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Maytansinoid immunoconjugate IMGN901 is cytotoxic in a three-dimensional culture model of multiple myeloma

机译:美登木素生物碱免疫偶联物IMGN901在多发性骨髓瘤的三维培养模型中具有细胞毒性

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摘要

Environmental-mediated drug-resistance (EM-DR) presents a major challenge for therapeutic development. Tissue microenvironment in the form of extracellular matrix, soluble factors, and stroma contribute to EM-DR. In multiple myeloma (MM), drug-resistance has hindered treatment success with 5-year survival rates remaining <50%. Here we evaluated IMGN901, a maytansinoid immunoconjugate, for its ability to overcome EM-DR alone or in combination with lenalidomide or dexamethasone. We show that while adhesion of MM cells to the extracellular matrix reduces potency of IMGN901, it remains cytotoxic with an average LC50=43 nM. However, only a combination of IMGN901, lenalidomide, and dexamethasone was able to overcome drug-resistance arising from the direct contact between MM and stromal cells. We demonstrate that multi-drug resistance protein-1 (MDR-1) was upregulated in MM cells grown in contact with stroma, likely responsible for the observed resistance. This study emphasizes the importance of incorporating the elements of tumor microenvironment during preclinical testing of novel therapeutics.
机译:环境介导的抗药性(EM-DR)对治疗的发展提出了重大挑战。以细胞外基质,可溶性因子和基质形式存在的组织微环境有助于EM-DR。在多发性骨髓瘤(MM)中,耐药性阻碍了治疗的成功,其5年生存率仍<50%。在这里,我们评估了美登木素生物碱免疫缀合物IMGN901克服EM-DR单独或与来那度胺或地塞米松联合使用的能力。我们显示,虽然MM细胞对细胞外基质的粘附降低了IMGN901的效力,但它仍具有平均LC50 = 43 nM的细胞毒性。但是,只有IMGN901,来那度胺和地塞米松的组合才能克服由于MM与基质细胞直接接触而引起的耐药性。我们证明多药耐药蛋白-1(MDR-1)在与基质接触生长的MM细胞中上调,可能是观察到的耐药性的原因。这项研究强调了在新疗法的临床前测试中纳入肿瘤微环境要素的重要性。

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