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A review of current murine models of multiple myeloma used to assess the efficacy of therapeutic agents on tumour growth and bone disease

机译:当前关于多发性骨髓瘤的鼠模型的综述,用于评估治疗剂对肿瘤生长和骨骼疾病的功效

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Pre-clinical in vivo models of multiple myeloma are essential tools for investigating the pathophysiology of multiple myeloma and for testing new therapeutic agents and strategies prior to their potential use in clinical trials. Over the last five decades, several different types of murine models of multiple myeloma have been developed ranging from immunocompetent syngeneic models, e.g. the 5T series of myeloma cells, to immunocompromised models including the SCID xenograft models, which use human myeloma cell lines or patient-derived cells. Other models include hybrid models featuring the implantation of SCID mice with bone chips (SCID-hu or SCID-rab) or 3-D bone scaffolds (SCID-synth-hu), and mice that have been genetically engineered to develop myeloma. Bearing in mind the differences in these models, it is not surprising that they reflect to varying degrees different aspects of myeloma. Here we review the past and present murine models of myeloma, with particular emphasis on their advantages and limitations, characteristics, and their use in testing therapeutic agents to treat myeloma tumour burden and bone disease. (C) 2015 Elsevier Inc. All rights reserved.
机译:临床上的多发性骨髓瘤的体内模型是研究多发性骨髓瘤的病理生理学,以及在将其潜在地用于临床试验之前测试新治疗剂和策略的重要工具。在过去的五十年中,已经开发了多种不同类型的多发性骨髓瘤的鼠模型,其范围从具有免疫能力的同基因模型,例如免疫原性模型。 5T系列骨髓瘤细胞,到免疫功能低下的模型,包括使用人骨髓瘤细胞系或患者来源的细胞的SCID异种移植模型。其他模型包括具有将SCID小鼠植入骨芯片(SCID-hu或SCID-rab)或3-D骨支架(SCID-synth-hu)的混合模型,以及经过基因工程改造而发展为骨髓瘤的小鼠。考虑到这些模型之间的差异,毫不奇怪的是它们在不同程度上反映了骨髓瘤的不同方面。在这里,我们回顾了过去和现在的骨髓瘤鼠模型,特别强调了它们的优势和局限性,特征以及它们在测试治疗剂中治疗骨髓瘤肿瘤负荷和骨病的用途。 (C)2015 Elsevier Inc.保留所有权利。

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