A tumor cord model for Doxorubicin delivery and dose optimization in solid tumors

被引:130
作者
Eikenberry, Steffen [1 ]
机构
[1] Arizona State Univ, Dept Math & Stat, Tempe, AZ 85287 USA
关键词
CONTINUOUS INTRAVENOUS-INFUSION; INTERSTITIAL FLUID PRESSURE; NEOPLASTIC TISSUES; MATHEMATICAL-MODEL; CELLULAR PHARMACODYNAMICS; DRUG PENETRATION; DOG LUNG; ADRIAMYCIN; TRANSPORT; MACROMOLECULES;
D O I
10.1186/1742-4682-6-16
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Background: Doxorubicin is a common anticancer agent used in the treatment of a number of neoplasms, with the lifetime dose limited due to the potential for cardiotoxocity. This has motivated efforts to develop optimal dosage regimes that maximize anti-tumor activity while minimizing cardiac toxicity, which is correlated with peak plasma concentration. Doxorubicin is characterized by poor penetration from tumoral vessels into the tumor mass, due to the highly irregular tumor vasculature. I model the delivery of a soluble drug from the vasculature to a solid tumor using a tumor cord model and examine the penetration of doxorubicin under different dosage regimes and tumor microenvironments. Methods: A coupled ODE-PDE model is employed where drug is transported from the vasculature into a tumor cord domain according to the principle of solute transport. Within the tumor cord, extracellular drug diffuses and saturable pharmacokinetics govern uptake and efflux by cancer cells. Cancer cell death is also determined as a function of peak intracellular drug concentration. Results: The model predicts that transport to the tumor cord from the vasculature is dominated by diffusive transport of free drug during the initial plasma drug distribution phase. I characterize the effect of all parameters describing the tumor microenvironment on drug delivery, and large intercapillary distance is predicted to be a major barrier to drug delivery. Comparing continuous drug infusion with bolus injection shows that the optimum infusion time depends upon the drug dose, with bolus injection best for low-dose therapy but short infusions better for high doses. Simulations of multiple treatments suggest that additional treatments have similar efficacy in terms of cell mortality, but drug penetration is limited. Moreover, fractionating a single large dose into several smaller doses slightly improves anti-tumor efficacy. Conclusion: Drug infusion time has a significant effect on the spatial profile of cell mortality within tumor cord systems. Therefore, extending infusion times (up to 2 hours) and fractionating large doses are two strategies that may preserve or increase anti-tumor activity and reduce cardiotoxicity by decreasing peak plasma concentration. However, even under optimal conditions, doxorubicin may have limited delivery into advanced solid tumors.
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页数:20
相关论文
共 57 条
[1]   TRANSPORT OF FLUID AND MACROMOLECULES IN TUMORS .1. ROLE OF INTERSTITIAL PRESSURE AND CONVECTION [J].
BAXTER, LT ;
JAIN, RK .
MICROVASCULAR RESEARCH, 1989, 37 (01) :77-104
[2]   TRANSPORT OF FLUID AND MACROMOLECULES IN TUMORS .3. ROLE OF BINDING AND METABOLISM [J].
BAXTER, LT ;
JAIN, RK .
MICROVASCULAR RESEARCH, 1991, 41 (01) :5-23
[3]   TRANSPORT OF FLUID AND MACROMOLECULES IN TUMORS .2. ROLE OF HETEROGENEOUS PERFUSION AND LYMPHATICS [J].
BAXTER, LT ;
JAIN, RK .
MICROVASCULAR RESEARCH, 1990, 40 (02) :246-263
[4]   Regression and regrowth of tumour cords following single-dose anticancer treatment [J].
Bertuzzi, A ;
D'Onofrio, A ;
Fasano, A ;
Gandolfi, A .
BULLETIN OF MATHEMATICAL BIOLOGY, 2003, 65 (05) :903-931
[5]  
BOUCHER Y, 1992, CANCER RES, V52, P5110
[6]  
CASPER ES, 1991, CANCER, V68, P1221, DOI 10.1002/1097-0142(19910915)68:6<1221::AID-CNCR2820680607>3.0.CO
[7]  
2-R
[8]   DIRECT MEASUREMENT OF INTERSTITIAL CONVECTION AND DIFFUSION OF ALBUMIN IN NORMAL AND NEOPLASTIC TISSUES BY FLUORESCENCE PHOTOBLEACHING [J].
CHARY, SR ;
JAIN, RK .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1989, 86 (14) :5385-5389
[9]   PERMEABILITY OF SINGLE CAPILLARIES TO INTERMEDIATE-SIZED COLORED SOLUTES [J].
CURRY, FE ;
HUXLEY, VH ;
ADAMSON, RH .
AMERICAN JOURNAL OF PHYSIOLOGY, 1983, 245 (03) :H495-H505
[10]   A FICKIAN DIFFUSION TRANSPORT PROCESS WITH FEATURES OF TRANSPORT CATALYSIS - DOXORUBICIN TRANSPORT IN HUMAN RED-BLOOD-CELLS [J].
DALMARK, M ;
STORM, HH .
JOURNAL OF GENERAL PHYSIOLOGY, 1981, 78 (04) :349-364