Characteristics of patients who received prior treatment with BRAF and/or MEK inhibitors (N=10). A table summarizing the characteristics, PTEN status and best response in patients who previously received BRAF and/or MEK inhibitors (N=10).
Tucatinib is a highly selective human epidermal growth factor receptor 2 (HER2) -directed tyrosine kinase inhibitor approved in multiple countries for metastatic HER2-positive breast cancer and in the US for metastatic HER2-postive metastatic colorectal cancer. This phase Ⅰ study (N=36) compared the pharmacokinetic (PK) and safety profiles of tucatinib administered at 50-, 150-, and 300-mg doses taken twice daily orally in healthy Japanese (n=18[n=6 per tucatinib dose cohort]) and Caucasian volunteers (n=18[n=6 per tucatinib dose cohort]) to assess ethnicity effects on PK and dose proportionality of tucatinib. Ethnicity effects between both populations were evaluated using an analysis of covariance (ANCOVA) model and dose proportionality of tucatinib was assessed using a log-transformed linear regression model. Tucatinib steady-state exposure (AUCss) and maximum plasma concentration (Cmax) geometric mean values were similar between Japanese and Caucasian volunteers, with ANCOVA-adjusted geometric mean ratios (90% confidence intervals) of 2.63 (1.04, 6.62), 1.11 (0.76, 1.62), and 1.33 (0.91, 1.95) for Cmax and 1.97 (0.85, 4.56), 1.05 (0.70, 1.58), and 1.04 (0.72, 1.49) for AUCss in the tucatinib 50-, 150-, and 300-mg cohorts, respectively. Thirty-three treatment-emergent adverse events (TEAEs) in 13 Caucasian volunteers and 2 TEAEs in 2 Japanese volunteers were reported. All TEAEs were grade 1, and the majority resolved by the end of study. At the approved therapeutic dose of 300 mg twice daily, tucatinib had a manageable safety profile and exposures were similar between Japanese and Caucasian volunteers. These findings indicate there is no need for dose alteration of tucatinib based on ethnicity.
Tucatinib is approved for treatment of human epidermal growth factor receptor 2-positive metastatic breast cancer. Understanding potential drug–drug interactions (DDIs) informs proper dosing when co-administering tucatinib with other therapies. The aim of this study was to evaluate DDIs between tucatinib and metabolizing enzymes and transporters in healthy volunteers. Parts A–C assessed the impact of itraconazole (cytochrome P450 [CYP] 3A4 inhibitor), rifampin (CYP3A4/CYP2C8 inducer), or gemfibrozil (CYP2C8 inhibitor) on the pharmacokinetics of a single 300 mg dose of tucatinib administered orally and its primary metabolite, ONT-993. Parts D and E assessed the effect of steady-state tucatinib on the pharmacokinetics of repaglinide (CYP2C8 substrate), tolbutamide (CYP2C9 substrate), midazolam (CYP3A4 substrate), and digoxin (P-glycoprotein substrate). Tucatinib area under the concentration–time curve from time 0 extrapolated to infinity (AUC0–inf) increased by ~ 1.3- and 3.0-fold with itraconazole and gemfibrozil, respectively, and decreased by 48% with rifampin, indicating that tucatinib is metabolized primarily by CYP2C8, and to a lesser extent via CYP3A. Tucatinib was a strong inhibitor of CYP3A (midazolam AUC0–inf increased 5.7-fold), a weak inhibitor of CYP2C8 and P-glycoprotein, and had no impact on CYP2C9-mediated metabolism in humans. Tucatinib was well tolerated, alone and with co-administered drugs. The potential DDIs identified here may be mitigated by avoiding concomitant use of tucatinib with strong CYP3A inducers, moderate CYP2C8 inducers, CYP3A substrates with a narrow therapeutic window (modifying substrate dose where concomitant use is unavoidable), and strong CYP2C8 inhibitors (decreasing tucatinib dose where concomitant use is unavoidable), or by reducing the dose of P-glycoprotein substrates with a narrow therapeutic window. This trial (NCT03723395) was registered on October 29, 2018.
Background: Tucatinib (TUC), approved in multiple regions for HER2+ metastatic breast cancer, is a highly selective HER2-directed tyrosine kinase inhibitor with minimal EGFR inhibition. TUC is being developed as a novel therapy for patients with HER2+ metastatic breast cancer, colorectal cancer, and gastric cancer. In xenograft models of HER2+ and HER2-mutated tumors, dual targeting of HER2 with TUC and trastuzumab showed superior activity to either agent alone. Somatic HER2 mutations occur in approximately 3% of breast cancers, mostly in patients with hormone receptor-positive disease and the lobular sub-type. HER2 mutations lead to enhanced tyrosine kinase activity and tumorigenesis in preclinical models and have been postulated as a mechanism of endocrine therapy resistance. The SGNTUC-019 basket study (NCT04579380) is evaluating TUC in combination with trastuzumab in patients with HER2+ or HER2-mutated solid tumors, including a cohort of patients with locally advanced unresectable or metastatic breast cancer that is HER2-mutated and not overexpressed/amplified. Trial Design: SGNTUC-019 is a multi-cohort, open-label, international Phase 2 study evaluating patients with previously treated solid tumors displaying HER2 overexpression/amplification or activating mutations. Eligible breast cancer patients must have HER2-mutated, locally advanced unresectable or metastatic disease with progression on or after ≥1 prior line of therapy (chemotherapy, endocrine or targeted therapy) in the locally advanced or metastatic disease setting. Additionally, an ECOG Performance Status of ≤1; adequate hepatic, hematological, renal, and cardiac functions; and no previous HER2-directed therapy are required for enrollment. For eligibility, HER2 mutations can be demonstrated in a previous or on-study next-generation sequencing (NGS) assay of circulating tumor DNA or a previous tissue NGS assay. The breast cancer cohort will enroll 30 response-evaluable patients with HER2-mutated disease. Patients with HER2+ (overexpression/amplification) breast cancer will not be enrolled. The primary objective in each cohort is antitumor activity. The primary endpoint is a confirmed objective response rate, and secondary endpoints are the disease control rate, duration of response, progression-free survival, and overall survival. Safety and efficacy endpoints will be summarized descriptively. For response rates, the 2-sided exact interval using the Clopper-Pearson method will be calculated. Patients will receive TUC 300 mg orally twice a day and trastuzumab 8 mg/kg intravenously on Cycle 1 Day 1 and 6 mg/kg every 21 days from Cycle 2 Day 1. Hormone receptor-positive HER2-mutated breast cancer patients will also receive fulvestrant 500 mg intramuscularly every 4 weeks and on Cycle 1 Day 15. Disease assessments per RECIST v1.1 are every 6 weeks for 24 weeks, then every 12 weeks. Patients in the breast cancer cohort will undergo baseline brain magnetic resonance imaging, and those patients with brain metastases may be eligible for the study. Quality of life will be evaluated using EQ-5D-5L every 2 cycles. Enrollment began in December 2020 and is ongoing globally. Citation Format: Alicia Okines, Paula R. Pohlmann, Jorge Ramos, Luke Walker, Erika Hamilton. SGNTUC-019: Phase 2 basket study of tucatinib and trastuzumab in previously treated solid tumors with HER2 alterations: HER2-mutated breast cancer cohort (ongoing clinical trial) [abstract]. In: Proceedings of the 2021 San Antonio Breast Cancer Symposium; 2021 Dec 7-10; San Antonio, TX. Philadelphia (PA): AACR; Cancer Res 2022;82(4 Suppl):Abstract nr OT1-15-01.
Tucatinib, a highly selective tyrosine kinase inhibitor of the human epidermal growth factor receptor 2 (HER2) approved for HER2-positive metastatic breast cancer, is cleared by hepatic metabolism and subsequent biliary excretion. Liver disease can alter drug disposition and pharmacokinetics (PK). The objective of this study is to characterize PK and safety of tucatinib in volunteers with hepatic impairment. This Phase 1 study compared the PK and safety of a single 300-mg oral dose of tucatinib in volunteers with mild, moderate, and severe hepatic impairment (Child-Pugh A/B/C) to healthy volunteers matched for sex, age, and body mass index. Pharmacokinetic parameters were determined for tucatinib and its predominant metabolite ONT-993. Compared with healthy volunteers, tucatinib exposure was similar in volunteers with mild impairment and increased in those with moderate or severe impairment without reaching statistical significance. Respective fold increases in geometric mean ratios for AUC0-t and AUC0-∞ were 1.13 and 1.15 in moderate impairment, and 1.43 and 1.61 in severe impairment compared with healthy volunteers. Three treatment-emergent adverse events (nausea, dermatitis, and increased transaminases) were reported in three volunteers and showed no obvious association with hepatic impairment status. The 1.61-fold geometric mean ratio AUC0-∞ increase in volunteers with severe hepatic impairment supports the recommendation in the tucatinib prescribing information to reduce the dose from 300 mg twice daily to 200 mg twice daily in patients with severe impairment; no dose adjustment is recommended for patients with mild or moderate hepatic impairment. This trial (NCT03722823) was registered on October 29, 2018.
Abstract Background: Tucatinib (TUKYSA®) is a selective HER2-targeted tyrosine kinase inhibitor indicated in combination with trastuzumab and capecitabine for adult patients with metastatic HER2+ breast cancer who have received ≥1 prior HER2-based regimen, including patients with brain metastases. Tucatinib is cleared via CYP2C8-mediated metabolism, to a lesser extent by CYP3A, and biliary excretion. Impaired hepatic function (HI) can cause alterations in drug disposition and pharmacokinetics (PK), thus characterizing PK in subjects with HI was necessary to inform dosing recommendations. ONT-380-009 was a clinical study conducted to evaluate the PK of tucatinib in volunteers with HI based on Child-Pugh (CP) score compared to matched healthy subject controls. Methods: Volunteers (N=37) at 4 centers were enrolled in the study. Subjects with mild (CP Class A; n=8), moderate (CP Class B; n=8) or severe (CP Class C; n=6) HI were matched to subjects with normal hepatic function (n=15) by age, BMI and sex. Tucatinib was administered as a single 300 mg oral dose. Plasma samples were collected for PK analysis and tucatinib concentrations measured using validated LC-MS/MS methods. The PK and safety profiles between each HI group and matched controls were compared. Results: Tucatinib single dose PK was similar between subjects with mild HI and matched controls (AUCinf and Cmax geometric mean ratios (GMR) [90% CI] were 99.0% [76.3%, 128%] and 104% [61.6%, 175%], respectively). Tucatinib plasma exposures were generally higher in subjects with moderate or severe HI compared to matched controls (AUCinf GMR [90% CI] were 115% [65.3%, 202%] and 161% [67.3%, 385%], respectively; Cmax GMR [90% CI] were 88.5% [42.1%, 186%] and 117% [36.6%, 377%], respectively). Changes were highly variable, and ratios crossed 1.0 (or 100%). The observed trend of increased plasma exposure for tucatinib by degree of HI did not reach statistical significance due to high inter-subject variability. Three subjects experienced a total of two Grade 1 (nausea, dermatitis) and one Grade 2 (increased transaminases) treatment-emergent adverse events (TEAEs) in the study, two of which were considered tucatinib-related. All three TEAEs recovered. No TEAEs were observed in patients with moderate or severe hepatic impairment. Conclusions: Subjects with mild HI had similar tucatinib exposures compared to subjects with normal hepatic function. Tucatinib exposure was generally increased in subjects with moderate and severe HI, however GMR values were less than 2-fold and exhibited large inter-subject variability. Overall, a single 300 mg oral dose of tucatinib was considered safe and well tolerated in this study for subjects with normal hepatic function or with mild, moderate, or severe HI. The 1.6-fold GMR AUCinf increase in severe HI subjects support dose reduction from 300 mg BID to 200 mg BID in those subjects; no dose adjustment is recommended for subjects with mild or moderate HI. Citation Format: Ariel R. Topletz-Erickson, Anthony Lee, JoAl G. Mayor, Hao Sun, Layth I. Abdulrasool, Evelyn L. Rustia, Luke Walker, Christopher J. Endres. Pharmacokinetics of tucatinib in healthy and hepatically-impaired volunteers [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2021; 2021 Apr 10-15 and May 17-21. Philadelphia (PA): AACR; Cancer Res 2021;81(13_Suppl):Abstract nr 1371.
Tucatinib (TUC), approved in the US for metastatic HER2+ breast cancer (MBC), including patients (pts) with brain metastases (BM), is an oral tyrosine kinase inhibitor (TKI) highly selective for HER2 with minimal inhibition of EGFR. Ado-trastuzumab emtansine (T-DM1), approved for treatment (tx) of pts with HER2+ MBC after trastuzumab (Tras) and a taxane, has led to significant improvements in progression-free survival (PFS) and overall survival (OS). Still, further improvements are needed, including pts with active BM.
TPS3151 Background: Tucatinib (TUC) is a highly selective HER2-directed TKI approved in combination with trastuzumab (Tras) and capecitabine (Cape) for HER2 overexpressed/amplified (HER2+) metastatic breast cancer (BC), based on a statistically significant and clinically meaningful PFS, OS, and ORR benefit over Tras and Cape. In xenograft models of HER2+ and HER2-mutated (HER2-mut) tumors, dual targeting of HER2 with TUC and Tras showed superior activity to either agent alone. While various HER2-directed agents have been evaluated in HER2+ and HER2-mut tumors, there are no approved HER2 therapies outside of breast and gastric cancers. The SGNTUC-019 basket study is evaluating TUC combined with Tras in patients (pts) with HER2+ or HER2-mut locally-advanced unresectable or metastatic solid tumors. Methods: SGNTUC-019 (NCT04579380) is a multi-cohort, open-label, international phase 2 study. Eligible pts must have progressed on or after the last systemic therapy for advanced disease. Metastatic cervical cancer: must have received platinum-based chemotherapy ± bevacizumab; hormone receptor positive (HR+) HER2-mut BC: must have received a prior CDK4/6 inhibitor. Pts must be ≥18 years old, with ECOG PS ≤1, adequate hepatic, hematological, renal, coagulation, and cardiac function, and no prior HER2-directed therapy (except Tras for uterine serous carcinoma). For eligibility, HER2 alterations can be demonstrated by HER2+ in tumor tissue by prior IHC/ISH (IHC 3+/signal ratio ≥2.0 or gene copy number >6), or by HER2 amplification/mutation in a prior or on-study NGS assay of ctDNA or prior tissue NGS assay. Pts with HER2+ disease will be enrolled in cohorts for cervical, uterine, biliary tract, and urothelial cancers, non-squamous NSCLC, and other solid tumors (except GEC, BC, and CRC). Pts with HER2-mut disease will be enrolled in cohorts for non-squamous NSCLC, BC, and other solid tumors. Except for solid tumor and BC cohorts, 12 RECIST 1.1 evaluable pts will be enrolled in each cohort. If ≥2 responses are observed, the cohort will be expanded to a total of 30 pts. Other solid tumor and BC cohorts will enroll 30 pts in a single stage. If justified, additional HER2+ or HER2-mut disease-specific cohorts may be opened. Approximately 162-270 pts are planned. The primary objective is antitumor activity in each cohort, with confirmed ORR per investigator as primary endpoint, and disease control rate, duration of response, PFS, and OS as secondary endpoints. Pts will receive TUC 300 mg orally twice daily and Tras 8 mg/kg IV on Cycle 1 Day 1 and 6 mg/kg q21 days from Cycle 2 Day 1. HR+ BC pts will also receive fulvestrant 500 mg IM every 4 weeks and C1 D15. Disease assessments per RECIST 1.1 will occur q6 weeks for 24 weeks, then q12 weeks. TUC PK will be evaluated in all pts in Cycles 2-6. QoL is evaluated q2 cycle using EQ-5D-5L. Sites are open in the US; EU and Asia will be opened. Enrollment began in Dec 2020. Clinical trial information: NCT04579380.
Background: Tucatinib (TUKYSA®) is a selective HER2-targeted tyrosine kinase inhibitor indicated in combination with trastuzumab and capecitabine for adult patients with metastatic HER2+ breast cancer who have received ≥1 prior HER2-based regimen, including patients with brain metastases. Tucatinib is cleared via CYP2C8-mediated metabolism, to a lesser extent by CYP3A, and biliary excretion. Impaired hepatic function (HI) can cause alterations in drug disposition and pharmacokinetics (PK), thus characterizing PK in subjects with HI was necessary to inform dosing recommendations. ONT-380-009 was a clinical study conducted to evaluate the PK of tucatinib in volunteers with HI based on Child-Pugh (CP) score compared to matched healthy subject controls. Methods: Volunteers (N=37) at 4 centers were enrolled in the study. Subjects with mild (CP Class A; n=8), moderate (CP Class B; n=8) or severe (CP Class C; n=6) HI were matched to subjects with normal hepatic function (n=15) by age, BMI and sex. Tucatinib was administered as a single 300 mg oral dose. Plasma samples were collected for PK analysis and tucatinib concentrations measured using validated LC-MS/MS methods. The PK and safety profiles between each HI group and matched controls were compared. Results: Tucatinib single dose PK was similar between subjects with mild HI and matched controls (AUCinf and Cmax geometric mean ratios (GMR) [90% CI] were 99.0% [76.3%, 128%] and 104% [61.6%, 175%], respectively). Tucatinib plasma exposures were generally higher in subjects with moderate or severe HI compared to matched controls (AUCinf GMR [90% CI] were 115% [65.3%, 202%] and 161% [67.3%, 385%], respectively; Cmax GMR [90% CI] were 88.5% [42.1%, 186%] and 117% [36.6%, 377%], respectively). Changes were highly variable, and ratios crossed 1.0 (or 100%). The observed trend of increased plasma exposure for tucatinib by degree of HI did not reach statistical significance due to high inter-subject variability. Three subjects experienced a total of two Grade 1 (nausea, dermatitis) and one Grade 2 (increased transaminases) treatment-emergent adverse events (TEAEs) in the study, two of which were considered tucatinib-related. All three TEAEs recovered. No TEAEs were observed in patients with moderate or severe hepatic impairment. Conclusions: Subjects with mild HI had similar tucatinib exposures compared to subjects with normal hepatic function. Tucatinib exposure was generally increased in subjects with moderate and severe HI, however GMR values were less than 2-fold and exhibited large inter-subject variability. Overall, a single 300 mg oral dose of tucatinib was considered safe and well tolerated in this study for subjects with normal hepatic function or with mild, moderate, or severe HI. The 1.6-fold GMR AUCinf increase in severe HI subjects support dose reduction from 300 mg BID to 200 mg BID in those subjects; no dose adjustment is recommended for subjects with mild or moderate HI. Citation Format: Ariel R. Topletz-Erickson, Anthony Lee, JoAl G. Mayor, Hao Sun, Layth I. Abdulrasool, Evelyn L. Rustia, Luke Walker, Christopher J. Endres. Pharmacokinetics of tucatinib in healthy and hepatically-impaired volunteers [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2021; 2021 Apr 10-15 and May 17-21. Philadelphia (PA): AACR; Cancer Res 2021;81(13_Suppl):Abstract nr 1371.
Abstract Background - Tucatinib (TUC), an oral tyrosine kinase inhibitor (TKI) highly selective for HER2 with minimal inhibition of EGFR, is approved in the US for use in combination with trastuzumab (Tras) and capecitabine for treatment (tx) of adult patients (pts) with metastatic HER2+ breast cancer (MBC), including pts with brain metastases (BM), who have received 1 or more prior anti-HER2-based regimens in the metastatic setting. Ado-trastuzumab emtansine (T-DM1), approved for tx of pts with HER2+ MBC after Tras and a taxane, has led to significant improvements in progression-free survival (PFS) and overall survival (OS). Still, further improvements are needed, including pts with active BM. A phase 1b trial evaluated TUC (300 mg PO BID) with T-DM1 in 50 pts with HER2+ MBC who received prior tx with Tras and a taxane (Borges 2018). Common AEs included nausea (72%), diarrhea (60%), and fatigue (56%); mostly grade 1/2. Median PFS was 8.2 months and the objective response rate (ORR) in pts with measurable disease (n=34) was 47%. Sixty percent of pts treated with TUC + T-DM1 had BM at baseline and showed a brain specific response rate (RECISTv1.1) of 36% in pts with measurable BM. This encouraging clinical activity, including in pts with BM, provides rationale for a randomized trial to further evaluate this combination. Trial design - HER2CLIMB-02 is a randomized, double-blind, placebo-controlled phase 3 study to evaluate efficacy and safety of TUC + T-DM1 in pts with unresectable locally advanced or metastatic HER2+ breast cancer; ~460 pts will be randomized 1:1 to receive 21-day cycles of TUC (300 mg PO BID) or placebo with T-DM1 (3.6 mg/kg IV). Pts must have had prior tx with Tras and a taxane in any setting, be ≥18 yrs, with an ECOG ≤1 and histologically confirmed HER2+ MBC. Prior tx with any investigational antiHER2 or anti-EGFR agent or HER2 TKI is not permitted. Prior pertuzumab tx is allowed, but not required. Baseline brain MRIs are required for all pts; pts with stable, progressing, or untreated BM not requiring immediate local therapy are eligible. While on tx, radiographic disease evaluations (RECISTv1.1) will occur every 6 weeks for the first 24 weeks, and then every 9 weeks. The primary endpoint is PFS per investigator, with OS and ORR as key secondary endpoints. Enrollment is ongoing in the US (NCT03975647) and planned for Canada, the EU, and the Asia/Pacific region. Citation Format: Sara Hurvitz, Linda Vahdat, Nadia Harbeck, Antonio C. Wolff, Sara M. Tolaney, Sherene Loi, Norikazu Masuda, Joyce O’Shaughnessy, Cassie Dong, Luke Walker, Evelyn Rustia, Virginia F. Borges. HER2CLIMB-02: A randomized, double-blind, phase 3 study of tucatinib or placebo with T-DM1 for unresectable locally-advanced or metastatic HER2+ breast cancer [abstract]. In: Proceedings of the 2020 San Antonio Breast Cancer Virtual Symposium; 2020 Dec 8-11; San Antonio, TX. Philadelphia (PA): AACR; Cancer Res 2021;81(4 Suppl):Abstract nr OT-28-01.
TPS499 Background: Tucatinib (TUC), a highly selective HER2-directed TKI recently approved for HER2 overexpressed/amplified (HER2+) metastatic breast cancer, is being developed as a novel therapy for patients (pts) with metastatic CRC, gastric cancer, and other GI tumors. In xenograft models of HER2+ and HER2-mutated (HER2-mut) tumors, dual targeting of HER2 with TUC and trastuzumab (Tras) showed superior activity to either agent alone. Despite the development of several new therapies for metastatic urothelial cancer, response durations generally remain short and the great majority of pts succumb to the disease, highlighting the need for therapeutic approaches. Given that 20-30% of urothelial cancers have molecular alterations of the ErbB family, TUC in combination with Tras warrants further evaluation in this population. The SGNTUC-019 basket study is evaluating TUC in combination with Tras in pts with HER2+ or HER2-mut solid tumors, including a cohort of pts with locally advanced or metastatic (LAUM) urothelial cancer. Methods: SGNTUC-019 (NCT04579380) is a multi-cohort, open-label, international phase II study evaluating pts with previously treated solid tumors displaying HER2 overexpression/amplification or activating mutations. Eligible pts must have HER2+ or HER2-mut LAUM solid tumors, with progression on or after the last systemic therapy for advanced disease. Pts must be ≥18 years old, with ECOG PS ≤1, adequate hepatic, hematological, renal, coagulatory, and cardiac function, and no prior exposure to HER2-directed therapy. For eligibility, HER2 alterations can be demonstrated by HER2 overexpression/amplification in tumor tissue by prior IHC/ISH (IHC 3+/signal ratio ≥2.0 or gene copy number >6), or by HER2 amplification/mutation in a prior or on-study NGS assay of ctDNA or prior tissue NGS assay. The HER2 overexpression/amplification urothelial cancer cohort will enroll 12 RECIST 1.1 response-evaluable pts. If ≥2 responses are observed, the cohort will be expanded to a total of 30 pts. Pts with HER2-mut urothelial cancer will be enrolled in a cohort of 30 pts for all solid tumor types except breast cancer and non-squamous NSCLC. If justified, a separate cohort for HER2-mut urothelial cancer may be opened. The primary objective is antitumor activity in each cohort, with confirmed ORR as primary endpoint, and disease control rate, duration of response, PFS, and OS as secondary endpoints. Pts will receive TUC 300 mg orally twice daily and Tras 8 mg/kg IV on Cycle 1 Day 1 and 6 mg/kg q21 days from Cycle 2 Day 1. Disease assessments per RECIST 1.1 will occur q6 weeks for 24 weeks, then q12 weeks. Trough concentrations of TUC will be evaluated in all pts in Cycles 2-6, with a peak concentration sampled in Cycle 3. Quality of life will be evaluated q2 cycle using EQ-5D-5L. Sites will open in the US, EU, and Asia; enrollment is anticipated to begin in Dec 2020. Clinical trial information: NCT04579380.
Tucatinib, a highly selective human epidermal growth factor receptor 2 (HER2)-directed tyrosine kinase inhibitor, recently approved in multiple regions for overexpressed/amplified (HER2+) metastatic breast cancer, is also being developed as a novel therapy for patients with metastatic colorectal, gastric, and gastroesophageal cancers. In xenograft models of HER2+ and HER2-mutated tumors, dual targeting of HER2 with tucatinib and trastuzumab showed superior activity to either agent alone. Interim results from the MOUNTAINEER study have shown promising activity for tucatinib and trastuzumab in HER2+ colorectal cancer. In 23 response-evaluable subjects, an objective response rate of 52% was observed with a median progression-free survival of 8.1 months (95% confidence interval [CI]: 3.8 months to not evaluable) and a median overall survival of 18.7 months (95% CI: 12.3 months to not evaluable). The prognoses for patients with biliary tract cancers (BTCs) remain poor, and the treatment options for these patients are limited. Preclinical and clinical data have shown that HER2-targeted agents may improve the clinical outcomes of these patients. Approximately 12% to 15% of patients with BTC are HER2+, and HER2 mutations have been reported in 1% to 8% of BTCs. The SGNTUC-019 basket study (NCT04579380) is evaluating tucatinib in combination with trastuzumab in patients with previously treated, locally advanced, unresectable or metastatic solid tumors that display HER2 overexpression/amplification or activating mutations. We describe the design of the BTC cohort. SGNTUC-019 is a multi-cohort, open-label, international Phase 2 study. Patients must be ≥18 years old; have an ECOG PS of ≤1; have adequate hepatic, hematological, renal, coagulatory, and cardiac functions; and have no previous exposure to HER2-directed therapy. Patients with BTC must have progressed on or after ≥1 previous line of treatment (chemotherapy, endocrine therapy, or targeted therapy). The HER2+ BTC cohort will enroll 12 response-evaluable patients. If ≥2 responses are observed, the cohort will be expanded to a total of 30 patients. Patients with HER2-mutated BTC will be enrolled in a cohort of 30 patients for all other HER2-mutated solid tumors. The primary objective is antitumor activity with confirmed objective response rate as the primary endpoint. Secondary endpoints include disease control rate, duration of response, progression-free survival, and overall survival. For eligibility, HER2 alterations in tumor tissue can be demonstrated as HER2+ by previous immunohistochemistry (IHC)/ in situ hybridization (IHC 3+/signal ratio ≥2.0 or gene copy number >6) or as HER2 amplification/mutation by a previous next-generation sequencing (NGS) assay (both tissue and blood) or an on-study NGS assay (blood only). Patients will receive tucatinib 300 mg orally twice a day and trastuzumab 8 mg/kg intravenously on Cycle 1 Day 1 then 6 mg/kg every 21 days from Cycle 2 Day 1. Disease assessments per RECIST 1.1 are every 6 weeks for the first 24 weeks, then every 12 weeks. Quality of life will be evaluated every 2 cycles using EQ-5D-5L. Enrollment at US sites began in December 2020, and site initiation is in progress in Asia and the EU. NCT04579380. MMS Holdings. The authors. Seagen Inc.
Introduction/Background* Tucatinib, a highly selective HER2-directed tyrosine kinase inhibitor with minimal EGFR inhibition, is approved for use in combination with trastuzumab and capecitabine in patients with breast cancer who have received anti-HER2–based regimens in the metastatic setting. In xenograft models of HER2-overexpressed/amplified (HER2+) and HER2-mutated tumors, dual targeting with tucatinib and trastuzumab showed superior activity to either agent alone. The prognosis of locally-advanced unresectable or metastatic (LAUM) cervical and uterine cancer remains poor. HER2 amplification/overexpression and mutations occur in up to 21% and 80% of cervical and uterine cancers, respectively. Methodology SGNTUC-019 (NCT04579380) is an open-label, international Phase 2 basket study evaluating tucatinib and trastuzumab in adult patients with LAUM HER2+ or HER2-mutated solid tumors. Multiple disease- and HER2 alteration-specific cohorts are being enrolled, including HER2+ cervical and uterine cancer cohorts. Patients will receive tucatinib 300 mg orally twice daily and trastuzumab 8 mg/kg IV on Cycle 1 Day 1 and 6 mg/kg q21 days from Cycle 2 Day 1 HER2+ cervical and uterine cancer cohorts will enroll 12 patients each. If ≥2 responses are observed in a cohort, it will be expanded to 30 patients. Patients with HER2-mutated cervical and uterine cancers will enroll in a cohort of 30 patients for all solid tumor types. Eligible patients must have progressed on or after the last systemic therapy, with platinum-based therapy ± bevacizumab required in patients with metastatic cervical cancer. Patients must have ECOG PS ≤1, adequate organ function, and have not received HER2-directed therapy; patients with uterine serous carcinoma may have received trastuzumab. HER2 alterations can be demonstrated by HER2 overexpression/amplification in tumor tissue by prior IHC/ISH, or by HER2 amplification/mutation in a prior or on-study NGS assay of ctDNA or prior tissue NGS assay. The primary endpoint is confirmed ORR per investigator. Disease control rate, duration of response, PFS, and OS are the secondary endpoints. Disease assessments per RECIST 1.1 will occur q6 weeks for 24 weeks, then q12 weeks. QoL will be evaluated q2 cycles using EQ-5D-5L. Result(s)* Not applicable. Conclusion* Enrollment in US began in Dec 2020; EU and Asia sites will be opened.
Abstract Background: Tucatinib is an orally-available, reversible HER2 small molecule tyrosine kinase inhibitor (TKI) being developed as a novel treatment for patients with HER2+ metastatic breast cancer (mBC), including patients with brain metastases. Two key features of tucatinib are its potency and selectivity for HER2, compared to the epidermal growth factor receptor (EGFR). Ado-trastuzumab emtansine (T-DM1) is approved for the treatment of patients with HER2+ mBC after prior treatment with trastuzumab and a taxane. While treatment with T-DM1 has led to significant improvements in progression-free survival (PFS) and overall survival, further improvements in therapy are needed, especially for patients with active brain metastases. Based upon evidence that dual targeting of HER2 may lead to further improvements in efficacy in mBC, a phase 1b trial enrolled subjects with HER2+ mBC, previously treated with trastuzumab and taxane, to receive tucatinib (300 mg orally [PO] twice a day [BID]) with T-DM1 (Borges et al, 2018). Forty-six percent of these subjects had received prior pertuzumab. The combination of tucatinib with T-DM1 demonstrated a median PFS of 8.2 months (95% CI, 4.8-10.3) and an objective response rate of 47% in subjects with measurable disease. Sixty percent of subjects treated with this combination had baseline brain metastases and showed a brain-specific response rate (using modified RECIST v1.1 criteria) of 36% in subjects with measurable central nervous system disease. Tucatinib with T-DM1 was found to have a tolerable safety profile, the most common adverse events were nausea (72%), diarrhea (60%), and fatigue (56%), with the majority of events being grade 1 or 2. This encouraging clinical activity, including in subjects with brain metastases, provides rationale for a randomized trial to further evaluate this combination. Study Design: This is a randomized, double-blind, placebo-controlled, international, multicenter, phase 3 study designed to evaluate the efficacy and safety of tucatinib in combination with T-DM1 in subjects with unresectable locally-advanced or metastatic HER2+ breast cancer. Subjects must have had prior treatment with a taxane and trastuzumab in any setting (adjuvant, neoadjuvant, or metastatic). The primary objective of the study is to compare PFS between the treatment arms per investigator assessment, with overall survival as a key secondary endpoint. In this study, subjects must be ≥18 years, with an ECOG of ≤1 and have histologically confirmed HER2+ mBC. Prior treatment with any investigational anti-HER2 or anti-EGFR agent or HER2 TKI agent is not permitted. Prior pertuzumab therapy is allowed, but not required. Subjects with stable, progressing, or untreated brain metastases not requiring immediate local therapy, are eligible for inclusion in the trial. Approximately 460 subjects will be randomized 1:1 to receive 21-day cycles of either tucatinib (300 mg PO BID) or placebo in combination with T-DM1 (3.6 mg/kg intravenously). Disease response and progression will be assessed using RECIST v1.1. While on study treatment, radiographic disease evaluations will be performed every 6 weeks for the first 24 weeks, and every 9 weeks thereafter. A subset of subjects will participate in a pharmacokinetic substudy. Citation Format: Sara Hurvitz, Linda Vahdat, Nadia Harbeck, Antonio C Wolff, Sara M Tolaney, Sherene Loi, Norikazu Masuda, Cassie Dong, Luke Walker, Evelyn Rustia, Virginia Borges. Randomized, double-blind, phase 3 study of tucatinib or placebo in combination with T-DM1 for subjects with unresectable locally-advanced or metastatic HER2+ breast cancer [abstract]. In: Proceedings of the 2019 San Antonio Breast Cancer Symposium; 2019 Dec 10-14; San Antonio, TX. Philadelphia (PA): AACR; Cancer Res 2020;80(4 Suppl):Abstract nr OT2-01-01.
BACKGROUND:Brain metastases are frequent in HER2-positive breast cancer. ONT-380 (tucatinib) is a potent selective inhibitor of HER2 with intracranial activity in preclinical models. PATIENTS AND METHODS:This was a phase I study of tucatinib with trastuzumab, without chemotherapy, in patients with progressive, measurable HER2-positive brain metastases. The study tested two schedules of tucatinib: cohort A was twice daily and cohort B was once daily. The primary objective was determination of the maximum tolerated dose (MTD). Secondary end points included objective response (intracranial and extracranial) using modified RECIST and clinical benefit rate (CBR). RESULTS:Overall, 41 patients were enrolled (cohort A, n = 22; cohort B, n = 19). Patients had a median of two prior treatments for metastatic breast cancer and 83% had progressed after prior brain radiation. The MTD of tucatinib for cohort A was 300 mg twice daily and for cohort B was 750 mg once daily. The most common dose-limiting toxicities included thrombocytopenia and aspartate transaminase/alanine aminotransferase elevation. Grade 3/4 aspartate transaminase/alanine aminotransferase elevation occurred in nine of 41 patients (22%). Intracranial responses were observed in two of 17 (12%) patients in cohort A and one of 17 (6%) patients in cohort B treated at the MTD. In cohort A, CBR at 16 weeks was 35% (n = 6). In cohort B, CBR at 16 weeks was 53% (n = 9). Of 15 patients overall who experienced clinical benefit, 12 (80%) had received prior neratinib and/or lapatinib. Median progression-free survival for cohorts A and B was 3.4 and 4.1 months, respectively. CONCLUSION:The combination of tucatinib and trastuzumab is tolerable and demonstrated preliminary evidence of efficacy in patients with HER2-positive brain metastases. CLINICAL TRIAL REGISTRATION:NCT01921335.
AbstractTucatinib is a potent tyrosine kinase inhibitor selective for human epidermal growth factor receptor 2 (HER2) approved by the US Food and Drug Administration for the treatment of HER2‐positive metastatic breast cancer and in development for other HER2‐positive solid tumors. Modest, reversible serum creatinine (SCr) elevations have been observed in tucatinib clinical trials. SCr is conveyed by the renal drug transporters organic cation transporter 2 (OCT2) and multidrug and toxin extrusion protein 1 (MATE1) and 2‐K (MATE2‐K) and can increase in the presence of inhibitors of these transporters. In vitro, tucatinib inhibited OCT2‐, MATE1‐, and MATE2‐K‐mediated transport of metformin, with IC50 values of 14.7, 0.340, and 0.135 µM, respectively. Tucatinib also inhibited OCT2‐ and MATE1‐mediated transport of creatinine, with IC50 values of 0.107 and 0.0855 µM, respectively. A phase 1 study with metformin administered orally in the absence and presence of tucatinib was conducted in 18 healthy subjects. Renal function was assessed by measuring glomerular filtration rate (GFR; based on iohexol plasma clearance) and endogenous markers (SCr, cystatin C‐based estimated glomerular filtration rate [eGFR]) with and without tucatinib. Metformin exposure increased (1.4‐fold) and renal clearance decreased (29.99‐17.64 L/h) with tucatinib, with no effect on metformin maximum concentration. Creatinine clearance transiently decreased 23% with tucatinib. GFR and eGFR, which are unaffected by OCT2 and/or MATE1/2‐K transport, were unchanged with tucatinib. These data demonstrate that tucatinib inhibits OCT2‐ and MATE1/2‐K‐mediated tubular secretion of creatinine, which may manifest as mild SCr elevations that are not indicative of renal impairment.
BACKGROUNDPatients with human epidermal growth factor receptor 2 (HER2)-positive metastatic breast cancer who have disease progression after therapy with multiple HER2-targeted agents have limited treatment options. Tucatinib is an investigational, oral, highly selective inhibitor of the HER2 tyrosine kinase.METHODSWe randomly assigned patients with HER2-positive metastatic breast cancer previously treated with trastuzumab, pertuzumab, and trastuzumab emtansine, who had or did not have brain metastases, to receive either tucatinib or placebo, in combination with trastuzumab and capecitabine. The primary end point was progression-free survival among the first 480 patients who underwent randomization. Secondary end points, assessed in the total population (612 patients), included overall survival, progression-free survival among patients with brain metastases, confirmed objective response rate, and safety.RESULTSProgression-free survival at 1 year was 33.1% in the tucatinib-combination group and 12.3% in the placebo-combination group (hazard ratio for disease progression or death, 0.54; 95% confidence interval [CI], 0.42 to 0.71; P<0.001), and the median duration of progression-free survival was 7.8 months and 5.6 months, respectively. Overall survival at 2 years was 44.9% in the tucatinib-combination group and 26.6% in the placebo-combination group (hazard ratio for death, 0.66; 95% CI, 0.50 to 0.88; P = 0.005), and the median overall survival was 21.9 months and 17.4 months, respectively. Among the patients with brain metastases, progression-free survival at 1 year was 24.9% in the tucatinib-combination group and 0% in the placebo-combination group (hazard ratio, 0.48; 95% CI, 0.34 to 0.69; P<0.001), and the median progression-free survival was 7.6 months and 5.4 months, respectively. Common adverse events in the tucatinib group included diarrhea, palmar-plantar erythrodysesthesia syndrome, nausea, fatigue, and vomiting. Diarrhea and elevated aminotransferase levels of grade 3 or higher were more common in the tucatinib-combination group than in the placebo-combination group.CONCLUSIONSIn heavily pretreated patients with HER2-positive metastatic breast cancer, including those with brain metastases, adding tucatinib to trastuzumab and capecitabine resulted in better progression-free survival and overall survival outcomes than adding placebo; the risks of diarrhea and elevated aminotransferase levels were higher with tucatinib. (Funded by Seattle Genetics; HER2CLIMB ClinicalTrials.gov number, NCT02614794.).
Abstract Background: Tucatinib (TUC) is a potent, highly selective investigational HER2 tyrosine kinase inhibitor in development for treatment of patients with HER2+ metastatic breast cancer (MBC). In HER2CLIMB (H2C), a pivotal study of patients with HER2+ MBC, a modest transient, reversible increase in serum creatinine (SCr) levels was observed in patients who received TUC. Similarly, in a study with healthy volunteers, SCr increased after 300 mg BID TUC and returned to baseline levels after TUC discontinuation. Clinically, SCr is used as a biomarker for glomerular filtration rate (GFR) and is routinely measured to monitor for potential renal injury. However, SCr renal elimination also depends on the kidney transporters OCT2 (uptake), MATE1 (efflux) and MATE2-K (efflux). Inhibition of OCT2 and MATE1/2-K has been associated with SCr increases in the absence of kidney damage (e.g., abemaciclib). In vitro assessments and a clinical study were performed to assess the impact of TUC on OCT2 and MATE1/2-K-mediated transport. Methods: Inhibition of OCT2, MATE1, and MATE2-K-mediated transport by TUC was estimated in transfected MDCK-II cells using creatinine and metformin (MF), a sensitive OCT2 and MATE1/2-K substrate used to quantify transport inhibition in vivo, as probe substrates. Subsequently, a single-arm drug-drug interaction study was performed in 17 healthy volunteers to evaluate the effects of TUC on MF PK. MF (850 mg, PO) was administered in the absence and presence of TUC (300 mg BID, PO). Iohexol was administered to calculate actual GFR (aGFR) in the absence and presence of TUC. Plasma (iohexol, MF and TUC) and urine (MF) samples were collected for PK analysis; drug concentrations were measured using validated LC-MS/MS methods. Serum and urine creatinine levels were also measured. Results: In MDCK II cells, TUC inhibited creatinine transport by OCT2 (IC50 = 0.107 µM) and MATE1 (IC50 = 0.086 µM) and MF transport by MATE1 (IC50 = 0.340 µM) and MATE2-K (IC50 = 0.135 µM), but not by OCT2 (IC50 = 14.7 µM). Using these IC50 values, physiologically-based pharmacokinetic (PBPK) model simulations predicted a 1.16 to 1.35-fold increase of MF exposure in the presence of TUC. Consistent with the PBPK prediction, in healthy volunteers MF exposure (AUCinf) increased ~1.4-fold and renal clearance decreased from 29.99 L/h to 17.64 L/h in the presence of TUC with no effect on MF Cmax. Iohexol clearance was unaffected in the presence of TUC indicating no change in aGFR. SCr increased in the presence of TUC and returned to baseline 8 days after TUC discontinuation. Conclusions: Together, these data demonstrate that the observed SCr increase in clinical studies with TUC is due to inhibition of tubular secretion of creatinine via OCT2 and MATE1 and not due to an effect on kidney function. An alternative, non-creatinine-based measure of renal function should be considered for tucatinib. Citation Format: Ariel R. Topletz-Erickson, Anthony Lee, JoAl Mayor, Evelyn Rustia, Layth Abdulrasool, Luke Walker, Christopher J. Endres. Tucatinib inhibits creatinine and metformin renal tubule secretion but has no effect on renal function (GFR) [abstract]. In: Proceedings of the Annual Meeting of the American Association for Cancer Research 2020; 2020 Apr 27-28 and Jun 22-24. Philadelphia (PA): AACR; Cancer Res 2020;80(16 Suppl):Abstract nr 3015.