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首页> 外文期刊>International Journal of Nanomedicine >Mimicking the Endometrial Cancer Tumor Microenvironment to Reprogram Tumor-Associated Macrophages in Disintegrable Supramolecular Gelatin Hydrogel
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Mimicking the Endometrial Cancer Tumor Microenvironment to Reprogram Tumor-Associated Macrophages in Disintegrable Supramolecular Gelatin Hydrogel

机译:模仿子宫内膜癌肿瘤微环境以重新编程肿瘤相关巨噬细胞在崩解的超分子明胶水凝胶中

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Purpose: Besides the tumor cells themselves, solid tumors are comprised of numerous cell types including infiltrating immune cells such as tumor-associated macrophages (TAMs). TAMs are vital stromal components of host immune system and play a critical role in the development of cancer. TAMs can be divided into two subtypes: M1 tumor-suppressive macrophage and M2 tumor-supportive macrophage. To better address the observations of TAMs functional performance, we describe an in vitro system that mimics the populations of TAMs infiltrated into the tumor mass by using our disintegrable supramolecular gelatin (DSG) hydrogels, which are physically crosslinked by host-guest complexations. Materials and Methods: The host–guest interaction was adopted between the aromatic groups of gelatin and the photocrosslinkable acrylated β-cyclodextrins (Ac-β-CDs) to form the DSG hydrogels. The convenient macrophage/endometrial cancer cells heterospheroid 3D model was set up by DSG hydrogels. RT-PCR and Western blot assays were developed to evaluate the efficiencies of inducers on the macrophages. The ELISA and oxygen saturation assays were performed to measure the secretion of VEGF and consumption of oxygen of tumor and/or macrophages, respectively. To determine the antitumor effects of M2 reprogrammed macrophages in vitro and in vivo, migration assay and tumor xenograft model were used, respectively. Results: The host-guest complexations of DSG hydrogels were controllably broken efficiently by soaking into the solution of competitive guest monomers 1-adamantanamine hydrochloride. The DSG hydrogels help IFN-γ reprogram the M2 to M1 and then decrease the tumor/M2 reprogrammed macrophage cells heterospheroid secretion of VEGF and increase the relative oxygen saturation. Significantly, the co-cultural tumor/M2 reprogrammed group from the disintegrated DSG hydrogels reduced the migration of cancer cells in vitro and the tumor growth in vivo. Conclusion: We obtain a TAMs/tumor microenvironment-responsive 3D model based on the novel DSG hydrogels, and will be of utility in cancer therapy and drug discovery.
机译:目的:除了肿瘤细胞本身外,固体肿瘤由许多细胞类型组成,包括浸润免疫细胞,例如肿瘤相关的巨噬细胞(TAMS)。 TAMS是宿主免疫系统的重要基质成分,并在癌症的发展中发挥关键作用。 TAMS可分为两种亚型:M1肿瘤抑制巨噬细胞和M2肿瘤支持性巨噬细胞。为了更好地解决TAMS功能性能的观察,我们描述了一种体外系统,通过使用我们的可崩解的超分子明胶(DSG)水凝胶来模拟浸润到肿瘤质量的TAMS群体,该水凝胶通过宿主访客络合物理地交联。材料和方法:在明胶和光源和光关键型丙烯酸丙烯酸β-环糊精(AC-β-CD)之间采用宿主的相互作用以形成DSG水凝胶。由DSG水凝胶建立了方便的巨噬细胞/子宫内膜癌细胞异物3D模型。开发RT-PCR和Western印迹测定以评估诱导剂对巨噬细胞的效率。进行ELISA和氧饱和测定以分别测量VEGF的分泌和肿瘤和/或巨噬细胞的氧气消耗。为了确定M2重新编程巨噬细胞在体外和体内的抗肿瘤效应,分别使用迁移测定和肿瘤异种移植模型。结果:DSG水凝胶的宿主访客络合通过浸泡进入竞争性客体单体1-anamAMantanamine盐酸盐的解决方案有效地进行了有效的。 DSG水凝胶帮助IFN-γ重新编程M2至M1,然后减少VEGF的肿瘤/ M2重编程的巨噬细胞异细胞体分泌并增加相对氧饱和度。值得注意的是,来自崩解的DSG水凝胶的共培养肿瘤/ M2重编程组在体外减少了癌细胞的迁移和体内肿瘤生长。结论:我们基于新型DSG水凝胶获得TAMS /肿瘤微环境响应3D模型,并将是癌症治疗和药物发现中的效用。

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