c1 esterase inhibitor protein
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Author(s):  
S Narayanan ◽  
S Ramalingam ◽  
R Narendar

Angioedema related to deficiency of the C1- esterase inhibitor protein (C1-inh) is characterized by lack of response to therapies, which include antihistamines, steroids and epinephrine. In case of laryngeal edema, mortality rate is an estimated mammoth 30 percent. The first case of such acquired form of angioedema related to the deficiency in C1- esterase inhibitor was published in 1972. In the present case, we entail details of one such case.,


2020 ◽  
pp. 1753495X2095822
Author(s):  
Adam D Jakes ◽  
Iona Thorne ◽  
John Guly ◽  
Sorena Kiani-Alikhan ◽  
Anita Banerjee

Hereditary angioedema (HAE) is a rare genetic condition associated with episodic swelling due to dysfunction of bradykinin regulation pathways. This is most frequently caused by low level and/or function of the C1-esterase inhibitor protein (C1INH) which is known as hereditary angioedema with C1 inhibitor deficiency (C1INH-HAE). Pregnancy and labour can precipitate an attack, but the majority of women have an uncomplicated, spontaneous vaginal delivery. Intravenous C1INH is the first-line therapy in pregnancy and breastfeeding. It should be given if any obstetric intervention is planned. Routine prophylactic administration for uncomplicated vaginal birth is not mandatory but may be appropriate if symptoms recur frequently during the third trimester. Pregnant women with C1INH-HAE should deliver in a hospital with C1INH replacement, fiberoptic intubation and front-of-neck access equipment readily available. A documented treatment plan should be developed within a multi-disciplinary team to pre-empt complications. We describe a case of C1INH-HAE diagnosed in pregnancy.


2018 ◽  
Vol 33 (1) ◽  
pp. e22627 ◽  
Author(s):  
Clare E. Tange ◽  
Amrit Kaur ◽  
Nisha Verma ◽  
Alaco Hickey ◽  
Sofia Grigoriadou ◽  
...  

Blood ◽  
1987 ◽  
Vol 70 (1) ◽  
pp. 165-172 ◽  
Author(s):  
M Andrew ◽  
B Paes ◽  
R Milner ◽  
M Johnston ◽  
L Mitchell ◽  
...  

The investigation of many hemostatic defects in the newborn is limited by the lack of normal reference values. This study was designed to determine the postnatal development of the human coagulation system in the healthy full-term infant. Consecutive mothers of healthy full-term infants born at St JosePh′s Hospital in the city of Hamilton were approached for consent. One hundred eighteen full-term infants (37 to 42 week's gestational age) were entered into the study. Demographic information and a 2-mL blood sample were obtained in the postnatal period on days 1, 5, 30, 90, and 180. Between 40 and 79 full-term infants were studied on each day for each of the coagulation tests. Plasma was fractionated and stored at -70 degrees C for batch assaying of the following tests: prothrombin time, activated partial thromboplastin time, thrombin clotting time, and factor assays (biologic): fibrinogen, II, V, VII, VIII, IX, X, XI, XII, and high- molecular weight kininogen. Factor XIII subunits A and S, von Willebrand factor, and the inhibitors antithrombin III, alpha 2- antiplasmin, alpha 2-macroglobulin, alpha 1-antitrypsin, C1 esterase inhibitor, protein C, and protein S were measured immunologically. Plasminogen, prekallikrein, and heparin cofactor II were measured by using chromogenic substrates. The large number of infants studied at each time point allowed us to determine the following: the range of normal for each test at five time points in the postnatal period; that coagulation tests vary with the postnatal age of the infant; that different coagulation factors show different postnatal patterns of maturation; and that near-adult values are achieved for most components by 6 months of life. In summary, this large cohort of infants studied consecutively in the postnatal period allowed us to determine the normal development of the human coagulation system in the full-term infant.


Blood ◽  
1987 ◽  
Vol 70 (1) ◽  
pp. 165-172 ◽  
Author(s):  
M Andrew ◽  
B Paes ◽  
R Milner ◽  
M Johnston ◽  
L Mitchell ◽  
...  

Abstract The investigation of many hemostatic defects in the newborn is limited by the lack of normal reference values. This study was designed to determine the postnatal development of the human coagulation system in the healthy full-term infant. Consecutive mothers of healthy full-term infants born at St JosePh′s Hospital in the city of Hamilton were approached for consent. One hundred eighteen full-term infants (37 to 42 week's gestational age) were entered into the study. Demographic information and a 2-mL blood sample were obtained in the postnatal period on days 1, 5, 30, 90, and 180. Between 40 and 79 full-term infants were studied on each day for each of the coagulation tests. Plasma was fractionated and stored at -70 degrees C for batch assaying of the following tests: prothrombin time, activated partial thromboplastin time, thrombin clotting time, and factor assays (biologic): fibrinogen, II, V, VII, VIII, IX, X, XI, XII, and high- molecular weight kininogen. Factor XIII subunits A and S, von Willebrand factor, and the inhibitors antithrombin III, alpha 2- antiplasmin, alpha 2-macroglobulin, alpha 1-antitrypsin, C1 esterase inhibitor, protein C, and protein S were measured immunologically. Plasminogen, prekallikrein, and heparin cofactor II were measured by using chromogenic substrates. The large number of infants studied at each time point allowed us to determine the following: the range of normal for each test at five time points in the postnatal period; that coagulation tests vary with the postnatal age of the infant; that different coagulation factors show different postnatal patterns of maturation; and that near-adult values are achieved for most components by 6 months of life. In summary, this large cohort of infants studied consecutively in the postnatal period allowed us to determine the normal development of the human coagulation system in the full-term infant.


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