Department of Biosciences & Bioengineering, Indian Institute of Technology Bombay, Mumbai, Maharashtra 400076, India.
Biomater Sci. 2019 Aug 1;7(8):3480-3488. doi: 10.1039/c9bm00184k. Epub 2019 Jul 8.
A hyperglycemic condition like diabetes in patients renders them with an increased risk of developing breast cancer. Hyperglycemia and ageing increase the non-enzymatic glycosylation (glycation) of nearly all proteins in our body including collagen type I, which is an important extracellular matrix (ECM) component. This results in the formation of advanced glycated end products (AGEs), which can form covalent crosslinks in collagen fibers and change the overall architecture and stiffness of the matrix. In this study we have used MDA-MB-231 breast cancer cells to study the interaction of tumor cells with glycated collagen and have explored the role of matrix architecture and RAGE-mediated signaling in cellular behavior. We mimicked the non-enzymatic glycation of protein by treating collagen I with glucose or ribose and found that crosslinking due to AGEs induces collagen fiber bundling and an increase in pore size and stiffness of the matrix. We also observed that AGE formation triggers AGE-RAGE signaling playing a role in the morphology and migration of cells. Furthermore, our study suggests an interplay of the pore size of the collagen matrix and RAGE mediated signaling in 3D invasion of cells and our findings demonstrate that the effect of the AGE-RAGE interaction is more pronounced than that of an altered matrix architecture. This study has helped us develop a 3D system using glycated collagen to study the effects of pathological conditions such as diabetes on extracellular matrix proteins, which may have downstream effects on cell behavior and dysfunction.
高血糖状态,如糖尿病,会使患者罹患乳腺癌的风险增加。高血糖和衰老会增加我们体内几乎所有蛋白质的非酶糖基化(糖化),包括胶原蛋白 I,它是一种重要的细胞外基质(ECM)成分。这导致晚期糖基化终产物(AGEs)的形成,AGEs 可以在胶原蛋白纤维中形成共价交联,并改变基质的整体结构和硬度。在这项研究中,我们使用 MDA-MB-231 乳腺癌细胞来研究肿瘤细胞与糖化胶原蛋白的相互作用,并探索了基质结构和 RAGE 介导的信号转导在细胞行为中的作用。我们通过用葡萄糖或核糖处理胶原蛋白 I 来模拟蛋白质的非酶糖化,发现由于 AGEs 引起的交联会诱导胶原蛋白纤维束状化,并增加基质的孔径和硬度。我们还观察到 AGE 形成触发 AGE-RAGE 信号转导,在细胞形态和迁移中发挥作用。此外,我们的研究表明胶原基质的孔径和 RAGE 介导的信号转导在细胞的 3D 侵袭中相互作用,我们的发现表明 AGE-RAGE 相互作用的影响比改变的基质结构更为显著。这项研究帮助我们开发了一种使用糖化胶原蛋白的 3D 系统,以研究糖尿病等病理状况对细胞外基质蛋白的影响,这可能对细胞行为和功能障碍产生下游影响。