Department of Bioengineering, Rice University, Houston, Texas, USA.
Tissue Eng Part B Rev. 2010 Jun;16(3):351-9. doi: 10.1089/ten.TEB.2009.0676.
There is increasing recognition that three-dimensional (3D) tissue culture technologies have many uses within the biomedical sciences beyond the scope of regenerative medicine. One such use is in the field of cancer biology, where a 3D tumor model that accurately recreates the in vivo tumor phenotype would be a valuable tool for studying tumor biology and would allow better preclinical evaluation of anticancer drug candidates. The most widely used model involves small cellular aggregates, termed spheroids, which have been used by cancer biologists for decades and have consistently shown the superiority of 3D tissue culture over standard two-dimensional monolayer culture for mimicking the tumor behavior and drug resistance encountered in vivo. Currently, several research groups have begun to adapt more advanced 3D culture techniques from the tissue engineering field to create a more clinically accurate ex vivo model of tumor biology.
人们越来越认识到,三维(3D)组织培养技术在再生医学领域之外的生物医学科学中有许多用途。癌症生物学就是其中之一,在这个领域,一个能够准确再现体内肿瘤表型的 3D 肿瘤模型将是研究肿瘤生物学的宝贵工具,并允许更好地对候选抗癌药物进行临床前评估。最广泛使用的模型涉及小细胞聚集体,称为球体,几十年来癌症生物学家一直在使用这些球体,并且一直表明 3D 组织培养比标准二维单层培养更优越,因为它可以模拟体内遇到的肿瘤行为和耐药性。目前,一些研究小组已经开始从组织工程领域采用更先进的 3D 培养技术,以创建更符合临床实际的肿瘤生物学体外模型。