Laboratory Preclinical and Surgical Studies, IRCCS Istituto Ortopedico Rizzoli, Via di Barbiano, 1/10, 40136, Bologna, Italy.
Cell Mol Life Sci. 2020 Oct;77(20):3913-3944. doi: 10.1007/s00018-020-03513-y. Epub 2020 Apr 13.
Despite numerous advances in tumor screening, diagnosis, and treatment, to date, tumors remain one of the leading causes of death, principally due to metastasis and the physiological damage produced by tumor growth. Among the main limits related to the study of tumor physiology there is the complex and heterogeneity nature of its environment and the absence of relevant, simple and inexpensive models able to mimic the biological processes occurring in patients allowing the correct clinical translation of results. To enhance the understanding of the mechanisms of tumors and to develop and evaluate new therapeutic approaches the set-up of advanced and alternative models is mandatory. One of the more translational approaches seems to be the use of humanized three-dimensional (3D) tissue culture. This model allows to accurately mimic tumor morphology and biology, maintaining the native microenvironment without any manipulation. However, little is still known on the real clinical relevance of these models for the study of tumor mechanisms and for the screening of new therapy. The aim of this descriptive systematic literature review was to evaluate and summarize the current knowledge on human 3D tumor tissue culture models. We reviewed the strategies employed by researchers to set-up these systems, also considering the different approaches and culture conditions used. All these aspects greatly contribute to the existing knowledge on tumors, providing a specific link to clinical scenarios and making the humanized 3D tumor tissue models a more attractive tool both for researchers and clinicians.
尽管肿瘤的筛查、诊断和治疗取得了许多进展,但迄今为止,肿瘤仍然是主要的死亡原因之一,主要是由于转移和肿瘤生长所产生的生理损伤。在肿瘤生理学研究的主要限制中,有其环境的复杂和异质性性质,以及缺乏相关的、简单和廉价的模型,能够模拟患者体内发生的生物学过程,从而正确地将研究结果转化为临床应用。为了增强对肿瘤机制的理解,并开发和评估新的治疗方法,必须建立先进的和替代的模型。一种更具转化性的方法似乎是使用人类化的三维(3D)组织培养。这种模型能够准确地模拟肿瘤的形态和生物学特性,在不进行任何操作的情况下保持其天然的微环境。然而,对于这些模型在肿瘤机制研究和新疗法筛选中的实际临床相关性,我们仍然知之甚少。本描述性系统文献综述旨在评估和总结目前关于人类 3D 肿瘤组织培养模型的知识。我们回顾了研究人员建立这些系统所采用的策略,同时还考虑了不同的方法和培养条件。所有这些方面都极大地促进了对肿瘤的现有认识,为临床情况提供了一个特定的联系,并使人类化的 3D 肿瘤组织模型成为研究人员和临床医生更有吸引力的工具。