Moon SooHyeon, Ok YeJin, Hwang SeonYeong, Lim Ye Seon, Kim Hye-Yoon, Na Yong-Jin, Yoon Sik
Department of Obstetrics and Gynecology, Pusan National University College of Medicine, Yangsan, Gyeongsangnam-do 626-870, Korea.
Department of Anatomy, Pusan National University College of Medicine, Yangsan, Gyeongsangnam-do 626-870, Korea.
Mar Drugs. 2020 Sep 29;18(10):498. doi: 10.3390/md18100498.
Recent attention has focused on the development of an effective three-dimensional (3D) cell culture system enabling the rapid enrichment of cancer stem cells (CSCs) that are resistant to therapies and serving as a useful in vitro tumor model that accurately reflects in vivo behaviors of cancer cells. Presently, an effective 3D in vitro model of ovarian cancer (OC) was developed using a marine collagen-based hydrogel. Advantages of the model include simplicity, efficiency, bioactivity, and low cost. Remarkably, OC cells grown in this hydrogel exhibited biochemical and physiological features, including (1) enhanced cell proliferation, migration and invasion, colony formation, and chemoresistance; (2) suppressed apoptosis with altered expression levels of apoptosis-regulating molecules; (3) upregulated expression of crucial multidrug resistance-related genes; (4) accentuated expression of key molecules associated with malignant progression, such as epithelial-mesenchymal transition transcription factors, Notch, and pluripotency biomarkers; and (5) robust enrichment of ovarian CSCs. The findings indicate the potential of our 3D in vitro OC model as an in vitro research platform to study OC and ovarian CSC biology and to screen novel therapies targeting OC and ovarian CSCs.
最近,人们的注意力集中在开发一种有效的三维(3D)细胞培养系统上,该系统能够快速富集对治疗有抗性的癌症干细胞(CSCs),并作为一种有用的体外肿瘤模型,准确反映癌细胞的体内行为。目前,使用基于海洋胶原蛋白的水凝胶开发了一种有效的卵巢癌(OC)三维体外模型。该模型的优点包括简单、高效、生物活性和低成本。值得注意的是,在这种水凝胶中生长的OC细胞表现出生物化学和生理学特征,包括:(1)增强细胞增殖、迁移和侵袭、集落形成以及化学抗性;(2)通过改变凋亡调节分子的表达水平抑制凋亡;(3)关键多药耐药相关基因的表达上调;(4)与恶性进展相关的关键分子的表达增强,如上皮-间质转化转录因子、Notch和多能性生物标志物;(5)卵巢CSCs的强大富集。这些发现表明我们的三维体外OC模型作为研究OC和卵巢CSC生物学以及筛选针对OC和卵巢CSCs的新疗法的体外研究平台的潜力。