Suderman Michael T, Temeyer Kevin B, Schlechte Kristie G, Pérez de León Adalberto A
Cell Systems-3D LLC, League City, TX 77573, USA.
Knipling-Bushland U.S. Livestock Insects Research Laboratory and Veterinary Pest Genomics Center, United States Department of Agriculture, Agricultural Research Service, 2700 Fredericksburg Road, Kerrville, TX 78028, USA.
Insects. 2021 Aug 19;12(8):747. doi: 10.3390/insects12080747.
Tick cell culture facilitates research on the biology of ticks and their role as vectors of pathogens that affect humans, domestic animals, and wildlife. Because two-dimensional cell culture doesn't promote the development of multicellular tissue-like composites, we hypothesized that culturing tick cells in a three-dimensional (3-D) configuration would form spheroids or tissue-like organoids. In this study, the cell line BmVIII-SCC obtained from the cattle fever tick, () (Canestrini, 1888), was cultured in different synthetic scaffold systems. Growth of the tick cells on macrogelatinous beads in rotating continuous culture system bioreactors enabled cellular attachment, organization, and development into spheroid-like aggregates, with evidence of tight cellular junctions between adjacent cells and secretion of an extracellular matrix. At least three cell morphologies were identified within the aggregates: fibroblast-like cells, small endothelial-like cells, and larger cells exhibiting multiple cytoplasmic endosomes and granular vesicles. These observations suggest that BmVIII-SCC cells adapted to 3-D culture retain pluripotency. Additional studies involving genomic analyses are needed to determine if BmVIII-SCC cells in 3-D culture mimic tick organs. Applications of 3-D culture to cattle fever tick research are discussed.
蜱细胞培养有助于研究蜱的生物学特性及其作为影响人类、家畜和野生动物的病原体传播媒介的作用。由于二维细胞培养不能促进多细胞组织样复合物的发育,我们推测在三维(3-D)构型中培养蜱细胞会形成球体或组织样类器官。在本研究中,从牛蜱( )(Canestrini,1888)获得的细胞系BmVIII-SCC在不同的合成支架系统中进行培养。在旋转连续培养系统生物反应器中的大凝胶珠上培养蜱细胞,能够使细胞附着、组织化并发育成类球体聚集体,相邻细胞之间存在紧密细胞连接以及细胞外基质分泌的证据。在聚集体中至少鉴定出三种细胞形态:成纤维细胞样细胞、小内皮细胞样细胞以及具有多个细胞质内体和颗粒小泡的较大细胞。这些观察结果表明,适应三维培养的BmVIII-SCC细胞保留了多能性。需要进行涉及基因组分析的进一步研究,以确定三维培养中的BmVIII-SCC细胞是否模拟蜱器官。讨论了三维培养在牛蜱研究中的应用。