Department of Urology, Pusan National University Yangsan Hospital and Pusan National University College of Medicine, Yangsan 626-870, Republic of Korea.
Department of Anatomy and Convergence Medical Sciences, Pusan National University College of Medicine, Yangsan 626-870, Republic of Korea.
Mar Drugs. 2024 Jun 26;22(7):295. doi: 10.3390/md22070295.
Recently, the need to develop a robust three-dimensional (3D) cell culture system that serves as a valuable in vitro tumor model has been emphasized. This system should closely mimic the tumor growth behaviors observed in vivo and replicate the key elements and characteristics of human tumors for the effective discovery and development of anti-tumor therapeutics. Therefore, in this study, we developed an effective 3D in vitro model of human prostate cancer (PC) using a marine collagen-based biomimetic 3D scaffold. The model displayed distinctive molecular profiles and cellular properties compared with those of the 2D PC cell culture. This was evidenced by (1) increased cell proliferation, migration, invasion, colony formation, and chemoresistance; (2) upregulated expression of crucial multidrug-resistance- and cancer-stemness-related genes; (3) heightened expression of key molecules associated with malignant progressions, such as epithelial-mesenchymal transition transcription factors, Notch, matrix metalloproteinases, and pluripotency biomarkers; (4) robust enrichment of prostate cancer stem cells (CSCs); and (5) enhanced expression of integrins. These results suggest that our 3D in vitro PC model has the potential to serve as a research platform for studying PC and prostate CSC biology, as well as for screening novel therapies targeting PC and prostate CSCs.
最近,人们强调需要开发一种强大的三维(3D)细胞培养系统,作为有价值的体外肿瘤模型。该系统应密切模拟体内观察到的肿瘤生长行为,并复制人类肿瘤的关键要素和特征,以有效发现和开发抗肿瘤治疗药物。因此,在这项研究中,我们使用基于海洋胶原蛋白的仿生 3D 支架开发了一种有效的人前列腺癌(PC)3D 体外模型。与 2D PC 细胞培养相比,该模型显示出独特的分子特征和细胞特性。这一点可以通过以下几点来证明:(1)细胞增殖、迁移、侵袭、集落形成和化疗耐药性增加;(2)与多药耐药和癌症干性相关的关键基因表达上调;(3)与恶性进展相关的关键分子的表达增强,如上皮-间充质转化转录因子、Notch、基质金属蛋白酶和多能性生物标志物;(4)前列腺癌干细胞(CSCs)的丰富;以及(5)整合素的表达增强。这些结果表明,我们的 3D 体外 PC 模型有可能成为研究 PC 和前列腺 CSC 生物学的研究平台,以及筛选针对 PC 和前列腺 CSCs 的新型治疗方法。