Efficacy of Individualized Preventive Treatment of Patients with Severe Hemophilia A Guided by Multiple Clinical Parameters and Pharmacokinetics

2021 ◽  
Author(s):  
Youqun Wang ◽  
Qiao Yang ◽  
Liangda Zheng ◽  
Xianting Wang ◽  
Wenhua Jiang ◽  
...  

Objective: To investigate the effect of multiple clinical parameters (age, weight, blood types, and bleeding types) on FⅧ pharmacokinetic parameters (PK parameters) in adult patients with severe hemophilia A (SHA), draw up individualized preventive treatment plans, and observe clinical efficacy and economic benefit. Methods: Forty SHA patients treated in our hospital from January 2018 to May 2019 were enrolled, with their age, weight, blood types, bleeding types, and PK parameters measured to analyze the effects of clinical parameters on PK parameters. Individualized preventive treatment was developed, and patients were followed up for 1 year. The annual bleeding times (ABR), annual joint bleeding times (AJBR), and annual FⅧ dosage were observed and compared before and after treatment. Results: Weight, blood types and bleeding types could affect the PK parameters of FVIII. A prevention plan was formulated under the guidance of FVIII half-life. After 1 year of follow-up, ABR decreased by 88.9%, AJBR decreased by 90%, and annual FⅧ dosage increased by 47%. The dosage of FⅧ in 8 patients after was less than that before prevention, and the average half-life time of these 8 patients was 13.32 h. Conclusions: 1. Weight, blood types, and bleeding types of adult SHA patients could affect FVIII half-life. As body mass index increased, FVIII half-life were significantly prolonged. The FVIII half-life of patients with type O blood were significantly shorter than those with other blood types, and the FVIII half-life of knee joint bleeding were conspicuously shorter than those of elbow joint bleeding. 2. Individualized preventive treatment could markedly reduce bleeding times. For patients with a long half-life period, the total annual FⅧ dosage could be reduced to achieve bleeding prevention and economic benefit.

Blood ◽  
2019 ◽  
Vol 134 (Supplement_1) ◽  
pp. 4929-4929
Author(s):  
Teresa Álvarez Roman ◽  
Elena Monzón Manzano ◽  
Ihosvany Fernandez-Bello ◽  
Mónica Martín ◽  
María Isabel Rivas Pollmar ◽  
...  

Introduction: Efmoroctocog alfa (Elocta®) is a recombinant coagulation FVIII-Fc (rFVIIIFc), a fully recombinant fusion protein produced in human embryonic kidney cells, with an extended half-life used for the treatment and prevention of bleeding in patients with severe hemophilia A. Using rFVIIIFc for the treatment of severe hemophilia A patients received the approval of reimbursement in Spain at the end of 2016. Therefore, there are no many comparative data published about real life use of rFVIIIFc. Objective: This work aims to describe characteristics of the treatment of severe hemophilia A patients with rFVIIIFc and to compare its results with those previously obtained employing other FVIII products. Methods: This was an open-label non-interventional retrospective study reviewing patient characteristics and treatment outcomes before and after the use of rFVIIIFc. The La Paz University Hospital Ethics Committee approved the experimental protocol. Patients with severe hemophilia A without inhibitors being treated with rFVIIIFc since at least six months before study approval by Ethics Committee were included. The following data were collected for patients included in the study: dose (IU/kg) and prophylaxis treatment regimen, number of spontaneous and traumatic bleedings, annual bleeding rate (ABR) and FVIII trough level. The statistical analysis on the variables listed above comparing before and after rFVIIIFc usage was performed by the Biostatistics Unit of La Paz University Hospital with the statistical package SPSS v.18.0 (SPSS Inc., Chicago, IL, USA). Results: Twenty two severe hemophilia A patients (median age: 20 years old, ranging from 6 to 63 years) on prophylaxis with rFVIIIFc were considered to be included in this study, but two were excluded due to lack of data. Median follow-up period was 14 months (ranging from 6 to 28 months). Nineteen severe hemophilia A patients have been previously treated with rFVIII (two of them with other extended half-life product) and one with plasma-derived FVIII. Eight of the ten severe hemophilia A patients who presented an ABR greater than 0 with previous treatments reduced their ABR when treated with rFVIIIFc (Table 1). Among those patients with an ABR=0 with previously used FVIII products, only one increased to an ABR=1 when treated with Elocta® due to a traumatic bleeding. Table 1 shows ABR across all patients before and after rFVIIIFc. There was no difference in dose per injection between other FVIII products and rFVIIIFc (median dose for patients treated with other FVIII products: 46.0 IU/kg, ranging from 26 to 65 IU/kg; median dose for patients treated with rFVIIIFc: 46.5 IU/kg, ranging from 26 to 65 IU/kg). Nevertheless, a reduction was observed in administration frequency. Among the twelve patients who received treatment with other FVIII products every 48 hours, eleven came to receive rFVIIIFc 3 times a week and the one previously receiving a plasma-derived FVIII, to twice a week. Five of the patients receiving treatment 3 times a week reduced its frequency to twice per week. Three patients maintained the same schedule of administration. To note, one of the two patients receiving another prolonged half-life product maintained the schedule of treatment and the other reduced its frequency from every 48 hours to 3 times a week. FVIII trough level in plasma (% of FVIII), expressed as median (25th-75th percentile), was 1.1 (0.1-4.0) for rFVIIIFc treatment and 0.2 (0.0-1.9) for other FVIII products (p=0.06). Conclusions: 85% of the severe hemophilia A patients from our cohort reduced the weekly dose administration after beginning treatment with rFVIIIFc. Most of the patients increased plasma trough level of FVIII with rFVIIIFc. 45% of patients reduced and 40% kept their ABR=0 when they changed rFVIIIFc. These data suggest that treatment with rFVIIIFc gives a higher protection to severe hemophilia A patients. However, further research with larger sample size is required to investigate this. This work was supported by SOBI. NB holds a tenure track grant from FIS-FONDOS FEDER (CP14/00024). Disclosures Álvarez Roman: Takeda: Research Funding; Amgen: Consultancy, Speakers Bureau; NovoNordisk: Consultancy, Speakers Bureau; Novartis: Consultancy, Speakers Bureau; Bayer: Consultancy, Speakers Bureau; Pfizer: Consultancy, Speakers Bureau; Roche: Consultancy, Speakers Bureau; CSL Behring: Consultancy, Speakers Bureau; Sobi: Consultancy, Speakers Bureau. Fernandez-Bello:Novartis, Pfizer, ROCHE, Stago: Speakers Bureau. Martín:SOBI: Research Funding; Novartis, Pfizer, ROCHE, Novo Nordisk: Speakers Bureau. Rivas Pollmar:Novartis, Pfizer, ROCHE, Novo Nordisk: Speakers Bureau; SOBI: Research Funding. García Barcenilla:Bayer, Pfizer, Takeda, Novartis: Speakers Bureau; SOBI: Research Funding. Canales:SOBI: Research Funding; iQone: Honoraria; Karyopharm: Honoraria; Novartis: Honoraria; Takeda: Speakers Bureau; Gilead: Honoraria; Celgene: Honoraria; Janssen: Honoraria, Speakers Bureau; F. Hoffmann-La Roche Ltd: Honoraria, Speakers Bureau; Sandoz: Honoraria. Butta:Roche, Pfizer: Speakers Bureau; Novartis: Consultancy. Jimenez-Yuste:Bayer, CSL Behring, Grifols, Novo Nordisk, Octapharma, Pfizer, Roche, Sobi, Shire: Consultancy, Honoraria, Other: reimbursement for attending symposia/congresses , Research Funding, Speakers Bureau.


Blood ◽  
2019 ◽  
Vol 134 (Supplement_1) ◽  
pp. 2411-2411
Author(s):  
Maureen Watt ◽  
Scott Milligan

Introduction: The safety and efficacy of rurioctocog alfa pegol (BAX 855, SHP-660, TAK-660; Adynovate®; Baxalta US Inc., a Takeda company, Lexington, MA, USA) in patients with severe hemophilia A has been reported previously (Konkle BA et al., Blood 2015, 126:1078-85; Brand B et al., Haemophilia 2016, 22:e251-8; Mullins ES et al., Haemophilia 2017, 23:238-46); however, research describing patient experience with extended half-life (EHL) recombinant factor VIII (FVIII) products outside clinical trials is limited. The objective of this study was to assess real-world utilization of TAK-660 in patients with hemophilia A and describe their clinical profiles before and after switching to TAK-660. Factor consumption and bleed outcomes stratified by age (<18 and ≥18 years) are reported herein. Methods: This was a retrospective, observational database study of patient data from US specialty pharmacies. Pharmacy data sources included patient records, prescriptions, and patient-reported bleed logs. Informed consent was obtained for all analyzed patient data. Eligible patients with hemophilia A were treated with prophylactic TAK-660 with on-label dosing from November 2015 to September 2018, and had received ≥90 days of FVIII (standard half-life [SHL] or EHL) therapy before switching to TAK-660. Main exclusion criteria were participation in a TAK-660 clinical trial before/during this study, only on-demand treatment before switching to TAK-660, or presence of active FVIII inhibitor requiring treatment and/or use of immune tolerance induction during the study period. Assessments included prior hemophilia therapy, FVIII administration frequency and consumption, and annualized bleeding rate (ABR) before and after switching to TAK-660. Results: Data was collected from 82 patients (of 61 providers in 44 practices across 25 states in the United States): 44% of the patients (36/82) were <18 years old; 56% (46/82) were ≥18 years old (none were ≥60 years old); 83% (68/82) had severe hemophilia A; and 88% (72/82) had received prior SHL-FVIII treatment. The SHL antihemophilic factor (recombinant) (Advate®; Baxalta US Inc., a Takeda company, Lexington, MA, USA) was used by 67% (55/82) of patients overall, of whom 47% (26/55) were <18 years old and 53% (29/55) were ≥18 years old. Compared with any prior FVIII therapy, switching to TAK-660 increased FVIII dose per administration in patients <18 and ≥18 years old (+39.5% and +22.9%, respectively), while their weekly administration frequency decreased (-21.4% and -28.1%, respectively; Table 1). Weekly FVIII consumption increased in patients aged <18 years (+11.2%) and decreased in those aged ≥18 years (-12.8%). FVIII administration frequency and consumption by prior SHL- or EHL-FVIII are reported in Table 1. ABR data before and after switching were available in 47 of 82 patients. Compared with any prior FVIII therapy, mean ABR decreased in patients aged <18 years (-39.5%; 2.8 to 1.7) and ≥18 years (-50.3%; 3.4 to 1.7) with TAK-660 treatment (Table 2). Changes in mean ABR by prior FVIII therapy and disease severity are reported in Table 2. The small number of patients who received prior EHL FVIII was a limiting factor in the comparison of patients who received prior SHL- and EHL-FVIII therapy. Conclusions: In patients with hemophilia A previously treated with SHL- or EHL-FVIII products, switching to TAK-660 prophylaxis resulted in a significant decrease in ABR of 40-50% in both age groups analyzed. The adult population (ie, ≥18 years old) showed a tendency for reduced weekly FVIII consumption. These findings from real-world data are in agreement with TAK-660 clinical trial results. The observed differences in FVIII consumption between patients <18 and ≥18 years old may have been in part a result of age-related changes in bleeding patters, growth, and other factors. Disclosures Watt: Shire International GmbH, a Takeda company: Employment, Other: a Takeda stock owner. Milligan:Sanofi: Research Funding; Merck: Research Funding; Gilead: Research Funding; Amgen: Research Funding; AbbVie: Research Funding; Trio Health: Employment; Viiv: Research Funding.


2020 ◽  
Vol 120 (10) ◽  
pp. 1395-1406 ◽  
Author(s):  
Iris Garcia-Martínez ◽  
Nina Borràs ◽  
Marta Martorell ◽  
Rafael Parra ◽  
Carme Altisent ◽  
...  

AbstractThe pharmacokinetic (PK) response of severe hemophilia A (HA) patients to infused factor VIII (FVIII) shows substantial variability. Several environmental and genetic factors are associated with changes in FVIII plasma levels and infused FVIII PK. Based on the hypothesis that factors influencing endogenous FVIII can affect FVIII PK, the contribution of single-nucleotide variants (SNVs) in candidate genes was investigated in 51 severe HA patients. The effects of blood group, F8 variant type, von Willebrand factor antigen and activity levels, age, and weight were also explored. The myPKFiT device was used to estimate individual PK parameters, and SNVs and clinically reportable F8 variants were simultaneously analyzed in an Illumina MiSeq instrument, using the microfluidics-based Fluidigm Access Array system. The contribution of SNVs to FVIII half-life and clearance was addressed by robust regression modeling, taking into account other modulators. In line with previous studies, we provide robust evidence that age, body weight, and blood group, as well as SNVs in ABO and CLEC4M, participate in the variability of FVIII PK in HA patients. Main results: each copy of the rs7853989 (ABO) allele increases FVIII half-life by 1.4 hours (p = 0.0131) and decreases clearance by 0.5 mL/h/kg (p = 5.57E-03), whereas each additional rs868875 (CLEC4M) allele reduces FVIII half-life by 1.1 hours (p = 2.90E-05) and increases clearance by 0.3 mL/h/kg (p = 1.01E-03). These results contribute to advancing efforts to improve FVIII replacement therapies by adjusting to each patient's PK profile based on pharmacogenomic data. This personalized medicine will decrease the burden of treatment and maximize the benefits obtained.


Blood ◽  
2021 ◽  
Vol 138 (Supplement 2) ◽  
pp. LBA-5-LBA-5
Author(s):  
Lynn Malec ◽  
An Van Damme ◽  
Anthony Chan ◽  
Mariya Spasova ◽  
Nisha Jain ◽  
...  

Abstract Introduction: Inhibitor development is a major complication of factor VIII (FVIII) replacement therapy, affecting approximately 30% of people with severe hemophilia A (Peyvandi et al Lancet 2016). Inhibitor eradication is the standard of care to restore responsiveness to FVIII; however, ITI regimens often require frequent high-dose factor injections over a long period (DiMichele et al Haemophilia 2007; Carcao et al Haemophilia 2021). Median (interquartile range [IQR]) time (months) to negative titer in the International ITI Study with high-dose FVIII was 4.6 (2.8-13.8) (n=31); negative titer to normal recovery was 6.9 (3.5-12.0) (n=23); and normal recovery to tolerance was 10.6 (6.3-20.5) (n=22) (Hay and DiMichele Blood 2012). Recombinant factor VIII Fc fusion protein (rFVIIIFc) is an extended half-life (EHL) FVIII that showed potential benefits for ITI in retrospective clinical data and case reports (Malec et al Haemophilia 2016; Groomes et al Pediatr Blood Cancer 2016; Carcao et al Haemophilia 2021). VerITI-8 (NCT03093480) is the first prospective study of rFVIIIFc in first-time ITI and follows on from the reITIrate (NCT03103542) study of rFVIIIFc for rescue ITI (Königs et al Res Pract Thromb Haemost, ISTH 2021). Aim: Describe outcomes in the verITI-8 study of first-time ITI with rFVIIIFc over 48 weeks in subjects with severe hemophilia A and high-titer inhibitors. Methods: VerITI-8 is a prospective, single-arm, open-label, multicenter study exploring efficacy of rFVIIIFc for first-time ITI in people with severe hemophilia A with high-titer inhibitors. Initial screening was followed by an ITI period in which all subjects received rFVIIIFc 200 IU/kg/day until tolerization or 48 weeks had elapsed (Figure). This was followed by tapered dose reduction to standard prophylaxis and follow-up. Key inclusion criteria included males with severe hemophilia A, high-titer inhibitors (historical peak ≥5 Bethesda units [BU]/mL), and prior treatment with any plasma-derived or recombinant standard half-life or EHL FVIII. Key exclusion criteria included coagulation disorder(s) other than hemophilia A and previous ITI. The primary endpoint was time to tolerization (successful ITI) with rFVIIIFc defined by inhibitor titer &lt;0.6 BU/mL, incremental recovery (IR) ≥66% of expected IR (IR ≥1.32 IU/dL per IU/kg) (both at 2 consecutive visits), and t ½ ≥7 hours (h) within 48 weeks. Secondary endpoints included number of subjects achieving ITI success, annualized bleed rates (ABR), and adverse events (AEs). Results: Sixteen subjects were enrolled and received ≥1 rFVIIIFc dose. Median (range) age at baseline was 2.1 (0.8-16.0) years, and historical peak inhibitor titer was 22.4 (6.2-256.0) BU/mL (Table). Twelve (75%), 11 (69%), and 10 (63%) subjects, respectively, achieved a negative inhibitor titer, an IR &gt;66%, and a t½ ≥7 h (ie, tolerance) within 48 weeks. Median (IQR) times in weeks to achieve these markers of success were 7.4 (2.2-17.8), 6.8 (5.4-22.4), and 11.7 (9.8-26.2) (ie, 2.7 [2.3-6.0] months to tolerance), respectively. One subject achieved partial success (negative inhibitor titer and IR ≥66%), and 5 subjects failed ITI, of which 2 had high inhibitors throughout, 2 experienced an increase in inhibitor levels, and 1 recorded a negative inhibitor titer at 282 days. Most bleeds occurred in the ITI period when median (IQR) ABRs (n=13) were 3.8 (0-10.1) overall, 0 (0-2.6) for spontaneous, 1 (0-4) for traumatic, and 0 (0-3.1) for joint. During tapering, median (IQR) ABRs (n=10) were overall, 0 (0-2.4); spontaneous, 0 (0-0); traumatic, 0 (0-1.3); and joint, 0 (0-0). All 16 subjects experienced ≥1 treatment-emergent AE (TEAE), the most frequent of which was pyrexia in 7 subjects (44%). One subject reported ≥1 related TEAE (injection site pain). Nine subjects (56%) experienced ≥1 treatment-emergent serious AE (TESAE). TESAEs occurring in ≥2 subjects included vascular device infection, contusion, and hemarthrosis. No treatment-related TESAEs, discontinuations due to AEs, or deaths were reported. Conclusions: rFVIIIFc is the first EHL FVIII with prospective data for first-time ITI in patients with severe hemophilia A with historical high-titer inhibitors. Evaluated within a 48-week timeframe, rFVIIIFc offered rapid time to tolerization (median 11.7 weeks; 2.7 months) with durable responses in almost two-thirds of subjects and was well tolerated. Optimizing ITI to eradicate inhibitors remains a priority. Figure 1 Figure 1. Disclosures Malec: CSL Behring: Consultancy; Genentech: Consultancy; HEMA Biologics: Consultancy; Pfizer: Consultancy; Sanofi: Consultancy, Research Funding; Takeda: Consultancy; Bioverativ: Consultancy, Research Funding, Speakers Bureau; Shire: Consultancy; Bayer: Consultancy. Van Damme: Pfizer: Consultancy; Shire: Consultancy; Bayer: Consultancy. Chan: Bioverativ: Consultancy. Jain: Sanofi: Ended employment in the past 24 months; Takeda: Current Employment, Current holder of stock options in a privately-held company. Sensinger: Sanofi: Current Employment, Current holder of stock options in a privately-held company. Dumont: Sanofi: Current Employment, Current holder of stock options in a privately-held company. Lethagen: Sobi: Current Employment, Current holder of stock options in a privately-held company. Carcao: Bayer, Bioverativ/Sanofi, CSL Behring, Novo Nordisk, Octapharma, Pfizer, Roche, and Shire/Takeda: Research Funding; Bayer, Bioverativ/Sanofi, CSL Behring, Grifols, LFB, Novo Nordisk, Pfizer, Roche, and Shire/Takeda: Honoraria, Membership on an entity's Board of Directors or advisory committees. Peyvandi: Roche: Consultancy, Honoraria; Sanofi: Consultancy, Honoraria; Sobi: Consultancy, Honoraria; Takeda: Consultancy, Honoraria; Ablynx, Grifols, Kedrion, Novo Nordisk, Roche, Shire, and Sobi: Other: Personal Fees. OffLabel Disclosure: adheres to routine clinical practice


2021 ◽  
Vol 13 (4) ◽  
Author(s):  
Samuel Sarmiento Doncel ◽  
Gina Alejandra Diaz Mosquera ◽  
Javier Mauricio Cortes ◽  
Nelson Ramirez ◽  
Francisco Javier Meza ◽  
...  

Introduction: In recent decades, hemophilia A treatment has been focused on body weight, without taking pharmacokinetic parameters into account. Previous research has shown that the individual pharmacokinetic response is more effective in predicting the required dose of clotting factor. We want to evaluate the impact on reducing the frequency of bleeding in patients treated with recombinant factor VIII, based on a personalized comprehensive management program.   Objective: Our aim was to compare the results of a standard comprehensive treatment program (stage I) vs. a personalized pharmacokinetic - based treatment program (stage II) in a cohort of 60 patients with severe hemophilia without inhibitors.   Results:The median age was 15.5 years (3 - 68). The ABR was 1.03 (62 episodes) in the first stage and 0.58 (35 episodes) in the second one, (p = 0.004). By type of bleeding, the impact of the intervention differs significantly in spontaneous bleeding (p = 0.007) and a 73% reduction in the first stage. There were no significant differences in traumatic bleeding.   Conclusions: The use of pharmacokinetics for personalized dosing of patients with severe hemophilia A, significantly reduces ABR and spontaneous bleeding, improving the patient's quality of life and costs for the health system.


Blood ◽  
2013 ◽  
Vol 122 (21) ◽  
pp. 4783-4783 ◽  
Author(s):  
Víctor Jiménez-Yuste ◽  
Sandra Lejniece ◽  
Robert Klamroth ◽  
Trine Saugstrup ◽  
Judi Moss

Introduction Turoctocog alfa is a B domain truncated human recombinant FVIII for treatment of patients with hemophilia A. The production yields a highly homogenous product with the same tyrosine sulphation as human FVIII. In order to confirm the consistency of turoctocog alfa pharmacokinetics (PK) over different production lots and vial strengths, a clinical trial was performed in 15 patients with severe hemophilia A. Aim To compare the PK of 3 lots of 2000 IU/vial and 1 lot of 3000 IU/vial of turoctocog alfa after i.v. administration of 50 IU/kg in patients with severe haemophilia A. Methods This was a multi-centre, open-label trial investigating the PK of 4 lots of turoctocog alfa (3 lots of 2000 IU/vial; Lots A, B and C, and 1 lot of 3000 IU/vial; Lot D) in patients with severe hemophilia A (FVIII<1%). The trial was performed as a two-period, incomplete block, cross-over trial, in which each patient was allocated at random to a predefined sequence of 2 different lots of turoctocog alfa. The FVIII activity was assessed using both the one-stage clot and chromogenic assays. Both the primary endpoint, normalized AUC (AUC*(planned dose/actual dose)), and the secondary PK endpoints were analyzed by ANCOVA on the log transformed values, with lot, visit and patient as fixed effects. Each of the three 2000 IU/vial lots was compared and tested against the 2 other 2000 IU/vial lots. If not significantly different on a 5% level, the 3 lots were pooled together and tested against the 3000 IU/vial lot. Results Fifteen patients with a mean age of 38.6 years (ranging from 21 to 60 years) were included from 3 hemophilia centres in 3 different countries. Three adverse events (AEs) were reported in the trial by 2 separate patients; all AEs were judged to be unlikely related to the trial product. There was no development of inhibitors. There was no pharmacokinetic difference observed between Lots A, B, C (2000 IU/vials) and there was no pharmacokinetic difference observed between the pooled data from lot A, B and C (2000 IU/vial) and lot D (3000 IU/vial) based on normalized AUC, half-life, incremental recovery and clearance. The estimated mean values (with 90% CI) for the PK parameters based on the chromogenic assay are presented in Table 1. The results were similar for the one-stage clot assay and the chromogenic assay. Conclusions No pharmacokinetic differences were observed between the three 2000 IU/vial lots (Lot A, Lot B and Lot C), nor were there pharmacokinetic differences between Lot D (3000 IU/vial) and pooled data from Lots A, B and C, based on normalized AUC, half-life, incremental recovery and clearance. There were no safety concerns and no inhibitor development in the trial. Disclosures: Jiménez-Yuste: Novo Nordisk: Consultancy, Research Funding, Speakers Bureau. Klamroth:Novo Nordisk, CSL Behring, Bayer, Baxter, Pfizer: Honoraria, Research Funding. Saugstrup:Novo Nordisk: Employment. Moss:Novo Nordisk: Employment.


Blood ◽  
2016 ◽  
Vol 128 (22) ◽  
pp. 3778-3778
Author(s):  
Amy L. Dunn ◽  
Alexis A. Thompson ◽  
Werner Engl ◽  
Marlies Sharkhawy ◽  
Brigitt E. Abbuehl

Abstract Introduction: Patients with hemophilia A are at risk for acute bleeding which may affect muscles and other soft tissues but characteristically involves joints. Prophylaxis with factor VIII (FVIII) is the optimal treatment to prevent bleeding into joints and, when begun at a young age, may prevent arthropathy. BAX 8551, a polyethylene glycol (peg)ylated, full-length, recombinant FVIII built on ADVATE2, demonstrated extended half-life, efficacy, and safety for prophylaxis and treatment of bleeding in patients with severe hemophilia A. Methods: A phase 3, prospective, uncontrolled, multicenter study was performed in pediatric patients with severe hemophilia A without history of inhibitors. To be eligible, patients aged <6 years had to have ≥50, those aged 6 to <12 years ≥150 previous exposure days (EDs) to FVIII. Patients received twice weekly infusions of 50 ±10 IU/kg of BAX 855 over a period of 6 months or ≥50 EDs. The prevalence of target joints, defined as a single joint with ≥3 spontaneous bleeding episodes in any consecutive 6-month period, was assessed at baseline. Annualized rates of target joint bleeds and the course of target joints were evaluated by age (<6 and 6 to <12 years). The study was performed in accordance with the principles of the Declaration of Helsinki of the World Medical Association. Results:Sixty-six patients were treated with a mean (SD) BAX 855 dose of 51.1 (5.5) IU/kg at a mean (SD) frequency of 1.8 (0.2) infusions/week. Fourteen of 66 patients (21.2%), 3/32 (9.4%) in the younger and 11/34 (32.4%) in the older cohort, had a total of 23 target joints at screening. The number of target joint bleeds decreased during a mean (SD) of 48.5 (7.7; median: 49.0) prophylactic EDs/patient. Five of 66 (7.6%) patients had at least 1 target joint bleed, 1/32 (3.1%) in the younger and 4/34 (11.8%) in the older cohort. The point estimate for the mean (95% CI) annualized rate of target joint bleeds was 0 (0 - infinity; median: 0) compared to an annualized rate of all joint bleeds of 1.1 (0.6 - 1.9; median: 0) and an annualized rate of all bleeds of 3.0 (2.2 - 4.2; median: 2.0) (Table 1). The point estimate for the mean (95% CI) annualized bleeding rate (ABR) in 52 patients without target joints was 2.9 (2.0 - 4.2; median: 2.0) and was similar in 14 patients with target joints at screening at 3.5 (1.9 - 6.6; median: 2.1). In the younger cohort, the ABR was lower in patients with than those without target joints. However, the number of patients <6 years with target joints (N = 3) was too small to draw any conclusions (Table 1). During BAX 855 prophylaxis, no new target joints developed in any patient. Ten of 14 patients had at least 1 target joint revert to a non-target joint. In 8 of these 10 patients, 4 with 1 and 4 with 2 target joints, all target joints resolved. Conclusions:These results suggest that twice weekly infusion of BAX 855 is effective in the prevention of bleeding into target joints and may revert target to non-target joints in pediatric patients with severe hemophilia A. 1BAX 855 (Baxalta US Inc., now part of Shire) is licensed in the US and Japan under the trade name ADYNOVATE. 2ADVATE is a trade mark of Baxalta US Inc., now part of Shire. Disclosures Dunn: NovoNordisk: Consultancy, Honoraria, Membership on an entity's Board of Directors or advisory committees, Research Funding; Kedrion: Research Funding; Pfizer: Research Funding; CSL Behring: Consultancy, Honoraria, Membership on an entity's Board of Directors or advisory committees, Research Funding; Biogen: Consultancy, Honoraria, Membership on an entity's Board of Directors or advisory committees, Research Funding; Baxalta (now part of Shire): Consultancy, Honoraria, Membership on an entity's Board of Directors or advisory committees, Research Funding; Bayer: Consultancy, Honoraria, Membership on an entity's Board of Directors or advisory committees, Research Funding; Octapharma: Research Funding. Thompson:Eli Lily: Research Funding; Novartis: Consultancy, Membership on an entity's Board of Directors or advisory committees, Research Funding; Celgene: Research Funding; bluebird bio: Consultancy, Research Funding; ApoPharma: Consultancy, Membership on an entity's Board of Directors or advisory committees; Mast: Research Funding; Amgen: Research Funding; Baxalta (now part of Shire): Research Funding. Engl:Shire: Employment, Equity Ownership. Sharkhawy:Baxalta (now part of Shire): Employment. Abbuehl:Baxalta (now part of Shire): Employment.


Blood ◽  
2015 ◽  
Vol 126 (9) ◽  
pp. 1078-1085 ◽  
Author(s):  
Barbara A. Konkle ◽  
Oleksandra Stasyshyn ◽  
Pratima Chowdary ◽  
David H. Bevan ◽  
Tim Mant ◽  
...  

Key Points BAX 855, a pegylated full-length rFVIII with extended half-life, was highly effective in the prevention and treatment of bleeding events. No subjects receiving BAX 855 developed FVIII inhibitory antibodies nor experienced unexpected adverse events.


Blood ◽  
1990 ◽  
Vol 75 (8) ◽  
pp. 1664-1672 ◽  
Author(s):  
DP O'Brien ◽  
JK Pattinson ◽  
EG Tuddenham

We have purified factor VIII from a patient with moderately severe hemophilia A (FVIII, 4 U/dL; FVIII:Ag, 110 U/dL) and subjected the protein to Western blot analysis after time course activation with thrombin. The cross reacting material-positive (CRM+) FVIII has the normal distribution of heavy and light chains before thrombin activation, and, after incubation with the enzyme, appropriate cleavages are made at positions 740 and 1689. However, the normal thrombin cleavage at position 372 in the heavy chain of this molecule does not occur. This result is consistent with the demonstration in the patient's leukocyte DNA of a C to T transition in codon 372, leading to the substitution of a cysteine for an arginine residue at the heavy chain internal cleavage site. The severely impaired functional activity of this molecule confirms that the heavy chain of FVIII must be proteolysed in order to effect full cofactor activation in vivo. However, a threefold activation was detected when this protein was incubated with thrombin. No evidence of thrombin-mediated cleavage at position 336 in the heavy chain was detected, in contrast to the variant recombinant B domainless-molecule, FVIII 372-Ile, described by Pittman and Kaufman (Proc Natl Acad Sci USA 85:2429, 1988). Using gel permeation studies of the FVIII/von Willebrand factor (vWF) complex before and after thrombin activation, we have demonstrated that the 40 Kd A2 domain of wild type FVIII dissociates from vWF after cleavage by the enzyme. In contrast, incomplete dissociation was detected in the case of FVIII 372-Cys. We conclude that the functional defect in FVIII 372-Cys is a consequence of the resistance to proteolysis of the internal scissile bond in the heavy chain.


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