Background: Eltrombopag is effective and safe for treating chronic immune thrombocytopenia (ITP) patients who have not responded to previous therapy. Interestingly, some patients in whom hemostatic platelet counts are achieved with eltrombopag may sustain the platelet response when eltrombopag ceases to be administered. However, the frequency of sustained responses after discontinuing eltrombopag without additional therapy for ITP is largely unknown. Methods: A total of 260 adult patients (aged 18 years or more) with primary ITP treated with eltrombopag included in the Spanish Eltrombopag Registry were retrospectively evaluated. The study was performed in accordance with the standards of the Helsinki declaration and approved by the Hospital Universitario de Burgos Ethics Committee. Results: The median age was 62 [range, 18–93] years. There were 165 women and 95 men. According to the standard definition, patients were allocated to newly diagnosed (n=29), persistent (n=36) and chronic (n=195) ITP groups. The median time from diagnosis to eltrombopag initiation was 24 [range, 1–480] months. The median number of previous therapies was 3 [range, 0–10], including splenectomy (22%), rituximab (23%) and romiplostim (19%). The initial response rate to eltrombopag was 231/260 (89%), including 77% (n=201) cases of complete remission (platelet count ≥100 x 109/L). The median duration of eltrombopag treatment was 6 [range, 1–54] months. Eltrombopag was discontinued in 80 out of 201 (39.8%) patients who achieved CR. Reasons for eltrombopag discontinuation were: persistent response despite a reduction in dose over time (n=33), platelet count >400x109/L (n=29), patient’s request (n=5), aspartate aminotransferase elevation (n=3), diarrhea (n=3), thrombosis (n=3) and other reasons (n=4). For analysis of discontinuation, patients with follow-up < 6 months (n=15), newly diagnosed ITP (n=11) or patients who received concomitant or previous (6 months before) treatments at the start of eltrombopag use (n=5) were excluded. Of the 49 evaluable patients, 22 (45%) had an immediate relapse after stopping eltrombopag. One patient with sustained response after stopping treatment relapsed at 10 months. A total of 26 patients (53%) showed sustained response after discontinuing eltrombopag without additional ITP therapy, with a median follow-up of 9 [range, 6–25] months. These patients were characterized by a median time since ITP diagnosis of 46.5±114.1 months, with 4/26 having ITP <1 year. Eleven patients (42%) were male and their median age was 59 [range, 18-88] years. They had received a median of four previous treatment lines [range: 0–9 lines] and 11 (42%) were splenectomized. The median platelet count before starting eltrombopag was 22 x 109/L and that before eltrombopag withdrawal was 269 x 109/L. The main characteristics (age, gender, duration of ITP, prior anti-ITP lines, prior splenectomy, prior rituximab, prior romiplostim, platelet count before starting eltrombopag, duration of eltrombopag treatment, and platelet count before eltrombopag withdrawal) of the 26 patients with sustained response after stopping eltrombopag were compared with those of the 23 patients relapsing after eltrombopag withdrawal. No predictive factors of sustained response after eltrombopag withdrawal could be identified. Conclusion: Platelet response following eltrombopag cessation may be sustained in nearly half of adult patients with primary ITP after CR with eltrombopag. However, reliable markers for predicting which patients will have this response are lacking. Disclosures No relevant conflicts of interest to declare.
Eltrombopag is effective and safe in immune thrombocytopenia (ITP). Some patients may sustain their platelet response when treatment is withdrawn but the frequency of this phenomenon is unknown. We retrospectively evaluated 260 adult primary ITP patients (165 women and 95 men; median age, 62 years) treated with eltrombopag after a median time from diagnosis of 24 months. Among the 201 patients who achieved a complete remission (platelet count >100 3 10 9 /l), eltrombopag was discontinued in 80 patients. Reasons for eltrombopag discontinuation were: persistent response despite a reduction in dose over time (n = 33), platelet count >400 3 10 9 /l (n = 29), patient's request (n = 5), elevated aspartate aminotransferase (n = 3), diarrhea (n = 3), thrombosis (n = 3), and other reasons (n = 4). Of the 49 evaluable patients, 26 patients showed sustained response after discontinuing eltrombopag without additional ITP therapy, with a median follow-up of 9 (range, 6-25) months. These patients were characterized by a median time since ITP diagnosis of 46.5 months, with 4/26 having ITP < 1 year. Eleven patients were male and their median age was 59 years. They received a median of 4 previous treatment lines and 42% were splenectomized. No predictive factors of sustained response after eltrombopag withdrawal were identified. Platelet response following eltrombopag cessation may be sustained in an important percentage of adult primary ITP patients who achieved CR with eltrombopag. However, reliable markers for predicting which patients will have this response are needed.Am. J. Hematol. 90:E40-E43,
To cite this article: de la Morena-Barrio ME, Mart ınez-Mart ınez I, de Cos C, Wypasek E, Rold an V, Undas A, van Scherpenzeel M, Lefeber DJ, Toderici M, Sevivas T, España F, Jaeken J, Corral J, Vicente V. Hypoglycosylation is a common finding in antithrombin deficiency in the absence of a SERPINC1 gene defect. J Thromb Haemost 2016;14: 1549-60. Essentials• We investigated the molecular base of antithrombin deficiency in cases without SERPINC1 defects.• 27% of cases presented hypoglycosylation, transient in 62% and not restricted to antithrombin.• Variations in genes involved in N-glycosylation underline this phenotype.• These results support a new form of thrombophilia.
The key haemostatic role of antithrombin and the risk of thrombosis associated with its deficiency support that the low incidence of antithrombin deficiency among patients with thrombosis might be explained by underestimation of this disorder. It was our aim to identify mutations in SERPINC1 causing transient antithrombin deficiency. SERPINC1 was sequenced in 214 cases with a positive test for antithrombin deficiency, including 67 with no deficiency in the sample delivered to our laboratory. The p.Val30Glu mutation (Antithrombin Dublin) was identified in five out of these 67 cases, as well as in three out of 127 cases with other SERPINC1 mutations. Genotyping in 1593 patients with venous thrombosis and 2592 controls from two populations, revealed a low prevalent polymorphism (0.3 %) that moderately increased the risk of venous thrombosis (OR: 2.9; 95 % CI: 1.07-8.09; p= 0.03) and identified one homozygous patient with an early thrombotic event. Carriers had normal anti-FXa activity, and plasma antithrombin was not sensitive to heat stress or proteolytic cleavage. Analysis of one sample with transient deficit revealed a type I deficiency, without aberrant or increased latent forms. The recombinant variant, which lacked the two amino-terminal residues, had reduced secretion from HEK-EBNA cells, formed hyperstable disulphide-linked polymers, and had negligible activity. In conclusion, p.Val30Glu by affecting the cleavage of antithrombin's signal peptide, results in a mature protein lacking the N-terminal dipeptide with no functional consequences in normal conditions, but that increases the sensitivity to be folded intracellularly into polymers, facilitating transient antithrombin deficiency and the subsequent risk of thrombosis.
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