Targeted Inhibition of CD133+ Cells in Oral Cancer Cell Lines

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Actinobacillus actinomycetemcomitans
Animals
Antibodies
Monoclonal
Antigens
CD
Bacterial Toxins
Carcinoma
Squamous Cell
Cell Line
Tumor
Cell Proliferation
Gene Expression Regulation
Neoplastic
Glycoproteins
Humans
Immunotoxins
Mice
Molecular Targeted Therapy
Mouth Neoplasms
Mutagenesis
Site-Directed
Neoplastic Stem Cells
Peptides
Dentistry

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Abstract

Resistance to treatment and the appearance of secondary tumors in head and neck squamous cell carcinomas (HNSCC) have been attributed to the presence of cells with stem-cell-like properties in the basal layer of the epithelium at the site of the lesion. In this study, we tested the hypothesis that these putative cancer stem cells (CSC) in HNSCC could be specifically targeted and inhibited. We found that 9 of 10 head and neck tumor biopsies contained a subpopulation of cells that expressed CD133, an unusual surface-exposed membrane-spanning glycoprotein associated with CSC. A genetically modified cytolethal distending toxin (Cdt), from the periodontal pathogen Aggregatibacter actinomycetemcomitans , was conjugated to an anti-human CD133 monoclonal antibody (MAb). The Cdt-MAb complex preferentially inhibited the proliferation of CD133+ cells in cultures of established cell lines derived from HNSCC. Inhibition of the CD133+ cells was rate- and dose-dependent. Saturation kinetics indicated that the response to the Cdt-MAb complex was specific. Healthy primary gingival epithelial cells that are native targets of the wild-type Cdt were not affected. Analysis of these data provides a foundation for the future development of new therapies to target CSC in the early treatment of HNSCC. Abbreviations: Cdt, cytolethal distending toxin; CSC, cancer stem cells; HNSCC, head and neck squamous cell carcinoma; MAb, monoclonal antibody. © 2011 International & American Associations for Dental Research.

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2011-05-01

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Journal of Dental Research

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