Human preclinical multiple myeloma in vitro models for disease modeling and therapy screening
作者:Mikayla Ybarra, Jaehun Lee, Yun-Ya Chen, Jianhong Lin, Jianjun Zhao, Chao Ma · 发表于:Journal of Biological Engineering · 年份:2025 · DOI:10.1186/s13036-025-00570-4 · 被引用次数:6 · 研究领域:Multiple Myeloma Research and Treatments、Cancer Cells and Metastasis、3D Printing in Biomedical Research
Multiple myeloma (MM) is a hematologic malignancy characterized by uncontrolled expansion of malignant plasma cells within the bone marrow microenvironment. While suspension cultures of MM cell lines and murine models have been the cornerstone of research with MM pathogenesis, these conventional systems fail to recapitulate critical aspects of the human tumor microenvironment. Specifically, current models inadequately address key biological questions including mechanisms of drug resistance acquisition, immune evasion strategies, and the role of cellular crosstalk in disease progression. These limitations stem from the absence of physiologically relevant extracellular matrix architecture, lack of primary human stromal and immune cell populations, and inability to model the bone marrow niche with functional vasculature. Three-dimensional (3D) culture platforms have emerged to address these deficiencies by incorporating structural complexity and cellular heterogeneity. However, many existing 3D models remain insufficient for comprehensive MM modeling, as they typically lack integrated human-derived stromal compartments, functional immune surveillance mechanisms, and physiological vascular networks that collectively regulate MM pathobiology. Advanced humanized in vitro models-particularly those incorporating patient-derived cells within immunocompetent microenvironments-are needed to bridge the translational gap between preclinical findings and clinical outcomes. We analyze the e...