School of Human Sciences, The University of Western Australia, Perth, WA, 6009, Australia.
Department of Orthopaedic Surgery and Musculoskeletal Medicine, University of Otago Christchurch, Christchurch, 8140, New Zealand.
Adv Healthc Mater. 2023 Dec;12(31):e2301506. doi: 10.1002/adhm.202301506. Epub 2023 Sep 19.
The tumor microenvironment presents spatiotemporal shifts in biomechanical properties with cancer progression. Hydrogel biomaterials like GelAGE offer the stiffness tuneability to recapitulate dynamic changes in tumor tissues by altering photo-energy exposures. Here, a tuneable hydrogel with spatiotemporal control of stiffness and mesh-network is developed. The volume of MCF7 spheroids encapsulated in a linear stiffness gradient demonstrates an inverse relationship with stiffness (p < 0.0001). As spheroids are exposed to increased crosslinking (stiffer) and greater mechanical confinement, spheroid stiffness increases. Protein expression (TRPV4, β1 integrin, E-cadherin, and F-actin) decreases with increasing stiffness while showing strong correlations to spheroid volume (r > 0.9). To further investigate the role of volume, MCF7 spheroids are grown in a soft matrix for 5 days prior to a second polymerisation which presents a stiffness gradient to equally expanded spheroids. Despite being exposed to variable stiffness, these spheroids show even protein expression, confirming volume as a key regulator. Overall, this work showcases the versatility of GelAGE and demonstrates volume expansion as a key regulator of 3D mechanosensation in MCF7 breast cancer spheroids. This platform has the potential to further investigation into the role of stiffness and dimensionality in 3D spheroid culture for other types of cancers and diseases.
肿瘤微环境在癌症进展过程中呈现出生物力学特性的时空变化。水凝胶生物材料,如 GelAGE,通过改变光能量暴露,可以提供刚度调节能力,以再现肿瘤组织的动态变化。在这里,开发了一种具有刚度和网络空间时间控制的可调谐水凝胶。封装在线性刚度梯度中的 MCF7 球体的体积与刚度呈反比(p<0.0001)。随着球体受到更高交联(更硬)和更大机械约束的影响,球体的刚度增加。蛋白表达(TRPV4、β1 整合素、E-钙粘蛋白和 F-肌动蛋白)随刚度增加而降低,而与球体体积具有很强的相关性(r>0.9)。为了进一步研究体积的作用,将 MCF7 球体在软基质中生长 5 天,然后进行第二次聚合,向同样膨胀的球体呈现刚度梯度。尽管暴露于不同的刚度下,这些球体表现出均匀的蛋白表达,这证实了体积是关键调节因素。总的来说,这项工作展示了 GelAGE 的多功能性,并证明了体积扩张是 MCF7 乳腺癌球体三维机械感觉的关键调节因素。该平台有可能进一步研究其他类型的癌症和疾病的三维球体培养中刚度和维度的作用。