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肿瘤尺度胰腺癌细胞-基质 3D 模型的嵌入式生物打印用于临床前药物筛选。

Embedded Bioprinting of Tumor-Scale Pancreatic Cancer-Stroma 3D Models for Preclinical Drug Screening.

机构信息

Department of Chemistry, CICECO─Aveiro Institute of Materials, University of Aveiro, Campus Universitário de Santiago, Aveiro 3810-193, Portugal.

Department of Physics, University of Aveiro, Campus Universitário de Santiago, Aveiro 3810-193, Portugal.

出版信息

ACS Appl Mater Interfaces. 2024 Oct 23;16(42):56718-56729. doi: 10.1021/acsami.4c11188. Epub 2024 Oct 10.

Abstract

The establishment of organotypic preclinical models that accurately resemble the native tumor microenvironment at an anatomic human scale is highly desirable to level up platforms potential for screening candidate therapies. The bioengineering of anatomic-scaled three-dimensional (3D) models that emulate native tumor scale while recapitulating their cellular and matrix components remains, however, to be fully realized. In this focus, herein, we leveraged embedded 3D bioprinting for biofabricating pancreatic ductal adenocarcinoma (PDAC) models combining gelatin-methacryloyl and hyaluronic acid methacrylate extracellular matrix (ECM)-mimetic biomaterials with human pancreatic cancer cells and cancer-associated fibroblasts to generate models capable of emulating native tumor size (∼6 mm) and stromal elements. By using a viscoelastic continuous polymeric supporting bath, tumor-scale 3D models were rapidly generated (∼50 constructs/h) and easily recovered following in-bath visible light photocrosslinking. As a proof-of-concept, tissue-scale constructs displaying physiomimetic designs were biofabricated. These models also encompass the incorporation of a stromal compartment to better emulate the cellular components of the PDAC native tumor microenvironment (TME) and its stratified spatial organization. Cell-laden tumor-size constructs remained viable for up to 14 days and were responsive to Gemcitabine in a dose-dependent mode. Cancer-stroma models also exhibited increased drug resistance compared to their monotypic counterparts, highlighting the key role of stromal cells in chemotherapeutic resistance. Overall, we report for the first time the freeform biofabrication of PDAC models exhibiting anatomic scale, different structural complexities, and engineered cancer-stromal compartments, being highly valuable for preclinical screening of therapeutics.

摘要

建立能够在人体解剖学尺度上准确模拟天然肿瘤微环境的器官型临床前模型,对于提高筛选候选治疗药物的平台潜力非常重要。然而,要实现模拟天然肿瘤尺度并重现其细胞和基质成分的解剖学尺度三维(3D)模型的生物工程化,仍有许多工作要做。在本研究中,我们利用嵌入式 3D 生物打印技术,通过将明胶甲基丙烯酰和透明质酸甲基丙烯酰细胞外基质(ECM)仿生生物材料与人类胰腺癌细胞和癌相关成纤维细胞相结合,来构建胰腺导管腺癌(PDAC)模型,以生成能够模拟天然肿瘤大小(约 6 毫米)和基质成分的模型。通过使用粘弹性连续聚合物支撑浴,能够快速(约 50 个/小时)生成肿瘤尺度的 3D 模型,并在浴内可见光光交联后轻松回收。作为概念验证,我们构建了具有生理仿生设计的组织尺度结构。这些模型还包含基质隔室的加入,以更好地模拟 PDAC 天然肿瘤微环境(TME)及其分层空间组织的细胞成分。细胞负载的肿瘤尺度构建体在长达 14 天内保持活力,并以剂量依赖的方式对吉西他滨产生反应。与单型对照相比,癌症-基质模型也表现出更高的耐药性,这突出了基质细胞在化疗耐药中的关键作用。总的来说,我们首次报道了能够在人体解剖学尺度上自由成型的 PDAC 模型的构建,该模型具有不同的结构复杂性和工程化的癌症-基质隔室,对于治疗药物的临床前筛选具有重要价值。

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