Farm Animal Genetic Resources Exploration and Innovation Key Laboratory of Sichuan Province, Sichuan Agricultural University, Chengdu, China.
Reprod Domest Anim. 2021 Jan;56(1):58-73. doi: 10.1111/rda.13849. Epub 2020 Nov 9.
Theca cells (TCs) play an important role in follicular development, which cannot be separated from granulosa cells (GCs). However, compared with mammals, the TCs and the effects of GCs on TCs at different follicular development stages (FDSs) have specific characteristics in avian species, but none of them have been clearly defined. In this study, we established an in vitro co-culture (with GC at the corresponding stage) model of goose TCs at different FDSs (pre-hierarchical, hierarchical and F1) by using a transwell system. The properties of TCs in co-culture at the three FDSs, including cell morphology, activity and intracellular lipid content, as well as the expression of key genes involved in de novo lipogenesis, steroidogenesis, proliferation and apoptosis, were examined and defined. We further compared the mono-culture and co-culture groups. After co-culture, the activity of TCs showed significant (p < .01) increases in all stages; moreover, in pre-hierarchical TCs, the expression levels of FAS, SREBP, 3β-HSD and CCND1 were promoted, and PPARγ, CYP19, BCL2 and CAS3 were inhibited (p < .05); in the hierarchical TCs, the expression levels of PPARγ, FAS, CYP19, CCND1 and BCL2 were promoted, and SREBP, STAR, 3β-HSD and CAS3 were inhibited (p < .05), whereas in the F1 TCs, the expression levels of PPARγ, FAS, 3β-HSD, CYP19 and CCND1 were promoted, and STAR and CAS3 were inhibited (p < .05). These results suggested that GCs at the three FDSs have dynamic and complex influences on the physiological characteristics of TCs, and the influences on TCs at the three FDSs were varied.
卵泡膜细胞(TCs)在卵泡发育中发挥重要作用,这与颗粒细胞(GCs)密不可分。然而,与哺乳动物相比,禽类的 TCs 及其在不同卵泡发育阶段(FDSs)对 TCs 的影响具有特定的特征,但目前尚未明确界定。在本研究中,我们通过 Transwell 系统建立了鹅不同 FDS(前层级、层级和 F1)TCs 的体外共培养(对应阶段的 GC)模型。在三个 FDSs 的共培养中,包括细胞形态、活性和细胞内脂质含量,以及参与从头脂质生成、类固醇生成、增殖和凋亡的关键基因的表达,检测并定义了 TCs 的特性,并与单培养组进行了比较。共培养后,所有阶段 TCs 的活性均显著增加(p<0.01);此外,在前层级 TCs 中,FAS、SREBP、3β-HSD 和 CCND1 的表达水平上调,而 PPARγ、CYP19、BCL2 和 CAS3 的表达水平下调(p<0.05);在层级 TCs 中,PPARγ、FAS、CYP19、CCND1 和 BCL2 的表达水平上调,而 SREBP、STAR、3β-HSD 和 CAS3 的表达水平下调(p<0.05),而在 F1 TCs 中,PPARγ、FAS、3β-HSD、CYP19 和 CCND1 的表达水平上调,而 STAR 和 CAS3 的表达水平下调(p<0.05)。这些结果表明,三个 FDSs 的 GCs 对 TCs 的生理特性具有动态而复杂的影响,且对三个 FDSs 的影响是不同的。