Antibody targeting of long-circulating lipidic nanoparticles does not increase tumor localization but does increase internalization in animal models

被引:849
作者
Kirpotin, Dmitri B.
Drummond, Daryl C.
Shao, Yi
Shalaby, M. Refaat
Hong, Keelung
Nielsen, Ulrik B.
Marks, James D.
Benz, Christopher C.
Park, John W.
机构
[1] Univ Calif San Francisco, Ctr Comprehens Canc, Calif Pacific Med Ctr, Inst Res, San Francisco, CA 94115 USA
[2] Hermes Biosci Inc, San Francisco, CA USA
[3] Univ Calif San Francisco, Dept Anesthesia, San Francisco, CA 94143 USA
[4] Univ Calif San Francisco, Div Hematol Oncol, San Francisco, CA 94143 USA
关键词
D O I
10.1158/0008-5472.CAN-05-4199
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
We describe evidence for a novel mechanism of monoclonal antibody (MAb)-directed nanoparticle (immunoliposome) targeting to solid tumors in vivo. Long-circulating immunoliposomes targeted to HER2 (ErbB2, Neu) were prepared by the conjugation of anti-HER2 MAb fragments (Fab' or single chain Fv) to liposome-grafted polyethylene glycol chains. MAb fragment conjugation did not affect the biodistribution or long-circulating properties of i.v.-administered liposomes. However, antibody-directed targeting also did not increase the tumor localization of immunoliposomes, as both targeted and nontargeted liposomes achieved similarly high levels (7-8% injected dose/g tumor tissue) of tumor tissue accumulation in HER2-overexpressing breast cancer xenografts (BT-474). Studies using colloidal gold-labeled liposomes showed the accumulation of anti-HER2 immunoliposomes within cancer cells, whereas matched nontargeted liposomes were located predominantly in extracellular stroma or within macrophages. A similar pattern of stromal accumulation without cancer cell internalization was observed for anti-HER2 immunoliposomes in non-HER2-overexpressing breast cancer xenografts (MCF-7). Flow cytometry of disaggregated tumors posttreatment with either liposomes or immunoliposomes showed up to 6-fold greater intracellular uptake in cancer cells due to targeting. Thus, in contrast to nontargeted liposomes, anti-HER2 immunoliposomes achieved intracelhdar drug delivery via MAb-mediated endocytosis, and this, rather than increased uptake in tumor tissue, was correlated with superior antitumor activity. Immunoliposomes capable of selective internalization in cancer cells in vivo may provide new opportunities for drug delivery.
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页码:6732 / 6740
页数:9
相关论文
共 37 条
[1]   Drug delivery systems: Entering the mainstream [J].
Allen, TM ;
Cullis, PR .
SCIENCE, 2004, 303 (5665) :1818-1822
[2]   A NEW STRATEGY FOR ATTACHMENT OF ANTIBODIES TO STERICALLY STABILIZED LIPOSOMES RESULTING IN EFFICIENT TARGETING TO CANCER-CELLS [J].
ALLEN, TM ;
BRANDEIS, E ;
HANSEN, CB ;
KAO, GY ;
ZALIPSKY, S .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 1995, 1237 (02) :99-108
[3]   GALLIUM TRANSFERRIN AS A MACROMOLECULAR TRACER OF VASCULAR-PERMEABILITY [J].
BRUNETTI, A ;
BLASBERG, RG ;
FINN, RD ;
LARSON, SM .
NUCLEAR MEDICINE AND BIOLOGY, 1988, 15 (06) :665-672
[4]   HUMANIZATION OF AN ANTI-P185HER2 ANTIBODY FOR HUMAN CANCER-THERAPY [J].
CARTER, P ;
PRESTA, L ;
GORMAN, CM ;
RIDGWAY, JBB ;
HENNER, D ;
WONG, WLT ;
ROWLAND, AM ;
KOTTS, C ;
CARVER, ME ;
SHEPARD, HM .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1992, 89 (10) :4285-4289
[5]  
CARTER P, 1996, ANTIBODY ENG PRACTIC, P291
[6]  
Damert A, 1997, CANCER RES, V57, P3860
[7]  
Drummond DC, 1999, PHARMACOL REV, V51, P691
[8]   Long-circulating liposomes for drug delivery in cancer therapy: A review of biodistribution studies in tumor-bearing animals [J].
Gabizon, A ;
Goren, D ;
Horowitz, AT ;
Tzemach, D ;
Lossos, A ;
Siegal, T .
ADVANCED DRUG DELIVERY REVIEWS, 1997, 24 (2-3) :337-344
[9]   Targeting of stealth liposomes to erbB-2 (Her/2) receptor: In vitro and in vivo studies [J].
Goren, D ;
Horowitz, AT ;
Zalipsky, S ;
Woodle, MC ;
Yarden, Y ;
Gabizon, A .
BRITISH JOURNAL OF CANCER, 1996, 74 (11) :1749-1756
[10]   LIPOSOMES CONTAINING COLLOIDAL GOLD ARE A USEFUL PROBE OF LIPOSOME-CELL INTERACTIONS [J].
HONG, K ;
FRIEND, DS ;
GLABE, CG ;
PAPAHADJOPOULOS, D .
BIOCHIMICA ET BIOPHYSICA ACTA, 1983, 732 (01) :320-323