Mapatumumab, an Antibody Targeting TRAIL-R1, in Combination With Paclitaxel and Carboplatin in Patients With Advanced Solid Malignancies: Results of a Phase I and Pharmacokinetic Study

2009 ◽  
Vol 27 (26) ◽  
pp. 4413-4421 ◽  
Author(s):  
Stephen Leong ◽  
Roger B. Cohen ◽  
Daniel L. Gustafson ◽  
Corey J. Langer ◽  
D. Ross Camidge ◽  
...  

Purpose A phase I study assessed the safety, tolerability, pharmacokinetics, and preliminary antitumor effect of mapatumumab, a fully-human agonist monoclonal antibody to the tumor necrosis factor–related apoptosis-inducing ligand receptor 1 (TRAIL-R1, DR4), in combination with paclitaxel and carboplatin. Patients and Methods Patients with advanced solid malignancies received 3, 10, or 20 mg/kg of mapatumumab with standard doses of paclitaxel and carboplatin every 21 days for up to six cycles in the absence of disease progression. Additional cycles of paclitaxel and/or mapatumumab were permissible in selected cases. Results Twenty-seven patients (21 males), with a median age of 54 years, received mapatumumab in the following three cohorts: 3 mg/kg (n = 4), 10 mg/kg (n = 11), and 20 mg/kg (n = 12). The median number of cycles was four. Dose-limiting toxicities (DLTs) were grade 3 hypersensitivity reaction (n = 1) and neutropenic fever (n = 1), both at 10 mg/kg. Non-DLT treatment-related adverse events occurring in more than 10% of administered doses included alopecia, neutropenia, fatigue, nausea, anemia, thrombocytopenia, anorexia, and neuropathy. Paclitaxel and carboplatin exposures were similar in the presence or absence of mapatumumab. Plasma mapatumumab concentrations seemed similar to data from previous phase I monotherapy studies. Five patients (19%) achieved a confirmed radiologic partial response (including one pathologic complete response), and 12 patients (44%) had stable disease as their best response. Conclusion Mapatumumab is well-tolerated up to 20 mg/kg in combination with paclitaxel and carboplatin. There are no apparent pharmacokinetic interactions among the drugs. Preliminary anticancer activity demonstrated clinical benefit for the majority of these patients.

2019 ◽  
Vol 21 (1) ◽  
Author(s):  
Jin Sun Lee ◽  
Susan E. Yost ◽  
Suzette Blanchard ◽  
Daniel Schmolze ◽  
Hongwei Holly Yin ◽  
...  

Abstract Background Alteration of the PI3K/AKT/mTOR pathway is a common genomic abnormality detected in triple-negative breast cancer (TNBC). Everolimus acts synergistically with eribulin in TNBC cell lines and xenograft models. This phase I trial was designed to test the safety and tolerability of combining eribulin and everolimus in patients with metastatic TNBC. Methods The primary objective of this study was to evaluate the safety and toxicities of the combination. Patients with metastatic TNBC who had up to four lines of prior chemotherapies were enrolled. The combination of eribulin and everolimus was tested using three dosing levels: A1 (everolimus 5 mg daily; eribulin 1.4 mg/m2 days 1 and 8 every 3 weeks), A2 (everolimus 7.5 mg daily; eribulin 1.4 mg/m2, days 1 and 8 every 3 weeks), and B1 (everolimus 5 mg daily; eribulin 1.1 mg/m2 days 1 and 8 every 3 weeks). Results Twenty-seven patients with median age 55 years were enrolled. Among 8 evaluable patients who received dose level A1, 4 had dose-limiting toxicities (DLTs). Among 3 evaluable patients treated with dose level A2, 2 had DLTs. Among 12 evaluable patients who received dose level B1, 4 had DLTs. The DLTs were neutropenia, stomatitis, and hyperglycemia. Over the study period, 59% had a ≥ grade 3 toxicity, 44% had ≥ grade 3 hematologic toxicities, and 22% had grade 4 hematologic toxicities. The most common hematological toxicities were neutropenia, leukopenia, and lymphopenia. Thirty-three percent had grade 3 non-hematologic toxicities. The most common non-hematological toxicities were stomatitis, hyperglycemia, and fatigue. The median number of cycles completed was 4 (range 0–8). Among 25 eligible patients, 9 patients (36%) achieved the best response as partial response, 9 (36%) had stable disease, and 7 (28%) had progression. The median time to progression was 2.6 months (95% CI [2.1, 4.0]), and median overall survival (OS) was 8.3 months (95% CI [5.5, undefined]). Conclusion Eribulin 1.1 mg/m2 days 1 and 8 every 3 weeks with everolimus 5 mg daily was defined as the highest dose with acceptable toxicity (RP2D). The combination is safe, and efficacy is modest. A post hoc analysis showed that participants that used dexamethasone mouthwash stayed on treatment for one additional cycle. Trial registration ClinicalTrials.gov, NCT02120469. Registered 18 April 2014


2014 ◽  
Vol 32 (4_suppl) ◽  
pp. 433-433
Author(s):  
Matthew T. Campbell ◽  
Randall E. Millikan ◽  
Emre Altinmakas ◽  
Lianchun Xiao ◽  
Nizar M. Tannir

433 Background: Anti-VEGF agents and mTOR inhibitors are mainstay therapies in mRCC. Pre-clinical data suggests synergistic anti-tumor effect when combining these 2 classes. A previous phase I trial using sunitinib (S) 25 mg/d 4 wks on, 2 wks off, and temsirolimus (T) 15 mg/wk was stopped after 2 of the first 3 pts developed dose limiting toxicity (DLT). Methods: Pts with any subtype mRCC (PS 0-1) were eligible. Each cycle consisted of daily S for 14 days on, 7 days off, and weekly T. The continuous reassessment method (CRM) was used. The primary objective was to find the maximum tolerated doses (MTD) of S and T. The total planned accrual was 60 pts. Results: Accrual was stopped after 20 pts received study drugs. Median age was 63.5 years; 13 pts received prior targeted therapy, 7 pts were treatment naïve; median number of prior treatments 1 (range 0-6). Treatment cohorts (#pts, S, T, dose in mg): 2 (S12.5,T6), 1 (S25,T12.5), 1 (S12.5,T8), 8 (S12.5alt25,T9), 2 (S25,T6), 2 (S25alt37.5,T6), 2 (S37.5,T6), 2 (S37.5,T8). Dose reduction was required in 6 of 20 pts; the most common DLT was mucositis in 3 of 20 pts, followed by thrombocytopenia in 2 of 20 pts. The mean number of cycles for all pts was 6.6±5.36, with mean time on study 159±120 days. One pt experienced DLT in cycle 1 and received no study related imaging, 1 had a partial response, 16 pts had stable disease, and 2 pts had progressive disease (PD) as best response. A total of 21 grade 3/4 adverse events (AEs) attributed to drug occurred in 11 of 20 pts. Reasons for study discontinuation were PD in 12 pts, toxicity in 6 pts, and pt preference in 2 pts. There were no treatment related deaths. Conclusions: The MTD of S and T using the CRM were not reached due to premature trial closure. However, we believe S 37.5 mg/d, 2 wks on, 1 wk off, and T 8-10 mg weekly may well be close to MTD. Clinical trial information: NCT01122615.


Blood ◽  
2005 ◽  
Vol 106 (11) ◽  
pp. 2555-2555 ◽  
Author(s):  
Rakesh Popat ◽  
Heather E. Oakervee ◽  
Nicola Foot ◽  
Samir Agrawal ◽  
Patricia Smith ◽  
...  

Abstract Background: Bortezomib as a single agent has known efficacy in the treatment of relapsed multiple myeloma. The overall response rate (CR+PR+MR) was 35% in the SUMMIT study and 46% in the APEX study. In-vitro studies including our own have demonstrated potent synergy with other chemotherapeutic agents such as melphalan. It therefore follows that responses to bortezomib may be further improved by the combination of such drugs. Aims: The primary objectives of this Phase I/II study was to assess the safety, tolerability and response rates in patients with relapsed multiple myeloma; secondary objectives being time to progression (TTP) and overall surival (OS). Methods: This was a multi-centre, non-randomised trial for patients with relapsed myeloma. Patients received bortezomib 1.3mg/m2 on days 1,4,8 and 11 of each 28 day cycle with melphalan on day 2 at increasing dose levels. This was initially at 10mg/m2, but due to cytopenias subsequently at 2.5 and 5mg/m2 (levels 1a, 1 and 2) and we plan to escalate to 7.5mg/m2. Up to 8 cycles were given with dexamethasone added for stable or progressive disease after 4 or 2 cycles respectively. Responses were determined by EBMT criteria. Results: To date, 18 patients have been enrolled (12 male 6 female; median age 60 [range 44–73]; median number of prior therapies 3 [range 1–5] of which 17 have had at least one autologous stem cell procedure with high dose melphalan; 10 prior thalidomide and 2 prior bortezomib). 12 patients received melphalan at 10mg/m2 but due to unacceptable delays predominantly due to thrombocytopaenia, subsequent treatment levels commenced at 2.5mg/m2. The median number of cycles completed thus far is 4 (range 0–8) and of the 16 evaluable, the overall response rate (CR+PR+MR) across all treatment levels was 50% rising to 75% following the addition of dexamethasone as per protocol. At level 1a (melphalan 10mg/m2 ,N=12, median number of cycles completed =5) the best responses (with dexamethasone as indicated) were: 1CR, 1 VGPR, 5 PR, 2 MR; at level 1 (melphalan 2.5mg/m2, N=4) 1 PR, 2 MR (after 2 cycles only). The median time to any response was 1 cycle (range 1–3 ). Three patients have progressive disease, but the median TTP and OS have not yet been reached (median follow-up 3 months). Non-haematological toxicities have been modest with 7 SAEs reported of which only 1 was possibly drug related (myocardial infarction), and 4 episodes of Grade 3 neuropathy (2 resulting in study withdrawal). The commonest grade 3–4 haematological toxicity was thrombocytopaenia (N=10) complicated by bleeding in one patient, followed by neutropenia (N=6). Summary: The combination of bortezomib and intravenous melphalan can be given safely to patients with relapsed multiple myeloma and dose escalation is ongoing. Myelosupression was the commonest grade 3–4 adverse event. A response rate of 50% was seen, which was further improved to 75% with the addition of dexamethasone. This combination may therefore result in higher responses than single agent bortezomib in heavily pretreated patients.


Blood ◽  
2015 ◽  
Vol 126 (23) ◽  
pp. 2892-2892 ◽  
Author(s):  
Lionel Ades ◽  
Christian Récher ◽  
Julie Lejeune ◽  
Aspasia Stamatoullas ◽  
Marie Sebert ◽  
...  

Abstract Background: Higher risk MDS and AML with del(5q) carry very poor prognosis, but show some response to AZA and LEN as single agents (Adès Blood 2009, Itzykson, Blood 2010). The combination of LEN and AZA has been tested in non-del 5q MDS patients with encouraging results and limited toxicity (Sekeres, Blood 2012). Sequential combination of AZA and LEN has also shown to be feasible and potentially effective in 20 patients with higher-risk MDS with del(5q) in a phase I study (Platzbecker, Leukemia 2013). In this phase I-II trial, we combined escalating doses of LEN to AZA in higher risk MDS and AML with del(5q). Methods: Patients with IPSS int-2 or high MDS, CMML with WBC < 13,000/mm3 and marrow blasts > 10% and AML (20-30% marrow blasts) with 5q deletion with or without additional cytogenetic abnormalities could be included provided they had not previously received LEN or AZA. Patients should also have contra indication to intensive chemotherapy (IC), precluding inclusion in a GFM competing trial combining IC and LEN in higher risk MDS and AML with del 5q. In the present trial, patients received AZA (75 mg/m2 x5 d, every 28 days) combined with escalating doses of LEN (5 mg/d x14 d in cohort 1, 5 mg/d x21 d in cohort 2 and 10 mg/d x21 d in cohort 3). For patients in hematological CR, PR, HI or marrow CR (MDS) and CR or PR (AML) after cycle 2 or 4, treatment was to be continued at the same schedule unless unacceptable toxicity or overt progression occurred. The primary endpoint was response assessed according to IWG 2006 criteria. Secondary endpoints were best response over the 4 cycles and survival. Medians [IQR] are reported unless specified. Intent-to-treat analyses were made. Results: 49 patients were enrolled, including 15, 10 and 24 patients in cohort 1 (LEN 5 mg/d x14d), 2 (LEN 5 mg/d x21d) and 3 (LEN 10 mg/d x21d). 24 were males and the median age was 69 (63-74). According to WHO classification, 1 patient had CMML, 9 RAEB1, 22 RAEB2 and 17 AML. PS was 0, 1 and 2, in 30.8%, 43.6% and 25.6% patients, respectively. However, as said above, patients included in this trial were considered unfit for IC due to their age and/or comorbidities (cardiovascular in 30 patients, pulmonary e in 10, and neurological in 6 pts). Del(5q) was isolated in only 8.3% pts, while 85.4% had del (5q) and at least 2 additional abnormalities (i.e., complex).. IPSS was int-2 in 33% patients and high in 66% patients. Overall, 143 cycles were administered (median 2/patient, including 9 patients who received 6 or more cycles). In the three cohorts, the median number of cycles received was 2 (1-2), 2 (1-4.75) and 4 (2-5.5) respectively. Fifteen (30.6%) patients discontinued treatment before the second cycle, due to early death (n=9), adverse events (n=3), progression (n=2), or CNS hemorrhage (n=1). They were all considered as non responders (primary endpoint). After 2 cycles, 4 (8.2%) achieved CR, 4 (8.2%) marrow CR and 4 (8.2%) stable disease with hematological improvement (ORR= 24%). The best response rate over the 4 courses was 2/15 (13.3%) in cohort 1, 1/10 (10%) in cohort 2, and 9/24 (37.5%) in cohort 3 (ORR=24%). The response rate was 37.5% in patients receiving 10 mg/d, versus 12% in those receiving 5 mg (p=0.051) while other baseline parameters had no impact on response: IPSS (p=0.073), marrow blasts >10% (p=0.16), sex (p=0.74), cytogenetic complexity (p=0.26) or PS (p=0.419). 2/6 CR patients achieved cytogenetic complete response: 0/2 in cohort 1, 0/0 in cohort 2, and 2/4 in cohort 3. One year OS was estimated at 22.9% [95% IC: 12.3-42.5]. We failed to identified any prognostic factor associated with OS (IPSS (p=0.52), marrow blasts >10% (p=0.28), sex (p=0.99), isolated del(5q) (p=0.68), cohort (p=0.2) and PS (p=0.33)). Regarding toxicity, 58 SAEs (grade 3-4) were reported in 38 patients, including 35 infectious events, 7 bleding events, 3 deep venous thrombosis. Conclusion: In this elderly population of higher risk MDS or AML considered unfit for intensive chemotherapy, and with del 5q that was part of a complex karyotype in almost all cases, the combination of AZA with escalated doses of LEN was associated with early discontinuation (<4 cycles) in 30/49 (61.2%) of the patients, mostly due to progression or toxicity, and only 12/49 (24.5%) response. The fact that some responders also achieved cytogenetic response may however be encouraging. Disclosures Vey: Janssen: Honoraria; Celgene: Honoraria; Roche: Honoraria. Park:Hospira: Research Funding; Celgene: Research Funding; Novartis: Membership on an entity's Board of Directors or advisory committees, Research Funding. Fenaux:Amgen: Honoraria, Research Funding; Novartis: Honoraria, Research Funding; Celgene Corporation: Honoraria, Research Funding; Janssen: Honoraria, Research Funding.


2007 ◽  
Vol 25 (18_suppl) ◽  
pp. 15111-15111 ◽  
Author(s):  
Y. Park ◽  
S. Yi ◽  
H. Kim ◽  
S. Lee ◽  
I. Hwang ◽  
...  

15111 Background: The aim of this phase II study was to determine whether second line therapy with single agent irinotecan could provide any clinical benefit in patients with gemcitabine- pretreated advanced pancreatic cancer. Methods: From January 2004 to October 2006, patients with advanced pancreatic cancer previously treated with gemcitabine alone or combination were treated with single agent irinotecan(150 mg/m2, biweekly), until unacceptable toxicity or disease progression. Primary endpoint was response rate with single stage design. Results: Twenty-eight patients were enrolled(22 male, 6 female, median age : 54.5 years (39–76)). Nine patients are still alive and 3 remain on therapy with stable disease. The median number of cycles was 3.5(1–12). Twenty-four patients were assessable for toxicity and 21 for response. The most common toxicities was diarrhea (grade 3, 12.5%). Grade 3 neutropenia in 1 patient was observed. Other hematological and non-hematological toxicities were mild and manageable. Partial responses were observed in 3 patients (3/21, 14%). An additional 9 patients (9/21, 43%) had stable disease as their best response. 12 patients have progressed with a median time-to-progression of 4.0 months. Conclusions: Single-agent irinotecan was tolerated with manageable toxicity, offering encouraging activity as second-line treatment of patients with advanced pancreatic cancer, refractory to gemcitabine. No significant financial relationships to disclose.


2019 ◽  
Vol 37 (15_suppl) ◽  
pp. 10003-10003 ◽  
Author(s):  
Todd Michael Cooper ◽  
Michael Absalon ◽  
Todd Allen Alonzo ◽  
Robert B Gerbing ◽  
Kasey Joanne Leger ◽  
...  

10003 Background: Effective regimens with favorable toxicity profiles are needed for heavily pre-treated children with relapsed AML. AAML1421 is a Phase I/II study of CPX-351, a liposomal preparation of cytarabine and daunorubicin demonstrating efficacy in adults. AAML1421 sought to determine the recommended Phase 2 Dose (RPD2) of CPX-351 and the response rate (complete response (CR) + complete response without platelet recovery (CRp)) after up to 2 cycles of therapy. Methods: Children > 1 and ≤ 21 years of age with relapsed/refractory AML were eligible for dose finding, and those in first relapse were eligible for efficacy. A modified rolling six design was used for dose-limiting toxicity (DLT) assessment which occurred in Cycle 1. Dose level 1 (DL1) was 135 units/m2 on days 1, 3, and 5 with a single dose de-escalation to 100 units/m2 if DL1 was intolerable. The Efficacy Phase used a Simon-two stage design. The response rate was determined after up to 2 cycles of therapy (Cycle 1: CPX-351; Cycle 2: FLAG). The Overall Response Rate (ORR) was defined as CR+CRp+CRi (CRi = CR with incomplete hematologic recovery). Results: Thirty-eight patients (pts) enrolled: 6 in dose-finding and 32 in the efficacy phase. DLT occurred in 1/6 patients and was a grade 3 decrease in ejection fraction(EF). This was the only Grade 3 cardiac toxicity. Therefore, 135 units/m2 on days 1, 3, 5 was the RP2D. All dose finding pts were eligible for efficacy determination. One pt in the efficacy phase was unevaluable. The most common ≥ Grade 3 toxicities in Cycle 1 included fever/neutropenia (45%), infection (47%), and rash (40%). There was no toxic mortality. Best responses included 20 CR (54%), 5 CRp (14%), and 5 CRi (14%). Seventy percent achieved best response after cycle 1. Twenty-one of 25 patients with CR/CRp had no detectable residual disease (RD) (84%) by flow cytometry. HSCT was used as consolidation in 23/29 responders (79%); 18 of 23 (78%) had no detectable RD prior to HSCT. Conclusions: The RP2D of CPX-351 is 135 units/m2/dose on days 1, 3, 5. CPX-351 was well tolerated and protocol therapy was effective with CR+CRp rates of 68.3% (90% CI 52.9% to 78.0%) and ORR (CR+CRp+CRi) of 81.1% (90% CI 67.4% to 88.8%). AAML1421 response rates are superior to any published North American cooperative group clinical trial for children with AML in first relapse. Clinical trial information: NCT02642965.


2013 ◽  
Vol 31 (4_suppl) ◽  
pp. 380-380 ◽  
Author(s):  
Howard S. Hochster ◽  
Wells A. Messersmith ◽  
Bert H. O'Neil ◽  
Susan G. Groshen ◽  
Deirdre Jill Cohen ◽  
...  

380 Background: 2nd-line therapy of KRASm CRC is limited; targeting downstream signal transduction enzymes is rational here. Use of the MEK inhibitor SEL is supported by preclinical and clinical evidence. We designed a dose-finding/phase II study of IRI plus SEL in KRASm CRC. Methods: Eligibility included: KRASm or BRAFm CRC with measurable disease progressing after 1st-line therapy with an oxalipatin-based chemo + bevacizumab regimen, PS 0-1, acceptable organ function. Patients were treated with IRI 180 mg/m2 iv q2w and SEL 50-75 mg po bid. First 3 patients of run-in portion were treated with SEL 50 mg and if no DLTs, next 3-6 patients at 75 mg po bid. If no DLTs, then phase II dose of SEL 75 mg po bid would be used. Primary endpoint was RECIST 1.0, investigator determined response rate (RR). As compared to the historical RR of 4% (and median PFS 2.5 mos) for 2nd-line FOLFIRI (Tournigand), with alpha 0.10 & beta 0.90, a sample size of 45 would have the power to detect improvement in RR to 15%, and 79% power to demonstrate improved med PFS to 4.0 mos. Early stopping would occur for responses of 0 of 20 patients. Results: 32 patients were entered and treated. Median age was 54 (40-71) yrs, 18 were male and 22 Caucasian, all KRASm. The first 3 tolerated SEL 50 mg bid without SAE and the remaining 29 were treated at 75 bid. Median number of cycles on study was 3.5 and median TTP approximately 4.0 months. Observed grade 3 AEs included: diarrhea 3, fatigue 2, neutropenia 2, and 1 each PLTS, enteritis, GI bleed, rash; one grade 4 ANC. Grade 2 AEs: diarrhea 12, rash 8 pts. Best response (investigator reported) included 3 (9%) confirmed PR and 15 (47%) SD [including 2 unconfirmed PR] of 32 entered. Six patients were on study for > 6 months (6, 6, 8, 9, 12.5, 14.5 months). The study was terminated early due to non-protocol considerations. These data are not yet verified. Conclusions: Despite early termination, the higher RR and PFS noted for 32 patients with KRASm CRC treated with IRI and SEL as 2nd-line therapy of CRC (and treated for up to 14.5 months), are promising compared with historical controls. The strategy of MEK inhibition in KRAS mutated CRC should be explored further. Clinical trial information: NCT01116271.


2019 ◽  
Vol 37 (15_suppl) ◽  
pp. 3032-3032
Author(s):  
Antonio Jimeno ◽  
Mateusz Opyrchal ◽  
Jennifer Robinson Diamond ◽  
Christos Fountzilas ◽  
Bradley Corr ◽  
...  

3032 Background: Irinotecan is a prodrug of the potent topoisomerase inhibitor SN-38. In animals, oral administration of irinotecan with the selective minimally absorbed P-gp inhibitor HM30181A increased the bioavailability of irinotecan. Oral administration of irinotecan may also increase the conversion to SN-38. Objectives: To determine the MTD and DLT of orally administered irinotecan in combination with HM30181A 15 mg on day 1 of a 21-day cycle. Additional objectives include determining the recommended phase 2 dose and the PK of irinotecan and SN-38. Methods: This was a phase 1 dose escalation study enrolling cohorts of 3-6 patients with advanced malignancies. Patients had Hb ≥9 gm/dL, ANC ≥ 1.5x109/L, platelets ≥ 100x109/L, adequate hepatic and renal function, ECOG 0-1 and were not homozygous for UGT1A1*28. Patients were administered HM30181A 15 mg and oral irinotecan 20, 40, 80, 120, 160, 200, 240, 280 and 320mg/m2. Results: Thirty male and female patients, mean age 60.9 (range 33-78) were enrolled into this ongoing study. The most common cancers were ovarian (6), colorectal (4), breast (4), endometrial (3), and pancreatic (3). The median number of cycles administered was 3 (range 1-9). Treatment-related Grade 3-4 AEs were experienced by 12 (40%) subjects. The most common were nausea 7 (23%), vomiting 6 (20%) and abdominal pain 3 (10%). Treatment-related SAEs were experienced by 6 (20%) patients (nausea or vomiting in 4 subjects). DLTs occurred in 2 patients at the 320 mg/m2 dose level (neutropenia and C. Difficile diarrhea) and additional patients are being enrolled at the 280mg/m2 dose level to define the MTD. Acute cholinergic diarrhea has not been observed. The best response was stable disease in 9/21 evaluable patients. PK at the three highest dose levels is summarized below. Conclusions: Oral administration of HM30181A in combination with irinotecan tablets results in pharmacologically active concentrations of SN-38. Confirmation of the MTD when dosed on a 21-day cycle is ongoing. Phase 2 studies are being planned. Clinical trial information: NTC02250157. [Table: see text]


Blood ◽  
2014 ◽  
Vol 124 (21) ◽  
pp. 3463-3463
Author(s):  
Vaishali Sanchorawala ◽  
Anthony C Shelton ◽  
Stephen Lo ◽  
John Mark Sloan ◽  
David C Seldin

Abstract Background: Immunomodulatory agent, lenalidomide, has shown to induce hematologic response and improve survival in patients with relapsed AL amyloidosis. Pomalidomide, a third generation immunomodulatory agent, was studied in combination with low dose dexamethasone in a prospective phase I/II study of patients with relapsed AL amyloidosis (NCT01570387). Methods: Patients were aged ≥18 years with relapsed AL amyloidosis after ≥1 prior therapy, and measurable plasma cell dyscrasia with dFLC of > 50 mg/L (difference between involved and uninvolved free light chain levels), at least one major vital organ involvement and serum creatinine of < 3.0 mg/dL, received pomalidomide in a standard 3+3 dose escalation design on days 1-28 of 28 day cycles for cohort 1 (2 mg) and 2 (3 mg), and days 1-21 of the cycle for cohort 3 (4 mg). Low dose dexamethasone was administered at 20 mg orally once a week. All patients received prophylaxis with daily aspirin and proton pump inhibitor. MTD was defined as the highest dose resulting in DLT during cycle 1 in < 1 of 6 patients. Hematologic and organ responses were measured at 3 cycles after treatment. Treatment was continued till progression or toxicity or achievement of a hematologic complete response. An expansion cohort of 12 patients is to be enrolled at the MTD. The objectives were to determine the safety, tolerability, MTD, recommend phase 2 dose and hematologic and clinical response. Results: At data cut-off (July 31, 2014) 16 patients have been enrolled and 15 patients have been enrolled in phase I part of the study. The median age was 69 years (range, 44-78), and median number of prior therapies was 2 (range, 1-6): 10 (63%) had received HDM/SCT, 10 (63%) had received lenalidomide, and 13 (81%) bortezomib. The median time from diagnosis to enrollment on this trial was 30 months. The median number of organ system involvement was 2 (range, 1-5). Eleven patients (68%) had >2 organ system involvement, 9 patients with renal and 11 patients with cardiac involvement. Thirteen (81%) patients had cardiac biomarker stage II or III disease. Six patients were treated in the 2 mg cohort (this cohort expanded due to grade 3 renal failure in cycle 3 in one of first 3 patients) and 3 were treated in the 3 mg and 6 in the 4 mg cohort (this cohort expanded due to grade 3 pneumonia with neutropenia in cycle 1 considered as DLT). There were two on-study death due to GI bleeding/sepsis and Legionella pneumonia/sepsis, respectively. Twelve patients have discontinued study treatment due to disease progression (n=5), withdrawal by patient (n=2), hematologic CR (n=3) or death (n=2). Median number of cycles administered is 5 and 4 patients continue on therapy. There was one DLT in cohort 3 of grade 3 pneumonia with neutropenia, establishing 4 mg/day of pomalidomide Days 1-21 of 28 days cycle as MTD. Twelve patients (75%) experienced at least one grade ≥3 AE (any cause). The most common drug-related AEs included fatigue (69%) and anemia (87). There was paradoxical increase of BNP by 30% in 11 patients (69%) after 1 cycle and in 13 patients (81%) after first 3 cycles of therapy. In phase I part of the study, hematologic complete response was observed in 3 of 14 evaluable (completing at least 3 cycles) patients at 3 months (n=2) and 9 months (n=1) of treatment respectively. Hematologic partial response was observed in 3 additional patients. Conclusions: Pomalidomide and dexamethasone treatment is feasible in patients with relapsed AL amyloidosis, with MTD defined as 4 mg/day Days 1-21 of 28 day cycle. Phase II expansion cohort accrual is ongoing at MTD of 4 mg/day of Pomalidomide D1-21 and Dexamethasone 20 mg weekly every 28 days. Preliminary data suggests a hematologic response of > PR in 43% of patients. This clinical trial was partly supported by Celgene Corporation. Disclosures No relevant conflicts of interest to declare.


2007 ◽  
Vol 25 (24) ◽  
pp. 3753-3758 ◽  
Author(s):  
Quincy S.C. Chu ◽  
Garry Schwartz ◽  
Johann de Bono ◽  
Deborah A. Smith ◽  
Kevin M. Koch ◽  
...  

Purpose This phase I trial ( EGF10005 ) assessed the safety, optimally tolerated regimen (OTR), and pharmacokinetics of lapatinib and capecitabine in combination in patients with advanced solid malignancies. Patients and Methods Patients with previously treated, advanced solid malignancies were eligible. Cohorts of at least three patients each received once-daily oral lapatinib (continuous) and capecitabine (twice daily for 14 days every 21 days). Doses of lapatinib and capecitabine were escalated based on dose-limiting toxicities in the first treatment cycle until the OTR was reached. Additional patients were treated at the OTR dose level to further evaluate safety and for pharmacokinetic analyses. Results Forty-five patients were treated in the study. The OTR was determined to be lapatinib 1,250 mg/d plus capecitabine 2,000 mg/m2/d. The majority of drug-related adverse events were grade 1 to grade 2 in severity, with few grade 3 and no grade 4 toxicities. The most common drug-related toxicities (> 15% of patients) were diarrhea, nausea, rash, palmar-plantar erythrodysesthesia, mucositis, vomiting, and stomatitis. There were four confirmed responses (one complete response and three partial responses). The pharmacokinetics (area under the curve and maximum concentration) of lapatinib, capecitabine and its metabolites, fluorouracil, and α-fluoro-β-alanine, were not meaningfully altered by coadministration. Conclusion Lapatinib and capecitabine administered on a 3-week schedule were well tolerated, and no pharmacokinetic interaction was observed. Clinical activity was observed in patients with previously treated, advanced solid malignancies.


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