Dasari Subramanyam, Pandhiri Taruni, Haley James, Lenz Dean, Mitra Anirban K
Indiana University School of Medicine.
Urology, Indiana University Health Southern Indiana Physicians.
J Vis Exp. 2018 Aug 28(138):58144. doi: 10.3791/58144.
Intercellular interactions play an important role in many biological processes, including tumor progression, immune responses, angiogenesis, and development. Paracrine or juxtacrine signaling mediates such interactions. The use of a conditioned medium and coculture studies are the most common methods to discriminate between these two types of interactions. However, the effect of localized high concentrations of secreted factors in the microenvironment during the paracrine interactions is not accurately recapitulated by conditioned medium and, thus, may lead to imprecise conclusions. To overcome this problem, we have devised a proximal culture method to study paracrine signaling. The two cell types are grown on either surface of a 10 µm-thick polycarbonate membrane with 0.4 µm pores. The pores allow the exchange of secreted factors and, at the same time, inhibit juxtacrine signaling. The cells can be collected and lysed at the endpoint to determine the effects of the paracrine signaling. In addition to allowing for localized concentration gradients of secreted factors, this method is amenable to experiments involving prolonged periods of culture, as well as the use of inhibitors. While we use this method to study the interactions between ovarian cancer cells and the mesothelial cells they encounter at the site of metastasis, it can be adapted to any two adherent cell types for researchers to study paracrine signaling in various fields, including tumor microenvironment, immunology, and development.
细胞间相互作用在许多生物学过程中发挥着重要作用,包括肿瘤进展、免疫反应、血管生成和发育。旁分泌或近分泌信号传导介导此类相互作用。使用条件培养基和共培养研究是区分这两种相互作用类型的最常用方法。然而,条件培养基并不能准确再现旁分泌相互作用期间微环境中局部高浓度分泌因子的作用,因此可能导致不精确的结论。为了克服这个问题,我们设计了一种近端培养方法来研究旁分泌信号传导。两种细胞类型生长在具有0.4 µm孔径的10 µm厚聚碳酸酯膜的任一表面上。这些孔允许分泌因子的交换,同时抑制近分泌信号传导。在实验终点可以收集并裂解细胞,以确定旁分泌信号传导的作用。除了允许分泌因子形成局部浓度梯度外,该方法还适用于涉及长时间培养以及使用抑制剂的实验。虽然我们使用这种方法来研究卵巢癌细胞与它们在转移部位遇到的间皮细胞之间的相互作用,但它可以适用于任何两种贴壁细胞类型,供研究人员在包括肿瘤微环境、免疫学和发育等各个领域研究旁分泌信号传导。