thiotepa
Sources réglementaires consultées
Indications approuvées
- Conditionnement avant greffe hématopoïétique dans les maladies hématologiques et les tumeurs solides, selon les schémas approuvés.
Contre-indications
Absolues
- Hypersensibilité ; grossesse ou allaitement ; vaccin contre la fièvre jaune ; vaccins vivants viraux ou bactériens concomitants.
Mises en garde cliniques
- Une pancytopénie profonde est attendue : assurer greffe, soutien hématologique et prophylaxie/traitement anti-infectieux. — CIMA/AEMPS, ficha técnica 10622002
- Surveiller toxicités hépatique, rénale, pulmonaire, neurologique et cutanée. Les autres vaccins vivants ne sont pas recommandés avant au moins 3 mois. — CIMA/AEMPS, ficha técnica 10622002
Interactions médicamenteuses
- SévèreCyclophosphamide
Mécanisme: La séquence modifie le métabolisme et la toxicité du conditionnement.
Recommandation: S’ils figurent dans le même conditionnement, administrer Tepadina après la fin du cyclophosphamide, jamais simultanément.
CIMA/AEMPS, ficha técnica 10622002
- SévèreInhibiteurs CYP2B6/CYP3A4, phénytoïne, ciclosporine, tacrolimus ou myélotoxiques
Mécanisme: Ils peuvent modifier l’exposition ou majorer toxicité hématologique et immunosuppression.
Recommandation: Éviter si possible ou surveiller selon le protocole.
CIMA/AEMPS, ficha técnica 10622002
Effets indésirables
Communs (≥1%)
Myélosuppression, nausées, vomissements, mucite et fatigue
Grossesse et allaitement
Effectuer un test de grossesse avant le traitement. Le thiotépa est contre-indiqué pendant la grossesse et l’allaitement. Les femmes doivent utiliser une contraception efficace pendant le traitement ; les hommes ne doivent pas procréer pendant le traitement ni pendant un an après et doivent envisager une cryoconservation du sperme avant le traitement.
Bibliographie récente (PubMed)
Primary central nervous system lymphoma (PCNSL) is a diffuse large B cell lymphoma in which the brain, spinal cord, leptomeninges and/or eyes are exclusive sites of disease. Pathophysiology is incompletely understood, although a central role seems to comprise immunoglobulins binding to self-proteins expressed in the central nervous system (CNS) and alterations of genes involved in B cell receptor, Toll-like receptor and NF-κB signalling. Other factors such as T cells, macrophages or microglia, endothelial cells, chemokines, and interleukins, probably also have important roles. Clinical presentation varies depending on the involved regions of the CNS. Standard of care includes methotrexate-based polychemotherapy followed by age-tailored thiotepa-based conditioned autologous stem cell transplantation and, in patients unsuitable for such treatment, consolidation with whole-brain radiotherapy or single-drug maintenance. Personalized treatment, primary radiotherapy and only supportive care should be considered in unfit, frail patients. Despite available treatments, 15-25% of patients do not respond to chemotherapy and 25-50% relapse after initial response. Relapse rates are higher in older patients, although the prognosis of patients experiencing relapse is poor independent of age. Further research is needed to identify diagnostic biomarkers, treatments with higher efficacy and less neurotoxicity, strategies to improve the penetration of drugs into the CNS, and roles of other therapies such as immunotherapies and adoptive cell therapies. Most sources consider breastfeeding to be contraindicated during maternal antineoplastic drug therapy, especially alkylating agents such as thiotepa.[1] Labeling suggests that mothers should not breastfeed during therapy and for 1 week after the last dose of thiotepa. Chemotherapy may adversely affect the normal microbiome and chemical makeup of breastmilk.[2] Women who receive chemotherapy during pregnancy are more likely to have diffic
Related human leukocyte antigen (HLA)-haploidentical bone marrow transplantation (BMT) with posttransplant cyclophosphamide may be curative for sickle cell disease. However, graft failure, severe graft-versus-host disease (GVHD), infections, and mortality remain a concern. We evaluated a novel conditioning regimen followed by related HLA-haploidentical BMT in adults with sickle cell disease. In a phase 2, open-label, single-arm, multicenter study, 54 eligible participants from 19 U.S. centers were enrolled. Of these, 42 (78%) received transplantation with conditioning including antithymocyte globulin, fludarabine, cyclophosphamide, thiotepa, and total body irradiation. GVHD prophylaxis included posttransplant cyclophosphamide, mycophenolate mofetil, and sirolimus. The primary outcome was event-free survival at 2 years, while secondary outcomes included overall survival and other transplant-related end points. The median age at enrollment was 22.8 years (range, 15.5 to 43.2), and the median follow-up period was 37.2 months (range, 20.4 to 56.4). The 2-year event-free and overall survival rates were 88.0% (95% confidence interval [CI], 73.5 to 94.8%) and 95.0% (95% CI, 81.5 to 98.7%), respectively. Two participants experienced primary and another secondary graft failure. The incidence of grade-3-to-4 acute GVHD at day 100 was 4.8% (95% CI, 0.9 to 14.4%), while the 2-year chronic GVHD rate was 22.4% (95% CI, 10.9 to 36.4%). Two of the four reported deaths were due to early infectious complications. HLA-haploidentical BMT is an accessible and potentially curative therapy for adults with sickle cell disease. Adverse events were those anticipated from this procedure, including GVHD. (Funded by the National Heart, Lung, and Blood Institute and the National Cancer Institute; BMT CTN 1507; ClinicalTrials.gov number, NCT03263559).
Secondary central nervous system (CNS) lymphoma (SCNSL) is defined by the involvement of the CNS, either at the time of initial diagnosis of systemic lymphoma or in the setting of relapse, and can be either isolated or with synchronous systemic disease. The risk of CNS involvement in patients with diffuse large B-cell lymphoma is approximately 5%; however, certain clinical and biological features have been associated with a risk of up to 15%. There has been growing interest in improving the definition of patients at increased risk of CNS relapse, as well as identifying effective prophylactic strategies to prevent it. SCNSL often occurs within months of the initial diagnosis of lymphoma, suggesting the presence of occult disease at diagnosis in many cases. The differing presentations of SCNSL create the therapeutic challenge of controlling both the systemic disease and the CNS disease, which uniquely requires agents that penetrate the blood-brain barrier. Outcomes are generally poor with a median overall survival of approximately 6 months in retrospective series, particularly in those patients presenting with SCNSL after prior therapy. Prospective studies of intensive chemotherapy regimens containing high-dose methotrexate, followed by hematopoietic stem cell transplantation have shown the most favorable outcomes, especially for patients receiving thiotepa-based conditioning regimens. However, a proportion of patients will not respond to induction therapies or will subsequently relapse, indicating the need for more effective treatment strategies. In this review we focus on the identification of high-risk patients, prophylactic strategies and recent treatment approaches for SCNSL. The incorporation of novel agents in immunochemotherapy deserves further study in prospective trials.
219 HIV-negative adults ≤70 years with primary CNS lymphoma (PCNSL) were enrolled in the randomized IELSG32 trial. Enrolled patients were randomly assigned to receive methotrexate-cytarabine (arm A), or methotrexate-cytarabine-rituximab (B), or methotrexate-cytarabine-thiotepa-rituximab (MATRix; arm C). A second randomization allocated patients with responsive/stable disease to whole-brain irradiation (WBRT) or carmustine-thiotepa-conditioned autologous transplantation (ASCT). First results, after a median follow-up of 30 months, showed that MATRix significantly improves outcome, with both WBRT and ASCT being similarly effective. However, sound assessment of overall survival (OS), efficacy of salvage therapy, late complications, secondary tumors, and cognitive impairment requires longer follow-up. Herein, we report the results of this trial at a median follow-up of 88 months. As main findings, MATRix was associated with excellent long-lasting outcome, with a 7-year OS of 21%, 37%, and 56% respectively for arms A, B, and C. Notably, patients treated with MATRix and consolidation had a 7-year OS of 70%. The superiority of arm B on arm A suggests a benefit from the addition of rituximab. Comparable efficacy of WBRT and ASCT was confirmed. Salvage therapy was ineffective; benefit was recorded only in patients with late relapse re-treated with methotrexate. Eight (4%) patients developed a second cancer. Importantly, MATRix and ASCT did not result in higher non-relapse mortality or second tumors incidence. Patients who received WBRT experienced impairment in attentiveness and executive functions, whereas patients undergoing ASCT experienced improvement in these functions as well as in memory and quality of life.