One Bio Inc., Sacramento, CA 95833, USA.
Nutrients. 2024 Jul 12;16(14):2240. doi: 10.3390/nu16142240.
β-glucans found in cereal grains have been previously demonstrated to improve blood glucose control; however, current understanding points to their high viscosity as the primary mechanism of action. In this work, we present a novel, highly soluble, low-viscosity β-glucan fiber (HS-BG fiber) and a preclinical dataset that demonstrates its impact on two mechanisms related to the prevention of hyperglycemia. Our results show that HS-BG inhibits the activity of two key proteins involved in glucose metabolism, the α-glucosidase enzyme and the SGLT1 transporter, thereby having the potential to slow starch digestion and subsequent glucose uptake. Furthermore, we demonstrate in a multi-donor fecal fermentation model that HS-BG is metabolized by several different members of the gut microbiome, producing high amounts of short-chain fatty acids (SCFAs), known agonists of GPR43 receptors in the gut related to GLP-1 secretion. The production of SCFAs was verified in the translational gut model, SHIME. Moreover, HS-BG fiber fermentation produces compounds that restored permeability in disrupted epithelial cells, decreased inflammatory chemokines (CXCL10, MCP-1, and IL-8), and increased anti-inflammatory marker (IL-10), which could improve insulin resistance. Together, these data suggest that the novel HS-BG fiber is a promising new functional ingredient that can be used to modulate postprandial glycemic responses while the high solubility and low viscosity enable easy formulation in both beverage and solid food matrices.
谷物中发现的β-葡聚糖先前已被证明可以改善血糖控制;然而,目前的认识指向其高粘度是主要作用机制。在这项工作中,我们提出了一种新型的、高溶解性、低粘度的β-葡聚糖纤维(HS-BG 纤维)和一个临床前数据集,该数据集证明了其对与预防高血糖相关的两种机制的影响。我们的结果表明,HS-BG 抑制了两种参与葡萄糖代谢的关键蛋白的活性,即α-葡萄糖苷酶和 SGLT1 转运蛋白,从而有可能减缓淀粉消化和随后的葡萄糖吸收。此外,我们在多供体粪便发酵模型中证明,HS-BG 被肠道微生物组的几个不同成员代谢,产生大量短链脂肪酸(SCFAs),这些酸是与 GLP-1 分泌相关的肠道 GPR43 受体的已知激动剂。在翻译肠道模型 SHIME 中验证了 SCFAs 的产生。此外,HS-BG 纤维发酵产生的化合物可以恢复受损上皮细胞的通透性,降低炎症趋化因子(CXCL10、MCP-1 和 IL-8),并增加抗炎标志物(IL-10),这可以改善胰岛素抵抗。总之,这些数据表明,新型 HS-BG 纤维是一种很有前途的新型功能性成分,可用于调节餐后血糖反应,而其高溶解性和低粘度使其能够在饮料和固体食品基质中轻松配方。