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Plasma inhibitors of the Hageman factor dependent pathways.

The Hageman factor dependent pathways are influenced by several control proteins which modulate the extent of activation and biologic activity of these enzyme substrates (Fig. 1). C1 INH plays a prominent role by acting at the common initiating step for all three Hageman factor dependent systems and its deficiency produces disease in man. Alpha-2 macroglobulin appears to play an important role in the fibrinolytic sequence, having potent activity towards both plasminogen activator and plasmin. Antithrombin most prominently influences the state of activation of the coagulation sequence by regulating the enzymatic activities of activated Factors XI, IX and X and, most importantly, that of thrombin. Significantly, deficiency of antithrombin results in increased thrombosis in man.

Blood Coagulation↗

On-site prothrombin time, activated partial thromboplastin time, and platelet count. A comparison between whole blood and laboratory assays with coagulation factor analysis in patients presenting for cardiac surgery.

BACKGROUND: Although available hemostasis assays from institutional laboratories permit an analytical approach to diagnosis and treatment of coagulation disorders following cardiopulmonary bypass, their clinical utility has been limited by delays in obtaining results. The development of instrumentation for on-site testing allows rapid return of results. This study was designed to compare whole blood (WB) results obtained from on-site coagulation assays with values provided by our institutional laboratory (LAB). METHODS: After Institutional Human Studies Committee approval, 362 patients presenting for cardiac surgery requiring cardiopulmonary bypass were enrolled in this study. Prothrombin time (PT), activated partial thromboplastin time (aPTT), and platelet count (PLT) assays were performed in both WB and LAB systems. PT, aPTT, and PLT measurements were compared between WB and LAB assays using blood specimens obtained from at least two time points for each patient. Normal range values for both PT and aPTT methods were determined by using measurements from a normal reference population. Coagulation factor levels were measured in a subset of patients to characterize the response of PT and aPTT assays to individual and multiple factor levels. To employ Bayes' theorem and calculate predictive indexes (e.g., sensitivity, specificity), the disease or factor deficiency was determined using factor levels. Predictive indexes were used to evaluate the ability of PT and aPTT assays to identify factor deficiency. RESULTS: PLT counts were similar between systems. Linear regression and bias analysis demonstrated similar results for WB and LAB PT and discordant results for aPTT measurements. Both PT assays had a similar normal range, whereas a wider distribution of results was evident for the WB aPTT normal range. Although statistically greater slopes for factor:aPTT regressions were observed for the WB system, WB aPTT correlated better with factor V and with factor V, VIII, and XII levels (multivariate linear regression). Diagnostic performance for factor levels less than 0.3 and 0.4 U/ml was similar for both WB and laboratory PT and aPTT assays. WB and LAB PT and aPTT assays performed similarly in detecting factor deficiency in the period after cardiopulmonary bypass. CONCLUSIONS: WB PT and PLT values correlate well with those obtained from the LAB. The discrepancy between measurement systems in aPTT values is probably a reflection of both different normal ranges and responsiveness to factor deficiency. These WB assays provide coagulation results that can accurately identify patients with quantitative deficiencies in platelets and coagulation factors.

Adult↗

FXII (46C-->T) polymorphism and in vivo generation of FXII activity--gene frequencies and relationship in patients with coronary artery disease.

Increased Factor XIIa concentrations have been found in association with coronary artery disease. Recently, a common 46 C to T point mutation in exon I of the factor XII gene has been described which is associated with lower FXII clotting activity and lower zymogen levels in relation to possession of the T allele. It is not known whether this polymorphism relates to the phenotypes of FXIIa in vivo or to coronary artery disease. The aim of the study was to investigate the interaction of this polymorphism with FXIIa plasma levels and to study the prevalence of the polymorphism in 266 patients with suspected coronary artery disease characterised by angiography and in 185 healthy controls. FXIIa levels were strongly associated with FXII genotype with lower levels with increasing numbers of T alleles (p <0.0001). There was no difference between the prevalence of this polymorphism in patients with M1 compared to those without MI and controls and between all patients and controls (p > or =0.2, chi-square test). There was no association between extent of coronary artery disease (0, 1, 2, and 3 vessel disease) and FXII genotype. In conclusion, the common 46 C to T point mutation is strongly associated with FXIIa but the present study did not show an association with coronary artery disease. The role of this polymorphism in other thrombotic disorders such as ischemic stroke and venous thrombosis and its clinical significance in FXII deficient states remains to be investigated.

Blood Coagulation↗

A lyophilized human reference plasma for coagulation factors. Evidence for stability of factors I, II, V, and VII through XII.

Results are reported of a one-year study on the stability of a lyophilized normal human reference plasma, originally standardized for eight clotting factor activities against a freshly prepared pool of citrated, platelet-poor normal human plasma. The stability of any particular coagulant activity in this reagent was represented mathematically as a function of the observed clotting times obtained under specific assay conditions, where any observed change in the clotting times over the trial period was taken to reflect a change in the stability of the reference plasma. Taking into consideration estimates of variability contributed by different donors of factor-deficient substrata-plasma, different lots of substrate from the same donor, different technologists, and certain age-of-substrate lot trends, there was no statistically significant change in functional activity for Factors V and VII through XII in the reagent when it was stored unreconstituted below -25C. By less rigorous criteria, both clottable fibrinogen (Factor I) and the thrombin-forming potential of prothrombin (Factor II) also were stable during this same period. Based on these results, it was concluded that when suitably prepared, lyophilized human plasma can be used as a stable, secondary standard reference for the assay of coagulation factors.

Blood Coagulation↗

Isolation and functional properties of the heavy and light chains of human plasma kallikrein.

Human plasma kallikrein was prepared by proteolytic activation of prekallikrein with beta-Factor XIIa (Mr = 28,000). Two forms of kallikrein were generated that were each composed of two disulfide-linked polypeptide chains: a heavy chain of apparent Mr = 43,000 and a light chain of apparent Mr = either 36,000 or 33,000. Following reduction and alkylation, the heavy and light chains of kallikrein were isolated by affinity chromatography using insolubilized high molecular weight kininogen. The alkylated light chain of kallikrein did not bind to high molecular weight kininogen-Sepharose while the heavy chain did bind with high affinity and was subsequently eluted. The light chain retained the specific amidolytic activity of native kallikrein. The Km and kcat values for the hydrolysis of H-D-Pro-Phe-Arg-p-nitroanilide by kallikrein or its light chain were identical. Activation of Factor XII in solution was equally well catalyzed by kallikrein and its light chain. However, in kaolin-dependent coagulation, kallikrein was 180 times more effective than the light chain in correcting the clotting defect of prekallikrein-deficient plasma. Furthermore, the light chain was 3.5 times less potent than kallikrein in cleaving high molecular weight kininogen in solution. These observations indicate that the light chain region contains the enzymatic active site and adequately accounts for the enzymatic properties of kallikrein in solution on the protein substrate, Factor XIII, and on oligopeptide substrates. However, the heavy chain region of kallikrein is required for binding to high molecular weight kininogen, for surface-dependent activation of coagulation, and for optimal cleavage of high molecular weight kininogen.

Humans↗

[Appearance of coagulation disorders in the non-healthy newborn infant].

Coagulation abnormalities are particularly frequent in neonatal pathology and justify exploration of hemostasis in the newborn. First of all we established a profile of coagulation in the newborn using our own results and data from the literature. Contrasting with a deficit in numerous factors (II - VII - IX - X - XI - and XII), overall coagulation is normal, or even increased. The fibrinolytic system is characterized by a low plasminogen level but the activity of this system is transitorily increased. Then we recall the known syndromes: avitaminosis K, constitutional deficits in the coagulation factors, isolated thrombopenia, disseminated intravascular clotting. However numerous problems persist. Abnormalities in the clotting factors are frequently difficult to interpret. Correlation between the clinical and laboratory pictures does not always exist. We emphasize the necessity for preventive measures.

Blood Cell Count↗

Activation of the coagulation cascade in C1-inhibitor deficiencies.

Activation of the contact and complement systems in C1-inhibitor deficiencies is thought to contribute to the pathogenesis of angioedema attacks by releasing kinins. Trigger stimuli of attacks may also activate coagulation. This is particularly important because experimental data suggest that thrombin, the main enzyme of the coagulation cascade, increases vascular permeability and can thus influence edema formation. We have studied 19 patients with hereditary angioedema (HAE) during remission, 5 HAE patients during acute attacks, and 6 patients with acquired angioedema (AAE) during remission and during seven attacks. Thirty normal subjects, matched for sex and age, served as controls. Generation of thrombin was measured by enzyme-linked immunosorbent assay (ELISA) as plasma levels of the prothrombin fragment 1 + 2 (F1 + 2); the initiators of the tissue factor and contact coagulation pathways were investigated by measuring plasma levels of activated factor VII (FVIIa) coagulometrically and activated factor XII (FXIIa) by ELISA. Cleavage of high molecular weight kininogen (HK) was evaluated by immunoblotting analysis. F1 + 2 was slightly increased during remission and further significantly increased during attacks in both HAE (P = .0115) and AAE. FVIIa and FXIIa, normal during remission, increased strikingly during attacks in both HAE (P = .0022 and P = .0044) and AAE. During remission, cleaved HK was normal in HAE and high in AAE; during attacks it increased in HAE (P = .0008) and remained elevated in AAE. Our data indicate that in C1-inhibitor deficient patients there is increased generation of thrombin during attacks, with signs of activation of both the contact and tissue factor coagulation pathways. In conclusion, C1-inhibitor deficiency, whether hereditary or acquired, has demonstrable activation of the coagulation and kinin-forming cascades during attacks and that thrombin should be considered a possible contributing factor in the pathogenesis of edema in HAE and AAE.

Adult↗

A new case of high-molecular-weight kininogen inherited deficiency.

A preoperative hemostasis study discovered a prolonged activated partial thromboplastin time in a 23-year-old Portuguese Caucasian woman without personal or past family history of hemorrhage or thrombosis. This was corrected by pooled plasma that excluded circulating anticoagulant. Activated partial thromboplastin time was prolonged whatever the activator, particularly ellagic acid, and was not corrected by prolonged kaolin incubation. Levels of factors VIII and XII were normal; factor XI and prekallikrein levels were either moderately low or normal according to activators and defective reagents used. High-molecular-weight kininogen (HMWK) level assessed by coagulation and immunological method was virtually nil. Fibrinolysis activity was normal before and after venous occlusion. The programmed operation was performed without any particular preparation and no complication arose. Family investigation found heterozygous HMWK deficiency in the proposita's father and three of her siblings.

Adult↗

Amidolytic assay of human factor XI in plasma: comparison with a coagulant assay and a new rapid radioimmunoassay.

The traditional coagulant assay for plasma factor XI suffers from a relatively high coefficient of variation, the need for rare congenitally deficient plasma, and a poor correlation between precision and sensitivity. We have developed a simple functional amidolytic assay for factor XI in plasma using the chromogenic substrate PyrGlu-Pro-Arg-p-nitroanilide (S-2366). After inactivation of alpha 1-antitrypsin, CI inhibitor, and other plasma protease inhibitors with CHCI3, plasma was incubated with kaolin, in the absence of added calcium, which limited the enzymes formed to those dependent on contact activation. Soybean trypsin inhibitor was used to minimize the action of kallikrein on the substrate. Once the reaction was complete, corn trypsin inhibitor was used to inactive factor XIIa, the enzyme generated by exposure of plasma to negatively charged surfaces, which had activated the factor XI. The assay is highly specific for factor XI, since plasma totally deficient in that zymogen yielded only 1%-3% of the enzymatic activity in normal plasma under identical conditions. The requirements for complete conversion of factor XI to XIa in plasma within 60 min were, respectively, factor XII, 0.6 U/ml, and high molecular weight kininogen, 0.2 U/ml. Prekallikrein was not an absolute requirement for complete activation but did accelerate the reaction. The intraassay coefficient of variation was 3.4%, and the mean of 35 normal plasmas was 1.00 U +/- 0.24 SD. In addition, a new rapid radioimmunoassay was devised using staphylococcal protein A as the precipitating agent for a complex of factor XI antigen with monospecific rabbit antibody. The mean was 1.01 U +/- 0.30 SD. The correlation coefficients for amidolytic versus coagulant and amidolytic versus radioimmunoassay were r = 0.95 for the former and 0.96 for the latter. Thus, a simple, accurate amidolytic assay and a radioimmunoassay have been devised for measuring factor XI in plasma that correlate well with the coagulant activity of factor XI, as determined in our laboratory.

Animals↗

[Coagulation and fibrinolysis associated with contact phase in plasma with high molecular weight kininogen deficiency].

Congenital deficiency of high molecular weight kininogen (HMWK), first reported by Saito et al. in 1975, is a rare disorder with homozygous defect of HMWK and only 14 cases have been reported so far. Prolonged partial thromboplastin time and depressed intrinsic fibrinolytic activity in plasma interacted with negatively charged surface were characterized in these patients without any bleeding problem. On the other hand, patients associated with hemorrhagic disorder, such as haemophiliacs, showed a markedly prolonged partial thromboplastin time but normal intrinsic fibrinolytic activity. These results give us a important suggestion on our understanding of why haemophiliacs bleed and why HMWK deficient patients do not. In immunological studies with specific antisera directed against human plasma HMWK and prekallikrein, HMWK in present in normal plasma in free form and a complexed form with prekallikrein, and whole prekallikrein in present in a complexed form with HMWK. This result is associated with diminished level of prekallikrein in plasma of patients with congenital HMWK deficiency. According to above-mentioned our experimental results and some reports, it is speculated that the deficiency of HMWK with normal level of prekallikrein is acquired.

Adult↗

Clinical risk factors for prolonged PT/PTT in abdominal sepsis patients treated with moxalactam or tobramycin plus clindamycin.

Factors associated with prolongation of the prothrombin time were analyzed in 94 patients with intra-abdominal sepsis. Patients were randomized prospectively to receive either the combination of tobramycin and clindamycin (TM/C) or moxalactam (MOX). This paper presents a retrospective review designed to compare the frequency of prolonged clotting times and to analyze predisposing factors. Prothrombin time (PT) prolongation occurred more frequently in patients given moxalactam (19 of 47 patients) than in patients given the combination of tobramycin and clindamycin (9 of 47 patients) (p less than 0.05). Prolongation of the partial thromboplastin time (PTT) occurred in all patients with a prolonged PT. Liver disease, upper gastrointestinal surgery, and use of cimetidine were more frequent in those patients with abnormal PT/PTT values (p less than 0.05). Two moxalactam-treated patients with subsequent PT/PTT prolongation had individual clotting factors assayed before moxalactam treatment and at the time of detection of the abnormal PT. The activity of clotting factors II, VII, VIII, IX, X, and XII was reduced during MOX therapy. Treatment with vitamin K reversed the abnormality. In view of underlying abnormalities and rapid response to parenteral vitamin K, the mechanism is probably an acute vitamin K deficiency superimposed upon chronic vitamin K deficiency. In patients with intra-abdominal infection, those treated with MOX are more likely to develop abnormal PT than those treated with TM/C. Since abnormal PT/PTT was common even in TM/C patients, supplemental vitamin K should be considered for all seriously ill, older patients with abdominal infections.

Abdomen↗