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乳腺癌重建:人性化微生理系统的设计标准。

Breast Cancer Reconstruction: Design Criteria for a Humanized Microphysiological System.

机构信息

Obatala Sciences, Inc., New Orleans, Louisiana, USA.

Division of Basic Pharmaceutical Sciences, Xavier University of Louisiana, New Orleans, Louisiana, USA.

出版信息

Tissue Eng Part A. 2021 Apr;27(7-8):479-488. doi: 10.1089/ten.TEA.2020.0372. Epub 2021 Mar 10.

Abstract

International regulatory agencies such as the Food and Drug Administration have mandated that the scientific community develop humanized microphysiological systems (MPS) as an alternative to animal models in the near future. While the breast cancer research community has long appreciated the importance of three-dimensional growth dynamics in their experimental models, there are remaining obstacles preventing a full conversion to humanized MPS for drug discovery and pathophysiological studies. This perspective evaluates the current status of human tissue-derived cells and scaffolds as building blocks for an "idealized" breast cancer MPS based on bioengineering design principles. It considers the utility of adipose tissue as a potential source of endothelial, lymphohematopoietic, and stromal cells for the support of breast cancer epithelial cells. The relative merits of potential MPS scaffolds derived from adipose tissue, blood components, and synthetic biomaterials is evaluated relative to the current "gold standard" material, Matrigel, a murine chondrosarcoma-derived basement membrane-enriched hydrogel. The advantages and limitations of a humanized breast cancer MPS are discussed in the context of in-process and destructive read-out assays. Impact statement Regulatory authorities have highlighted microphysiological systems as an emerging tool in breast cancer research. This has been led by calls for more predictive human models and reduced animal experimentation. This perspective describes how human-derived cells, extracellular matrices, and hydrogels will provide the building blocks to create breast cancer models that accurately reflect diversity at multiple levels, that is, patient ethnicity, pathophysiology, and metabolic status.

摘要

国际监管机构(如美国食品和药物管理局)已要求科学界在不久的将来开发人性化的微生理系统(MPS)作为动物模型的替代品。虽然乳腺癌研究界长期以来一直重视三维生长动力学在其实验模型中的重要性,但仍存在一些障碍,阻碍了向用于药物发现和病理生理学研究的人性化 MPS 的全面转化。本观点评估了基于生物工程设计原理的“理想”乳腺癌 MPS 中当前的人组织衍生细胞和支架的状况。它考虑了脂肪组织作为支持乳腺癌上皮细胞的内皮细胞、淋巴造血和基质细胞的潜在来源的用途。评估了源自脂肪组织、血液成分和合成生物材料的潜在 MPS 支架相对于当前“金标准”材料 Matrigel(一种源自鼠软骨肉瘤的富含基底膜的水凝胶)的用途。讨论了人性化乳腺癌 MPS 的优缺点,并结合正在进行和破坏性读出测定进行了讨论。 影响说明 监管机构已将微生理系统突出为乳腺癌研究中的新兴工具。这是由于人们呼吁使用更具预测性的人类模型和减少动物实验。本观点描述了如何用人源细胞、细胞外基质和水凝胶来构建能够准确反映多个层面(即患者种族、病理生理学和代谢状态)多样性的乳腺癌模型。

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