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Bortezomib Resistance Can Be Reversed by Induced Expression of Plasma Cell Maturation Markers in a Mouse In Vitro Model of Multiple Myeloma
Authors:Holly A F Stessman  Aatif Mansoor  Fenghuang Zhan  Michael A Linden  Brian Van Ness  Linda B Baughn
Affiliation:1. Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, Minnesota, United States of America.; 2. Department of Internal Medicine, University of Iowa Carver College of Medicine, Iowa City, Iowa, United States of America.; 3. Department of Laboratory Medicine and Pathology, University of Minnesota, Minneapolis, Minnesota, United States of America.; Children’s Hospital Boston, United States of America,
Abstract:Multiple myeloma (MM), the second most common hematopoietic malignancy, remains an incurable plasma cell (PC) neoplasm. While the proteasome inhibitor, bortezomib (Bz) has increased patient survival, resistance represents a major treatment obstacle as most patients ultimately relapse becoming refractory to additional Bz therapy. Current tests fail to detect emerging resistance; by the time patients acquire resistance, their prognosis is often poor. To establish immunophenotypic signatures that predict Bz sensitivity, we utilized Bz-sensitive and -resistant cell lines derived from tumors of the Bcl-XL/Myc mouse model of PC malignancy. We identified significantly reduced expression of two markers (CD93, CD69) in “acquired” (Bz-selected) resistant cells. Using this phenotypic signature, we isolated a subpopulation of cells from a drug-naïve, Bz-sensitive culture that displayed “innate” resistance to Bz. Although these genes were identified as biomarkers, they may indicate a mechanism for Bz-resistance through the loss of PC maturation which may be induced and/or selected by Bz. Significantly, induction of PC maturation in both “acquired” and “innate” resistant cells restored Bz sensitivity suggesting a novel therapeutic approach for reversing Bz resistance in refractory MM.
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