Guo Huan, Li Dong, Miao Baohe, Feng Kanglin, Chen Guijing, Gan Renyou, Kang Zhiliang, Gao Hong
College of Biomass Science and Engineering and Healthy Food Evaluation Research Center, Sichuan University, Chengdu 610065, China.
College of Biomass Science and Engineering and Healthy Food Evaluation Research Center, Sichuan University, Chengdu 610065, China; Department of Food Science and Engineering, Moutai Institute, Renhuai 564502, China.
Ultrason Sonochem. 2025 Jan;112:107215. doi: 10.1016/j.ultsonch.2024.107215. Epub 2024 Dec 30.
Apple pectin (AP), a well-established dietary fiber, offers significant health benefits, particularly in immunomodulation. However, the structure-activity relationship (SAR) in this context remains poorly understood. This study aimed to elucidate the impact of varying degrees of esterification (DE) on AP's SAR in immunomodulatory activity. AP-Es (AP-E1, AP-E2, AP-E3) with different DE were prepared using mild ultrasound-assisted alkali de-esterification, followed by SAR analysis. Results revealed that AP-E3, with the lowest DE (5.08 ± 0.22 %), demonstrated a significant reduction in homogalacturonan (HG) domains and a corresponding increase in rhamnogalacturonan-I (RG-I) domains, which coincided with enhanced immunomodulatory effects. The molecular weights of AP-E1, AP-E2, and AP-E3 were determined to be 30.94 ± 0.83 kDa, 27.61 ± 0.65 kDa, and 22.17 ± 0.57 kDa, respectively. To further explore the underlying mechanism, transgenic zebrafish with fluorescent macrophages were utilized. A positive correlation was observed between AP-E3 concentration and the number of fluorescent microspheres engulfed by macrophages. Additionally, AP-E3 significantly upregulated the expression of key immune response genes (tnf-α, il-1β, il-6, cox-2, inos, and nf-κb) and restored the gut microbiota composition and abundance in chloramphenicol-induced immunocompromised zebrafish. Metabolomics analysis revealed that AP-E3 effectively restored metabolic homeostasis by activating multiple signaling pathways associated with signal transduction, immune regulation, and metabolism. These findings highlight the potential of low-esterified AP enriched with RG-I domains as a promising candidate for applications in immune modulation and gut health management.
苹果果胶(AP)作为一种公认的膳食纤维,具有显著的健康益处,尤其是在免疫调节方面。然而,在这种情况下,其构效关系(SAR)仍未得到充分理解。本研究旨在阐明不同酯化度(DE)对AP免疫调节活性构效关系的影响。使用温和的超声辅助碱脱酯化法制备了具有不同DE的AP-Es(AP-E1、AP-E2、AP-E3),随后进行构效关系分析。结果显示,DE最低(5.08±0.22%)的AP-E3,其同型半乳糖醛酸聚糖(HG)结构域显著减少,鼠李半乳糖醛酸聚糖-I(RG-I)结构域相应增加,这与增强的免疫调节作用相吻合。AP-E1、AP-E2和AP-E3的分子量分别测定为30.94±0.83 kDa、27.61±0.65 kDa和22.17±0.57 kDa。为了进一步探究潜在机制,利用了带有荧光巨噬细胞的转基因斑马鱼。观察到AP-E3浓度与巨噬细胞吞噬的荧光微球数量之间存在正相关。此外,AP-E3显著上调了关键免疫反应基因(tnf-α、il-1β、il-6、cox-2、inos和nf-κb)的表达,并恢复了氯霉素诱导的免疫受损斑马鱼的肠道微生物群组成和丰度。代谢组学分析表明,AP-E3通过激活与信号转导、免疫调节和代谢相关的多个信号通路,有效地恢复了代谢稳态。这些发现突出了富含RG-I结构域的低酯化AP作为免疫调节和肠道健康管理应用的有前景候选物的潜力。