duvelisib
Regulatory sources consulted
Approved indications
- Relapsed or refractory chronic lymphocytic leukemia or small lymphocytic lymphoma in adults after at least two prior systemic lines. It is not indicated or recommended as first- or second-line treatment because of increased treatment-related mortality.
Contraindications
Absolute
- The FDA label establishes no formal contraindications.
Clinical warnings
- Boxed warning: treatment-related mortality 15%; serious or fatal infections 31%, serious or fatal diarrhea/colitis 18%, serious or fatal cutaneous reactions 5%, and serious or fatal pneumonitis 5%. Monitor and promptly withhold when suspected; do not restart until toxicity is controlled, and permanently discontinue for confirmed life-threatening toxicity or when required by the label. — OpenFDA, set_id e3c5ac56-e1f6-473a-bc73-687836534780
- Treat infections before starting. Withhold for grade ≥3 infection, suspected PJP, uncontrolled diarrhea/colitis, severe cutaneous reaction, or pneumonitis; permanently discontinue for confirmed PJP, SJS/TEN/DRESS, or life-threatening toxicity. Monitor liver function and blood counts. — OpenFDA, set_id e3c5ac56-e1f6-473a-bc73-687836534780
Drug interactions
- HighStrong CYP3A4 inhibitors
Mechanism: They increase duvelisib exposure.
Recommendation: Reduce to 15 mg twice daily.
OpenFDA, set_id e3c5ac56-e1f6-473a-bc73-687836534780
- HighStrong or moderate CYP3A4 inducers
Mechanism: They reduce duvelisib exposure and may decrease efficacy.
Recommendation: Avoid. If a moderate inducer is unavoidable, apply the dose increase from day 12 and return to the prior dose 14 days after stopping it.
OpenFDA, set_id e3c5ac56-e1f6-473a-bc73-687836534780
- HighSensitive CYP3A4 substrates
Mechanism: Duvelisib increases their exposure and toxicity risk.
Recommendation: Consider reducing the substrate and monitor toxicity.
OpenFDA, set_id e3c5ac56-e1f6-473a-bc73-687836534780
Adverse events
Common (≥1%)
diarrhea or colitis · neutropenia · rash · fatigue · pyrexia · cough · nausea · upper respiratory infection · pneumonia · musculoskeletal pain · anemia
Pregnancy and lactation
It may cause fetal harm. Verify pregnancy before starting. Women and men with partners who can become pregnant must use effective contraception during treatment and for 1 month afterward. Do not breastfeed during treatment or for 1 month after the last dose.
Recent literature (PubMed)
Chronic lymphocytic leukemia (CLL), defined by a minimum of 5 × 109/L monoclonal B cells in the blood, affects more than 200 000 people and is associated with approximately 4410 deaths in the US annually. CLL is associated with an immunocompromised state and an increased rate of complications from infections. At the time of diagnosis, the median age of patients with CLL is 70 years, and an estimated 95% of patients have at least 1 medical comorbidity. Approximately 70% to 80% of patients with CLL are asymptomatic at the time of diagnosis, and one-third will never require treatment for CLL. Prognostic models have been developed to estimate the time to first treatment and the overall survival, but for patients who are asymptomatic, irrespective of disease risk category, clinical observation is the standard of care. Patients with symptomatic disease who have bulky or progressive lymphadenopathy or hepatosplenomegaly and those with a low neutrophil count, anemia, or thrombocytopenia and/or symptoms of fever, drenching night sweats, and weight loss (B symptoms) should be offered treatment. For these patients, first-line treatment consists of a regimen containing either a covalent Bruton tyrosine kinase (BTK) inhibitor (acalabrutinib, zanubrutinib, or ibrutinib) or a B-cell leukemia/lymphoma 2 (BCL2) inhibitor (venetoclax). There is no evidence that starting either class before the other improves outcomes. The covalent BTK inhibitors are typically used indefinitely. Survival rates are approximately 88% at 4 years for acalabrutinib, 94% at 2 years for zanubrutinib, and 78% at 7 years for ibrutinib. Venetoclax is prescribed in combination with obinutuzumab, a monoclonal anti-CD20 antibody, in first-line treatment for 1 year (overall survival, 82% at 5-year follow-up). A noncovalent BTK inhibitor, pitobrutinib, has shown an overall response rate of more than 70% after failure of covalent BTK inhibitors and venetoclax. Phosphoinositide 3'-kinase (PI3K) inhibitors (idelalisib
PI3K-δ inhibitors have shown impressive activity in lymphoid malignancies but have been hampered by autoimmune and infectious toxicities, leading to market withdrawals. We previously demonstrated activity of the PI3K-δγ inhibitor duvelisib in T cell lymphomas (TCLs) that was associated with inflammatory adverse events. As reported here, we conducted a phase 1b/2a study of duvelisib in combination with either romidepsin (n = 66) or bortezomib (n = 32) in patients with relapsed/refractory TCL and found that the addition of romidepsin, but not bortezomib, appeared to increase efficacy while attenuating PI3K inhibitor-driven toxicity. The primary endpoint of the study was to determine the safety and maximum tolerated dose of duvelisib, which was 75 mg twice daily when combined with romidepsin versus 25 mg twice daily when combined with bortezomib. The most common adverse events were neutropenia (42%, 25/59) and fatigue (37%, 22/59) in patients treated with duvelisib and romidepsin and diarrhea (48%, 11/23) and neutropenia (30%, 7/23) in patients treated with duvelisib and bortezomib. Duvelisib and romidepsin resulted in less grade 3/4 hepatotoxicity (14%, 8/59) compared to 40% (14/35) in our previous study with duvelisib monotherapy. This was associated with reductions in circulating inflammatory mediators and myeloid cell inflammatory gene expression. Secondary endpoints of overall and complete response rates were 55% (35/64) and 34% (22/64) for patients treated with duvelisib and romidepsin and 34% (11/32) and 13% (4/32) for patients treated with duvelisib and bortezomib. Among patients with peripheral T cell lymphomas (PTCLs), overall and complete response rates of duvelisib and romidepsin were 56% (27/48) and 44% (21/48), respectively, with exploratory analyses showing increased response rates in patients with a follicular helper T cell subtype. These findings support further development of combined PI3K and histone deacetylase (HDAC) inhibition in TCLs and suggest
The administration of antifungals for therapeutic and, especially, prophylactic purposes is virtually a constant in patients requiring hematology-oncology treatment. Any attempt to prevent or treat Aspergillus or Mucor infections requires the administration of some drugs in the azole group, which include voriconazole, posaconazole and isavuconazole, noted for their activity against these pathogens. One very relevant aspect is the potential risk of interaction when associated with one of the antineoplastic drugs used to treat hematologic tumors, with serious complications. In this regard, acalabrutinib, bortezomib, bosutinib, carfilzomib, cyclophosphamide, cyclosporine A, dasatinib, duvelisib, gilteritinib, glasdegib, ibrutinib, imatinib, nilotinib, ponatinib, prednisone, ruxolitinib, tacrolimus, all-transretinoic acid, arsenic trioxide, venetoclax, or any of the vinca alkaloids, are very clear examples of risk, in some cases because their clearance is reduced and in others because of increased risk of QTc prolongation, which is particularly evident when the drug of choice is voriconazole or posaconazole. La administración de antifúngicos con fines terapéuticos y especialmente, profilácticos es casi un constante en el paciente que precisa tratamiento oncohematológico. El intento de evitar o de tratar infecciones por Aspergillus o por Mucor exige la administración de algunos fármacos pertenecientes al grupo de los azoles, entre los que destacan por su actividad frente a estos patógenos, voriconazol, posaconazol e isavuconazol. Un aspecto de gran importancia es el riesgo potencial de interacciones cuando se asocian a alguno de los fármacos antineoplásico utilizados en el tratamiento de los tumores hematológicos, dando lugar a graves complicaciones. En este sentido, acalabrutinib, bortezomid, bosutinib, carfizolid, ciclofosfamida, ciscloporina A, dasatinib, duvelisib, gilteritinib, glasdegib, ibrutinib, imatinib, nilotinib, ponatinib, prednisona, ruxolitinib, tacrolimus