Erasmus MC Transplant Institute, Department of Internal Medicine, Erasmus University Medical Center, 3015 GD Rotterdam, The Netherlands.
The Netherlands Cancer Institute, Department of Pathology, Plesmanlaan 121, 1066 CX Amsterdam, The Netherlands.
Int J Mol Sci. 2021 Nov 29;22(23):12935. doi: 10.3390/ijms222312935.
Extracellular vesicles (EV) derived from mesenchymal stromal cells (MSC) are a potential therapy for immunological and degenerative diseases. However, large-scale production of EV free from contamination by soluble proteins is a major challenge. The generation of particles from isolated membranes of MSC, membrane particles (MP), may be an alternative to EV. In the present study we generated MP from the membranes of lysed MSC after removal of the nuclei. The yield of MP per MSC was 1 × 10 times higher than EV derived from the same number of MSC. To compare the proteome of MP and EV, proteomic analysis of MP and EV was performed. MP contained over 20 times more proteins than EV. The proteins present in MP evidenced a multi-organelle origin of MP. The projected function of the proteins in EV and MP was very different. Whilst proteins in EV mainly play a role in extracellular matrix organization, proteins in MP were interconnected in diverse molecular pathways, including protein synthesis and degradation pathways and demonstrated enzymatic activity. Treatment of MSC with IFNγ led to a profound effect on the protein make up of EV and MP, demonstrating the possibility to modify the phenotype of EV and MP through modification of parent MSC. These results demonstrate that MP are an attractive alternative to EV for the development of potential therapies. Functional studies will have to demonstrate therapeutic efficacy of MP in preclinical disease models.
细胞外囊泡(EV)来源于间充质基质细胞(MSC),是治疗免疫和退行性疾病的一种有潜力的方法。然而,大规模生产无可溶性蛋白污染的 EV 是一个主要的挑战。从分离的 MSC 膜中产生颗粒,即膜颗粒(MP),可能是 EV 的替代方法。在本研究中,我们从去除细胞核后的 MSC 裂解膜中生成 MP。每个 MSC 产生的 MP 的产量比从相同数量的 MSC 中产生的 EV 高 1×10 倍。为了比较 MP 和 EV 的蛋白质组,对 MP 和 EV 进行了蛋白质组分析。MP 中包含的蛋白质比 EV 多 20 多倍。MP 中存在的蛋白质表明 MP 具有多细胞器起源。EV 和 MP 中存在的蛋白质的预期功能非常不同。虽然 EV 中的蛋白质主要在细胞外基质组织中发挥作用,但 MP 中的蛋白质在不同的分子途径中相互连接,包括蛋白质合成和降解途径,并表现出酶活性。IFNγ 处理 MSC 会对 EV 和 MP 的蛋白质组成产生深远影响,这表明通过修饰母 MSC 可以改变 EV 和 MP 的表型。这些结果表明,MP 是 EV 的一种有吸引力的替代方法,可用于开发潜在的治疗方法。功能研究将不得不证明 MP 在临床前疾病模型中的治疗效果。