| Literature DB >> 25388939 |
Monica M Mita1, Ronald B Natale, Edward M Wolin, Brenda Laabs, Hillary Dinh, Scott Wieland, Daniel J Levitt, Alain C Mita.
Abstract
Introduction Aldoxorubicin, a prodrug of doxorubicin, binds covalently to serum albumin in the bloodstream and accumulates in tumors. Aldoxorubicin can be administered at doses several-fold higher than doxorubicin can, without associated acute cardiotoxicity. Purpose This study fully evaluated the pharmacokinetic profile of aldoxorubicin (serum and urine). Methods Eighteen patients with advanced solid tumors received aldoxorubicin 230 or 350 mg/m(2) (equivalent in drug load to doxorubicin at doses of 170 or 260 mg/m(2), respectively) once every 21 days. Blood samples were taken in cycle 1 before aldoxorubicin infusion, and at 5, 15, 30, and 60 min, and at 2, 4, 8, 12, 16, 24, 48, and 72 h after infusion. Urine samples were taken in cycle 1 at 24, 48, and 72 h after infusion. Limited blood sampling was done in cycle 3, before aldoxorubicin infusion, and at 60 min and at 2, 4, and 8 h after infusion. Results The long mean half-life (20.1-21.1 h), narrow mean volume of distribution (3.96-4.08 L/m(2)), and slow mean clearance rate (0.136-0.152 L/h/m(2)) suggest that aldoxorubicin is stable in circulation and does not accumulate readily in body compartments outside of the bloodstream. Very little doxorubicin and its major metabolite doxorubicinol, which has been implicated in doxorubicin-associated cardiotoxicity, are excreted in urine. This might explain the lack of cardiotoxicity observed thus far with aldoxorubicin. Conclusions Our findings support dosing and administration schemas used in an ongoing phase 3 clinical study of aldoxorubicin in soft tissue sarcoma, and phase 2 clinical studies in small cell lung cancer, glioblastoma, and Kaposi's sarcoma.Entities:
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Year: 2014 PMID: 25388939 PMCID: PMC4387275 DOI: 10.1007/s10637-014-0183-5
Source DB: PubMed Journal: Invest New Drugs ISSN: 0167-6997 Impact factor: 3.850
Baseline patient characteristics and disease characteristics (N = 18)
| Parameter | Aldoxorubicin dose group | ||
|---|---|---|---|
| 230 mg/m2 | 350 mg/m2 | All patients | |
| No. of patients | 11 | 7 | 18 |
| Median age (range), years | 64.0 (34.0–75.9) | 57.9 (37.3–69.4) | 61.7 (34.0–75.9) |
| Male / female, n (%) | 4 / 7 (36.4 / 63.6) | 4 / 3 (57.1 / 42.9) | 8 / 10 (44.4 / 55.6) |
| Race, n (%) | |||
| Caucasian | 8 (72.7) | 7 (100) | 15 (83.3) |
| Black or African American | 1 (9.1) | – | 1 (5.6) |
| Asian | 2 (18.2) | – | 2 (11.1) |
| ECOG performance status, n (%) | |||
| 0–1 | 9 (81.8) | 7 (100) | 16 (88.9) |
| 2 | 2 (18.2) | – | 2 (11.1) |
| Tumor primary site | |||
| Esophagus | 1 (9.1) | – | 1 (5.6) |
| Lung | 5 (45.5)a | 3 (42.9)b | 8 (44.4) |
| Ovary | – | 1 (14.3) | 1 (5.6) |
| Pancreas | – | 1 (14.3) | 1 (5.6) |
| Soft tissue | – | 1 (14.3) | 1 (5.6) |
| Testicle | 1 (9.1) | – | 1 (5.6) |
| Thyroid | 1 (9.1) | – | 1 (5.6) |
| Urothelium | 1 (9.1) | – | 1 (5.6) |
| Unknownc | 2 (18.2) | 1 (14.3) | 3 (16.7) |
| Median no. of prior chemotherapy regimens (range) | 2 (0–5) | 4 (2–8) | 2 (0–8) |
ECOG Eastern Cooperative Oncology Group
aIncludes one diagnosis of metastatic small-cell lung cancer
bIncludes one diagnosis of mesothelioma of the lung and one diagnosis of late-stage small-cell lung cancer
c“Unknown” includes neuroendocrine tumor of unknown or unspecified primary site
Pharmacokinetic parameters after aldoxorubicin infusion on day 1 of cycle 1 (N = 18)
| Parameter | Statistic | Albumin-bound doxorubicin | Free doxorubicin | Doxorubicinol | |||
|---|---|---|---|---|---|---|---|
| 230 mg/m2 ( | 350 mg/m2 ( | 230 mg/m2 ( | 350 mg/m2 ( | 230 mg/m2 ( | 350 mg/m2 ( | ||
| tmax, h | Median (range) | 0.75 (0.58–1.5) | 1.00 (0.583–2.5) | 0.58 (0.58–1.5) | 0.75 (0.58–0.75) | 36.5c (12.5–72.5) | 48.5 (12.5–72.5) |
| Cmax, ng/mL | Mean (SD) | 67,400 (5750) | 105,000 (23,400) | 1,200 (974) | 2,470 (2040) | 4.17 (6.20) | 13.7 (10.4) |
| t½, h | Harmonic mean (pseudo-SD) | 20.1 (3.28) | 21.1 (3.36) | 11.5 (2.83) | 16.0 (6.67) | NC | NC |
| AUC0-t, ng · h/mL | Mean (SD) | 1,420,000 (197,000) | 2,490,000 (623,000) | 6,060 (3320) | 12,000 (5810) | 212 (310) | 661 (581) |
| AUC0-∞, ng · h/mL | Mean (SD) | 1,550,000 (254,000) | 2,760,000 (724,000) | 8,570 (3880) | 15,700 (7390) | NC | NC |
| CL, L/h/m2 | Mean (SD) | 0.152 (0.0249) | 0.136 (0.0395) | NA | NA | NA | NA |
| Vss, L/m2 | Mean (SD) | 4.08 (0.431) | 3.96 (1.16) | NA | NA | NA | NA |
| CL/Fa, L/h/m2 | Mean (SD) | NA | NA | 23.2 (10.5) | 20.5 (11.2) | NA | NA |
| Vd/Fa, L/m2 | Mean (SD) | NA | NA | 391 (156) | 485 (178) | NA | NA |
| CL/Fb, L/h/m2 | Mean (SD) | NA | NA | 32.4 (14.6) | 27.7 (15.1) | NA | NA |
| Vd/Fb, L/m2 | Mean (SD) | NA | NA | 545 (217) | 653 (239) | NA | NA |
AUC area under the concentration-time curve from time 0 to the time of the last measurable plasma concentration, AUC area under the concentration-time curve from time 0 to infinity, CL systemic clearance for aldoxorubicin, CL/F apparent clearance for doxorubicin, C peak plasma concentration of aldoxorubicin after dosing, NA not applicable, NC not calculated, SD standard deviation, t apparent half-life of aldoxorubicin, t time to reach Cmax, V /F apparent volume of distribution of doxorubicin, V volume of distribution at steady state of aldoxorubicin
aCalculated using doxorubicin-equivalent dose; assumes all aldoxorubicin is hydrolyzed to doxorubicin
bCalculated using aldoxorubicin dose
cThe tmax parameter for doxorubicinol was measured in 4 patients in the 230 mg/m2 cohort
Fig. 1Mean plasma concentration-time profiles of albumin-bound doxorubicin (closed circles), free doxorubicin (open circles), and doxorubicinol (closed triangles) after aldoxorubicin infusion on day 1 of cycle 1 (N = 18)
Fig. 2Comparison of mean plasma concentrations of (a) albumin-bound doxorubicin, (b) free doxorubicin, and (c) doxorubicinol at select time points after infusion of aldoxorubicin on day 1 of cycle 1 (N = 18; black bars) and on day 1 of cycle 3 (N = 11; gray bars)
Urine levels of doxorubicin and doxorubicinol after aldoxorubicin infusion on day 1 of cycle 1 (N = 18)
| Aldoxorubicin 230 mg/m2 dose group ( | ||||
| Free doxorubicin, ng/mL | Doxorubicinol, ng/mL | |||
| Time point | Mean (SD) | Median (range) | Mean (SD) | Median (range) |
| 24 h | 5090 (2903) | 4220 (1250–10,600) | 368 (233) | 363 (57–836) |
| 48 h | 3077 (1527) | 2995 (1350–5420) | 375 (225) | 341 (136–808) |
| 72 h | 1484 (700) | 1585 (591–2360) | 336 (185) | 284 (97–625) |
| Aldoxorubicin 350 mg/m2 dose group ( | ||||
| Free doxorubicin, ng/mL | Doxorubicinol, ng/mL | |||
| Time point | Mean (SD) | Median (range) | Mean (SD) | Median (range) |
| 24 h | 11514 (8876) | 7650 (3480–27500) | 741 (410) | 747 (346–1300) |
| 48 h | 7854 (4358) | 7470 (2170–14500) | 1115 (783) | 928 (325–2540) |
| 72 h | 3003 (2407) | 2350 (832–8160) | 632 (471) | 506 (223–1660) |
SD standard deviation
Summary of adverse events, including cardiac events (N = 18)
| Aldoxorubicin dose group | |||
|---|---|---|---|
| 230 mg/m2 ( | 350 mg/m2 ( | All patients ( | |
| Median cycles completed, n (range) | 3 (2–21) | 3 (1–9) | 3 (1–21) |
| Patients with AEs, n (%) | 11 (100) | 7 (100) | 18 (100) |
| Total AEs, n | 165 | 105 | 270 |
| Grade 3 or 4 AEsa, n (%b) | 8 (4.8) | 14 (13.3) | 22 (8.1) |
| Serious AEsa, n (%b) | 3 (1.8) | 3 (2.9) | 6 (2.2) |
| Deaths, n | 2 (18.2) | 0 (0) | 2 (0.7) |
| Cardiac events, n (%) | |||
| Patients with >10 % decrease in LVEF | 1 (9.1) | 0 (0) | 1 (5.6) |
| Patients with LVEF <45 % | 0 (0) | 0 (0) | 0 (0) |
| Patients with >5 % prolongation of QTc from baseline | 6 (54.5) | 4 (57.1) | 10 (55.6) |
| Patients with QTc ≥500 ms | 1 (9.1) | 0 (0) | 1 (5.6) |
AE adverse event, LVEF left ventricular ejection fraction
aDoes not include deaths
bPercentage of total AEs