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迈向更好的药物研发:毒理学研究中的三维生物打印

Toward better drug development: Three-dimensional bioprinting in toxicological research.

作者信息

Szűcs Diána, Fekete Zsolt, Guba Melinda, Kemény Lajos, Jemnitz Katalin, Kis Emese, Veréb Zoltán

机构信息

Regenerative Medicine and Cellular Pharmacology Laboratory (HECRIN), Department of Dermatology and Allergology, University of Szeged, Szeged, Hungary.

Doctoral School of Clinical Medicine, University of Szeged, Szeged, Hungary.

出版信息

Int J Bioprint. 2023 Jan 6;9(2):663. doi: 10.18063/ijb.v9i2.663. eCollection 2023.

Abstract

The importance of three-dimensional (3D) models in pharmacological tests and personalized therapies is significant. These models allow us to gain insight into the cell response during drug absorption, distribution, metabolism, and elimination in an organ-like system and are suitable for toxicological testing. In personalized and regenerative medicine, the precise characterization of artificial tissues or drug metabolism processes is more than crucial to gain the safest and the most effective treatment for the patients. Using these 3D cell cultures derived directly from patient, such as spheroids, organoids, and bioprinted structures, allows for testing drugs before administration to the patient. These methods allow us to select the most appropriate drug for the patient. Moreover, they provide chance for better recovery of patients, since time is not wasted during therapy switching. These models could be used in applied and basic research as well, because their response to treatments is quite similar to that of the native tissue. Furthermore, they may replace animal models in the future because these methods are cheaper and can avoid interspecies differences. This review puts a spotlight on this dynamically evolving area and its application in toxicological testing.

摘要

三维(3D)模型在药理学测试和个性化治疗中具有重要意义。这些模型使我们能够深入了解药物在类器官系统中的吸收、分布、代谢和消除过程中的细胞反应,适用于毒理学测试。在个性化和再生医学中,对人工组织或药物代谢过程进行精确表征对于为患者获得最安全、最有效的治疗至关重要。使用直接从患者身上获取的这些3D细胞培养物,如球体、类器官和生物打印结构,能够在给患者用药前进行药物测试。这些方法使我们能够为患者选择最合适的药物。此外,它们为患者更好地康复提供了机会,因为在治疗转换过程中不会浪费时间。这些模型也可用于应用研究和基础研究,因为它们对治疗的反应与天然组织非常相似。此外,它们未来可能会取代动物模型,因为这些方法成本更低,并且可以避免种间差异。本综述聚焦于这一动态发展的领域及其在毒理学测试中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a21/10090537/36b16f362d22/IJB-9-2-663-g001.jpg

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