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PMID: 20829328 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, N.I.H., Intramural Research Support, U.S. Gov't, Non-P.H.S.

Heterogeneous blood-tumor barrier permeability determines drug efficacy in experimental brain metastases of breast cancer.

Lockman PR, Mittapalli RK, Taskar KS, Rudraraju V, Gril B, Bohn KA, Adkins CE, Roberts A, Thorsheim HR, Gaasch JA, Huang S, Palmieri D, Steeg PS, Smith QR

Abstract

Brain metastases of breast cancer appear to be increasing in incidence, confer significant morbidity, and threaten to compromise gains made in systemic chemotherapy. The blood-tumor barrier (BTB) is compromised in many brain metastases; however, the extent to which this influences chemotherapeutic delivery and efficacy is unknown. Herein, we answer this question by measuring BTB passive integrity, chemotherapeutic drug uptake, and anticancer efficacy in vivo in two breast cancer models that metastasize preferentially to brain. Experimental brain metastasis drug uptake and BTB permeability were simultaneously measured using novel fluorescent and phosphorescent imaging techniques in immune-compromised mice. Drug-induced apoptosis and vascular characteristics were assessed using immunofluorescent microscopy. Analysis of over 2,000 brain metastases from two models (human 231-BR-Her2 and murine 4T1-BR5) showed partial BTB permeability compromise in greater than 89% of lesions, varying in magnitude within and between metastases. Brain metastasis uptake of ¹⁴C-paclitaxel and ¹⁴C-doxorubicin was generally greater than normal brain but less than 15% of that of other tissues or peripheral metastases, and only reached cytotoxic concentrations in a small subset (∼10%) of the most permeable metastases. Neither drug significantly decreased the experimental brain metastatic ability of 231-BR-Her2 tumor cells. BTB permeability was associated with vascular remodeling and correlated with overexpression of the pericyte protein desmin. This work shows that the BTB remains a significant impediment to standard chemotherapeutic delivery and efficacy in experimental brain metastases of breast cancer. New brain permeable drugs will be needed. Evidence is presented for vascular remodeling in BTB permeability alterations.

MeSH Terms
Animals Antineoplastic Agents/pharmacokinetics,therapeutic use Blood-Brain Barrier/drug effects,metabolism Brain Neoplasms/drug therapy,metabolism,secondary Breast Neoplasms/drug therapy,metabolism,pathology Carcinoma/drug therapy,metabolism,pathology Cell Line, Tumor Disease Models, Animal Doxorubicin/pharmacokinetics,therapeutic use Female Humans Mice Mice, Nude Paclitaxel/pharmacokinetics,therapeutic use Permeability Treatment Outcome Xenograft Model Antitumor Assays
Chemicals
Antineoplastic Agents Doxorubicin Paclitaxel
Authors & Affiliations
14 authors, click to expand affiliations / ORCID
Lockman Paul R
Department of Pharmaceutical Sciences, Cancer Biology Center, Texas Tech University Health Sciences Center, Amarillo, Texas 79106, USA. paul.lockman@ttuhsc.edu
Mittapalli Rajendar K
Taskar Kunal S
Rudraraju Vinay
Gril Brunilde
Bohn Kaci A
Adkins Chris E
Roberts Amanda
Thorsheim Helen R
Gaasch Julie A
Huang Suyun
Palmieri Diane
Steeg Patricia S
Smith Quentin R
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Article Info
Journal
Clinical cancer research : an official journal of the American Association for Cancer Research
Abbr.
Clin Cancer Res
ISSN
1557-3265
Published
2010-12-01
Epub
2010-00-09
Pages
5664-78
Language
English
Region
United States
NLM ID
9502500
PMCID
PMC2999649
Subset
IM
Grants
NINDS NIH HHS · R01 NS052484 · United States
NINDS NIH HHS · R01 NS052484-04 · United States
Intramural NIH HHS · United States
Corrections
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