| Literature DB >> 31177402 |
Agnieszka Karbownik1, Katarzyna Sobańska2, Włodzimierz Płotek3, Tomasz Grabowski4, Agnieszka Klupczynska5, Szymon Plewa5, Edmund Grześkowiak2, Edyta Szałek2.
Abstract
Background Lapatinib is a small-molecule tyrosine kinase inhibitor of human epidermal receptor 2 (HER2) and EGFR that has currently been approved for the treatment of HER2-positive advanced and metastatic breast cancer (BC). The ATP-binding cassette (ABC) family of transporters includes P-glycoprotein (P-gp; ABCB1) and breast cancer resistance protein (BCRP; ABCG2), which substantially restrict the penetration of drugs, including chemotherapeutics, through the blood-brain barrier and blood-cerebrospinal fluid barrier. The aim of this study was to investigate the effects of elacridar, an ABCB1 and ABCG2 inhibitor, on the brain and cerebrospinal fluid uptake of lapatinib. Methods Rats were divided into two groups: one group received 5 mg/kg elacridar and 100 mg/kg lapatinib (an experimental group), and the other group received 100 mg/kg lapatinib (a control group). Lapatinib concentrations in the blood plasma (BP), cerebrospinal fluid (CSF) and brain tissue (BT) were measured by liquid chromatography coupled with tandem mass spectrometry. Results Elacridar significantly increased lapatinib penetration into the CSF and BT (Cmax increase of 136.4% and 54.7% and AUC0-∞ increase of 53.7% and 86.5%, respectively). The Cmax of lapatinib in BP was similar in both experimental groups (3057.5 vs. 3257.5 ng/mL, respectively). Conclusion This study showed that elacridar influenced the pharmacokinetics of lapatinib. The inhibition of ABCB1 and ABCG2 transporters by elacridar substantially enhanced the penetration of lapatinib into the CSF and BT. The blocking of protein transporters could become indispensable in the treatment of patients with breast cancer and brain metastases.Entities:
Keywords: Blood-brain barrier; Blood-cerebrospinal fluid barrier; Elacridar; Lapatinib
Mesh:
Substances:
Year: 2019 PMID: 31177402 PMCID: PMC7211195 DOI: 10.1007/s10637-019-00806-3
Source DB: PubMed Journal: Invest New Drugs ISSN: 0167-6997 Impact factor: 3.850
Fig. 1The blood plasma (BP) concentration-time profiles of lapatinib after a single oral dose (100 mg/kg) in the IIL (n = 2) and IE + L groups (n = 2)
Fig. 2The cerebrospinal fluid (CSF) concentration-time profiles of lapatinib after a single oral dose (100 mg/kg) in the IIL and IE + L groups
Fig. 3The brain tissue (BT) concentration-time profiles of lapatinib after a single oral dose (100 mg/kg) in the IIL (n = 2) and IE + L groups (n = 2)
The noncompartmental plasma pharmacokinetic parameters of lapatinib after oral administration of 100 mg/kg (IIL) or coadministration with 5 mg/kg of elacridar (IE + L)
| Pharmacokinetic parameters | IL + E | IIL |
|---|---|---|
| Blood plasma (BP)a | ||
| Cmax (ng/mL) | 3462.50 ± 823.78 | 3257.50 ± 809.64 |
| tmax (h) | 2.50 ± 0.71 | 4.00 ± 0.00 |
| kel (h−1) | 0.02 ± 0.01 | 0.13 ± 0.03 |
| t0.5 (h) | 28.77 ± 6.00 | 5.58 ± 1.28 |
| AUC0-t (ng × h/mL) | 43,556.06 ± 3905.44 | 24,377.19 ± 125.07 |
| AUC0-∞ (ng × h/mL) | 95,087.03 ± 10,426.84 | 37,197.82 ± 9150.67 |
| AUMC0-t (ng × h2/mL) | 480,290.03 ± 21,589.07 | 138,877.66 ± 11,299.79 |
| AUMC0-∞ (ng × h2/mL) | 3,917,566.05 ± 1,363,043.99 | 404,148.02 ± 215,793.89 |
| MRT0-t (h) | 11.05 ± 0.50 | 5.70 ± 0.43 |
| Cerebrospinal fluid (CSF) | ||
| Cmax (ng/mL) | 91.00 | 38.50 |
| tmax (h) | 4.0 | 1.0 |
| kel (h−1) | 0.09 | 0.23 |
| t0.5 (h) | 7.69 | 3.00 |
| AUC0-t (ng × h/mL) | 355.83 | 220.76 |
| AUC0-∞ (ng × h/mL) | 387.33 | 252.03 |
| AUMC0-t (ng × h2/mL) | 1620.02 | 1257.21 |
| AUMC0-∞ (ng × h2/mL) | 2725.51 | 1767.90 |
| MRT0-t (h) | 4.55 | 5.70 |
| Kp | 0.004 | 0.007 |
| Brain tissue (BT)a | ||
| Cmax (ng/mL) | 197.67 ± 39.01 | 127.76 ± 16.38 |
| kel (h−1) | 0.05 ± 0.02 | 0.25 ± 0.24 |
| t0.5 (h) | 13.01 ± 3.99 | 5.29 ± 5.11 |
| tmax (h) | 3.00 ± 0.00 | 4.50 ± 2.12 |
| AUC0-t (ng × h/mL) | 1610.22 ± 130.95 | 836.10 ± 21.20 |
| AUC0-∞ (ng × h/mL) | 2520.56 ± 610.81 | 1351.27 ± 712.37 |
| MRT0-t (h) | 9.92 ± 1.04 | 5.73 ± 0.06 |
| AUMC0-t (ng × h2/mL) | 16,040.19 ± 2981.02 | 4792.63 ± 173.92 |
| AUMC0-t (ng × h2/mL) | 57,148.33 ± 29,162.29 | 17,455.77 ± 17,542.73 |
| Kp | 0.027 | 0.036 |
Cmax – maximum concentration; tmax – time to Cmax; kel – elimination rate constant; AUC0-t – area under the plasma concentration-time curve from zero to the time of the last measurable concentration; AUC0-∞ – area under the plasma concentration-time curve from zero to infinity; t0.5 – elimination half-life; MRT0-t – mean residence time; AUMC0-t – area under the first moment curve from zero to the time of the last measurable concentration; AUMC0-∞ – area under the first moment curve from zero to infinity; Kp – tissue-to-plasma partition coefficient;
a – arithmetic means ± standard deviations
Fig. 5The comparative hysteresis-like plots of the lapatinib concentration in the cerebrospinal fluid (CSF) versus blood plasma (BP) for the IE + L group, r2 = 0.1665 (a) and for the IIL group, r2 = 0.0183 (b)
Fig. 4The comparative hysteresis-like plots of the lapatinib concentration in brain tissue (BT) versus blood plasma (BP) for the IE + L group, r2 = 0.2109 (a) and for the IIL group, r2 = 0.7751 (b)