Bernaudin F, Verlhac S, Chevret S, et al. G6PD deficiency, absence of α-thalassemia and hemolytic rate at baseline are significant independent risk factors for abnormally high cerebral velocities in patients with sickle cell anemia. Blood. 2008;112(10):4314–4317.

Blood ◽  
2010 ◽  
Vol 116 (23) ◽  
pp. 5079-5079
Blood ◽  
2008 ◽  
Vol 112 (10) ◽  
pp. 4314-4317 ◽  
Author(s):  
Françoise Bernaudin ◽  
Suzanne Verlhac ◽  
Sylvie Chevret ◽  
Martine Torres ◽  
Lena Coic ◽  
...  

AbstractStroke is predicted by abnormally high cerebral velocities by transcranial doppler (TCD). This study aimed at defining predictive factors for abnormally high velocities (≥ 2 m/sec) based on the Créteil pediatric sickle cell anemia (SCA) cohort composed of 373 stroke-free SCA children. α genes and β-globin haplotypes were determined. Biologic parameters were obtained at baseline. α-thalassemia was present in 155 of 325 and G6PD deficiency in 36 of 325 evaluated patients. TCD was abnormal in 62 of 373 patients. Multivariate logistic regression analysis showed that G6PD deficiency (odds ratio [OR] = 3.36, 95% confidence interval [CI] 1.10-10.33; P = .034), absence of alpha-thalassemia (OR = 6.45, 95% CI 2.21-18.87; P = .001), hemoglobin (OR per g/dL = 0.63, 95% CI 0.41-0.97; P = .038), and lactate dehydrogenase (LDH) levels (OR per IU/L = 1.001, 95% CI 1.000-1.002; P = .047) were independent risk factors for abnormally high velocities. This study confirms the protective effect of alpha-thalassemia and shows for the first time that G6PD deficiency and hemolysis independently increase the risk of cerebral vasculopathy.


Blood ◽  
2007 ◽  
Vol 110 (11) ◽  
pp. 430-430 ◽  
Author(s):  
Francoise Bernaudin ◽  
Suzanne Verlhac ◽  
Lena Coïc ◽  
Cecile Arnaud ◽  
Annie Kamdem ◽  
...  

Abstract Background Predicting the severity of sickle cell anemia (SCA) is important for providing better informed genetic counseling and for better targeting of intensive therapies. Stroke is the most severe complication in children with SCA and is predicted by abnormally high cerebral velocities by transcranial doppler (TCD). We attempted to define the risk factors associated with high velocities. Methods This study concerned the Créteil pediatric SCA cohort, composed of newborn patients, screened and followed at our Center since birth, and of patients secondarily referred to the Center because of the severity of their disease. Time-averaged mean of maximum velocities (TAMMX) higher than 200 cm/sec were considered as abnormal, resulting in initiation of a transfusion program initiated</DEL>. Cerebral MRI/MRA was done after the age of 5 years or earlier in case of abnormal TCD. Alpha </DEL>genes and beta-globin haplotypes were determined. Baseline biological parameters (G6PD activity; WBC, PMN, Reticulocytes, Platelets counts; Hemoglobin, Hematocrit, HbF, LDH levels; MCV; SpO2) were obtained a minimum of 3 months away from a transfusion, one month from a painful episode, after 18 months of age and, before intensive therapy. Results SS children (390; 189 F, 201 M) were annually explored by TCD (n=2286) since 1992, and followed for a total of 1962 patient-years. The follow-up before initiation of intensive therapy was 1032 patient-years. Nineteen patients experienced an overt stroke. TCD was abnormal in 65 of 390 patients (17%). MRI (n=850) was performed in 268 patients, was abnormal in 86 cases and showed silent infarcts in 67 of 249 patients (27%). Silent infarcts were seen in 33% of patients with abnormal TCD. Alpha genes study, available in 336 patients, demonstrated alpha-thalassemia in 158 patients (47%): 31 had a deletion of 2 genes (7.9%) and 127 of 1 gene (32.6%). G6PD deficiency was present in 26 of 228 evaluated patients (11%). Beta-globin haplotypes studied in 316 patients were Car/Car in 125 (40%), Ben/Ben in 76 (24%), Sen/Sen in 30 (9%) and, “other” in 85 (27%). Univariate analysis showed that the risk of abnormally high velocities was not related to sex, beta-globin haplotypes, pain and acute chest syndrom rates, WBC, PMN, platelets counts, HbF level and SpO2 but was significantly associated with the absence of alpha-thalassemia (p< 0.001), G6PD deficiency (p=0.012), low Hb and Ht levels (p< 0.001), high reticulocyte count (p=0.008), high MCV (p=0.004) and high LDH level (p<0.001). Multivariate logistic regression analysis showed that absence of alpha-thalassemia [OR= 14.5, 95% CI (2.6–79.7)], (p=0.002); G6PD deficiency [OR=6.7, 95% CI (1.7–26.1)], (p=0.006) and, LDH > 1200 UI/L [OR=4.5, 95% CI (1.5–13.5)], (p=0.007) were independent risk factors of abnormally high velocities. Conclusion This study confirms that the risk of high velocities in patients with SCA is significantly decreased by the presence of alpha-thalassemia. It shows for the first time that hemolysis is a more significant risk factor than the degree of anemia and that absence of alpha-thalassemia, G6PD deficiency and hemolysis are significant independent risk factors of cerebral vasculopathy in patients with SCA.


Hematology ◽  
2001 ◽  
Vol 6 (5) ◽  
pp. 347-353 ◽  
Author(s):  
Sherri A. Zimmerman ◽  
Thad A. Howard ◽  
Matthew R. Whorton ◽  
Wendell F. Rosse ◽  
Andra H. James ◽  
...  

Blood ◽  
2015 ◽  
Vol 125 (10) ◽  
pp. 1653-1661 ◽  
Author(s):  
Françoise Bernaudin ◽  
Suzanne Verlhac ◽  
Cécile Arnaud ◽  
Annie Kamdem ◽  
Manuela Vasile ◽  
...  

Key PointsBaseline hemoglobin levels lower than 7 g/dL, acute anemia, and extracranial internal carotid stenosis are significant and independent risk factors for SCI in SCA.


Blood ◽  
1988 ◽  
Vol 71 (3) ◽  
pp. 748-752 ◽  
Author(s):  
MH Steinberg ◽  
MS West ◽  
D Gallagher ◽  
W Mentzer

Abstract We studied the interactions of the A- variety of glucose-6-phosphate dehydrogenase (G6PD) deficiency and sickle cell anemia (HbSS) to see if G6PD deficiency influenced laboratory and clinical features of HbSS. A total of 801 male patients over age 2 had G6PD electrophoresis on cellulose acetate membranes. Assays of both G6PD activity and hexokinase activity were then done on all samples that had an electrophoretic pattern other than the normal wild type (GdB). The collection of clinical data used a standardized protocol. Using cluster analyses we classified 10.4% males to be G6PD deficient, while 18.4% had the functionally normal GdA+ enzyme. The prevalence of G6PD deficiency did not change significantly when age was stratified by decade, suggesting little survival advantage or disadvantage of the combination of G6PD deficiency and HbSS. Compared to patients who were not G6PD deficient, there were no significant differences in the hemoglobin concentration, mean corpuscular volume, reticulocyte count, bilirubin, or SGOT level in patients with HbSS who had G6PD deficiency. The incidence of painful episodes, sepsis, or acute anemic episodes was similar in both groups. Our results are consistent with recent studies of smaller numbers of patients that have found little influence of G6PD deficiency upon HbSS. Specifically, we found no evidence that G6PD enhanced the severity of hemolysis or increased the incidence of acute anemic episodes or sepsis in HbSS.


2017 ◽  
Vol 32 (9) ◽  
pp. 1565-1573 ◽  
Author(s):  
Jeffrey D. Lebensburger ◽  
Gary R. Cutter ◽  
Thomas H. Howard ◽  
Paul Muntner ◽  
Daniel I. Feig

2014 ◽  
Vol 36 (3) ◽  
pp. 185-189 ◽  
Author(s):  
Manuel Arteta ◽  
Andrew Campbell ◽  
Mehdi Nouraie ◽  
Sohail Rana ◽  
Onyinye C. Onyekwere ◽  
...  

Blood ◽  
2004 ◽  
Vol 104 (11) ◽  
pp. 1657-1657
Author(s):  
John J. Strouse ◽  
Michael R. DeBaun ◽  
James F. Casella

Background: Intracranial hemorrhage (ICH) is an uncommon, but devastating, complication of sickle cell disease (SCD) with mortality from 30 to 65%. Most reported cases are in adults; little is known about children. Proposed risk factors include previous ischemic stroke, aneurysms, low steady-state hemoglobin, high steady-state leukocyte count, acute chest syndrome, and hypertransfusion. Methods: Retrospective case-control study designed to characterize and evaluate risk factors for ICH among children with SCD age < 19 years hospitalized at Johns Hopkins Children’s Center from January 1979 to March 2004. Cases had SCD and ICH (intraparenchymal (IPH), subarachnoid (SAH), or intraventricular (IVH) hemorrhage confirmed by neuroimaging or analysis of cerebrospinal fluid; traumatic subdural and epidural hemorrhages were excluded). Controls had SCD and ischemic stroke (focal neurological deficits with corresponding cerebral infarcts by neuroimaging). Both were identified by searching the hospital discharge database using ICD-9 codes for acute stroke and SCD and reviewing the Division of Pediatric Hematology’s records. ACS was defined as a new pulmonary infiltrate and two of the following: chest or rib pain, dyspnea, fever, tachypnea, grunting, nasal flaring, or retractions. Blood pressure was adjusted for age, sex, and hemoglobin genotype. Results: We identified 7 cases (mean age=11.2 years, range 2 to 16 years) and 9 controls (mean age 6.2 years, range 2 to 8 years). As expected, cases were significantly older than controls (p<0.01). All cases and controls had sickle cell anemia. Cases presented with impaired mental status (5/7), bradycardia (5/7), headache (4/7), and emesis (3/7). They often had multiple sites of hemorrhage (5/7) and died during the initial hospitalization (4/7). Five had IPH involving the frontal, parietal, and/or temporal lobes (2 of the patients with IPH also had SAH, 1 had IVH and 1 had both SAH and IVH). Two additional patients had SAH (one also with IVH). Most cases and controls had elevated systolic blood pressure at the time of stroke (4/7 cases, 8/9 controls). Cases had lower steady-state hemoglobin (mean±SE 7.1±0.3 g/dl vs. 7.7±0.4 g/dl), lower steady-state blood pressures (systolic 104±9 vs. 117±5 mm Hg, diastolic 50±5 vs. 61±5 mm Hg) and higher steady-state leukocyte counts (16,590±2823/ul vs. 13,851±2184/ul) than controls, but these differences were not statistically significant. Mean hemoglobin concentration was increased 2.8 g/dl (39.9%) from steady-state at the time of stroke in cases and was unchanged in controls (p=0.08). Other events in the two weeks before ICH associated with increased odds of ICH included transfusion (simple in 5 cases, erythrocytapheresis in 1), ACS (3 cases), and corticosteroid administration (high-dose dexamethasone for ACS in 2, stress doses for possible adrenal insufficiency in 1). Conclusions: In this group of children with SCD, ICH was associated with antecedent events including transfusion and possibly corticosteroids. Mortality was similar to that of adults with SCD and ICH. Limitations of this study include the small sample size and the retrospective design. The contribution of antecedent events to ICH in children with SCD deserves further evaluation. Odds Ratios of Intracranial Hemorrhage For Events in the Last 14 Days Event Odds Ratio (95% CI) P-value Transfusion 48 (1.8-2469) <0.01 ACS 6 (0.3-33) 0.26 Corticosteroids ∞ (1.3- ∞) 0.06


Blood ◽  
2008 ◽  
Vol 112 (11) ◽  
pp. 2487-2487 ◽  
Author(s):  
Francoise Bernaudin ◽  
Suzanne Verlhac ◽  
Annie Kamdem ◽  
Cécile Arnaud ◽  
Lena Coïc ◽  
...  

Abstract Background Silent infarcts are associated with impaired cognitive functioning and have been shown to be predictors of stroke (Miller ST J Pediatr 2001). Until now, reported risk factors for silent infarcts were low pain event rate, history of seizures, high leukocyte count and Sen bS haplotype (Kinney TR Pediatrics 1999). Here, we seek to define the prevalence and risk factors of silent infarcts in the Créteil SCA pediatric cohort comprising patients assessed at least yearly by transcranial doppler (TCD) since 1992, and by MRI/MRA. Methods This study retrospectively analyzed data from the Créteil cohort stroke-free SS/Sb0 children (280; 134 F, 146 M), according to institutional review board. Time-averaged mean of maximum velocities higher than 200 cm/sec were considered as abnormal, resulting in initiation of a transfusion program (TP). A switch to hydroxyurea was proposed to patients with normalized velocities (&lt; 170 cm/sec) and normal MRA on TP, although TP was re-initiated in case of abnormal velocities recurrence. Patients with “conditional” velocities (170–199 cm/sec) were assessed by TCD 4 times yearly. Alpha genes and beta-globin haplotypes were determined. Baseline biological parameters (G6PD activity; WBC, PMN, Reticulocytes, Platelets counts; Hemoglobin, Hematocrit, HbF, LDH levels; MCV; SpO2) were obtained a minimum of 3 months away from a transfusion, one month from a painful episode, after 12 months of age, before the first TCD, and always before therapy intensification. Results. Patients were followed for a total of 2139 patient-years. Alpha-Thal was present in 114/254 patients (45%) and 27/241 (11.2%) had G6PD deficiency. Beta genotype, available in 240 patients, was BaBa in 102 (42.5%), BeBe in 54 (22.5%), SeSe in 19 (7.9%) and “other” in 65 (27.1%); TCD was abnormal in 52 of 280 patients (18.6%). MRA showed stenoses in 30 of 226 evaluated patients (13.3%) while MRI demonstrated presence of silent infarcts in 81/280 patients (28.9%). Abnormal TCD (p&lt;0.001), G6PD deficiency (p=0.008), high LDH (p=0.03), and low Hb (p=0.026) were significant risk factors for stenoses by univariate analysis while multivariate analysis retained only abnormal TCD as a significant risk factor for stenoses ([OR= 10.6, 95% CI (4.6–24.4)]; p&lt;0.001). Univariate logistic regression analysis showed that the risk of silent infarcts was not related to alpha-Thal, beta genotype, abnormal TCD, WBC, PMN, platelets, reticulocyte counts, MCV, LDH level, HbF %, pain or ACS rates but was significantly associated with stenoses detected by MRA (p&lt;0.001), gender (male; p=0.04), G6PD deficiency (p=0.05), low Hb (p=0.016) and Hct (p=0.012). Multivariate logistic regression analysis showed that gender ([OR= 2.1, 95% CI (1.03–4.27)]; p=0.042), low Hb ([OR= 1.4, 95% CI (1.0–1.1)]; p=0.05) and stenoses ([OR= 4.8, 95% CI (1.88–12.28)]; p=0.001) were all significant independent risk factors for silent infarcts. The presence of stenoses was the only significant risk factor for silent infarcts in patients with a history of abnormal TCD ([OR= 5.9, 95% CI (1.6–21.7)]; p=0.008). Conclusion We recently showed that G6PD deficiency, absence of alpha-Thal, and hemolysis are independent significant risk factors for abnormal TCD in stroke-free SCA patients (Bernaudin et al, Blood, 2008, in press). Here, we report that an abnormal TCD is the most significant risk factor for stenoses and, expanding previous studies, we demonstrate that stenoses, low Hb and gender are significant independent risk factors for silent infarcts.


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