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多糖和结构蛋白作为乳腺癌组织模型三维支架的组成成分:综述

Polysaccharides and Structural Proteins as Components in Three-Dimensional Scaffolds for Breast Cancer Tissue Models: A Review.

作者信息

Pasquier Eva, Rosendahl Jennifer, Solberg Amalie, Ståhlberg Anders, Håkansson Joakim, Chinga-Carrasco Gary

机构信息

RISE PFI AS, Høgskoleringen 6b, NO-7491 Trondheim, Norway.

RISE Unit of Biological Function, Division Materials and Production, RISE Research Institutes of Sweden, Box 857, 50115 Borås, Sweden.

出版信息

Bioengineering (Basel). 2023 Jun 3;10(6):682. doi: 10.3390/bioengineering10060682.

Abstract

Breast cancer is the most common cancer among women, and even though treatments are available, efficiency varies with the patients. In vitro 2D models are commonly used to develop new treatments. However, 2D models overestimate drug efficiency, which increases the failure rate in later phase III clinical trials. New model systems that allow extensive and efficient drug screening are thus required. Three-dimensional printed hydrogels containing active components for cancer cell growth are interesting candidates for the preparation of next generation cancer cell models. Macromolecules, obtained from marine- and land-based resources, can form biopolymers (polysaccharides such as alginate, chitosan, hyaluronic acid, and cellulose) and bioactive components (structural proteins such as collagen, gelatin, and silk fibroin) in hydrogels with adequate physical properties in terms of porosity, rheology, and mechanical strength. Hence, in this study attention is given to biofabrication methods and to the modification with biological macromolecules to become bioactive and, thus, optimize 3D printed structures that better mimic the cancer cell microenvironment. Ink formulations combining polysaccharides for tuning the mechanical properties and bioactive polymers for controlling cell adhesion is key to optimizing the growth of the cancer cells.

摘要

乳腺癌是女性中最常见的癌症,尽管有多种治疗方法,但治疗效果因患者而异。体外二维模型常用于开发新的治疗方法。然而,二维模型会高估药物疗效,从而增加后期III期临床试验的失败率。因此,需要能够进行广泛且高效药物筛选的新模型系统。含有促进癌细胞生长活性成分的三维打印水凝胶是制备下一代癌细胞模型的理想选择。从海洋和陆地资源中获取的大分子可以形成具有适当物理性质(如孔隙率、流变学和机械强度)的水凝胶中的生物聚合物(如藻酸盐、壳聚糖、透明质酸和纤维素等多糖)和生物活性成分(如胶原蛋白、明胶和丝素蛋白等结构蛋白)。因此,在本研究中,重点关注生物制造方法以及用生物大分子进行修饰以使其具有生物活性,从而优化能更好模拟癌细胞微环境的三维打印结构。结合用于调节机械性能的多糖和用于控制细胞粘附的生物活性聚合物的墨水配方是优化癌细胞生长的关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d20/10295496/c6b1d358fbd5/bioengineering-10-00682-g006.jpg

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