Nemec Stephanie, Ganda Sylvia, Al Taief Karrar, Kopecky Chantal, Kuchel Rhiannon, Lebhar Hélène, Marquis Christopher P, Thordarson Pall, Kilian Kristopher A
School of Materials Science & Engineering, University of New South Wales, Sydney, Australia 2052.
Australian Centre for NanoMedicine, University of New South Wales, Sydney, Australia 2052.
ACS Appl Bio Mater. 2022 Jun 7. doi: 10.1021/acsabm.2c00186.
Laboratory models of the tumor microenvironment require control of mechanical and biochemical properties to ensure accurate mimicry of patient disease. In contrast to pure natural or synthetic materials, hybrid approaches that pair recombinant protein fragments with synthetic scaffolding show many advantages. Here we demonstrate production of a recombinant bacterial collagen-like protein (CLP) for thiol-ene pairing to norbornene functionalized hyaluronic acid (NorHA). The resultant hydrogel material shows an adjustable modulus with evidence for strain-stiffening behavior that resembles natural tumor matrices. Cysteine terminated peptide binding motifs are incorporated to adjust the cell-adhesion points. The modular hybrid gel shows good biocompatibility and was demonstrated to control cell adhesion, proliferation, and the invasive properties of MCF7 and MD-MBA-231 breast adenocarcinoma cells. The ease in which multiple structural and bioactive components can be integrated provides a robust framework to form models of the tumor microenvironment for fundamental studies and drug development.
肿瘤微环境的实验室模型需要控制力学和生化特性,以确保准确模拟患者疾病。与纯天然或合成材料不同,将重组蛋白片段与合成支架相结合的混合方法具有许多优点。在此,我们展示了一种重组细菌类胶原蛋白(CLP)的生产,用于与降冰片烯功能化透明质酸(NorHA)进行硫醇-烯配对。所得水凝胶材料显示出可调节的模量,并有应变硬化行为的证据,类似于天然肿瘤基质。引入了半胱氨酸末端肽结合基序以调节细胞粘附点。模块化混合凝胶显示出良好的生物相容性,并被证明可控制MCF7和MD-MBA-231乳腺腺癌细胞的细胞粘附、增殖和侵袭特性。多种结构和生物活性成分易于整合,为形成用于基础研究和药物开发的肿瘤微环境模型提供了一个强大的框架。