Human bone marrow-derived mesenchymal stem cells in the treatment of gliomas

被引:855
作者
Nakamizo, A
Marini, F
Amano, T
Khan, A
Studeny, M
Gumin, J
Chen, J
Hentschel, S
Vecil, G
Dembinski, J
Andreeff, M
Lang, FF
机构
[1] Univ Texas, MD Anderson Canc Ctr, Dept Neurosurg, Unit 442, Houston, TX 77030 USA
[2] Univ Texas, MD Anderson Canc Ctr, Brain Tumor Ctr, Houston, TX USA
[3] Univ Texas, MD Anderson Canc Ctr, Dept Blood & Marrow Transplantat, Houston, TX USA
关键词
D O I
10.1158/0008-5472.CAN-04-1874
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
The poor survival of patients with human malignant gliomas relates partly to the inability to deliver therapeutic agents to the tumor. Because it has been suggested that circulating bone marrow-derived stem cells can be recruited into solid organs in response to tissue stresses, we hypothesized that human bone marrow-derived mesenchymal stem cells (hMSC) may have a tropism for brain tumors and thus could be used as delivery vehicles for glioma therapy. To test this, we isolated hMSCs from bone marrow of normal volunteers, fluorescently labeled the cells, and injected them into the carotid artery of mice bearing human glioma intracranial xenografts (U87, U251, and LN229). hMSCs were seen exclusively within the brain tumors regardless of whether the cells were injected into the ipsilateral or contralateral carotid artery. In contrast, intracarotid injections of fibroblasts or U87 glioma cells resulted in widespread distribution of delivered cells without tumor specificity. To assess the potential of hMSCs to track human gliomas, we injected hMSCs directly into the cerebral hemisphere opposite an established human glioma and showed that the hMSCs were capable of migrating into the xenograft in vivo. Likewise, in vitro Matrigel invasion assays showed that conditioned medium from gliomas, but not from fibroblasts or astrocytes, supported the migration of hMSCs and that platelet-derived growth factor, epidermal growth factor, or stromal cell-derived factor-1 alpha, but not basic fibroblast growth factor or vascular endothelial growth factor, enhanced hMSC migration. To test the potential of hMSCs to deliver a therapeutic agent, hMSCs were engineered to release IFN-beta (hMSC-IFN-beta). In vitro coculture and Transwell experiments showed the efficacy of hMSC-IFN-beta against human gliomas. In vivo experiments showed that treatment of human U87 intracranial glioma xenografts with hMSC-IFN-beta significantly increase animal survival compared with controls (P < 0.05). We conclude that hMSCs can integrate into human gliomas after intravascular or local delivery, that this engraftment may be mediated by growth factors, and that this tropism of hMSCs for human gliomas can be exploited to therapeutic advantage.
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页码:3307 / 3318
页数:12
相关论文
共 58 条
[1]   Neural stem cells display extensive tropism for pathology in adult brain: Evidence from intracranial gliomas [J].
Aboody, KS ;
Brown, A ;
Rainov, NG ;
Bower, KA ;
Liu, SX ;
Yang, W ;
Small, JE ;
Herrlinger, U ;
Ourednik, V ;
Black, PM ;
Breakefield, XO ;
Snyder, EY .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (23) :12846-12851
[2]   Blood clearance rates of adenovirus type 5 in mice [J].
Alemany, R ;
Suzuki, K ;
Curiel, DT .
JOURNAL OF GENERAL VIROLOGY, 2000, 81 :2605-2609
[3]   RECOMBINANT INTERFERON-BETA - A PHASE-I-II TRIAL IN CHILDREN WITH RECURRENT BRAIN-TUMORS [J].
ALLEN, J ;
PACKER, R ;
BLEYER, A ;
ZELTZER, P ;
PRADOS, M ;
NIRENBERG, A .
JOURNAL OF CLINICAL ONCOLOGY, 1991, 9 (05) :783-788
[4]   Engraftment and migration of human bone marrow stromal cells implanted in the brains of albino rats - similarities to astrocyte grafts [J].
Azizi, SA ;
Stokes, D ;
Augelli, BJ ;
DiGirolamo, C ;
Prockop, DJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (07) :3908-3913
[5]   Inflammatory cells, cytokines and chemokines in breast cancer progression: reciprocal tumor-microenvironment interactions [J].
Ben-Baruch, A .
BREAST CANCER RESEARCH, 2003, 5 (01) :31-36
[6]   Gene therapy of experimental brain tumors using neural progenitor cells [J].
Benedetti, S ;
Pirola, B ;
Pollo, B ;
Magrassi, L ;
Bruzzone, MG ;
Rigamonti, D ;
Galli, R ;
Selleri, S ;
Di Meco, F ;
De Fraja, C ;
Vescovi, A ;
Cattaneo, E ;
Finocchiaro, G .
NATURE MEDICINE, 2000, 6 (04) :447-450
[7]   Bone marrow stromal stem cells: Nature, biology, and potential applications [J].
Bianco, P ;
Riminucci, M ;
Gronthos, S ;
Robey, PG .
STEM CELLS, 2001, 19 (03) :180-192
[8]   Putting tumours in context [J].
Bissell, MJ ;
Radisky, D .
NATURE REVIEWS CANCER, 2001, 1 (01) :46-54
[9]   Intravascular delivery of neural stem cell lines to target intracranial and extracranial tumors of neural and non-neural origin [J].
Brown, AB ;
Yang, W ;
Schmidt, NO ;
Carroll, R ;
Leishear, KK ;
Rainov, NG ;
Black, PM ;
Breakefield, XO ;
Aboody, KS .
HUMAN GENE THERAPY, 2003, 14 (18) :1777-1785
[10]   Mesenchymal stem cell surface antigen SB-10 corresponds to activated leukocyte cell adhesion molecule and is involved in osteogenic differentiation [J].
Bruder, SP ;
Ricalton, NS ;
Boynton, RE ;
Connolly, TJ ;
Jaiswal, N ;
Zala, J ;
Barry, FP .
JOURNAL OF BONE AND MINERAL RESEARCH, 1998, 13 (04) :655-663