Driscoll Julia, Yan Irene K, Patel Tushar
Department of Transplantation, Mayo Clinic, Jacksonville, FL 32224, USA.
Pharmaceutics. 2022 Apr 13;14(4):849. doi: 10.3390/pharmaceutics14040849.
The therapeutic activities elicited by mesenchymal stem cells (MSC) are in part mediated through paracrine action by the release of extracellular vesicles (EV) and secreted proteins. Collectively, these MSC-derived factors, referred to as the secretome product (SP), are intrinsically therapeutic and represent an attractive alternative to cell-based therapies. Herein, we developed a lyopreservation protocol to extend the shelf-life of the MSC-SP without compromising the structural or functional integrity of the vesicular components. The SP isolated from normoxia- and anoxia-exposed MSC elicited protective effects in an in vitro model of oxidative injury and the bioactivity was retained in the lyophilized samples. Three separate formulations of MSC-SP were isolated by tangential flow filtration using sucrose, trehalose, and mannitol as lyoprotectant agents. The MSC-SPs were lyophilized using a manifold protocol and the structural and functional integrity were assessed. The trehalose formulation of SP exhibited the highest EV and protein recovery after manifold-based lyophilization. To facilitate development as a therapeutic, a shelf lyophilization protocol was developed which markedly enhanced the recovery of EV and proteins. In conclusion, lyophilization represents an efficient method to preserve the structural and functional integrity of the MSC-SP and can be used to develop an off-the-shelf therapeutic.
间充质干细胞(MSC)引发的治疗活性部分是通过细胞外囊泡(EV)和分泌蛋白的释放介导的旁分泌作用来实现的。这些统称为MSC衍生因子的物质,被称为分泌组产物(SP),具有内在的治疗作用,是基于细胞疗法的一种有吸引力的替代方案。在此,我们开发了一种冻干方案,以延长MSC-SP的保质期,同时不损害囊泡成分的结构或功能完整性。从常氧和缺氧暴露的MSC中分离出的SP在氧化损伤的体外模型中具有保护作用,并且冻干样品中保留了生物活性。使用蔗糖、海藻糖和甘露醇作为冻干保护剂,通过切向流过滤分离出三种不同配方的MSC-SP。使用多歧管方案对MSC-SP进行冻干,并评估其结构和功能完整性。基于多歧管的冻干后,海藻糖配方的SP表现出最高的EV和蛋白质回收率。为了便于作为一种治疗方法进行开发,我们开发了一种货架冻干方案,该方案显著提高了EV和蛋白质的回收率。总之,冻干是一种保存MSC-SP结构和功能完整性的有效方法,可用于开发即用型治疗药物。