宿主与微生物代谢物相互作用的成人肠道芯片模型表明,菊粉处理对肠道微生物群有益

J. Donkers, Maria Wiese, Tim J. van den Broek, E. Wierenga, Valeria Agamennone, F. Schuren, E. van de Steeg
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摘要

背景:肠道及其微生物组对健康的许多方面都有重大影响,因此也是药物或食物疗法的一个有吸引力的目标。在此,我们报告了将微生物组筛选模型 i-screen 与微流控芯片肠道模型(Intestinal Explant Barrier Chip,IEBC)中的新鲜肠道组织外植体相结合的附加价值。方法:在 i-screen 平台上厌氧培养成年人类肠道微生物组(6 名健康供体的粪便池)24 小时,不接触和接触 4 毫克/毫升菊粉。随后将 i-screen 无细胞培养上清液涂抹到固定在 IEBC 中的成人结肠组织外植体(n = 3 名供体)的管腔侧 24 小时,并评估其效果。结果在培养基中添加菊粉能促进体外 i 筛中 Anaerostipes、Bifidobacterium、Blautia 和 Collinsella 的生长,并促使微生物群产生更多的丁酸盐。暴露于菊粉处理的 i-screen 无细胞培养上清或添加了短链脂肪酸 (SCFA) 的对照 i-screen 无细胞培养上清的人体结肠组织显示出组织屏障完整性得到了改善,FITC-葡聚糖 4000 (FD4) 渗漏减少了 28.2%-34.2%,安替比林的运输量降低了 1.3 倍。此外,在这种情况下,促炎细胞因子 IL-1β、IL-6、IL-8 和 TNF-α 的释放也有所减少。基因表达谱证实了这些发现,但与补充 SCFA 的上清液相比,菊粉处理的上清液具有更深远的影响。结论i-screen 和 IEBC 的结合有助于研究复杂的肠道过程,如宿主-微生物代谢物相互作用和肠道健康。
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A host-microbial metabolite interaction gut-on-a-chip model of the adult human intestine demonstrates beneficial effects upon inulin treatment of gut microbiome
Background: The gut and its microbiome have a major impact on many aspects of health and are therefore also an attractive target for drug- or food-based therapies. Here, we report on the added value of combining a microbiome screening model, the i-screen, with fresh intestinal tissue explants in a microfluidic gut-on-a-chip model, the Intestinal Explant Barrier Chip (IEBC). Methods: Adult human gut microbiome (fecal pool of 6 healthy donors) was cultured anaerobically in the i-screen platform for 24 h, without and with exposure to 4 mg/mL inulin. The i-screen cell-free culture supernatant was subsequently applied to the luminal side of adult human colon tissue explants (n = 3 donors), fixed in the IEBC, for 24 h and effects were evaluated. Results: The supplementation of the media with inulin promoted the growth of Anaerostipes , Bifidobacterium , Blautia , and Collinsella in the in vitro i-screen, and triggered an elevated production of butyrate by the microbiota. Human colon tissue exposed to inulin-treated i-screen cell-free culture supernatant or control i-screen cell-free culture supernatant with added short-chain fatty acids (SCFAs) showed improved tissue barrier integrity measured by a 28.2%-34.2% reduction in FITC-dextran 4000 (FD4) leakage and 1.3 times lower transport of antipyrine. Furthermore, the release of pro-inflammatory cytokines IL-1β, IL-6, IL-8, and TNF-α was reduced under these circumstances. Gene expression profiles confirmed these findings, but showed more profound effects for inulin-treated supernatant compared to SCFA-supplemented supernatant. Conclusion: The combination of i-screen and IEBC facilitates the study of complex intestinal processes such as host-microbial metabolite interaction and gut health.
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