| Literature DB >> 31053945 |
Xiaoying Chen1, Cheryl Li2, Reginald Ewesuedo3, Donghua Yin4.
Abstract
PURPOSE: PF-05280014 is a biosimilar to trastuzumab (Herceptin®). Following demonstration of pharmacokinetic (PK) similarity in healthy volunteers, a comparative clinical study in patients with HER2-positive metastatic breast cancer (mBC) compared the efficacy, safety and immunogenicity of PF-05280014 and trastuzumab sourced from the EU (trastuzumab-EU), both with paclitaxel.Entities:
Keywords: Biosimilar; Human epidermal growth factor receptor-2-positive metastatic breast cancer; NONMEM; Pharmacokinetics; Population pharmacokinetics; Trastuzumab
Mesh:
Substances:
Year: 2019 PMID: 31053945 PMCID: PMC6586910 DOI: 10.1007/s00280-019-03850-1
Source DB: PubMed Journal: Cancer Chemother Pharmacol ISSN: 0344-5704 Impact factor: 3.333
Covariates included in the population PK analysis
| PK parameter | Covariate |
|---|---|
| CL | BWT, HER2STAT, JAPA, RACE_STAT, ADA_BL, ECOG and N_META |
|
| BWT, HER2STAT, JAPA, RACE_STAT, ADA_BL, ECOG and N_META |
ADA antidrug antibody, ADA_BL baseline ADA status, BWT baseline body weight, CL linear clearance, ECOG baseline Eastern Cooperative Oncology Group status, HER2STAT baseline human epidermal growth factor receptor-2 (HER2) concentration, JAPA Japanese vs. non-Japanese, N_META number of metastatic sites, PK pharmacokinetics, RACE_STAT Asian vs. non-Asian, V volume of distribution in central compartment
Parameter estimates and confidence intervals from the final models
| Parameter | PF-05280014 | Trastuzumab-EU | ||
|---|---|---|---|---|
| NONMEM results | Nonparametric bootstrap | NONMEM results | Nonparametric bootstrap | |
| Estimate (95% CI)a | Estimate (median) (95% CI)b | Estimate (95% CI)a | Estimate (median) (95% CI)c | |
| 3.15 (2.99–3.31) | 3.15 (3.04–3.27) | 3.10 (2.91–3.29) | 3.10 (2.94–3.27) | |
| 5.55 (5.24–5.86) | 5.59 (4.80–6.59) | 5.66 (5.12–6.20) | 5.65 (4.70–6.71) | |
| CL (L/h) | 0.0104 (0.0098–0.0110) | 0.0103 (0.0099–0.0109) | 0.00948 (0.009–0.010) | 0.00948 (0.0091–0.0099) |
| 0.0194 (0.0160–0.0228) | 0.0192 (0.0167–0.0224) | 0.0186 (0.017–0.020) | 0.0186 (0.0164–0.0228) | |
| BWT effect on | 0.507 (0.316–0.698) | 0.513 (0.348–0.666) | 0.512 (0.026–0.998) | 0.518 (0.295–0.725) |
| BWT effect on CL | 0.637 (0.450–0.824) | 0.638 (0.474–0.801) | 0.673 (0.430–0.916) | 0.672 (0.494–0.838) |
| 0.0405 (20) (0.011–0.070) | 0.040 (0.013–0.076) | 0.123 (35) (0.061–0.185) | 0.122 (0.064–0.189) | |
| 1.06 (103) (0.770–1.350) | 1.057 (0.730–1.361) | 1.08 (104) (0.772–1.388) | 1.056 (0.743–1.407) | |
| CL ω2 (%CV) | 0.0934 (31) (0.072–0.115) | 0.091 (0.070–0.121) | 0.0687 (26) (0.054–0.084) | 0.067 (0.053–0.096) |
| 0.504 (71) (0.332–0.676) | 0.491 (0.296–0.704) | 0.528 (73) (0.339–0.717) | 0.519 (0.336–0.762) | |
| Res Add Err | 0.272 (0.243–0.301) | 0.271 (0.245–0.301) | 0.292 (0.249–0.335) | 0.292 (0.255–0.331) |
BWT baseline body weight, CI confidence interval, CL systemic clearance, %CV percent coefficient of variation, NONMEM nonlinear mixed effect modeling, Q intercompartment clearance, Res Add Err residual additive error, SE standard error, trastuzumab-EU trastuzumab sourced from the European Union, V volume of distribution in central compartment, V volume of distribution in peripheral compartment
aThe 95% CI was manually calculated using equation: estimate ± 1.96 × SE. Standard error was obtained from the covariance step using the R/S matrix in NONMEM
bThe bootstrap runs which had successful minimization (916 out of 1000) were included in the calculation of the 95% CI. The 95% CI represent 2.5th to 97.5th percentiles of the included bootstrap estimates
cThe bootstrap runs which had successful minimization (932 out of 1000) were included in the calculation of the 95% CI. The 95% CI represent 2.5th to 97.5th percentiles of the included bootstrap estimates
Fig. 1Diagnostic plots for final models of a PF-05280014 and b trastuzumab-EU groups. CWRES conditional weighted residuals, LOWESS locally weighted scatterplot smoothing trend line, trastuzumab-EU trastuzumab sourced from the European Union. In the scatter plots of observations versus predictions, the solid line and dashed line show the reference line (diagonal line) and linear regression line based on the individual data points, respectively. In the scatter plots of residuals, the solid line and dashed line show reference line (y = 0) and LOWESS, respectively. Observed concentrations and individual predictions were log-transformed
Fig. 2Visual predictive check for the final a PF-05280014 and b trastuzumab-EU models. Trastuzumab-EU trastuzumab sourced from the European Union. Blue circles represent the observed data and the red lines represent the median (solid line), 2.5th percentile (dashed line), and 97.5th percentile (dashed line) of the observed data. For 1000 simulated trials, the median, 2.5th percentile and 97.5th percentile of simulated concentrations were calculated for each time bin and are presented by black lines. The 95% confidence intervals for the simulated median and each percentile are shown by light pink and light blue shaded areas
Fig. 3Simulated concentrations for PF-05280014 and trastuzumab-EU using the final models. Trastuzumab-EU trastuzumab sourced from the European Union. The nominal time points for simulation were plotted on the x-axis. The notation “CxDyT” stands for “Cycle x Day y Trough” and “CxDyP” stands for “Cycle x Day y Peak”. The trough concentration is the simulated pre-dose concentration; the peak concentration is the simulated concentration at 1 h after the end of infusion
Fig. 4Observed concentrations in Japanese patients vs. visual predictive check in all patients, stratified by a PF-05280014 and b trastuzumab-EU treatment groups. Trastuzumab-EU trastuzumab sourced from the European Union. The black dots represent the observed concentration in Japanese patients. The black lines represent the median (solid line), 2.5th percentile (dashed line) and 97.5th percentile (dashed line) of the simulated concentrations from 1000 simulated trials