...
首页> 外文期刊>Advanced Science >Designer Self‐Assembling Peptide Hydrogels to Engineer 3D Cell Microenvironments for Cell Constructs Formation and Precise Oncology Remodeling in Ovarian Cancer
【24h】

Designer Self‐Assembling Peptide Hydrogels to Engineer 3D Cell Microenvironments for Cell Constructs Formation and Precise Oncology Remodeling in Ovarian Cancer

机译:设计师自组装肽水凝胶到工程师3D细胞微环境,用于细胞构建体构建和卵巢癌中的精确肿瘤改造

获取原文
           

摘要

Designer self‐assembling peptides form the entangled nanofiber networks in hydrogels by ionic‐complementary self‐assembly. This type of hydrogel has realistic biological and physiochemical properties to serve as biomimetic extracellular matrix (ECM) for biomedical applications. The advantages and benefits are distinct from natural hydrogels and other synthetic or semisynthetic hydrogels. Designer peptides provide diverse alternatives of main building blocks to form various functional nanostructures. The entangled nanofiber networks permit essential compositional complexity and heterogeneity of engineering cell microenvironments in comparison with other hydrogels, which may reconstruct the tumor microenvironments (TMEs) in 3D cell cultures and tissue‐specific modeling in vitro. Either ovarian cancer progression or recurrence and relapse are involved in the multifaceted TMEs in addition to mesothelial cells, fibroblasts, endothelial cells, pericytes, immune cells, adipocytes, and the ECM. Based on the progress in common hydrogel products, this work focuses on the diverse designer self‐assembling peptide hydrogels for instructive cell constructs in tissue‐specific modeling and the precise oncology remodeling for ovarian cancer, which are issued by several research aspects in a 3D context. The advantages and significance of designer peptide hydrogels are discussed, and some common approaches and coming challenges are also addressed in current complex tumor diseases.
机译:设计者通过离子互补的自组装在水凝胶中形成缠绕的纳米恐怖网络。这种类型的水凝胶具有实际的生物和生理化学性质,用作生物医学应用的仿生细胞外基质(ECM)。优点和益处与天然水凝胶和其他合成或半合成水凝胶不同。设计师肽提供了主要建筑块的各种替代品,以形成各种功能纳米结构。与其他水凝胶相比,缠绕的纳米纤维网络允许工程细胞微环境的基本组成复杂性和工程细胞微环境的异质性,其可以在3D细胞培养物中重建肿瘤微环境(TMES)和体外组织特异性建模。除了间皮细胞,成纤维细胞,内皮细胞,周细胞,免疫细胞,脂肪细胞和ECM之外,卵巢癌进展或复发和复发涉及多方面的TME。基于普通水凝胶产品的进展,这项工作侧重于组织特异性建模中的指导细胞构建体的多样化设计师自组装肽水凝胶和卵巢癌的精确肿瘤重塑,这是在3D背景下的几个研究方面发布的。讨论了设计者肽水凝胶的优点和意义,以及一些常见的方法和发出的挑战也在目前的复杂肿瘤疾病中解决。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号