Department of Immunology, Mayo Clinic, Rochester, Minneapolis, USA.
PLoS One. 2013 Jul 22;8(7):e70554. doi: 10.1371/journal.pone.0070554. Print 2013.
The biology of the malignant plasma cells (PCs) in multiple myeloma (MM) is highly influenced by the bone marrow (BM) microenvironment in which they reside. More specifically, BM stromal cells (SCs) are known to interact with MM cells to promote MM cell survival and proliferation. By contrast, it is unclear if innate immune cells within this same space also actively participate in the pathology of MM. Our study shows for the first time that eosinophils (Eos) can contribute to the biology of MM by enhancing the proliferation of some malignant PCs. We first demonstrate that PCs and Eos can be found in close proximity in the BM. In culture, Eos were found to augment MM cell proliferation that is predominantly mediated through a soluble factor(s). Fractionation of cell-free supernatants and neutralization studies demonstrated that this activity is independent of Eos-derived microparticles and a proliferation-inducing ligand (APRIL), respectively. Using a multicellular in vitro system designed to resemble the native MM niche, SCs and Eos were shown to have non-redundant roles in their support of MM cell growth. Whereas SCs induce MM cell proliferation predominantly through the secretion of IL-6, Eos stimulate growth of these malignant cells via an IL-6-independent mechanism. Taken together, our study demonstrates for the first time a role for Eos in the pathology of MM and suggests that therapeutic strategies targeting these cells may be beneficial.
恶性浆细胞(PCs)在多发性骨髓瘤(MM)中的生物学特性受其所处的骨髓(BM)微环境的强烈影响。更具体地说,已知 BM 基质细胞(SCs)与 MM 细胞相互作用以促进 MM 细胞的存活和增殖。相比之下,尚不清楚同一空间内的固有免疫细胞是否也积极参与 MM 的病理学。我们的研究首次表明,嗜酸性粒细胞(Eos)可以通过增强某些恶性 PCs 的增殖来促进 MM 的生物学特性。我们首先证明 PCs 和 Eos 可以在 BM 中近距离存在。在培养中,发现 Eos 可增强 MM 细胞的增殖,主要通过可溶性因子(s)介导。无细胞上清液的分级和中和研究表明,该活性分别独立于 Eos 衍生的微粒体和增殖诱导配体(APRIL)。使用一种设计用于模拟天然 MM 龛位的多细胞体外系统,表明 SCs 和 Eos 在支持 MM 细胞生长方面具有非冗余作用。尽管 SCs 主要通过分泌 IL-6 诱导 MM 细胞增殖,但 Eos 通过一种不依赖于 IL-6 的机制刺激这些恶性细胞的生长。总之,我们的研究首次证明了 Eos 在 MM 病理学中的作用,并表明针对这些细胞的治疗策略可能是有益的。