| Literature DB >> 25270361 |
Allen Cohn1, Michael M Lahn2, Kristen E Williams2, Ann L Cleverly3, Celine Pitou3, Sunil K Kadam2, Mark W Farmen2, Durisala Desaiah2, Robert Raju4, Paul Conkling5, Donald Richards6.
Abstract
Transforming growth factor β (TGF-β) plays an important role in cancer. Monoclonal antibodies (mAb) designed to specifically block the TGF-β ligands, are expected to inhibit tumor progression in patients with metastatic cancer. TβM1 is a humanized mAb optimized for neutralizing activity against TGF-β1. The objective of this clinical trial was to assess the safety and tolerability of TβM1 in patients with metastatic cancer. In this phase I, uncontrolled, non-randomized, dose-escalation study, 18 eligible adult patients who had measurable disease per RECIST and a performance status of ≤ 2 on the ECOG scale were administered TβM1 intravenously over 10 min at doses of 20, 60, 120 and 240 mg on day 1 of each 28-day cycle. Safety was assessed by adverse events (as defined by CTCAE version 3.0) and possible relationship to study drug, dose-limiting toxicities and laboratory changes. Systemic drug exposure and pharmacodynamic (PD) parameters were assessed. TβM1 was safe when administered once monthly. The pharmacokinetic (PK) profile was consistent with a mAb with a mean elimination half-life approximately 9 days. Although anticipated changes in PD markers such as serum VEGF, bFGF and mRNA expression of SMAD7 were observed in whole-blood, suggesting activity of TβM1 on the targeted pathway, these changes were not consistent to represent a PD effect. Additionally, despite the presence of an activated TGF-β1 expression signature in patients' whole blood, the short dosing duration did not translate into significant antitumor effect in the small number of patients investigated in this study.Entities:
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Year: 2014 PMID: 25270361 PMCID: PMC4215585 DOI: 10.3892/ijo.2014.2679
Source DB: PubMed Journal: Int J Oncol ISSN: 1019-6439 Impact factor: 5.650
Patient demographics and disease characteristics of all enrolled and treated patients by dose.
| Part A | |||||
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| Parameter | 20 mg, N=3 | 60 mg, N=8 | 120 mg, N=3 | 240 mg, N=4 | Total, N=18 |
| Age, years | |||||
| Mean (SD) | 73 (7.6) | 61 (20.7) | 61 (12.1) | 57 (15.5) | 62 (16.5) |
| Median (range) | 75 (65, 80) | 71 (23, 81) | 65 (47, 70) | 53 (43, 79) | 68 (23, 81) |
| Gender, n (%) | |||||
| Female | 2 (67) | 4 (50) | 1 (33) | 2 (50) | 9 (50) |
| Male | 1 (33) | 4 (50) | 2 (67) | 2 (50) | 9 (50) |
| Race, n (%) | |||||
| Caucasian | 3 (100) | 8 (100) | 2 (67) | 4 (100) | 17 (94) |
| African American | 0 (0) | 0 (0) | 1 (33) | 0 (0) | 1 (6) |
| ECOG PS, n (%) | |||||
| 0 | 0 (0) | 1 (13) | 1 (33) | 1 (25) | 3 (17) |
| 1 | 3 (100) | 7 (88) | 2 (67) | 3 (75) | 15 (83) |
| Basis of initial pathological diagnosis, n (%) | |||||
| Histopathological | 3 (100) | 7 (88) | 3 (100) | 4 (100) | 17 (94) |
| Cytological | 0 (0) | 1 (13) | 0 (0) | 0 (0) | 1 (6) |
| Initial pathological diagnosis, n (%) | |||||
| Adenocarcinoma, colon | 2 (67) | 2 (25) | 2 (67) | 0 (0) | 6 (33) |
| Adenocarcinoma, rectum | 0 (0) | 1 (13) | 1 (33) | 1 (25) | 3 (17) |
| Sarcoma, NOS | 1 (33) | 1 (13) | 0 (0) | 0 (0) | 2 (11) |
| Other | 0 (0) | 4 (50) | 0 (0) | 3 (75) | 7 (39) |
Others include 1 each are: adenocarcinoma of gastric, adenocarcinoma of pancreas, carcinoma of breast, carcinoma of renal cell, carcinoma of cervix squamous cell, carcinoma of lung squamous cell, carcinoma of urothelial transitional cell.
N, total enrolled and treated population; n, number of patients in the group; SD, standard deviation; ECOG PS, Eastern Cooperative Oncology Group Performance Status; NOS, not otherwise specified.
Summary of adverse events in all enrolled and treated patients by dose.
| 20 mg, N=3 | 60 mg, N=8 | 120 mg, N=3 | 240 mg, N=4 | Total, N=18 | |
|---|---|---|---|---|---|
| Patients with ≥1 AE | 3 (100) | 8 (100) | 3 (100) | 4 (100) | 18 (100) |
| Possibly related to study drug | 2 (67) | 4 (50) | 1 (33) | 2 (50) | 9 (50) |
| Patients with ≥1 TEAE | 3 (100) | 8 (100) | 3 (100) | 4 (100) | 18 (100) |
| Possibly related to study drug | 2 (67) | 4 (50) | 1 (33) | 2 (50) | 9 (50) |
| Patients with ≥1 Grade 3/4 CTCAE | 1 (33) | 8 (100) | 0 (0) | 4 (100) | 13 (72) |
| Possibly related to study drug | 0 (0) | 1 (13) | 0 (0) | 1 (25) | 2 (11) |
| Patients with ≥1 SAE | 0 (0) | 6 (75) | 0 (0) | 2 (50) | 8 (44) |
| Possibly related to study drug | 0 (0) | 1 (13) | 0 (0) | 1 (25) | 2 (11) |
| Patients who discontinued due to AE | 0 (0) | 0 (0) | 0 (0) | 0 (0) | 0 (0) |
| Patients who discontinued due to SAE | 0 (0) | 0 (0) | 0 (0) | 0 (0) | 0 (0) |
AE, adverse event; N, total safety population size; n, number of patients with at least one adverse event per event type; SAE, serious adverse event; TEAE, treatment-emergent adverse event.
Pharmacokinetics parameters per dose group and per cycle reported as median (range) or geomean and CV% when n >3.
| 20 mg | 60 mg | 120 mg | 240 mg | ||||||||
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| Parameter | Cycle 1 | Cycle 2 | Cycle 1 | Cycle 2 | Cycle 3 | Cycle 1 | Cycle 2 | Cycle 3 | Cycle 4 | Cycle 1 | Cycle 2 |
| T1/2, (day) | 10.50 (6.30–14.00) | 11.50 (7.63–13.40) | 7.63 (40.51) | 8.21 (18.02) | 10.04 | 8.46 (50.64) | 8.88 (22.30) | 11.90 | 15.38 | 7.33 (8.23) | 5.67 (4.83–6.54) |
| AUC0-∞ (μg·h/ml) | 1,490 (468–1,722) | 1,313 (446–2,004) | 2,922 (43.80) | 3,303 (42.90) | 2,656 | 5,117 (33.60) | 5,061 (21.70) | 4,889 | 6,707 | 8,987 (31.00) | 8,118 (6,025–10,210) |
Due to a less intensive sampling time, the values should not be compared with cycles 1 and 2. AUC0-∞, area under the concentration-time curve from zero extrapolated to infinity.
Statistical analysis of dose proportionality for AUC0-∞.
| PK variable | Doses ratio | Predicted geometric mean PK parameter values | Rdnm 90% confidence interval |
|---|---|---|---|
| AUC0-∞ | 12 | 1,112 to 9,232 | 0.69 (0.41, 1.17) |
| 6 | 0.77 (0.52, 1.12) | ||
| 4 | 0.81 (0.61, 1.09) | ||
| 2 | 0.90 (0.78, 1.04) |
AUC0-∞, area under the concentration-time curve from zero extrapolated to infinity; Cmax, maximum plasma concentration; PK, pharmacokinetics; Rdnm, ratio of model-predicted mean values for high and low dose, normalized for dose.
Figure 1Individual patient profiles of multianalyte immunoassay panel test results over sampling time points. (A) Levels of IL-2 at different doses (20, 60, 120 and 240 mg) of TβM1. The levels of these biomarkers were measured at different time points after administration as shown on X-axis. Time point 1, ≤7 days prior to first dose; time point 2, cycle 1, predose; time point 3, cycle 1, 2 h post-dose; time point 4, cycle 1, 27th day; time point 5, cycle 2, 2 h post-dose; time point 6, cycle 2, 27th day. (B) Levels of bFGF at different doses (20, 60, 120 and 240 mg) of TβM1. The levels of these biomarkers were measured at different time points after administration as shown on X-axis. Time point 1, ≤7 days prior to first dose; time point 2, cycle 1, predose; time point 3, cycle 1, 2 h post-dose; time point 4, cycle 1, 27th day; time point 5, cycle 2, 2 h post-dose; time point 6, cycle 2, 27th day. (C) Levels of VEGF at different doses (20, 60, 120 and 240 mg) of TβM1. The levels of these biomarkers were measured at different time points after administration as shown on X-axis. Time point 1, ≤7 days prior to first dose; time point 2, cycle 1, predose; time point 3, cycle 1, 2 h post-dose; time point 4, cycle 1, 27th day; time point 5, cycle 2, 2 h post-dose; time point 6, cycle 2, 27th day. IL-2, interleukin-2; bFGF, basic fibroblast growth factor; VEGF, vascular endothelial growth factor.
Figure 2Hierarchical clustered heat map representation of the expression signals from 37 genes associated with systemic TGF-β1 pathway activation (study samples are designated with an underlying blue bar). Each column represents expression signals for an individual sample for genes designated to the right. Samples designated as Tempus with an underlying green bar were from normal subjects and were used for bioanalytical comparison (samples collected from healthy subject in a previously published study). The adjacent box plot is a representation of the 37-gene calculated expression index values for normal (Tempus) samples and patient samples. The upper and lower lines of the box represent the 75th and 25th percentile and the line within the box represents the median value. The outward whiskers represent the upper and lower ranges.
Figure 3Change in the expression of genes as a function of dose in patient whole blood as measured by qRT-PCR analysis for TβM1 administered over cycle 1 and cycle 2 (20, 60, 120 and 240 mg). (A) SMAD7; (B) TMEPA1; (C) OCIAD2 and (D) CA1.