Introduction: Patients with MCL often require multiple lines of therapy and exhibit a generally unfavorable prognosis, particularly following failure of cBTKi therapy. Therapies such as chimeric antigen receptor (CAR) T-cell therapies and non-covalent BTKi therapies have shown promise in improving outcomes. Brexu-cel (formerly known as KTE-X19) is the only CAR T-cell therapy approved in the US for R/R MCL based on results from a phase 2 multicenter, single-arm trial (ZUMA-2; NCT02601313) in patients with R/R MCL who had 1-5 prior therapies, including a BTKi. Pirtobrutinib, a highly selective, non-covalent BTKi, was recently approved in the US for treatment of R/R MCL after at least two lines of systemic therapy including a BTKi, based on ongoing results from a multicenter phase 1/2 study (BRUIN; NCT03740529). In the absence of a direct head-to-head trial comparing brexu-cel and pirtobrutinib, we performed an unanchored MAIC to estimate the relative treatment effects of these therapies in the post-BTKi setting for R/R MCL. Methods: Individual patient-level data were available for ZUMA-2 (N=68; 35.8 months median follow-up as of July 24, 2021 data cut-off) whereas study-level data were available for BRUIN (N=90 in the BTKi pre-treated cohort; 23.5 months median follow-up as of July 29, 2022 data cut-off). Longer-term overall survival (OS) data for ZUMA-2 from the July 23, 2022 data cut-off (46.1 months median follow-up) were available and used. Logistic propensity score models were used to weight the brexu-cel infused population from ZUMA-2 to match the aggregate baseline characteristics of the BTKi pre-treated cohort in BRUIN. These baseline characteristics represented clinically relevant prognostic factors which were pre-specified based on input from clinical experts and data availability. The base-case model incorporated the top five most pertinent factors, which were reported in at least 50% of patients in both trials: blastoid morphology, MCL International Prognostic Index, number of prior lines of therapy, disease stage, and prior autologous stem cell transplantation. A sensitivity analysis additionally incorporated TP53 mutation (missing in >50% of patients in ZUMA-2 and BRUIN) and Ki-67 proliferation index (missing in >50% of patients in BRUIN). Several prognostic factors (response to prior BTKi therapy, response to last therapy, and duration on prior BTKi therapy) could not be considered due to not being reported for BRUIN. The effective sample size was calculated as a measure of the degree of precision after weighting, reflecting the extent of overlap in the distribution of covariates between the trial populations. Relative treatment effects were expressed as odds ratios or hazard ratios with 95% confidence intervals. Outcomes included objective response (ORR), complete response (CR), duration of response (DOR), progression-free survival (PFS), and overall survival (OS). Results: In the base-case MAIC, a significant difference in the odds of ORR and CR in favor of brexu-cel versus pirtobrutinib was observed (Table 1). Similarly, brexu-cel demonstrated a significant improvement in PFS (Table 2). OS and DOR point estimates were in favor of brexu-cel when compared to pirtobrutinib, although not statistically significant. These findings were consistent with unadjusted naïve analyses as well as the sensitivity analyses including adjustment for TP53 mutation and Ki-67 proliferation index. Conclusions: While acknowledging the inherent limitations of an unanchored indirect comparison, our findings suggest that brexu-cel offers clinically and statistically significant efficacy benefits in terms of ORR, CR, and PFS compared to pirtobrutinib in patients with R/R MCL after prior cBTKi therapy. Both treatments were not statistically different in terms of OS and DOR although the estimated hazard ratios indicated a favorable trend for brexu-cel; however, given the relatively shorter follow-up and the high degree of censoring in BRUIN, an updated analysis incorporating longer follow-up data with more events from BRUIN could provide more reliable results. Although efforts were made to ensure a robust approach to the selection of prognostic factors for inclusion in the model, the possibility of some residual confounding variables cannot be completely ruled out. Nevertheless, these results provide valuable insights that may help inform treatment decisions for this population.
Aim: A systematic review and network meta-analysis (NMA) was performed to evaluate the efficacy of first-line treatments for locally recurrent unresectable or metastatic triple-negative breast cancer (TNBC) patients.Materials & methods: Databases were searched for randomized controlled trials evaluating first-line treatments for locally recurrent unresectable or metastatic TNBC patients. NMA was performed to estimate relative treatment effects on overall and progression-free survival between pembrolizumab + chemotherapy and other interventions.Results: NMA including eight trials showed that the relative efficacy of pembrolizumab + chemotherapy was statistically superior to that of other immunotherapy- or chemotherapy-based treatment regimens.Conclusion: Pembrolizumab + chemotherapy confers benefits in survival outcomes versus alternative interventions for the first-line treatment of locally recurrent unresectable or metastatic TNBC patients.
Introduction: Patients with MCL often require multiple lines of therapy and exhibit a generally unfavorable prognosis, particularly following failure of cBTKi therapy. Therapies such as chimeric antigen receptor (CAR) T-cell therapies and non-covalent BTKi therapies have shown promise in improving outcomes. Brexu-cel (formerly known as KTE-X19) is the only CAR T-cell therapy approved in the US for R/R MCL based on results from a phase 2 multicenter, single-arm trial (ZUMA-2; NCT02601313) in patients with R/R MCL who had 1-5 prior therapies, including a BTKi. Pirtobrutinib, a highly selective, non-covalent BTKi, was recently approved in the US for treatment of R/R MCL after at least two lines of systemic therapy including a BTKi, based on ongoing results from a multicenter phase 1/2 study (BRUIN; NCT03740529). In the absence of a direct head-to-head trial comparing brexu-cel and pirtobrutinib, we performed an unanchored MAIC to estimate the relative treatment effects of these therapies in the post-BTKi setting for R/R MCL. Methods: Individual patient-level data were available for ZUMA-2 (N=68; 35.8 months median follow-up as of July 24, 2021 data cut-off) whereas study-level data were available for BRUIN (N=90 in the BTKi pre-treated cohort; 23.5 months median follow-up as of July 29, 2022 data cut-off). Longer-term overall survival (OS) data for ZUMA-2 from the July 23, 2022 data cut-off (46.1 months median follow-up) were available and used. Logistic propensity score models were used to weight the brexu-cel infused population from ZUMA-2 to match the aggregate baseline characteristics of the BTKi pre-treated cohort in BRUIN. These baseline characteristics represented clinically relevant prognostic factors which were pre-specified based on input from clinical experts and data availability. The base-case model incorporated the top five most pertinent factors, which were reported in at least 50% of patients in both trials: blastoid morphology, MCL International Prognostic Index, number of prior lines of therapy, disease stage, and prior autologous stem cell transplantation. A sensitivity analysis additionally incorporated TP53 mutation (missing in >50% of patients in ZUMA-2 and BRUIN) and Ki-67 proliferation index (missing in >50% of patients in BRUIN). Several prognostic factors (response to prior BTKi therapy, response to last therapy, and duration on prior BTKi therapy) could not be considered due to not being reported for BRUIN. The effective sample size was calculated as a measure of the degree of precision after weighting, reflecting the extent of overlap in the distribution of covariates between the trial populations. Relative treatment effects were expressed as odds ratios or hazard ratios with 95% confidence intervals. Outcomes included objective response (ORR), complete response (CR), duration of response (DOR), progression-free survival (PFS), and overall survival (OS). Results: In the base-case MAIC, a significant difference in the odds of ORR and CR in favor of brexu-cel versus pirtobrutinib was observed (Table 1). Similarly, brexu-cel demonstrated a significant improvement in PFS (Table 2). OS and DOR point estimates were in favor of brexu-cel when compared to pirtobrutinib, although not statistically significant. These findings were consistent with unadjusted naïve analyses as well as the sensitivity analyses including adjustment for TP53 mutation and Ki-67 proliferation index. Conclusions: While acknowledging the inherent limitations of an unanchored indirect comparison, our findings suggest that brexu-cel offers clinically and statistically significant efficacy benefits in terms of ORR, CR, and PFS compared to pirtobrutinib in patients with R/R MCL after prior cBTKi therapy. Both treatments were not statistically different in terms of OS and DOR although the estimated hazard ratios indicated a favorable trend for brexu-cel; however, given the relatively shorter follow-up and the high degree of censoring in BRUIN, an updated analysis incorporating longer follow-up data with more events from BRUIN could provide more reliable results. Although efforts were made to ensure a robust approach to the selection of prognostic factors for inclusion in the model, the possibility of some residual confounding variables cannot be completely ruled out. Nevertheless, these results provide valuable insights that may help inform treatment decisions for this population.
BackgroundOverall survival (OS) is the most patient-relevant outcome in oncology; however, in early cancers, large sample sizes and extended follow-up durations are needed to detect statistically significant differences in OS between interventions. Use of early time-to-event outcomes as surrogates for OS can help facilitate faster approval of cancer therapies. In locally advanced head and neck squamous cell carcinoma (LA-HNSCC), event-free survival (EFS) was previously evaluated as a surrogate outcome (Michiels 2009) and demonstrated a strong correlation with OS. The current study aimed to further assess the correlation between EFS and OS in LA-HNSCC using an updated systematic literature review (SLR) focusing on patients receiving definitive chemoradiation therapy (CRT).MethodsAn SLR was conducted on May 27, 2021 to identify randomized controlled trials assessing radiotherapy alone or CRT in the target population. Studies assessing CRT and reporting hazard ratios (HRs) or Kaplan-Meier data for OS and EFS were eligible for the analysis. CRT included any systemic treatments administered concurrently or sequentially with radiation therapy. Trial-level EFS/OS correlations were assessed using regression models, and the relationship strength was measured with Pearson correlation coefficient (R). Correlations were assessed across all CRT trials and in trial subsets assessing concurrent CRT, sequential CRT, RT+cisplatin, targeted therapies and intensity-modulated RT. Subgroup analysis was conducted among trials with similar EFS definitions (i.e. EFS including disease progression and/or death as events) and longer length of follow-up (i.e.≥ 5 years).ResultsThe SLR identified 149 trials of which 31 were included in the analysis. A strong correlation between EFS and OS was observed in the overall analysis of all CRT trials (R=0.85, 95% confidence interval: 0.72-0.93). Similar results were obtained in the sensitivity analyses of trials assessing concurrent CRT (R=0.88), sequential CRT (R=0.83), RT+cisplatin (R=0.82), targeted therapies (R=0.83) and intensity-modulated RT (R=0.86), as well as in trials with similar EFS definitions (R=0.87), with longer follow-up (R=0.81).ConclusionEFS was strongly correlated with OS in this trial-level analysis. Future research using individual patient-level data can further investigate if EFS could be considered a suitable early clinical endpoint for evaluation of CRT regimens in LA-HNSCC patients receiving definitive CRT.
"HSR22-145: Pembrolizumab Plus Chemotherapy for First-Line Treatment of Advanced Triple-Negative Breast Cancer – A Network Meta-Analysis" published on 31 Mar 2022 by National Comprehensive Cancer Network.
Collagen is the main component of structural mammalian tissues. In tendons, collagen is arranged into fibrils with diameters ranging from 30 nm to 500 nm. These fibrils are further assembled into fibres several micrometers in diameter. Upon excessive thermal or mechanical stress, damage may occur in tendons at all levels of the structural hierarchy. At the fibril level, reported damage includes swelling and the appearance of discrete sites of plastic deformation that are best observed at the nanometer-scale using, for example, scanning electron microscopy. In this paper, digital in-line holographic microscopy is used for quantitative phase imaging to measure both the refractive index and diameter of collagen fibres in a water suspension in the native state, after thermal treatments, and after mechanical overload. Fibres extracted from tendons and subsequently exposed to 70 degrees C for 5, 15, or 30 minutes show a significant decrease in refractive index and an increase in diameter. A significant increase in refractive index is also observed for fibres extracted from tendons that were subjected to five tensile overload cycles.