Department of Biomedical Engineering, Jinan University, Guangzhou 510632, China.
Biopharmaceutical R&D Center, Jinan University, Guangzhou 510632, China.
Int J Biol Macromol. 2022 Nov 30;221:193-203. doi: 10.1016/j.ijbiomac.2022.08.202. Epub 2022 Sep 3.
Immunostimulating activities of yeast β(1 → 3)-D-Glucan (β-Glucan) mainly depended on its structures. However, due to the tight triple helix structure of β-Glucan, its immunostimulating activity is greatly weakened. Therefore, in order to partially unwind the tight triple helix structure of β-glucan and improve its solubility in the medium, we modified it by amination in this study (A-Glu). The results showed that A-Glu could stimulate Raw264.7 macrophages and significantly enhance its TNF-α, IL-6, and IL-10 cytokine expression levels in vitro. A-Glu could also induce a shift of M0 Raw264.7 toward M1, and M2 toward M1. To expand the application of A-Glu in wound repair, the composite sponge consisting of A-Glu and type I collagen via the formation of a stable polyion complex (PIC) was developed. Moreover, the composite sponge could accelerate wound repair significantly. These results reveal that soluble A-Glu as an immunostimulating agent has potential applications in biomedicine.
酵母β(1→3)-D-葡聚糖(β-葡聚糖)的免疫刺激活性主要取决于其结构。然而,由于β-葡聚糖的紧密三螺旋结构,其免疫刺激活性大大减弱。因此,为了部分解开β-葡聚糖的紧密三螺旋结构并提高其在介质中的溶解度,我们在本研究中通过氨化对其进行了修饰(A-Glu)。结果表明,A-Glu 可以刺激 Raw264.7 巨噬细胞,并显著增强其 TNF-α、IL-6 和 IL-10 细胞因子的表达水平。A-Glu 还可以诱导 M0 Raw264.7 向 M1 和 M2 向 M1 的转变。为了扩大 A-Glu 在伤口修复中的应用,通过形成稳定的聚离子复合物(PIC),将 A-Glu 和 I 型胶原组成的复合海绵进行了开发。此外,复合海绵可以显著促进伤口修复。这些结果表明,作为免疫刺激剂的可溶性 A-Glu 在生物医学中有潜在的应用。