Tujula Iisa, Hyvärinen Tanja, Lotila Johanna, Rogal Julia, Voulgaris Dimitrios, Sukki Lassi, Tornberg Kaisa, Korpela Katri, Jäntti Henna, Malm Tarja, Herland Anna, Kallio Pasi, Narkilahti Susanna, Hagman Sanna
Neuroimmunology research group, Faculty of Medicine and Health Technology, Tampere University, Tampere, Finland.
Science for Life Laboratory, Division of Nanobiotechnology, Department of Protein Science, Royal Institute of Technology (KTH), Solna, 171 65, Sweden.
Cell Commun Signal. 2025 Jun 20;23(1):298. doi: 10.1186/s12964-025-02304-x.
Microglia and astrocytes are central mediators of neuroinflammation in several neurodegenerative diseases. Their intricate crosstalk and contributions to pathogenesis remain elusive, highlighting the need for innovative in vitro approaches for investigating glial interactions in neuroinflammation. This study aimed to develop advanced human-based glial coculture models to explore the inflammatory interactions of microglia and astrocytes in vitro.
Human induced pluripotent stem cell (iPSC)-derived microglia and astrocytes were cultured both in conventional culture dishes and in a microfluidic coculture platform. This platform features separate compartments for both cell types, enabling the creation of distinct microenvironments with spontaneous migration of microglia toward astrocytes through interconnecting microtunnels. To induce inflammatory activation, glial cultures were stimulated with lipopolysaccharide (LPS), a combination of tumor necrosis factor-α (TNF-α) and interleukin-1β (IL-1β), or interferon-γ (IFN-γ) for 24 h. Glial activation and interactions were analyzed with immunocytochemistry, the secretion of inflammatory factors from the culture media was measured, and microglial migration was quantified.
Microglia-astrocyte cocultures were generated in both conventional cultures and the microfluidic platform. Inflammatory stimulation with LPS and TNF-α/IL-1β elicited cell type-specific responses in microglia and astrocytes, respectively. LPS stimulation of cocultures induced lower secretion of several inflammatory mediators, suggesting dampening of microglial inflammatory responses when cocultured with astrocytes. Notably, inflammatory interaction between glial cells was demonstrated by increased level of IL-10 after TNF-α/IL-1β stimulation in cocultures compared with monocultures. The microfluidic coculture platform enabled the parallel study of microglial migration, glial activation and phagocytic function, thereby facilitating the investigation of glial responses within distinct inflammatory microenvironments. Furthermore, glial inflammatory responses and interactions were demonstrated in the controlled microenvironments of the microfluidic coculture platform. The inflammatory coculture environment was associated with elevated levels of complement component C3, emphasizing the intricate interplay between microglia and astrocytes.
Our results depict an elaborate inflammatory interaction between iPSC-derived microglia and astrocytes via reciprocal molecular signaling. Importantly, the microfluidic coculture platform established in this study provides a more functional and advanced setup for investigating inflammatory glial interactions in vitro.
小胶质细胞和星形胶质细胞是几种神经退行性疾病中神经炎症的主要介质。它们复杂的相互作用及其对发病机制的贡献仍不清楚,这突出表明需要创新的体外方法来研究神经炎症中神经胶质细胞的相互作用。本研究旨在建立先进的基于人类的神经胶质细胞共培养模型,以探索体外小胶质细胞和星形胶质细胞的炎症相互作用。
将人诱导多能干细胞(iPSC)衍生的小胶质细胞和星形胶质细胞分别培养在传统培养皿和微流控共培养平台中。该平台为两种细胞类型提供了独立的隔室,通过相互连接的微通道使小胶质细胞能够自发迁移向星形胶质细胞,从而创建不同的微环境。为诱导炎症激活,用脂多糖(LPS)、肿瘤坏死因子-α(TNF-α)和白细胞介素-1β(IL-1β)的组合或干扰素-γ(IFN-γ)刺激神经胶质细胞培养物24小时。通过免疫细胞化学分析神经胶质细胞的激活和相互作用,测量培养基中炎症因子的分泌,并对小胶质细胞的迁移进行定量分析。
在传统培养和微流控平台中均成功构建了小胶质细胞-星形胶质细胞共培养体系。LPS和TNF-α/IL-1β的炎症刺激分别在小胶质细胞和星形胶质细胞中引发了细胞类型特异性反应。LPS刺激共培养物诱导几种炎症介质的分泌降低,这表明与星形胶质细胞共培养时小胶质细胞的炎症反应受到抑制。值得注意的是,与单培养相比,共培养物在TNF-α/IL-1β刺激后IL-10水平升高,证明了神经胶质细胞之间的炎症相互作用。微流控共培养平台能够并行研究小胶质细胞的迁移、神经胶质细胞的激活和吞噬功能,从而便于在不同的炎症微环境中研究神经胶质细胞的反应。此外,在微流控共培养平台的可控微环境中证实了神经胶质细胞的炎症反应和相互作用。炎症共培养环境与补体成分C3水平升高相关,强调了小胶质细胞和星形胶质细胞之间复杂的相互作用。
我们的结果描绘了iPSC衍生的小胶质细胞和星形胶质细胞之间通过相互分子信号传导形成的复杂炎症相互作用。重要的是,本研究建立的微流控共培养平台为体外研究炎症性神经胶质细胞相互作用提供了更具功能性和先进性的设置。