Search PubMedSearch

SEARCH · Search PubMed

Results for “Factor XI Deficiency”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Preliminary findings of altered follicular activity in Holstein cows with coagulation factor XI deficiency.

Factor XI (F XI) deficiency is an autosomal recessive coagulopathy found in Holstein cattle. Affected animals have a 50% greater prevalence of repeat breeding. Therefore, several parameters describing ovarian function were studied. Daily blood sampling revealed that progesterone concentrations were slower to decline from a peak at day 16 (p < 0.01) to values less than 3 nmol/L in F XI-deficient cows (5.14 +/- 0.69 days (mean +/- SD) versus 4.05 +/- 0.63 days in control animals), resulting in an oestrous cycle length of 24.7 +/- 2.1 days compared to 22.9 +/- 3.0 days, respectively. This was not due to an alteration in the availability of prostaglandin F2 alpha (PGF2 alpha) or oxytocin (OT) involved in luteolysis. No significant differences (p > 0.05) were seen between normal (n = 7) and F XI-deficient (n = 7) cows in the peak values or the area under the curve for the pulse in 13,14-dihydro-15-keto PGF2 alpha in response to OT challenge or in the parameters describing the pulse of ovarian OT secretion after PGF2 alpha injection (n = 7 for each) between days 12 and 14. Ovulatory follicular development was assessed by ultrasound monitoring and plasma 17 beta-oestradiol values at 8-h intervals after a luteolytic injection of cloprostenol (n = 6 for each). Follicular diameter was smaller (p < 0.05) and accompanied by lower peak oestradiol values near the time of ovulation in F XI-deficient cows. The results suggest that the oestrous cycle in F XI-deficient cows is characterized by a slower process of luteolysis that may be associated with smaller follicular development.

Animals

Thromboembolic phenomena in patients with hereditary factor XI deficiency.

Factor XI deficiency is an hereditary coagulopathy that is usually associated with milder tendency to bleeding with comparison to hemophilia A. While the failure of stable fibrin clot formation may lead to bleeding, it is speculated that the same process may provide a protection against thrombosis of injured arteries due to atherosclerotic plaque rupture. Whereas 2 studies indicate that hemophiliacs have decreased mortality rate from cardiovascular diseases, there is no similar data regarding factor XI deficiency patients. In here we report about 3 patients with severe factor XI deficiency who have a long-standing history of thromboembolic phenomena: 2 patients with myocardial infarctions, and one patient with transient ischemic attacks. We discuss the possible role of factor XI in thrombosis, and whether its deficiency may protect patients from thromboembolic phenomena.

Adult

Prostatectomy in factor XI deficiency.

Factor XI deficiency, an uncommon inherited coagulopathy characterized by an absence of bleeding history but bleeding after an operation or trauma, has not been reported previously in urologic patients. The diagnosis is made by a specific factor assay after an abnormal partial thromboplastin time and the treatment is fresh frozen plasma. Four patients with factor XI deficiency underwent open prostatectomy and all experienced excessive postoperative bleeding and prolonged hospitalization. Treatment with fresh frozen plasma controlled bleeding in 3 patients, 1 of whom suffered congestive heart failure from the fluid load imposed. The fourth patient bled heavily despite fresh frozen plasma and required several additional procedures and 29 units of blood and packed cells.

Aged

A molecular genetic study of factor XI deficiency.

Factor XI deficiency is a rare bleeding diathesis found predominantly in Ashkenazi Jewish kindreds. A recent study of six Jewish patients identified three distinct mutations (Types I, II, and III) in the factor XI gene that were sufficient to fully define the genotypes of the patients. We have investigated 63 patients with factor XI deficiency and find overall allele frequencies of 44% for the type II mutation, 31% for the type III mutation, and 0% for the type I mutation. Therefore, 25% of the mutant factor XI alleles in our sample remain undefined. However, the distribution of mutant alleles is significantly different between Jewish and non-Jewish populations with hitherto undefined mutations accounting for 84% of the disease alleles in non-Jewish patients. Plasma factor XI:C levels were found to differ significantly between different homozygous and compound heterozygous genotypes and the inheritance of the II/III genotype was found to carry an increased risk of the most severe bleeding tendency.

Alleles

The management of factor XI deficiency.

Factor XI deficiency leads to a more variable bleeding tendency than haemophilia A or B. Although severely deficient individuals are likely to bleed excessively especially after surgery in areas of the body with increased fibrinolysis, there is evidence that some partially deficient individuals are at risk of excessive bleeding. This will entail careful planning for surgery. Several therapeutic modalities are available which include fresh frozen plasma, factor XI concentrates, fibrin glue, antifibrinolytic drugs and desmopressin. The advantages and risks of these are considered. Factor XI concentrate may be indicated for procedures with a significant risk of bleeding especially in younger patients with severe deficiency, but its use in older patients has been associated with thrombotic phenomena. If fresh frozen plasma is to be used, it is preferable to obtain one of the virally inactivated products. Fibrin glue is a useful treatment which deserves further study.

Factor XI

PTA deficiency (factor XI deficiency). Report of a case.

A case of a relatively rare coagulopathy has been presented. The mode of inheritance and the incidence of the disease have been discussed. Methods of screening, diagnosis, and treatment of PTA deficiency have been suggested. We have concluded that if a coagulation screen for patients about to undergo oral surgery in a hospital is contemplated, either a partial thromboplastin time or a thromboplastin generation time should be included.

Adult

The molecular genetics of factor XI deficiency.

Hereditary factor XI deficiency is characterised by a functional deficiency of factor XI and the absence of factor XI-related antigen in circulation. It occurs with a high frequency in the Ashkenazi Jewish population. Cloning of abnormal factor XI genes and studies on the molecular genetics of factor XI deficiency show that the cause for factor XI deficiency is heterogeneous. So far, two independent single base substitutions, one at the conserved intron donor consensus dinucleotide of intron N (type I) and a nonsense mutation at the codon for Glu117 (type II), have been identified. These two types of mutation together account for approximately half of the genetic changes in abnormal factor XI genes. At least one or more types of genetic change has yet to be defined. In the course of these studies, rapid methods that utilize the polymerase chain reaction and subsequent restriction endonuclease analysis have been developed.

Amino Acid Sequence

Coronary artery bypass in hereditary factor XI deficiency.

Hereditary factor XI deficiency is a disorder of coagulation that has been associated with postoperative bleeding. Because cardiopulmonary bypass itself induces transient abnormalities in hemostasis, the patient with factor XI deficiency could be at increased risk for bleeding after cardiac surgical procedures. We report the successful management of a 61-year-old man with hereditary factor XI deficiency who had coronary artery bypass. Treatment with low-dose aspirin, begun 24 hours postoperatively for graft patency, was well tolerated. Once recognized and aggressively treated, factor XI deficiency does not appear to be a contraindication to potentially life-saving procedures like coronary revascularization.

Blood Transfusion

Factor XI deficiency.

That factor XI has a role in normal blood coagulation is evidenced by the fact that patients with deficiency are prone to excessive bleeding after haemostatic challenge. The role of factor XI in physiological processes has become clearer since the discovery that it is activated by thrombin; this fact has contributed to a revised model of blood coagulation. Factor XI deficiency is particularly common in Ashkenazi Jews. Bleeding is typically provoked by surgery in areas of increased fibrinolysis, and is not restricted to individuals with severe deficiency. The bleeding tendency is variable and the reasons for this are not fully understood, although in severe deficiency there is some correlation between phenotype and genotype. The factor XI gene is 23 kb long, and two mutations are responsible for most factor XI deficiency in the Ashkenazi population. A total of 13 mutations have thus far been published. Factor XI deficient patients may need specific therapy to cover surgery and dental extractions. Although a factor XI concentrate is available there have been recent reports of coagulation activation and thrombosis indicating that it should be used cautiously. Fresh frozen plasma may be an acceptable alternative in some situations.

Amino Acid Sequence

Clinical usefulness of desmopressin for prevention of surgical bleeding in patients with symptomatic heterozygous factor XI deficiency.

Heterozygous factor XI (FXI) deficiency is sometimes associated with a significant bleeding tendency. Fresh frozen plasma of FXI concentrates are the mainstay of treatment in patients with a clear bleeding history, especially prior to surgery. However, these treatments are not completely free of risk. Furthermore, thrombosis has been reported in patients with FXI deficiency infused with FXI concentrate. No data are available on the possible efficacy of desmopressin in these patients. Two patients with a clear bleeding history associated with FXI deficiency and no additional haemostatic defects agreed to be treated with desmopressin before carpal tunnel surgery and dental extraction. The reduced basal FXI activity and antigen levels slightly increased after infusion, reaching borderline values. No bleeding was observed after surgical procedures. Desmopressin treatment seems a reasonable and useful choice in symptomatic, heterozygous FXI-deficient patients, thus reducing the cost of treatment, the risk of transmission of blood-borne viruses, and of thrombosis.

Blood Loss, Surgical

Procainamide-induced circulating anticoagulants in a congenitally-deficient factor XI patient.

A 70 year old male patient admitted for coronary bypass surgery presented with a procainamide-induced lupus syndrome. This syndrome included a LLAC with a positive IgM ACA titer as well as a factor XII inhibitor. These drug-induced inhibitors were superimposed upon the patient's congenital deficiency of factor XI. The methods used to identify these abnormalities are described together with the replacement therapy employed to cover the surgical procedure. The long-term withdrawal of procainamide was associated with correction of all coagulation abnormalities except the factor XI deficiency.

Aged

Combined dys-form of homozygous factor XI deficiency and heterozygous factor XII deficiency.

A 12-year-old girl with lifelong hemorrhagic episodes was found to have both a dys-form of homozygous factor XI deficiency and heterozygous factor XII deficiency. The heredity of the coagulation defects was confirmed by family studies. Severe bleeding after dental surgery occurred in spite of replacement therapy and local measures including fibrin glue. Our findings suggest that the risk of bleeding in patients with homozygous factor XI deficiency must not be underestimated and that the most effective measure is the transfusion of sufficient amounts of fresh frozen plasma until at least the 5th postoperative day.

Blood Transfusion

A novel congenital haemostatic defect: combined factor VII and factor XI deficiency.

Isolated deficiencies of factors VII and XI are both rare. Not surprisingly, therefore, combined factor VII and XI deficiency has not been reported previously. We report here a kindred with a combined heterozygous deficiency for both factors VII and XI. The proposita is a 28-year-old woman who had both a prolonged prothrombin time (PT) and a prolonged activated partial prothrombin time (APTT) associated with a mild bleeding tendency. Coagulation studies were performed on the six available members of this kindred. The PT and APTT were normal or mildly abnormal in five of these individuals. Factor VII coagulant activity (VII:C) varied from 0.33 to 0.77 units/ml in affected subjects. In contrast, the concentration of factor VII-related antigen for the six individuals ranged from 0.68 to 2.10 units/ml. Comparable factor VII:C levels were obtained when each subject's plasma was tested with either a rabbit or a human thromboplastin reagent. Factor XI coagulant activity was less than 0.5 units/ml in three of the six subjects and normal (approximately 1.0 units/ml) in the other three. The concentrations of thrombin-antithrombin-III and prothrombin fragment 1.2 were within normal limits for all individuals. In addition to being associated with heterozygous factor XI deficiency, the abnormal factor VII molecule in the plasma of affected individuals in this kindred appears to represent a newly described mutation. This is suggested by the pattern of reactivity with thromboplastin from different species, the normal tissue factor binding and the bleeding tendency in heterozygous individuals in this kindred.

Adult

Factor XI deficiency in an Arab Moslem family in Israel.

An arab moslem family with members affected by PTA deficiency is described. 3 children were found to have major deficiency, factor XI procoagulant activity being 3, 3 and 4 units/dl. 8 members, including parents, paternal grandparents and 4 siblings, were found to have minor deficiency of factor XI (40 to 68 units/dl). Assays of immunoreactive material in 4 members corresponded to the level of procoagulant activity. In this family, gene expression is autosomal recessive. The only bleeding episode reported was haematuria in the propositus. No other spontaneous, post-trauma or post-operative bleeding was noted. The PTA deficiency was reported until now, mainly in ashkenazi jews. This family is the first case of PTA deficiency ever reported in arab moslems.

Adult

Bleeding predictors in factor-XI-deficient patients.

Bleeding in factor-XI-deficient patients is mainly injury-related. Parameters influencing bleeding particularly in patients with minor factor XI deficiency have not been defined. We utilized a logistic regression model to analyze parameters influencing bleeding tendency in subjects from 45 families with factor XI deficiency. Bleeding manifestations were documented in 58% of 26 homozygous or doubly heterozygous factor-XI-deficient patients, in 20% of 46 heterozygous factor-XI-deficient patients and in 9% of 47 family members with a normal factor XI genotype. Odds ratios for bleeding in homozygotes or double heterozygotes were 13 and in heterozygotes 2.6 with 95% confidence intervals of 3.8-45 and 0.8-9.0, respectively. Bleeding correlated negatively with factor XI level (r = -0.36, P = 0.0001) with major factor XI deficiency being a strong predictor of bleeding (P = 0.011). Minor factor XI deficiency and blood group O slightly contributed to bleeding. Although factor VIII and factor XI levels were correlated (r = 0.48, P = 0.0001), levels of factor VIII and von Willebrand factor were not predictors of bleeding. Bleeding was more common following operative procedure involving mucosal membranes (P < 0.01). The designed model enabled prediction of bleeding manifestations with an overall accuracy of 78% and 82% in heterozygotes.

Case-Control Studies

Pseudo-factor-XI deficiency: effect of an inhibitor of factor XI adsorption to surface.

Recently we have described a normal plasma activity that modulates contact activation by inhibiting adsorption of factor XI to activating surfaces. Here we report the first identified case in which a patient has abnormal clotting tests due to an excess of a similar activity. The patient's plasma had a prolonged partial thromboplastin time and low apparent factor XI assay. His plasma prolonged the partial thromboplastin time of normal plasma and partially neutralized normal factor XI activity in vivo and in vitro. Analysis in dilute plasma revealed normal amounts of factor XI activity and antigen. Factor XI adsorption from plasma to activating surfaces was tested by adding a small amount of 125I-labeled purified factor XI to plasma, exposing the mixture to a glass tube or kaolin, and determining the amount of factor XI adsorbed to the surface. Whereas normal plasma and plasmas deficient in factor XII, factor XI, or Fletcher factor yielded about 4% adsorption to glass, factor XI adsorption from patient's plasma was less than 1%, indicating the presence of an adsorption inhibitor. This inhibitor did not affect factor XI activation or the activity of preformed factor XIa. It was not adsorbed by AI(OH)3 and was present in serum and the macroglobulin peak on gel filtration of the plasma through Sephadex G-200. The patient's history does not allow a definitive conclusion as to whether this inhibitor was associated with abnormal bleeding.

Adolescent