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Intranasal Delivery of Therapeutic Stem Cells to Glioblastoma in a Mouse Model
Published on: June 4, 2017
Selective lentiviral gene delivery to CD133-expressing human glioblastoma stem cells
N Sumru Bayin1, Aram S Modrek2, August Dietrich3
1Department of Neurosurgery, NYU School of Medicine, New York, NY, United States of America; Helen L. and Martin S. Kimmel Center for Stem Cell Biology, NYU School of Medicine, New York, NY, United States of America.
Abstract:
Glioblastoma multiforme (GBM) is a deadly primary brain malignancy. Glioblastoma stem cells (GSC), which have the ability to self-renew and differentiate into tumor lineages, are believed to cause tumor recurrence due to their resistance to current therapies. A subset of GSCs is marked by cell surface expression of CD133, a glycosylated pentaspan transmembrane protein. The study of CD133-expressing GSCs has been limited by the relative paucity of genetic tools that specifically target them. Here, we present CD133-LV, a lentiviral vector presenting a single chain antibody against CD133 on its envelope, as a vehicle for the selective transduction of CD133-expressing GSCs. We show that CD133-LV selectively transduces CD133+ human GSCs in dose-dependent manner and that transduced cells maintain their stem-like properties. The transduction efficiency of CD133-LV is reduced by an antibody that recognizes the same epitope on CD133 as the viral envelope and by shRNA-mediated knockdown of CD133. Conversely, the rate of transduction by CD133-LV is augmented by overexpression of CD133 in primary human GBM cultures. CD133-LV selectively transduces CD133-expressing cells in intracranial human GBM xenografts in NOD.SCID mice, but spares normal mouse brain tissue, neurons derived from human embryonic stem cells and primary human astrocytes. Our findings indicate that CD133-LV represents a novel tool for the selective genetic manipulation of CD133-expressing GSCs, and can be used to answer important questions about how these cells contribute to tumor biology and therapy resistance.
Insights
A novel lentiviral vector, CD133-LV, selectively targets and genetically modifies glioblastoma stem cells (GSCs) expressing CD133. This tool offers new possibilities for studying GSC biology and overcoming therapy resistance in glioblastoma multiforme.
Area of Science:
- Neuro-oncology
- Molecular Biology
- Gene Therapy
Background:
- Glioblastoma multiforme (GBM) is a fatal brain cancer.
- Glioblastoma stem cells (GSCs) drive tumor recurrence and therapy resistance.
- CD133 is a surface marker on a subset of GSCs, but tools to target them are limited.
Purpose of the Study:
- To develop a novel lentiviral vector (CD133-LV) for selective genetic manipulation of CD133-expressing GSCs.
- To assess the efficacy and specificity of CD133-LV in targeting GSCs.
Main Methods:
- Engineering a lentiviral vector (CD133-LV) with a single-chain antibody against CD133.
- Testing CD133-LV transduction efficiency in human GSCs, GBM cultures, and xenografts.
- Evaluating the impact of CD133 expression levels and blocking antibodies on transduction.
Main Results:
- CD133-LV selectively transduced CD133+ GSCs in a dose-dependent manner.
- Transduced GSCs retained their stem-like properties.
- Transduction was specific to CD133-expressing cells, sparing normal brain cells and astrocytes in vivo.
Conclusions:
- CD133-LV is a potent and specific tool for targeting CD133+ GSCs.
- This vector facilitates genetic manipulation of GSCs, aiding research into glioblastoma biology and treatment resistance.
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