied the mechanisms of platelet activation by sublines exhibiting different metastatic potential of two murine experimental tumors: sublines M4 and M9 of the benzopyrene-induced mFS6 sarcoma and sublines B77-AA6 and B77-3T3 of RSV-transformed BALB/c 3T3 fibroblasts. The neoplastic cells of both models induced platelet aggregation, secretion and prostaglandin biosynthesis. In the first model but not in the second, all these processes correlated with the in vivo malignancy of cells. Pretreatment of B77-AA6 and B77-3T3 cells with apyrase significantly decreased platelet aggregation, while pretreatment of M4 cells was ineffective. However, pretreatment with trypsin or neuraminidase was effective in reducing platelet aggregation induced by M4 cells, but not that induced by any of the others; furthermore, phospholipase A2 reduced the platelet response by all sublines. Finally, platelet-activating activity was also found in the pellets obtained following centrifugation of culture media. These results suggest that platelets are stimulated by cancer cells through different mechanisms; platelet activation by a sialo-lipo-protein complex of the cellular membrane was found to be characteristic of the model in which the platelet-aggregating activity of neoplastic cells correlated with their in vivo metastatic behavior.

Adenosine Diphosphate↗

Role of tumor proteinases in tumor cell-induced platelet aggregation.

In a previous work we found a correlation between in vivo metastatic potential of cancer cells and their platelet aggregating activity in sublines of the mFS6 murine fibrosarcoma. In the present study the effects of different proteinase inhibitors on platelet aggregation induced by these cells were investigated. When the platelets were incubated with the inhibitors, only those effective against cysteine proteinases strongly reduced platelet aggregation by cancer cells; serine protease inhibitors, including hirudin, had no effect on platelet response. Incubation of neoplastic cells with the same inhibitors gave similar, though less evident results. Addition of neoplastic cells to platelet-rich plasma also caused significant production of fibrinopeptide A, more by the less malignant cells. Thus, in this experimental model a cysteine proteinase of the neoplastic cells appears to play an important role in the platelet aggregation induced by them, and this property was detected in the M4 cells with high metastatic in vivo activity.

Adult↗