Choi Hyunjung, Jin Sun Hee, Han Mi Hwa, Lee Jinyoung, Ahn Seyeon, Seong Minjeong, Choi Hyun, Han Jiyeon, Cho Eun-Gyung, Lee Tae Ryong, Noh Minsoo
Bioscience Research Institute, AmorePacific Corporation R&D Center, Yongin, Gyeonggi-do 446-729, Republic of Korea.
College of Pharmacy, Seoul National University, Seoul 151-742, Republic of Korea; Natural Products Research Institute, Seoul National University, Seoul 151-742, Republic of Korea.
J Dermatol Sci. 2014 Oct;76(1):60-6. doi: 10.1016/j.jdermsci.2014.07.006. Epub 2014 Jul 23.
BACKGROUND: The interactions between human epidermal melanocytes and their cellular microenvironment are important in the regulation of human melanocyte functions or in their malignant transformation into melanoma. Although the basement membrane extracellular matrix (BM-ECM) is one of major melanocyte microenvironments, the effects of BM-ECM on the human melanocyte functions are not fully explained at a molecular level. OBJECTIVE: This study was aimed to characterize the molecular and cellular interactions between normal human melanocytes (NHMs) and BM-ECM. METHODS: We investigated cell culture models of normal human melanocytes or melanoma cells on three-dimensional (3D) Matrigel to understand the roles of the basement membrane microenvironment in human melanocyte functions. Melanogenesis and melanobast biomarker expression in both primary human melanocytes and melanoma cells on 3D Matrigel were evaluated. RESULTS: We found that NHMs migrated and formed reversible paired box 3 (PAX3) expressing cell clusters on three-dimensional (3D) Matrigel. The melanogenesis was significantly decreased in the PAX3 expressing cell cluster. The expression profile of PAX3, SOX10, and MITF in the melanocyte cluster on 3D Matrigel was similar to that of melanoblasts. Interestingly, PAX3 and SOX10 showed an inverse expression profile in NHMs, whereas the inverse expression pattern of PAX3 and SOX10 was disrupted in melanoma MNT1 and WM266-4 cells. CONCLUSION: The human melanocyte culture on 3D Matrigel provides an alternative model system to study functions of human melanoblasts. In addition, this system will contribute to the elucidation of PAX3-related tumorigenic mechanisms to understand human melanoma.
背景:人类表皮黑素细胞与其细胞微环境之间的相互作用在调节人类黑素细胞功能或其恶性转化为黑色素瘤的过程中起着重要作用。尽管基底膜细胞外基质(BM-ECM)是黑素细胞的主要微环境之一,但BM-ECM对人类黑素细胞功能的影响在分子水平上尚未得到充分解释。 目的:本研究旨在表征正常人黑素细胞(NHMs)与BM-ECM之间的分子和细胞相互作用。 方法:我们研究了正常人黑素细胞或黑色素瘤细胞在三维(3D)基质胶上的细胞培养模型,以了解基底膜微环境在人类黑素细胞功能中的作用。评估了原代人黑素细胞和黑色素瘤细胞在3D基质胶上的黑素生成和黑素母细胞生物标志物表达。 结果:我们发现NHMs在三维(3D)基质胶上迁移并形成表达配对盒3(PAX3)的可逆细胞簇。在表达PAX3的细胞簇中黑素生成显著减少。3D基质胶上黑素细胞簇中PAX3、SOX10和MITF的表达谱与黑素母细胞相似。有趣的是,PAX3和SOX10在NHMs中呈反向表达谱,而在黑色素瘤MNT1和WM266-4细胞中PAX3和SOX10的反向表达模式被破坏。 结论:在3D基质胶上进行人黑素细胞培养为研究人类黑素母细胞功能提供了一种替代模型系统。此外,该系统将有助于阐明与PAX3相关的致瘤机制,以了解人类黑色素瘤。
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