Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Factor X 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 55 records · Page 3Linked to original sources

Syndrome of acquired factor X deficiency and systemic amyloidosis; in vivo studies of the metabolic fate of factor X.

To determine the metabolic fate of factor X in primary amyloidosis associated with factor X deficiency, we examined the pathways of its catabolism in a man with this syndrome. Intravenous infusion of human or bovine 131I-labeled factor X established a triphasic plasma clearance pattern for factor X. About 85 per cent of the factor X disappeared, with a disappearance half-time of less than 30 seconds. A second and third phase showed a T1/2 of 90 minutes and nine hours respectively. 131I-labeles factor X in plasma did not appear to be rapidly modified or degraded. Relatively minor quantities of 131I were cleared into the urine. We observed a diffuse distribution of radioactivity over the body surface, with a concentration in the hepatic and splenic regions. These studies demonstrate than factor X deficiency associated with systemic amyloidosis is due to binding of factor X to body tissue, probably within the circulatory system.

Amyloidosis↗

Heterogeneity of hereditary and acquired factor X deficiencies by combined immunochemical and functional analyses.

Limited information is available regarding molecular abnormalities associated with derived factor X deficiencies. In order to assess the types of molecular aberrations that may occur in this group of haemostatic diseases we have analysed plasmas of 33 individuals from 28 kindred exhibiting factor X deficiency. These included those of hereditary type, transiently acquired deficiency as well as factor X deficiency associated with amyloidosis. Plasmas were analysed by one-stage assays for factor X activation by the extrinsic coagulation pathway, intrinsic coagulation pathway and Russell's viper venom. Selected plasmas were analysed in two-stage assays. Normal factor X concentration by specific radioimmunoassay was 6.38 +/- 1.29 micrograms/ml. Factor X associated with factor X deficiency were grouped by their specific activities measured for the three activation pathways and antigen concentration. The results suggest that a broad spectrum of molecular aberrations exist in the factor X deficiency states. The most common group of factor X deficiency was associated with abnormal activation of factor X by all three pathways. Variants of factor X associated with primary amyloidosis and transient acquired deficiency appeared to be abnormal molecules and not just reduced factor X concentration. Hereditary abnormal factor X molecules include the spectrum of potential defective molecules. The relationship of factor X structure to function and the heterogeneity of these defective molecules is discussed.

Antigens↗

Severe congenital factor X deficiency with intracranial bleeding in two siblings.

Congenital factor X deficiency is a rare autosomal recessive disorder that usually presents with variable bleeding tendency, prolonged prothrombin time and partial thromboplastin time. Therefore, it may be misdiagnosed as hemorrhagic disease of the newborn. Factor X level should be investigated for the definite diagnosis. We first report a new family whose two infants presented with severe intracranial bleeding at different times and were found to have congenital factor X deficiency. Plasma replacement therapy was not found to be efficacious in these infants. In conclusion, a possible factor X deficiency should be considered when a newborn presents with intracranial bleeding.

Brain↗

Factor-X deficiency in amyloidosis: a critical review.

Thirty cases of amyloidosis with factor-X deficiency, including six of our own, were reviewed. Modest deficiency of factor X was often associated with severe bleeding. In many of the cases, clinical bleeding could not be accounted for by deficiency of factor X alone. Other hemostatic defects were found in these patients and probably contributed to the bleeding. Modes of treatment, including the empiric use of corticosteroids and splenectomy, were discussed in light of current knowledge of pathogenesis of this unusual blood clotting disorder. This involves the interaction of amyloid fibrils and blood clotting factors.

Adrenal Cortex Hormones↗

Systemic amyloidosis associated with factor X deficiency.

An autopsy case of amyloidosis associated with factor X deficiency is reported. The patient showed a markedly decreased level of factor X (9% normal) and an extremely shortened half-life of intravenously infused factor X. Amyloid deposition was present in most of the visceral organs with special involvement of the liver and spleen. The amyloid in this case was thought to be AL protein, since it was potassium-permanganate-resistant and a small amount of Bence Jones protein was detected after dimethyl sulfoxide therapy. Electron microscopic study revealed a typical appearance of amyloid fibrils radiating from invaginated cell membrane of Kupffer cells, which may indicate rather rapid turnover of the amyloid. Rapidity and severity of amyloid deposition, especially in the liver and spleen, may play an important role in the development of the factor X deficiency associated with systemic amyloidosis.

Amyloid↗

Amyloidosis and factor X deficiency.

The association of amyloidosis and factor X deficiency has been reported 18 times. We have added a 19th case and compiled a summary of all previously reported cases. The pathogenesis of this association is discussed and therapeutic recommendations are offered based on the accumulated experience.

Adult↗

Prophylactic treatment of severe factor X deficiency with prothrombin complex concentrate.

Factor X (FX) deficiency is an autosomal recessive trait that occurs in fewer than 1 in 500 000 people. Not surprisingly, reports of prophylactic treatment for FX deficiency are exceedingly rare. We now report our experience of the use of prophylactic therapy in a FX-deficient patient. This 18-year-old African-American male presented at the age of 4(1/2) years with an FX level < 1%. Treatment was on demand with prothrombin complex concentrates (PCCs) given at two times the dose per kilogram of body weight for factor IX. He experienced frequent epistaxis, soft tissue bleeding and joint bleeding. The development of a target joint (right ankle) prompted the initiation of prophylactic treatment in the beginning of 1998 to the present with 30 units kg(-1) Profilnine twice per week via a home infusion programme. If breakthrough bleeding occurred, he was instructed to infuse another dose. He was instructed that Profilnine should not be infused in more than two doses in 24 h or on more than three consecutive days. A trough level drawn 48 h post-infusion showed an FX level of 30%. In the initial 12 months with prophylactic treatment, there was no breakthrough bleeding. Subsequently, with an additional 11 months of follow-up, he has reported one bleed. He rates his quality of life improved since starting prophylactic treatment. There have been no thrombotic events. Prophylaxis with PCC for FX deficiency with adequate education and follow-up can be performed capably in the home setting with a resultant decrease in the frequency of bleeding and attendant complications.

Adolescent↗

Molecular characterization of two novel mutations causing factor X deficiency in a Chinese pedigree.

Factor X (FX) deficiency is a rare bleeding disorder inherited as an autosomal recessive trait. In this study, we investigated the molecular basis of FX deficiency in a Chinese pedigree. The proposita showed a markedly prolonged activated partial thromboplastin time and a mild prolongation of prothrombin time. The levels of FX antigen and FX activity were 58.6% and 2.5%, respectively. Molecular analysis revealed that the proposita was compound heterozygous for two novel mutations: IVS1 + 1G > A and G1185A (Arg347His). The aberrant transcripts from the IVS1 + 1G > A mutant allele were not detected by analyzing the splicing pattern of ectopic transcripts in leukocytes of the patient with nested polymerase chain reaction after reverse transcription. We thus hypothesize that the mRNA molecules originating from the IVS1 + 1G > A mutation were rapidly destroyed in vivo. Site-directed mutagenesis of FX cDNA was used to introduce FXG1185A mutation, and wild-type as well as mutant FX proteins were expressed by transient transfection in HEK 293 cells. Normal FX antigen levels both in the conditioned media of cells expressing the mutant and in cell lysates were detected by an enzyme-linked immunoadsorbent assay. Evaluation of wild-type and mutant coagulant activity demonstrated that the FX molecules carrying the Arg347His mutation have dramatically decreased activity.

Adolescent↗

Factor X deficiency in the neonatal period.

An infant with a severe deficiency of factor X presened in the neonatal period with uncontrollable bleeding from heel prick sites, spontaneous bruising, and haematoma. The deficiency was controlled by infusions of dried human factors II, IX, and X concentrate; the half-life of the infused factor X material is only 18 hours. Despite prophylactic weekly infusions of factor X concentrate, the child developed a fatal intracerebral haemorrhage when only 4 months old. Coagulation studies on both parents and the elder sister showed no obvious coagulation abnormality.

Factor X Deficiency↗

A family with hereditary factor X deficiency with a point mutation Gla32 to Gln in the Gla domain (factor X Tokyo).

We report a new family with hereditary factor X deficiency. The propositus had a markedly prolonged prothrombin time, a mild prolongation of activated partial thromboplastin time and a clotting time activated by Russell's viper venom. Factor X activity in plasma was 3 u/dl (normal range 56-138 u/dl). Factor X antigen level was 61 u/dl. Molecular analysis revealed a homozygous mutation, Glu (GAG) to Gln (CAG) at residue 32 which normally undergoes gamma-carboxylation within the gamma-carboxyglutamic acid rich domain. The genotypes of family members completely correlated with their factor X activities. It is suggested that the Glu32 to Gln mutation is the molecular basis for the abnormal factor X in this family.

1-Carboxyglutamic Acid↗

Successful perioperative management of factor X deficiency associated with primary amyloidosis.

Acquired bleeding abnormalities are common in patients with primary amyloid light-chain amyloidosis. Factor X deficiency is the most common coagulopathy associated with life-threatening hemorrhagic complications when surgery is indicated. Fresh-frozen plasma (FFP) or prothrombin complex concentrates (PCCs) are the most frequently used blood products in this disease; however, FFP is often ineffective in controlling bleeding and PCCs have a significant risk of thrombosis when used intraoperatively. This report describes a patient with primary amyloidosis and factor X deficiency who underwent hemicolectomy with preoperative and intraoperative administration of recombinant human factor VIIa and postoperative administration of Bebulin (a PCC that contains the highest concentration of factor X). The management was successful with no signs of bleeding postoperatively. To our knowledge, few reports of successful perioperative management of factor X deficiency have been published to date. This is the first case report using recombinant human factor VIIa and Bebulin in the perioperative management of factor X deficiency associated with primary amyloidosis. Recombinant human factor VIIa and Bebulin may allow for successful perioperative management of bleeding disorders in patients with primary amyloidosis.

Amyloidosis↗

Classical factor X deficiency. Report of a further case.

A case of classical factor X deficiency is reported. The propositus is a 28-year-old male who presented easy bruising, epistaxis, hematomas, hematuria and occasional hemartrosis since early childhood. The severely prolonged prothrombin time was corrected by normal serum but not by adsorbed normal plasma. The abnormality was not corrected by the plasma of a patient with factor X deficiency, but by the plasma of patients with factor II or VII deficiencies. Partial thromboplastin time, prothrombin consumption and the thromboplastin generation test were abnormal. The thromboelastogram showed a prolonged 'K' and 'r' together with a normal 'ma'. Factor X was very low (smaller than 1%). Platelet tests were normal. No factor X band or precipitates were seen on electroimmunoassay and on the cross-over electrophoresis. The non-consanguineous parents and several other members of the family were found to be heterozygotes.

Adult↗

Human coagulation factor X deficiency caused by a mutant signal peptide that blocks cleavage by signal peptidase but not targeting and translocation to the endoplasmic reticulum.

Human factor XSanto Domingo is a form of coagulation factor X in which a mutation within the signal peptide region of the precursor protein has been correlated genetically with a severe deficiency of factor X in the affected individual. A point mutation results in substitution of Arg for Gly at the critical -3 position of the factor X signal peptide. To determine the biochemical effect of this mutation on the biosynthesis of factor X, the wild-type and mutant factor X cDNAs were subcloned into a vector for transcription and translation in vitro. Translation products of mRNAs encoding portions of both mutant and wild-type proteins were used in a systematic biochemical approach to evaluate directly the effect of the mutation on targeting, transport, and proteolytic processing in vitro. The results show that targeting and transport of factor XSanto Domingo to the endoplasmic reticulum are functionally dissociated from the removal of the signal peptide by signal peptidase. Factor XSanto Domingo is translocated into the endoplasmic reticulum but not processed by signal peptidase. Transient expression of the wild-type and mutant factor X in human embryonic kidney 293 cells revealed apparently normal secretion of the glycosylated two-chain form of factor X but no secretion of factor XSanto Domingo. Thus, the inability of signal peptidase to cleave factor XSanto Domingo is directly responsible for the absence of circulating factor X and leads to the bleeding diathesis in the affected individual.

Amino Acid Sequence↗

Congenital factor X deficiency: spectrum of bleeding symptoms in 32 Iranian patients.

The spectrum of the clinical manifestations of congenital factor X deficiency was studied in 32 Iranian patients. The most frequent symptom was epistaxis, which occurred in 72% of patients, with all degrees of deficiency. Other mucosal haemorrhages (e.g. haematuria, gastrointestinal bleeding) were less frequent and occurred mainly in patients with unmeasurable factor X. Menorrhagia occurred in half of the women of reproductive age. Soft tissue bleeding occurred in two-thirds of the patients; spontaneous haematomas and haemarthroses led to severe arthropathy in five patients. Bleeding from the umbilical stump was an unexpected finding in nine patients. This study demonstrated that the bleeding tendency of factor X deficiency is severe and correlates with factor levels.

Adolescent↗

Transient acquired factor X deficiency: report of the use of activated clotting concentrate to control a life-threatening hemorrhage.

Acquired deficiency of factor X is an uncommon occurrence. It has usually developed in association with amyloidosis [8] and, in that setting, it has been irreversible. Transient deficiency appears to be associated with an acute respiratory infection in the majority of cases. Bleeding in these patients can be life-threatening and has been difficult to control. Konyne produces a brief correction of the prothrombin time and an elevation in the factor X level, but has not been effective in stopping bleeding. We report the first successful correction of prothrombin time and clinical resolution of bleeding attending the use of Autoplex T. If bleeding persists after appropriate specific factor replacement and the clinical condition warrants, the use of Autoplex T (activated prothrombin complex) deserves prompt consideration.

Aged↗

Inherited factor X deficiency: presentation of a case with etiologic and treatment considerations.

The first documented case of inherited factor X deficiency in the dental literature is presented. Its ascertainment as a result of postoperative surgical complications illustrates the clinician's need to be familiar with the hereditary bleeding diatheses, as treatment is dependent on the underlying etiology of the specific disorder. In the present case treatment included administration of the antifibrinolytic agent epsilon-aminocaproic acid (EACA) and fresh frozen plasma. On the basis of our findings, a minimal therapeutic level of circulating factor X is estimated to be 15 percent of the normal level. Genetic heterogeneity within the factor X deficiency phenotype is discussed and, on the basis of laboratory findings, a CRM-positive autosomal recessive structural or regulator gene defect is proposed as the etiologic factor in the current case. Forty-nine cases in the literature are reviewed to delineate the pattern of bleeding in hereditary factor X deficiency.

Child↗