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On-demand dissolution of modular synthetic extracellular matrix reveals local epithelial-stromal communication networks

机译:模块化合成人工细胞基质的按需溶解揭示了局部上皮-基质通讯网络

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摘要

Methods to parse paracrine epithelial-stromal communication networks are a vital need in drug development, as disruption of these networks underlies diseases ranging from cancer to endometriosis. Here, we describe a modular, synthetic, and dissolvable extracellular matrix (MSD-ECM) hydrogel that fosters functional 3D epithelial-stromal co-culture, and that can be dissolved on-demand to recover cells and paracrine signaling proteins intact for subsequent analysis. Specifically, synthetic polymer hydrogels, modified with cell-interacting adhesion motifs and crosslinked with peptides that include a substrate for cell-mediated proteolytic remodeling, can be rapidly dissolved by an engineered version of the microbial transpeptidase Sortase A (SrtA) if the crosslinking peptide includes a SrtA substrate motif and a soluble second substrate. SrtA-mediated dissolution affected only 1 of 31 cytokines and growth factors assayed, whereas standard protease degradation methods destroyed about half of these same molecules. Using co-encapsulated endometrial epithelial and stromal cells as one model system, we show that the dynamic cytokine and growth factor response of co-cultures to an inflammatory cue is richer and more nuanced when measured from SrtA-dissolved gel microenvironments than from the culture supernate. This system employs accessible, reproducible reagents and facile protocols; hence, has potential as a tool in identifying and validating therapeutic targets in complex diseases.
机译:解析旁分泌上皮-间质通讯网络的方法在药物开发中是至关重要的,因为这些网络的破坏是从癌症到子宫内膜异位症等疾病的基础。在这里,我们描述了一种模块化的,合成的和可溶解的细胞外基质(MSD-ECM)水凝胶,可促进功能性3D上皮-基质共培养,并且可以按需溶解以恢复细胞和旁分泌信号蛋白完整,以进行后续分析。具体而言,经过修饰的具有细胞相互作用的粘附基序并与包含用于细胞介导的蛋白水解重塑的基质的肽交联的合成聚合物水凝胶可以通过工程改造形式的微生物转肽酶分选酶A(SrtA)快速溶解,如果交联肽包括SrtA底物基序和可溶性第二底物。 SrtA介导的溶出仅影响所测定的31种细胞因子和生长因子中的一种,而标准蛋白酶降解方法破坏了大约一半的这些相同分子。使用共包封的子宫内膜上皮和基质细胞作为一个模型系统,我们显示,从SrtA溶解的凝胶微环境中测量,与培养上清液相比,共培养物对炎症线索的动态细胞因子和生长因子反应更丰富,更细微差别。 。该系统采用可访问,可复制的试剂和简便的操作流程;因此,在鉴定和验证复杂疾病中的治疗目标方面具有潜力。

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