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[Cerebral venous thrombosis and hereditary protein C deficiency].

Protein C together with its plasmatic cofactor protein S and antithrombin III probably represent the most important plasmatic inhibitor in coagulation. Protein C deficiency constitutes a high risk factor for venous thrombosis. Cerebral venous thrombosis is a manifestation which is scarcely referred to in protein C deficiency. The case of a 32 year old patient with protein C deficiency is presented. The patient was admitted for an endocraneal hypertension syndrome. CT and MR demonstrated multiple hemorrhagic cerebral infarctions. Arteriography confirmed vertebral venous thrombosis. Only six cases sufficiently documenting cerebral venous thrombosis due to protein C deficiency were found in the literature. In most cases coadjuvant factors exist predisposing thromboembolic disease. The present clinical case demonstrates the importance of considering protein C deficiency in the diagnosis of cerebral venous thrombosis in young adults.

Adult

Hypothalamic failure as a sequela of heterozygous protein C deficiency?

Protein C deficiency can lead to cerebrovascular occlusive disease. We describe a patient in whom heterozygous protein C deficiency (type 1) is suspected on the grounds of reduced protein C activity and who suffered from multiple thrombo-embolic events involving the brain and peripheral organs. The patient developed hypothalamic failure with hypernatraemia, hypodipsia, hypersomnolence and hyperkapnia, obesity, hyperprolactinaemia, hypogonadotropic hypogonadism and growth hormone deficiency. We hypothesize that protein C deficiency caused cerebrovascular occlusions which eventually led to hypothalamic insufficiency in this patient. Disorders of the anticoagulant system should be looked for in patients with unexplained hypothalamic disease.

Adolescent

Mesenteric venous thrombosis due to protein C deficiency.

Protein C deficiency is a known underlying risk factor for thromboembolic disease. Most commonly it presents as thrombophlebitis, deep venous thrombosis or pulmonary embolism. Less common presentations are becoming increasingly recognized now that assays for protein C are more widely available. We present two cases of mesenteric venous thrombosis who were found to have protein C deficiency.

Adult

Pregnancy loss and thrombosis with protein C deficiency.

OBJECTIVES: Protein C inhibits coagulation and promotes fibrinolysis. This study investigates the association between protein C deficiency and pregnancy loss, thrombosis in pregnancy, and thrombosis with oral contraception. STUDY DESIGN: Fifteen protein C--deficient patients and 37 controls from a single kindred were studied. An obstetric history was obtained by telephone. Data were analyzed by logistic regression, Fisher's exact test, and Student t test. RESULTS: Protein C--deficient women experienced a 33% pregnancy loss versus 19% in the controls (not significant). Thromboembolism during pregnancy in protein C--deficient women was 33% (45% in those not receiving prophylactic anticoagulation) versus 5% in controls (odds ratio 7.37, p = 0.026). Five of 12 protein C--deficient women using oral contraception developed thrombosis versus 0 of 33 controls. The risk of thrombosis for protein C--deficient women using oral contraception is increased (p < 0.001). CONCLUSIONS: Perinatal outcome is not statistically different with protein C deficiency. Protein C deficiency increases the risk of thrombosis during pregnancy and with oral contraception. Prophylactic heparin is suggested during pregnancy for protein C--deficient women with personal or family histories of thrombosis. Oral contraception is not advised.

Adult

Heterozygous protein C deficiency type I.

Protein C is a vitamin K-dependent plasma protein which has anticoagulatory and profibrinolytic properties as a result of inactivating coagulation factors Va and VIIIa and enhancing fibrinolysis. Heterozygous protein C deficiency is well known to be a risk factor for thromboembolic diseases. We here present a family with 16 members deficient in protein C, out of which only two persons were suffering from thromboembolic disorders. In patients suffering from heterozygous protein C deficiency thromboembolic complications in childhood are rare and are not obligatory in adults. These patients should therefore not be treated with oral anticoagulants unless thromboembolic complications have already occurred or are imminent. Coumarin anticoagulation implicates a serious risk of coumarin skin necrosis in protein C deficient patients during the initial therapeutic phase. This risk may be avoided by initiating coumarin therapy with low doses of the drug and in cases of thromboembolic complications by overlapping with heparin anticoagulation.

Adolescent

Acute Budd-Chiari syndrome with hepatic failure and obstruction of the inferior vena cava as presenting manifestations of hereditary protein C deficiency.

The protein C system is essential in limiting the activation of coagulation in vivo. We report on a 29 year old woman with Budd-Chiari syndrome and occlusion of the inferior vena cava who presented with acute liver failure. She was successfully treated with an emergency mesoatrial shunt. Eight months after surgery, she has no ascites and normal liver function. She had a low concentration of plasma protein C on admission to hospital and during the follow up. Protein C deficiency subsequently was found in her father and two sisters, who were asymptomatic. Hereditary protein C deficiency should be considered in patients with Budd-Chiari syndrome.

Acute Disease

Ischemic stroke due to protein C deficiency.

Plasma protein C exerts anticoagulatory effects by inactivating factors V and VIII. Hereditary protein C deficiency is transmitted as an autosomal dominant disorder. Homozygous individuals usually develop purpura fulminans as newborns; heterozygous protein C-deficient individuals are at increased risk for venous thrombosis and pulmonary embolism. However, arterial thrombosis has been only rarely observed. We describe a young patient with heterozygous protein C deficiency who experienced a severe stroke due to thrombotic occlusion of the left middle cerebral artery.

Adult

Diagnosis and treatment of homozygous protein C deficiency. Report of the Working Party on Homozygous Protein C Deficiency of the Subcommittee on Protein C and Protein S, International Committee on Thrombosis and Haemostasis.

This report summarizes the documented cases of homozygous protein C deficiency in the United States and Europe. Procedures for diagnosing and treating this disorder (both initially and over the long term) have been compiled by a working party on homozygous protein C deficiency of the Subcommittee on Protein C of the International Committee on Thrombosis and Haemostasis. Homozygous protein C deficiency is an autosomal recessive disorder that usually manifests itself by purpura fulminans and, less commonly, by massive large vein thrombosis; severe diffuse intravascular coagulation also develops in these infants, and there is evidence of intrauterine thrombosis. For confirmation of homozygous protein C deficiency in a neonate with purpura fulminans or massive venous thrombosis, the infant should have undetectable protein C activity and both parents should be heterozygous for protein C deficiency. At the onset of symptoms, the initial treatment should be plasma (8 to 12 ml/kg every 12 hours) until all lesions have healed. Two modalities for long-term treatment are accepted as useful in these children: oral anticoagulant therapy or protein C replacement (fresh frozen plasma or prothrombin complex concentrate). Liver transplantation has been performed in only one child, with success. Oral anticoagulation (vitamin K antagonists, maintaining the prothrombin time from one and one-half to two times control values or at the International Normalized Ratio of 2.5 to 4.4) is our recommendation of choice for long-term treatment. With appropriate care, these children are able to be free of coagulopathy and live relatively normal lives.

Anticoagulants

[Physiopathologic and clinical implications of protein C deficiencies].

The protein C system--a complex physiological coagulation inhibition system--is a major regulator which controls thrombin production. Nowadays, its exploration is indispensable for the detection of constitutional or acquired protein C deficiency, side by side with a search for antithrombin III deficiency. This approach, based on the frequent association of recurrent thrombosis, mainly venous, in young subjects with congenital deficiencies, makes it possible to initiate, beside a family survey, an individual and efficient prophylaxis of recurrent thrombosis.

Adult

Protein C survival during replacement therapy in homozygous protein C deficiency.

Homozygous protein C (PC) deficiency is a rare genetic defect that usually results in fatal thrombotic complications (purpura fulminans and DIC), but it can be successfully managed with oral anticoagulants or PC replacement. The successful use of PC replacement for two individuals is described. The activity and antigen levels of PC in fresh frozen plasma (FFP) and prothrombin complex concentrate (PCC) are also reported. The concentration of PC in FFP is 87 +/- 15 units/dl. PC is present in all PCC analyzed; however, a ten-fold difference between the various brands and/or lots is noted. The PC activity and antigen correlates well with no significant levels of APC. Upon infusion of FFP into two homozygous PC-deficient children, the PC levels obtained were less than or equal to 30 units/dl post-infusion and undetectable after 12-18 hr. With infusions of PCC, plasma levels of PC obtained were 100-145 units/dl and less than 10 units/dl after 48 hr. The percent recovery and half-lives of PC from FFP and PCC were 49.8% and 7.8 hr, and 84% and 7.4 hr, respectively. One infant was treated every 48 hr for 2 years without significant purpura fulminans or DIC complications. The levels of the other PC system components did not change during the infusion of the PC-rich material. Based on this information, a specific replacement protocol has been developed using a PC-rich concentrate. However, several problems may arise with the "less pure" PC-rich concentrates: catheter-tip thrombosis, related large vessel thrombosis and blood-transmitted diseases. With a specific PC concentrate, replacement therapy is a viable alternative for the long-term management/treatment of homozygous PC deficiency.

Antigens

Protein C deficiency Hong Kong 1 and 2: hereditary protein C deficiency caused by two mutant alleles, a 5-nucleotide deletion and a missense mutation.

We characterized a mutant protein C gene from an individual with no detectable protein C antigen in blood plasma. Southern blot hybridization analysis with human protein C cDNA demonstrated neither gross deletion nor rearrangement of the gene. Sequencing all the exons and exon-intron boundaries of the gene except the 3' noncoding region showed two mutant alleles. The one, derived from the mother, represents a deletion of 5 nucleotides (nt) (CCCGC) in the end of exon VI (mutation I), predicted to result in the generation of a new stop codon due to a reading frameshift and the premature termination of translation. The other, derived from the father, represents a point mutation (G to A) in exon IX (mutation II), resulting in an amino acid substitution, Gly-376(GGC) to Asp(GAC), in the catalytic domain of the protein. Allele-specific oligonucleotide probe hybridization confirmed the presence of the two mutations. Mutation I would result in a truncated polypeptide of 169 amino acid residues that lacks the heavy chain. Mutation II gives rise to an alteration of a highly conserved amino acid, Gly-376. These data indicate that this patient is a compound heterozygote of the two mutant alleles, each one inherited from each parent. Transient expression assays using COS-7 cells transfected with mutated protein C expression vectors suggested that each of the two mutations leads to the protein C deficiency by causing an impairment of secretion of the respective mutant proteins.

Amino Acid Sequence

[The significance of protein C deficiency in dermatology].

The protein C system is a physiological inhibitor of coagulation and is important for the regulation of hemostasis. Protein C deficiencies can be inherited or acquired, and they lead to enhanced thrombophilia. A number of clinical entities that are also of interest to dermatologists have been related to protein C deficiency. Inherited protein C deficiency can become manifest in various ways, e.g. as purpura fulminans neonatalis, as recurrent episodes of thrombosis and as coumarin necrosis. Acquired protein C deficiency can be observed in the course of purpura fulminans, disseminated intravascular coagulation, hepatic failure or in the presence of antiphospholipid antibodies. The clinical features, the possible pathogenesis and the therapy of these manifestations are briefly discussed.

Humans

Severe neonatal protein C deficiency: prevalence and thrombotic risk.

Severe deficiencies of protein C, a pivotal coagulation-regulatory protein, have been reported in neonates as an apparently transient condition. In this prospective study, cord blood was collected at 193 deliveries and assays of protein C were correlated with clinical status, other coagulation results, and outcome. Protein C levels of less than 0.1 unit/ml were found most frequently in preterm infants with respiratory distress, infants of diabetic mothers, and infants of twin gestations. Levels of protein C correlated with levels of factor VIII activity but did not correlate with markers of consumptive coagulopathy. A protein C level less than 0.1 unit/ml was significantly correlated with the subsequent onset of thrombosis, even when the effects of gestational age and birth weight were excluded. Low cord blood levels of protein C may reflect delayed maturation or increased turnover in certain infants and appear to convey an independent risk of thrombosis, but the critical concentration of protein C necessary to maintain neonatal hemostasis is not known.

Antithrombin III

Detection of protein C deficiency during oral anticoagulant therapy--use of the protein C:factor VII ratio.

Laboratory diagnosis of protein C deficiency is complicated by the fact that many patients referred for investigation are already being treated with oral anticoagulants. Protein C and factor VII have similar half lives and by using the protein C:factor VII ratio we hoped to be able to detect protein C deficiency in patients receiving oral anticoagulants. We have studied activity levels of protein C and factor VII to produce protein C:factor VII activity ratios in 105 patients receiving oral anticoagulants, 42 normal subjects, and nine patients with known inherited protein C deficiency. The mean ratios for these groups were 1.38, 1.12 and 0.63 respectively. In patients receiving oral anticoagulants, the protein C level showed a poor correlation with the international normalized ratio (INR) value. Reference ranges for protein C at different levels of anticoagulation were therefore considered unsuitable for the identification of inherited protein C deficiency. Five patients with inherited protein C deficiency were studied with and without oral anticoagulation; their protein C:factor VII ratios remained relatively unchanged, despite alterations in the level of the individual proteins. These results suggest that measurement of the protein C:factor VII ratio may help to identify patients with inherited protein C deficiency whilst on oral anticoagulants.

Adolescent

Inherited heterozygous protein C deficiency and dysfunctional protein S with recurrent venous thrombotic diseases: a study of three generations of a Japanese family.

We describe a rare occurrence of a family affected with venous thrombosis, exhibiting a protein C (PC) deficiency and dysfunctional protein S (PS). The propositus and his father developed recurrent venous-thrombosis. Their PC deficiency was characterized by low levels of both antigen and activity, and their dysfunctional PS was suggested by low PS activities despite the presence of normal free PS antigen. Over three generations, six family members had a PC deficiency, and three had both a PC deficiency and a dysfunctional PS. The mode of inheritance of PC deficiency appears to be autosomal dominant.

Adolescent

Diagnosis of protein C deficiency in patients on oral anticoagulant treatment: comparison of three different functional protein C assays.

The efficacy of three different protein C activity assays and of protein C antigen determination for the diagnosis of protein C deficiency was studied in 13 protein C deficient patients (11 with type I, 2 with type II deficiency) and in 51 presumably non-deficient patients (control group), both groups being on oral anticoagulant (OAC) treatment. For protein C activity measurement (1) the assay according to Francis (slightly modified) with thrombin activation and measurement of activated protein C in the aPTT system, (2) an assay using Protac activation and chromogenic substrate (Protac-CS) and (3) an assay using Protac activation and the aPTT system (Protac-PTT) were used. Protein C antigen was determined by Laurell immunoelectrophoresis. The three activity assays gave different results, with the highest values obtained by the Protac-CS assay and the lowest values by the Protac-PTT assay. The Francis assay gave intermediate results. Protein C activity and antigen values were significantly lower in protein C deficient patients compared to the control group. Protein C activity tests had a higher discriminative power than the antigen determination. After taking into account the intensity of treatment, by the Francis assay all deficient and non-deficient patients were correctly classified, by the Protac-CS and the Protac-PTT assay 2 and 4 patients, respectively, were misclassified and by the antigen assay 8 patients were misclassified. Calculation of the ratios of protein C activity to factor II activity was of high discriminative power. We conclude that for diagnosis of protein C deficiency protein C activity tests are superior to antigen determination not only in type II but also in type I deficient patients.(ABSTRACT TRUNCATED AT 250 WORDS)

4-Hydroxycoumarins

Cerebral infarction associated with protein C deficiency.

BACKGROUND AND PURPOSE: A deficiency of plasma protein C, both the hereditary and acquired types, is one cause of thromboembolic disease. Several antineoplastic agents have been reported to decrease the production of protein C in the liver by impairing either the absorption or metabolism of vitamin K, leading to acquired protein C deficiency. CASE DESCRIPTION: We treated a young woman with protein C deficiency, who had developed a cerebral infarction of the right parietal cortex of sudden onset. On admission, the antigenic level of plasma protein C was 38%. Serial cerebral angiography revealed occlusion of the right middle cerebral artery, which subsequently recanalized completely. This patient had taken fluorouracil derivatives orally for as long as 3 years following a left mastectomy for stage II breast cancer. Tests revealed that the patient's mother had only one-half the normal activity of plasma protein C despite a normal antigenic level. CONCLUSIONS: We speculate that the etiology of the cerebral infarction in this patient might involve an embolic mechanism associated with protein C deficiency induced by an interaction between inherited and acquired factors.

Adult