Castilla-Casadiego David A, Timsina Hemanta, Haseli Mahsa, Pinzon-Herrera Luis, Chiao Yu-Hsuan, Wickramasinghe S Ranil, Almodovar Jorge
Ralph E. Martin Department of Chemical Engineering, University of Arkansas, 3202 Bell Engineering Center, Fayetteville, Arkansas 72701, United States.
ACS Biomater Sci Eng. 2020 Dec 14;6(12):6626-6651. doi: 10.1021/acsbiomaterials.0c01397. Epub 2020 Nov 19.
Thin films are of interest in materials design because they allow for the modification of surface properties of materials while the bulk properties of the material are largely unaffected. In this work, we outline methods for the assembly of thin films using a technique known as layer-by-layer (LbL). Furthermore, their interactions with human mesenchymal stromal cells (hMSCs) are discussed. hMSCs are a subject of growing interest because of their potential to treat or cure diseases, given their immunosuppressive properties, multipotent differentiation capabilities, and tissue regeneration capabilities. Numerous improvements and modifications have been suggested for the harvesting, treatment, and culture of hMSCs prior to their administration in human subjects. Here, we discuss methods to assess the interactions of hMSCs with thin LbL-assembled films of heparin and collagen. Three different methods are discussed. The first details the preparation of heparin/collagen multilayers on different surfaces and the seeding of cells on these multilayers. The second method details the characterization of multilayers, including techniques to assess the thickness, roughness, and surface charge of the multilayers, as well as in situ deposition of multilayers. The third method details the analysis of cell interactions with the multilayers, including techniques to assess proliferation, viability, real-time monitoring of hMSC behavior, analysis of hMSC-adhesive proteins on the multilayers, immunomodulatory factor expression of hMSCs, and cytokine expression on heparin/collagen multilayers. We propose that the methods described in this work will assist in the design and characterization of LbL-assembled thin films and the analysis of hMSCs cultured on these thin films.
薄膜在材料设计中备受关注,因为它们能够改变材料的表面性质,而材料的本体性质在很大程度上不受影响。在这项工作中,我们概述了使用一种称为层层组装(LbL)的技术来组装薄膜的方法。此外,还讨论了它们与人间充质基质细胞(hMSCs)的相互作用。hMSCs因其免疫抑制特性、多能分化能力和组织再生能力而具有治疗或治愈疾病的潜力,因此越来越受到关注。在将hMSCs应用于人体之前,人们对其收获、处理和培养提出了许多改进和修改建议。在这里,我们讨论评估hMSCs与肝素和胶原蛋白的LbL组装薄膜相互作用的方法。讨论了三种不同的方法。第一种方法详细介绍了在不同表面上制备肝素/胶原蛋白多层膜以及在这些多层膜上接种细胞的过程。第二种方法详细介绍了多层膜的表征,包括评估多层膜厚度、粗糙度和表面电荷的技术,以及多层膜的原位沉积。第三种方法详细介绍了细胞与多层膜相互作用的分析,包括评估增殖、活力、实时监测hMSC行为、分析多层膜上hMSC黏附蛋白、hMSCs免疫调节因子表达以及肝素/胶原蛋白多层膜上细胞因子表达的技术。我们认为,这项工作中描述的方法将有助于LbL组装薄膜的设计和表征,以及对在这些薄膜上培养的hMSCs的分析。