vinblastine
Regulatory sources consulted
Approved indications
- Stage III–IV Hodgkin disease; lymphocytic or histiocytic lymphomas; advanced mycosis fungoides; advanced testicular cancer; Kaposi sarcoma; Letterer-Siwe disease; and, less commonly, resistant choriocarcinoma and breast cancer refractory to endocrine surgery or hormone therapy, as monotherapy or in combination according to the authorized regimen.
Contraindications
Absolute
- Hypersensitivity to vinblastine, other vinca alkaloids, or excipients.
- Leukopenia unrelated to the malignancy; uncontrolled bacterial infection; intrathecal administration; breastfeeding.
Clinical warnings
- FOR INTRAVENOUS USE ONLY. Intrathecal administration may be fatal. Verify the route before preparation and administration. — CIMA/AEMPS, ficha técnica 37275
- It is a vesicant: confirm venous access and stop immediately for extravasation. Monitor WBC and do not escalate beyond the dose that brings it near 3,000/mm³. — CIMA/AEMPS, ficha técnica 37275
Drug interactions
- HighMitomycin C
Mechanism: It may cause bronchospasm and severe or irreversible pulmonary toxicity.
Recommendation: Closely monitor respiratory function and discontinue for symptoms.
CIMA/AEMPS, ficha técnica 37275
- HighItraconazole, erythromycin, or other CYP3A4 inhibitors
Mechanism: They may increase vinblastine exposure and toxicity.
Recommendation: Avoid when possible or intensify monitoring for neurotoxicity, ileus, and other toxicities.
CIMA/AEMPS, ficha técnica 37275
- HighLive vaccines
Mechanism: Immunosuppression may cause disseminated vaccine infection.
Recommendation: Live vaccines are not recommended during immunosuppression.
CIMA/AEMPS, ficha técnica 37275
- HighDigoxin
Mechanism: Vinblastine may reduce digoxin concentrations and efficacy.
Recommendation: Monitor concentrations and clinical response and adjust digoxin if needed.
CIMA/AEMPS, ficha técnica 37275
- HighPhenytoin
Mechanism: Vinblastine may reduce phenytoin concentrations and increase seizure risk.
Recommendation: Monitor concentrations and adjust phenytoin according to response.
CIMA/AEMPS, ficha técnica 37275
- HighBleomycin with or without cisplatin
Mechanism: It may increase the risk of Raynaud phenomenon, gangrene, and other vascular events; cisplatin may also increase vinblastine concentrations.
Recommendation: Closely monitor vascular and vinblastine toxicity and coordinate the oncology regimen.
CIMA/AEMPS, ficha técnica 37275
Pregnancy and lactation
It may cause fetal harm. Use effective contraception during treatment and for at least 3 months afterward; extending it to 6 months is preferred. Consider sperm preservation before treatment. Do not breastfeed.
Recent literature (PubMed)
Incorporating brentuximab vedotin into the treatment of advanced-stage classic Hodgkin's lymphoma improves outcomes in adult and pediatric patients. However, brentuximab vedotin increases the toxic effects of treatment in adults, more than half of pediatric patients who receive the drug undergo consolidative radiation, and relapse remains a challenge. Programmed death 1 blockade is effective in Hodgkin's lymphoma, including in preliminary studies involving previously untreated patients. We conducted a phase 3, multicenter, open-label, randomized trial involving patients at least 12 years of age with stage III or IV newly diagnosed Hodgkin's lymphoma. Patients were randomly assigned to receive brentuximab vedotin with doxorubicin, vinblastine, and dacarbazine (BV+AVD) or nivolumab with doxorubicin, vinblastine, and dacarbazine (N+AVD). Prespecified patients could receive radiation therapy directed to residual metabolically active lesions. The primary end point was progression-free survival, defined as the time from randomization to the first observation of progressive disease or death from any cause. Of 994 patients who underwent randomization, 970 were included in the intention-to-treat population for efficacy analyses. At the second planned interim analysis, with a median follow-up of 12.1 months, the threshold for efficacy was crossed, indicating that N+AVD significantly improved progression-free survival as compared with BV+AVD (hazard ratio for disease progression or death, 0.48; 99% confidence interval [CI], 0.27 to 0.87; two-sided P = 0.001). Owing to the short follow-up time, we repeated the analysis with longer follow-up; with a median follow-up of 2.1 years (range, 0 to 4.2 years), the 2-year progression-free survival was 92% (95% CI, 89 to 94) with N+AVD, as compared with 83% (95% CI, 79 to 86) with BV+AVD (hazard ratio for disease progression or death, 0.45; 95% CI, 0.30 to 0.65). Overall, 7 patients received radiation therapy. Immune-related adverse even
Clinical trials frequently include multiple end points that mature at different times. The initial report, typically based on the primary end point, may be published when key planned co-primary or secondary analyses are not yet available. Clinical Trial Updates provide an opportunity to disseminate additional results from studies, published in JCO or elsewhere, for which the primary end point has already been reported.In the investigator-sponsored randomized phase II NIVAHL trial for early-stage unfavorable classical Hodgkin lymphoma (HL), two schedules of four cycles of nivolumab, doxorubicin, vinblastine, and dacarbazine followed by 30 Gy involved-site radiotherapy resulted in high complete remission rates and an unprecedented 1-year progression-free survival in 109 patients. In this article, we report the preplanned final analysis conducted three years after the registration of the last patient including long-term safety results. No survival events were observed since the primary analysis, and after a median follow-up (FU) of 41 months, the overall survival was 100% in both treatment groups. The progression-free survival was 98% and 100% in the sequential and concomitant nivolumab, doxorubicin, vinblastine, and dacarbazine treatment groups, respectively. At last FU, the mean forced expiratory pressure in one second was 95.5% (standard deviation 12.7%), the mean diffusion capacity for carbon monoxide adjusted for hemoglobin was 82.8% (standard deviation 15.4%), and the left ventricular ejection fraction was in the normal range in 95% of patients. Hypothyroidism requiring long-term medication occurred in 15% of patients, who were nearly exclusively female (87%). No second primary malignancies occurred, and no patient required corticosteroid treatment at last FU. Patient-reported normalized global quality-of-life score measured by European Organisation for Research and Treatment of Cancer Quality of Life Questionnaire C30 improved over time. This preplanned FU analy
The optimal perioperative chemotherapy for patients with muscle-invasive bladder cancer is not defined. The VESPER (French Genito-Urinary Tumor Group and French Association of Urology V05) trial reported improved 3-year progression-free survival with dose-dense methotrexate, vinblastine, doxorubicin and cisplatin (dd-MVAC) versus gemcitabine and cisplatin (GC) in patients who received neoadjuvant therapy, but not in the overall perioperative setting. In this Article, we report on the secondary endpoints of overall survival and time to death due to bladder cancer at 5-year follow-up. VESPER was an open-label, randomised, phase 3 trial done at 28 university hospitals or comprehensive cancer centres in France, in which adults (age ≤18 years and ≤80 years) with primary bladder cancer and histologically confirmed muscle-invasive urothelial carcinoma were randomly allocated (1:1; block size four) to treatment with dd-MVAC (every 2 weeks for a total of six cycles) or GC (every 3 weeks for a total of four cycles). Overall survival and time to death due to bladder cancer (presented as 5-year cumulative incidence of death due to bladder cancer) was analysed by intention to treat (ITT) in all randomly assigned patients. Overall survival was assessed by the Kaplan-Meier method with the treatment groups compared with log-rank test stratified for mode of administration of chemotherapy (neoadjuvant or adjuvant) and lymph node involvement. Time to death due to bladder cancer was analysed with an Aalen model for competing risks and a Fine and Gray regression model stratified for the same two covariates. Results were presented for the total perioperative population and for the neoadjuvant and adjuvant subgroups. The trial is registered with ClinicalTrials.gov, NCT01812369, and is complete. From Feb 25, 2013, to March 1, 2018, 500 patients were randomly assigned, of whom 493 were included in the final ITT population (245 [50%] in the GC group and 248 [50%] in the dd-MVAC group; 408 [8
The optimal perioperative chemotherapy regimen for patients with nonmetastatic muscle-invasive bladder cancer is not defined. Between February 2013 and March 2018, 500 patients were randomly assigned in 28 French centers and received either six cycles of dose-dense methotrexate, vinblastine, doxorubicin, and cisplatin (dd-MVAC) once every 2 weeks or four cycles of gemcitabine and cisplatin (GC) once every 3 weeks before surgery (neoadjuvant group) or after surgery (adjuvant group). We report the primary end point of the GETUG-AFU V05 VESPER trial (ClinicalTrials.gov identifier: NCT01812369): progression-free survival (PFS) at 3 years. Secondary end points were time to progression and overall survival. Four hundred thirty-seven patients (88%) received neoadjuvant chemotherapy; 60% of patients received the planned six cycles in the dd-MVAC arm, 84% received four cycles in the GC arm, and thereafter, 91% and 90% of patients underwent surgery, respectively. Organ-confined response (< ypT3N0) was observed more frequently in the dd-MVAC arm (77% v 63%, P = .001). In the adjuvant group, 40% of patients received six cycles in the dd-MVAC arm, and 81% of patients received four cycles in the GC arm. For all patients in the clinical trial, 3-year PFS was improved in the dd-MVAC arm, but the study did not meet its primary end point (3-year rate: 64% v 56%, hazard ratio [HR] = 0.77 [95% CI, 0.57 to 1.02], P = .066); nevertheless, the dd-MVAC arm was associated with a significantly longer time to progression (3-year rate: 69% v 58%, HR = 0.68 [95% CI, 0.50 to 0.93], P = .014). In the neoadjuvant group, PFS at 3 years was significantly higher in the dd-MVAC arm (66% v 56%, HR = 0.70 [95% CI, 0.51 to 0.96], P = .025). In the VESPER trial, dd-MVAC improved 3-years PFS over GC. In the neoadjuvant group, a better bladder tumor local control and a significant improvement in 3-year PFS were observed in the dd-MVAC arm.