Cell Line-Specific Estrogen Responses Uncover Functional Sex Differences in Murine Macrophages.

Alison M Veintimilla, Zoe Turner, Nana Owusu-Boaitey, Varun Deshpande, Margaret McCarthy, Erika Moore
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Abstract

Background RAW 264.7 (male-derived) and J774A.1 (female-derived), are widely used in immunology research, yet their responses to gonadal hormones remain poorly understood. Gonadal hormones, particularly estrogen, shape immune cell function and contribute to sex differences in disease outcomes, with macrophages playing a central role through their expression of intracellular estrogen receptors (ERs). Herein, we investigated ER expression and functional responses to 17β-estradiol (E2) in male-derived RAW 264.7 and female-derived J774A.1 macrophages, in 2D culture. Additionally we looked at sex-matched and mismatched media conditions in a 3D hydrogel system. Our results reveal distinct phenotypic and functional differences between the cell lines, emphasizing the need for sex-aware approaches in immunological research and model design. Methods RAW 264.7 and J774A.1 macrophages were cultured in basal media for 24 hours, then treated with varying concentrations of 17β-estradiol (5, 25, 100 nM), as well as hormone-free and control media. Post-treatment analyses included viability, estrogen receptor expression, phenotype skewing, matrix metalloprotease 9 (MMP9) levels, and phagocytosis. These macrophages were also used to condition sex-specific media environments and were encapsulated in a hydrogel network containing adhesive and cleavable sites. Encapsulated cells were then exposed to sex-matched or sex-mismatched conditioned media, and proliferation and MMP9 production were assessed. Results Our results revealed distinct differences in estrogen receptor gene and protein expression, as well as in core macrophage functions such as proliferation, inflammation, matrix remodeling, and phenotype skewing. Additionally, the sex-derivation of the surrounding molecular environment affected macrophage behavior in a 3D hydrogel system. Female-derived macrophages were more sensitive in terms of proliferation to sex-mismatched environments, while male-derived macrophages exhibited altered enzyme activity when exposed to female-conditioned media. Conclusions These findings underscore the importance of accounting for both the origin of immune cells as well as the hormonal and environmental context in which they are studied. Without these considerations, experimental models risk missing critical biological differences that shape immune responses and disease outcomes.

细胞系特异性雌激素反应揭示小鼠巨噬细胞功能性别差异。
RAW 264.7(男性衍生)和J774A.1(女性来源),广泛用于免疫学研究,但它们对性腺激素的反应仍然知之甚少。性腺激素,特别是雌激素,塑造免疫细胞功能并导致疾病结局的性别差异,巨噬细胞通过表达细胞内雌激素受体(er)发挥核心作用。在此,我们研究了雄性来源的RAW 264.7和雌性来源的J774A中ER的表达和对17β-雌二醇(E2)的功能反应。1个巨噬细胞,2D培养。此外,我们还研究了3D水凝胶系统中性别匹配和不匹配的介质条件。我们的研究结果揭示了细胞系之间明显的表型和功能差异,强调了在免疫学研究和模型设计中需要性别意识方法。方法RAW 264.7和J774A。1巨噬细胞在基础培养基中培养24小时,然后用不同浓度的17β-雌二醇(5、25、100 nM)、无激素培养基和对照培养基处理。治疗后分析包括活力、雌激素受体表达、表型扭曲、基质金属蛋白酶9 (MMP9)水平和吞噬。这些巨噬细胞也被用于调节性别特异性的介质环境,并被包裹在含有粘附和可切割位点的水凝胶网络中。然后将包被的细胞暴露于性别匹配或性别不匹配的条件培养基中,评估增殖和MMP9的产生。结果雌激素受体基因和蛋白表达以及巨噬细胞增殖、炎症、基质重塑和表型倾斜等核心功能均存在明显差异。此外,周围分子环境的性别分化影响了巨噬细胞在三维水凝胶体系中的行为。雌性来源的巨噬细胞在性别不匹配的环境中增殖更敏感,而雄性来源的巨噬细胞在暴露于雌性条件培养基时表现出改变的酶活性。这些发现强调了解释免疫细胞起源以及它们所研究的激素和环境背景的重要性。如果没有这些考虑,实验模型可能会错过影响免疫反应和疾病结果的关键生物学差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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