Combined Microdialysis-Tumor Homogenate Method for the Study of the Steady State Compartmental Distribution of a Hydrophobic Anticancer Drug in Patient-Derived Xenografts


Por: Monterrubio C, Paco-Mercader S, Vilà-Ubach M, Rodriguez E, Glisoni R, Lavarino C, Schaiquevich P, Sosnik A, Mora J and Carcaboso AM

Publicada: 1 sep 2015 Ahead of Print: 14 mar 2015
Categoría: Pharmaceutical Science

Resumen:
To develop a reproducible microdialysis-tumor homogenate method for the study of the intratumor distribution of a highly hydrophobic anticancer drug (SN-38; 7-ethyl-10-hydroxycamptothecin) in neuroblastoma patient-derived xenografts. We studied the nonspecific binding of SN-38 to the microdialysis tubing in the presence of 2-hydroxypropyl-beta-cyclodextrin (HPBCD) in the perfusate. We calibrated the microdialysis probes by the zero flow rate (ZFR) method and calculated the enhancement factor (f = extrapolated SN-38 concentration at the ZFR / SN-38 concentration in the dialysed solution) of HPBCD. We characterized the extravasation of HPBCD to tumors engrafted in mice. In vivo microdialysis and terminal homogenate data at the steady state (subcutaneous pump infusions) were used to calculate the volume of distribution of unbound SN-38 (V-u,V-tumor) in neuroblastoma. HPBCD (10% w/v) in the perfusate prevented the nonspecific binding of SN-38 to the microdialysis probe and enhanced SN-38 recovery (f = 1.86). The extravasation of HPBCD in the tumor during microdialysis was lower than 1%. V-u,V-tumor values were above 3 mL/g tumor for both neuroblastoma models and suggested efficient cellular penetration of SN-38. The method contributes to overcome the limitations of the microdialysis technique in hydrophobic drugs and provides a powerful tool to characterize compartmental anticancer drug distribution in xenografts.
ISSN: 07248741





PHARMACEUTICAL RESEARCH
Editorial
SPRINGER/PLENUM PUBLISHERS, 233 SPRING ST, NEW YORK, NY 10013, Alemania
Tipo de documento: Article
Volumen: 32 Número: 9
Páginas: 2889-2900
WOS Id: 000359140800008
ID de PubMed: 25773723
imagen Open Access

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